April 10, 2018

The market for thermal spray coating will reach $ 14 billion 990 million

According to the study, the global market for thermal spray coatings will reach $14.99 billion by 2025. The expanding range of applications, such as wear and corrosion protection, low gas emission, thickness and resistance, has brought new vitality to the market of thermal spraying coatings.
Thermal spray coating market
It mainly includes aerospace industry precision parts, automobile, medical instrument and industrial gas turbine. The use of thermal spraying coatings in biomedicine and medical devices will help improve their wear resistance and improve biocompatibility, as well as help with denture implants.
The expanding range of applications also includes ships, locomotives, tanks, helicopters and motorcycle gas turbines, which have also accelerated the boom in the market for thermal spraying coatings. Considering the properties of high temperature and corrosion resistance, polymer and metal thermal spraying coatings are generally used in industrial gas turbine blades in powder form.
In terms of benefits, ceramics are the biggest applications. According to the statistics of 2016, ceramics account for 30.1% of the global market. And ceramics are mainly used in the biomedical industry. It is expected that this aspect will bring positive factors to the hot spraying coating market in the next 7 years.
The global hot paint coating market is expected to grow significantly due to the impact of the aerospace industry and the auto industry. The growing demand for corrosion resistant coatings in both industries will be a major driver of market growth. At the same time, industrial coatings, wear-resistant coatings, biomedicine, food processing, electrical and electronics, semiconductors and energy will also have a positive impact on the market.
According to the report
In 2016, the global thermal spraying coating market was worth $8.33 billion. According to the data, this number will increase due to the growth of automobile industry demand.
Revenue growth in medical applications is the fastest growing, with a compound annual growth rate of 7.8 per cent between 2017 and 2026, affected by increased demand for better health care facilities and hospitals.
The ceramic sector, which has become the highest-paid sector in 2016, it will continue to grow steadily over the next few years and is expected to reach $4.6 billion by 2025.
Thanks to strong growth in healthcare, oil and gas, the region's industries will see substantial growth over the next eight years, particularly in India and China, with gas and cars. The compound annual growth rate will reach 7.9% from 2017 to 2025.

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April 04, 2018

Prevention and correction of die die failure in tungsten carbide die

One of the forms of stamping die burst is the mold impact. The failure modes of die are mainly wear failure, deformation failure, failure and so on. However, due to the different process of stamping forming, different working conditions will affect the life of tungsten carbide die.

1. Stamping equipment

The precision and toughness of the press equipment (such as press) is very important for the impact of the die life. The higher the precision of the stamping equipment, the better the toughness, the higher the die life. Complex, for example, silicon steel sheet for Crl2MoV die material, used in ordinary open presses, average after grinding life is 1-30000 times, and used the new precision presses, die after grinding life of up to 6 ~ 120000 times. Especially small foot clearance or no clearance punching die, carbide die and precision punching die must choose high precision, good press rigidity, otherwise, will reduce the life of tungsten carbide die, serious damage to the mold.

2. Mold design

Precision of guide mechanism of mould. Accurate and reliable guidance, to reduce wear and tear of the mold parts, avoid has enormous influence on the convex and concave mold damage, especially no clearance blanking die, compound die, and small clearance and multistep progressive die are more effective. In order to improve the die life, it is necessary to select the guide form and determine the precision of the guiding mechanism according to the requirements of the process nature and the precision of the parts. In general, the precision of the guiding mechanism should be higher than that of convex and concave modes.

3. Stamping process

(1) raw materials for stamping parts.

In practical production, because of external pressure parts raw material thickness tolerance error, material performance fluctuation, poor surface quality (such as rust) or not clean (such as oil), wear, easy to cause mould parts as well as the collapse edge. To this end, it should be noted that, as far as possible, the material with good stamping process is used to reduce the stamping deformation force. Before stamping, strictly check the number, thickness and surface quality of the raw materials, and clean the raw materials, and remove the surface oxides and rust when necessary; According to the stamping process and the type of raw materials, the softening and surface treatment can be arranged as necessary, and the appropriate lubricant and lubrication process should be selected.

(2) layout and edge.

The unreasonable reciprocating feeding method and too small edge value often result in sharp abrasion or convex and die damage. Therefore, considering to increase the material to finish at the same time, must according to the requirements of the parts processing and batch, quality and mould fit clearance, selecting reasonable layout method and the boundary value, in order to improve life for tungsten carbide die.

4. Mold materials

The influence of mould material on die life is a comprehensive reflection of material type, chemical composition, structure, hardness and metallurgical quality. Mold design of different materials is often different. Therefore, for the working parts of the die material puts forward two basic requirements: (1) the use of material performance should have high hardness and high strength, and high wear resistance and sufficient toughness, heat treatment deformation is small, has the certain red hardness; The process performance is good. The processing and manufacturing process of die working parts is generally complicated. Therefore, it is necessary to have adaptability to various processing technologies, such as malleability, machinability, hardenability, hardenability, quenching crack sensitivity and grinding process. According to the material characteristics, production batch and precision requirements of the stamping parts, the mould material with excellent performance is selected, and its technology and economy are also considered.

 

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March 30, 2018

3D glass bending machine tungsten carbide hot plate

With the advent of the era of 5G, mobile phone 3D glass screen and back cover will be into explosive growth, the most important thing is to hot bending glass lenses production process of forming. In the hot bending machine evenly heat in the process of high temperature hot pressing glass, you need to use to the high temperature resistant, thermal conductivity of the powder metallurgy soaking plate to heat evenly hot pressing operations.

We use tungsten carbide has good strength and toughness, coefficient of thermal conductivity to the principle of increase and decrease with increasing of tungsten carbide plate, tungsten carbide of coefficient of thermal conductivity is greater than the titanium carbide, adding nickel, chromium carbide can effectively inhibit alloy creep, improve the ability to resist plastic deformation, and can improve the corrosion resistance ability; Molybdenum carbide with high melting point and hardness, good thermal stability and mechanical stability and excellent corrosion resistance, etc, tantalum carbide can improve the product high temperature hardness, strength and resistance to high temperature oxidation, the development of the cemented carbide soaking plate has high hardness, good strength, high temperature resistant, high temperature oxidation resistance, good thermal conductivity and high temperature uniformity, completely meet the requirements of the 3D glass bending machine.

The most important part of the 3D glass production process is hot bending. Hot bending core workspace heating temperature often reaches 850 ℃ to 950 ℃ to 1150 ℃ or higher, so high temperature hot bending machine soaking for 3D glass tungsten carbide plate is to have special requirements, and glass material under the condition of high temperature have strong corrosion effect. It should not only guarantee the density of soaking slab high hardness, and to ensure that the high-temperature thermal deformation and strong corrosion resistance, this undoubtedly for powder metallurgy new material is a kind of new material application requirements and challenges. The tungsten carbide soaking plate of our company has excellent high temperature hardness, high thermal conductivity, thermal stability, high temperature resistant deformation and excellent anti-corrosion resistance.

The main process production directly affects the use performance of 3D glass thermal bending machine.

1. Preparation process of mixture.

The physical and chemical properties of tungsten carbide plate are controlled by the optimum composition ratio, including the room temperature and high temperature hardness, corrosion resistance, oxidation resistance, bending resistance and compressive strength. The grinding stability of each batch of mixture is controlled by the ball milling factor, including the distribution of WC particle size, the distribution of hard phase and bond phase, to control the fluctuation of the physical properties of the alloy.

2. Pressing process

It can be used to control the sintering deformation of the alloy and reduce the internal stress of the alloy.

3. Sintering process

Through multiple atmosphere removal compact forming agent, strictly control the compact surface and core, the boat interface and boat interface carbon potential, and through the optimal control in the process of alloy in sintering temperature curve to contraction, strictly control the size of the alloy, parallelism and minimal internal stress.

4. Heat treatment process

Make the best heat treatment process, through high temperature quenching change phase structure of the binding phase, related components dissolved in full, to strengthen the binding phase, improve alloy strong toughness and corrosion resistance, and eliminate alloy produced in the process of sintering shrinkage internal stress, good for alloy after surface finish.

5. Aging treatment process.

After grinding, the tungsten carbide is treated by aging process, and the processing stress produced by alloy in fine grinding is treated, and the dimension and parallelism of the alloy are controlled.


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March 23, 2018

Tungsten carbide spade drill

Tungsten carbide spade drill is made up of handle and blade. Normally, the shank of a hard alloy spade is made of steel, and the blade of the convertible head is made of hard alloy. The hilt has two structures: the side handle and the Morse handle. It is used for CNC lathe and CNC machine tool. The Morse handle is used in traditional equipment such as vertical drilling, rocker drill and pusher. By simply installing a cooling ring device, the external cooling can be converted to internal cooling. The cooling water enters the tool rod through the cooling ring and is cooled directly to the blade section through the internal cooling hole. And the high pressure of the cooling water is more conducive to defecation.
The blade can also be divided into two types, carbide blade and high speed steel blade. The range of carbide blades ranges from 9mm to 32mm. The range of high-speed steel blades ranges from 9mm to 68mm, and part of the non-standard blade can even be made larger. The high speed steel blade is generally cobalt high speed steel with 8% cobalt, which has good wear resistance and toughness. However, the performance of the carbide blade is much better than the steel blade, and the service life is relatively long.
The tungsten carbide spade drill is positioned through the groove, and the two screw holes are fixed and fixed, which can ensure the symmetry of the blade between 0.01 and 0.02mm. According to the size of the blade, there are usually 2 to 6 chip slots. According to the different cutting materials, the tip of the blade is X - shaped drill point or s-shaped drill tip.
Advantages of hard alloy shovel drilling
A deep hole that is easy to double. The blade is a symmetrical structure with double edge cutting in the center, and it is made of tungsten carbide, so it can reach even the deep hole of 20D. The ordinary U drill, the shallow hole drill can not hit the deep hole, can be completed by the shovel.
The hard alloy shovel can be widely used in traditional machine tools such as rocker drill. Traditional machine tools are not able to be used because of low spindle speed, poor rigidity, weak power, general fast drilling, and U drill. And the spatula is made of hard alloy coating blade, which has high toughness and impact resistance, and can effectively solve the problem of collapsing blade.
The accuracy of tungsten carbide spade drill is much higher than that of U drill. A U drill is a blade that installs two asymmetric cutting blades. Blade cut into the workpiece surface, within the blade on the blade and the blade of axial force is not balanced, will cause the change of size, so U boring only as rough machining cutter, precision of + / - 0.1 mm. Blade symmetry cutting, the dimension precision can be controlled within 5 threads. Direct drilling can meet the requirement of thread bottom hole. The side of the shovel blade is trimmed with a smooth blade, which can reach RA1.6 through the extrusion of the polished blade belt.

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March 21, 2018

Tungsten carbide type O seals

Tungsten carbide type O seals is a kind of seals with circular cross section. Mainly used for mechanical components to prevent leakage of liquid and gaseous media under static conditions. In some cases, tungsten carbide type O seals can be used as dynamic sealing element axially reciprocating motion and low-speed rotational movement.

Application of tungsten carbide seals for Type O

Tungsten carbide type O sealsis widely used in kinds of machines, which is for sealing at predetermined temperature, pressure, various liquid and gaseous media, at rest or in motion state. As a seal element on machine tools, ships, automobiles, aerospace equipment, metallurgical machinery, chemical machinery, engineering machinery, construction machinery, mining machinery, petroleum machinery, plastics machinery, agricultural machinery, and a variety of instruments. Seals is mainly used for static and reciprocating seals. When the seals for rotary motion, it is only as sealing device of low-speed rotary. Tungsten carbide type O seals is typically installed on the outer or inner circular cross-section from the seal rectangular groove.

Properties

Tungsten carbide type O sealswith excellent sealing, damping effect in the oil, acid, wear, chemical attack and other environments. So the carbide seals is the most widely used as seal in hydraulic and pneumatic drive system. Tungsten carbidetype O seals sealing action of its own, not a cyclical adjustment, can be used to seal against the direction of movement of the sliding seal impact, small size at the same time easy to use, because of the large seal adaptability, so a very wide range of applications. But the pressure reaches a certain peak of easily deformed under pressure, there is the possibility to extrusion gap, with more application in terms of aviation and hydraulic engineering.

We'd better try to use a large cross-section of the O-ring. In the case of same space, the volume of carbide O-ring is extruded into the gap should be smaller than it is to squeeze the maximum allowable value. Different types of fixed seal or dynamic seal applications, carbide O-ring provides designers with an effective and economical sealing element. Carbide O-ring is a double-acting sealing element. Initial installation aspects radial or axial compression, giving O-ring seal its initial capacity. Sealing force generated by the pressure of the system and the total synthesis of the initial sealing force of the sealing force, with which to improve the system pressure increases. Carbide O-ring seal in the static case, display a prominent role. However, where appropriate dynamic, the cemented carbide O-rings are often used, but it is limited by the speed of seals and pressure.
Related link: http://www.wococarbide.com/Transaction/en_information.html

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Tungsten carbide type O seals

Tungsten carbide type O seals is a kind of seals with circular cross section. Mainly used for mechanical components to prevent leakage of liquid and gaseous media under static conditions. In some cases, tungsten carbide type O seals can be used as dynamic sealing element axially reciprocating motion and low-speed rotational movement.

Application of tungsten carbide seals for Type O

Tungsten carbide type O seals is widely used in kinds of machines, which is for sealing at predetermined temperature, pressure, various liquid and gaseous media, at rest or in motion state. As a seal element on machine tools, ships, automobiles, aerospace equipment, metallurgical machinery, chemical machinery, engineering machinery, construction machinery, mining machinery, petroleum machinery, plastics machinery, agricultural machinery, and a variety of instruments. Seals is mainly used for static and reciprocating seals. When the seals for rotary motion, it is only as sealing device of low-speed rotary. Tungsten carbide type O seals is typically installed on the outer or inner circular cross-section from the seal rectangular groove.

Properties

Tungsten carbide type O seals with excellent sealing, damping effect in the oil, acid, wear, chemical attack and other environments. So the carbide seals is the most widely used as seal in hydraulic and pneumatic drive system. Tungsten carbide type O seals sealing action of its own, not a cyclical adjustment, can be used to seal against the direction of movement of the sliding seal impact, small size at the same time easy to use, because of the large seal adaptability, so a very wide range of applications. But the pressure reaches a certain peak of easily deformed under pressure, there is the possibility to extrusion gap, with more application in terms of aviation and hydraulic engineering.

We'd better try to use a large cross-section of the O-ring. In the case of same space, the volume of carbide O-ring is extruded into the gap should be smaller than it is to squeeze the maximum allowable value. Different types of fixed seal or dynamic seal applications, carbide O-ring provides designers with an effective and economical sealing element. Carbide O-ring is a double-acting sealing element. Initial installation aspects radial or axial compression, giving O-ring seal its initial capacity. Sealing force generated by the pressure of the system and the total synthesis of the initial sealing force of the sealing force, with which to improve the system pressure increases. Carbide O-ring seal in the static case, display a prominent role. However, where appropriate dynamic, the cemented carbide O-rings are often used, but it is limited by the speed of seals and pressure.

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March 16, 2018

Tungsten carbide rod with coolant hole

Tungsten carbide rod with coolant hole is made of hard alloy material, which is mainly used to process various hard alloy cooling holes. It works mainly by carbide rod internal spiral cooling hole hole, the coolant under high pressure to the cutting edge, so as to reduce the bit especially the bit at the top of the high temperature. At the same time, the chip can be removed from the side, so as to effectively remove the debris and greatly improve the surface finish of the workpiece.

It is more common to extend the life of drill bit by external cooling process. With the wide application of this process, however, many users find that in this process, because the debris in the manufacturing process of continuous discharge, to some extent hindered the coolant reached the top of the tool, to reach the ideal cooling effect. At the same time, with the increase of machining depth, the effect of external cooling process is worse and worse, and it may hinder the expulsion of chip. Therefore, the internal cooling process is present, and the application of  tungsten carbide rod with coolant hole is more and more extensive.

It has the advantages of good cooling effect, high cutting efficiency and long service life. In the process of carbide bit machining, the coolant is sent to the cutting edge under high pressure through the hole in the drill bit. Such as coolant quickly delivered in a timely manner, can quickly reduce the cobalt high temperature especially the bit at the top of the head, scraps discharge from the side, at the same time can be carried on effectively will produce chip removal, improve the surface finish. According to the research, the hard alloy bit produced by tungsten carbide rod with coolant hole can not only improve the efficiency of the deep hole processing, but also nearly double the service life of the tool.

At present, the production technology of the world's spiral carbide cooling hole rods is:

Mosaic method: the surface of tungsten carbide bar is machined into a spiral groove and then pressed into a hard alloy tube. However, the method is complicated, the expansion coefficient adjustment and control difficulty of alloy mixing are difficult, and the dimension control is difficult. Also can be in machining the spiral groove and casing pressure in the extrusion molding, however, for the combination, the thinner the wall, the better, as the rotation, tooth surface as wide as possible, so the mold manufacturing difficulty, and a set of can only make one size carbide rod cooling hole.

 

External screw extruding method: 1.the concave mold diameter belt is provided with thread, the material is extruded by rotation; Cooling hole core rod thread slot must cooperate with manufacture and concave die, the technology design of the die is relatively complex, mould die and core rod must be in sync, otherwise will cause out-of-tolerance size parameters, cooling distributed partial or crack. 2. the concave mold active rotation drives the material to rotate, simultaneously guides the nylon wire embedded in the material. The dragon silk (soft core) needs to be guided into the inside, and the shape and size of the screw hole is difficult to control, and if the process limits the screw hole specification and the length of the rod in the later stage of burning; The outer surface quality is difficult to control when the rod rotates forward. External screw extrusion is a kind of molding technology which is widely used at home and abroad.

 

Internal screw extrusion method: using the special structure of twin-screw extruder, the core rods extends to the screw extruding, use the screw driver core rod rotation or drive core rod elastic needle in the rotation, to shape the screw hole; The die design of this process is simple, but the squeeze parameter is strict, and the extrusion speed and the core speed of the material must be matched. Otherwise, the size parameter of tungsten carbide rod with coolant hole cannot meet the requirement. Because of the difficulty of this technology, only a few foreign companies such as konard friedrichs in Germany can produce, and there is no such technology in China. The technology to meet the speed matching, core rod manufacturing, flexible needle should correspond with the performance of extruder screw extrusion speed and speed matching, limiting the generality of the same equipment and can produce the specifications of the bar is kind.

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March 14, 2018

Tungsten alloy rod added mo

Tungsten Alloy Rod Added Mo Introduction

Tungsten alloy rod added Mo(WMoNiFe), similar to one type of famous brand rod, is a tungsten-based material made through special high temperature powder metallurgy techniques. This kind of WMoNiFe material has a low coefficient of thermal expansion, good thermal conductivity and excellent properties at elevated temperatures. Tungsten alloy rod added mo(WMoNiFe) can be used as welding rod due to its high melting point and low coefficient of thermal expansion. Elements added to tungsten alloy rod can enhance machinability, ductility and welding properties. Material properties are very important for tungsten alloy rod added mo to be much proper while associating other tool materials by heat treatment.

Tungsten Alloy Rod Added Mo Typical Application

tungsten alloy rod added mo

Tungsten alloy rod added mo is used in electrobrazing applications where heat balance is important. The tungsten alloy rod added mo(WMoNiFe) is similar to one type of famous brand rod with good anti-sticking qualities, high temperature abrasion and hardness properties. The oxidation resistance of both tungsten alloy rod is excellent up to 1100oF.

WMoNiFe is used as a base due to its high melting point and low coefficient of thermal expansion. These properties of tungsten alloy rod added mo result in less thermal cracking and soldering with the die cast or extruded material while welding. Elements of tungsten alloy rod added as WMoNiFe imporve its machinability, ductility and welding properties. The good thermal conductivity provides additional benefits to increase cooling to cool areas and potentially increases production rates. Material properties ensure tungsten alloy rod added mo easiler to be associated with heat treatment of other tool materials.

Tungsten Alloy Rod Added Mo Benefits:tungsten alloy rod added mo

Removes heat four times faster than traditional tool steel

Reduces sticking

Low erosion rate

Provides additional cooling

Readily machinable

Worn parts are easily re-machined into smaller diameter core pins or larger extrusion dies

Requires no pre or post machining heat treatment

Easily welded and repaired with Welding Rod

Contains no Beryllium

Tungsten Alloy Rod Added Mo Results

tungsten alloy rod added mo

Longer die and core life

Less production downtime

Better surface finishes on products

Fewer rejects

Lower cost per piece

Less porosity in heavy sections

Faster cycle times

Tungsten Alloy Rod Added Mo Availability:

Tungsten alloy rod added mo can be finished as per customized shape and size. Material is in rough oversize to be finished as round bars rages from 3/16 inch to 4inch dia. x 12inch long. Rectangular bars and finished tungsten alloy rod added mo can be readily manufactured to specifications.

The high density of tungsten carbide tool shrinks considerably during sintering. Depending upon design of tungsten alloy rod added mo and configuration, parts may be pressed and sintered close to final size and configuration to minimize machining costs. Special shapes of tungsten alloy can often be pressed in the die and sintered to near net shape. 

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March 08, 2018

How to reduce the thermal stress of tungsten carbide blank during welding process

Tungsten carbide blanks are very common materials for cutting tools: and for example, saw blades, lathe bits, drill bits, milling cutters and dental drilling tips are usually made of hard alloys. It can make these blades longer than most other materials, so they are popular among these carbide tools.

Tungsten carbide blank is made of a cemented carbide crown on the steel drill body. This drill adopts self-centering blade geometry, cutting force is small, on the eve of the eve of the workpiece material all can achieve excellent chip control, machining the hole of finish good, dimensional accuracy and positioning precision is very high, no longer for subsequent finishing. The drill adopts internal cooling system, which can be used in machining center, CNC lathe or other high rigidity, high speed machine tool.

Replaceable tungsten carbide blank

Replaceable carbide blank is a new generation drilling tool. It is composed of steel and can be a change in solid carbide drill body crown, compared with welding type carbide drill, its machining precision eight half of it, but because of the tooth crown can be changed,which can reduce processing costs, improve the drilling rate. This kind of drill bits can obtain the precise aperture size increment and has the self-centering function.

Production of tungsten carbide blank

The distance between tungsten carbide plate and the slot surface is 0.3~ 0.5mm for each side and 0.1~ 0.15mm for the non-compensation gasket. The compensation gasket is used to reduce the thermal stress during welding of alloy sheet. The compensation gasket can be made of low carbon steel wire mesh or copper sheet. Its width and length are equal to that of alloy plates. For tungsten carbide plates with no compensation gaskets, they shall be fixed in the required position by means of inlaying.

Application and properties of tungsten carbide blanks

1. It can be suitable for drilling with more complex materials, and can choose higher cutting speed.

2. High performance alloy blade for selected alloy bits, effectively reduce the collapse knife and maintain good wear resistance.

3. Multi-layer geometric cutting edge, improve drainage performance, and maintain small cutting resistance.

4. In addition to the usual rectangular handle, it is equipped with a variety of handles, suitable for various drilling machines and drilling machines.

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March 02, 2018

Type of ceramic inserts and applicable to processing material

As non-metal tool materials, ceramics are widely used in metal cutting. As heat resistant alloy materials, such as Inconel alloy parts in aerospace industry and other industry increasingly extensive application, puts forward higher requirements for cutting tool, so the ceramic insert was born, the more difficult to machining materials exhibit excellent cutting performance.

Ceramic inserts are manufactured in very similar ways to carbide inserts. Because ceramics do not bond as easily as other materials, they must be subjected to much higher temperature and pressure during sintering.

Ceramic inserts although its hardness, high wear resistance compared with carbide insert a lot, but big brittleness is the biggest flaw, thus failed to get a good development, only for less than the amount of finish machining process, and to avoid discontinuous cutting process. Therefore, when choosing the insert number, it is better to consult the cutter engineer of the enterprise, and choose the product to recommend the product to be more reliable.

Ceramic inserts than compared carbide insert, can bear the high temperature of 2000 degrees, and hard alloy at 800 degrees is soft; Therefore, ceramic inserts have high temperature chemical stability and can be machined at high speed, but the disadvantage is that alumina ceramic inserts are very low in strength and toughness and are easily broken. Because of ceramic inserts, high temperature resistant, high temperature and high speed cutting is more advantageous, because the ceramic low thermal conductivity, high temperature, just on the tip of the heat generated by the high speed cutting as chip away, so most researchers think: alumina ceramic inserts can, and the best above 10 times that of the cemented carbide cutting tools under linear velocity, can truly reflect the advantages of ceramic insert.

In order to reduce the sensitivity of the ceramic insert to the crushing, in an attempt to improve its toughness and improve the impact resistance, it added zirconia or added a mixture of titanium carbide and titanium nitride. Although added to these additives, ceramic inserts are much less tough than carbide inserts.

Another improve alumina ceramic insert toughness method is to add crystal texture in material or silicon carbide whisker, through these special on average only about 1 nm in diameter, 20 microns long strong whisker, significantly increased the toughness, strength and thermal shock resistance of ceramics. It is restricted by its impact toughness and has been used in the field of fine car processing.

Like alumina ceramic inserts, silicon nitride ceramic inserts have higher thermal hardness than hard alloy inserts. It is also good for high temperature and mechanical shock. Compared with alumina ceramic insert, its disadvantage is that it has insufficient chemical stability in processing steel. However, a silicon nitride ceramic insert can be used to process gray cast iron at 1450 feet per minute or higher.

Ceramic inserts are applicable to processing materials: ceramic inserts can not be used for aluminum processing, but they are especially suitable for gray cast iron, ductile iron, hardened steel and certain unhardened steel and heat-resistant alloys. However, for these materials, the application of ceramic inserts is successful, and the appearance and micro-quality assurance of insert edge is required, and the optimal cutting parameters are required.

Related link:

http://www.wococarbide.com/

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March 01, 2018

Tungsten carbide center drill

Tungsten carbide center drill is used for machining center hole on the end face of shaft and other parts. It is used for the prefabrication of hole processing to guide the hole machining and reduce the error. The center drill is light and defecate.

More and more processing workshops are replacing gun drilling with solid carbide bits. Some solid carbide drill manufacturers think, this kind of bit performance advantage for those who are on his lathe with gun drill deep hole processing, or the deep hole processing tasks subcontract processing workshops of gun drill manufacturers have more and more attractive. However, compared with the tungsten carbide center drill, which is usually made of hard alloy or hardened high speed steel drill point, hardened steel shank and straight slot, there are some limitations in the overall hard alloy deep hole drill. For example, their borehole depth limit (dimensioning) is 40 times the aperture, while a gun drill can easily drill a deep hole with a depth of 50 times the aperture.

There are two types of tungsten carbide center drill: type A: center drill with no cone, type B: center drill with A cone, and A center hole with A diameter of 1~10mm, usually with A center drill without A cone (type A); In order to avoid the damage of the 60-degree centering cone, the center drill with the cone is generally adopted.

Tungsten carbide center hole is the positioning base of the shaft type workpiece mounted on the top. Center hole of 60 degrees taper hole to match the top 60 degrees on the cone; A small round hole in the inner side to ensure that the conical hole is matched with the top cone, and a small amount of lubricating oil (butter) can be stored. The central holes are commonly found in type A and type B. Type A center hole only 60 degrees taper hole. Type B center hole outside the 120 degrees cone cone is also called the protection, to protect the 60 degrees taper hole edge is not being damaged. Type A and type B center holes are machined on lathe or special machine tool respectively with corresponding center. Before machining center hole, the end face of the shaft should be leveled to prevent the center from breaking. The peak Angle of the standard center drill is generally 118 degrees.

Instructions for use of alloy center drill

1. The user must choose the model of the center drill according to the holes of the processed parts and the size of the straight hole.

2. The hardness of the workpiece is best between 170-200hb.

3. Before using the tool, it must be cleaned and anti-rust grease, so as to prevent the cutting chip from sticking to the blade and affecting the performance.

4. The surface of the machined workpiece should be flat, and there should be no sand or hard points, so as to avoid the cutting of the tool.

5. The center drill before drilling should reach the desired position accuracy.

6. Cutting amount

7. Cutting fluid: select different cutting fluid according to the processing object, and the cooling should be sufficient.

8. Matters needing attention: the abnormal situation should be stopped immediately during processing, and the cause can be processed after checking the cause; Pay attention to the abrasion of the cutting edge; After using the tool, clean the oil and keep it properly.

Related link:

http://www.wococarbide.com/Library/index.html

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February 09, 2018

How to check the quality of cemented carbide welding blade?

In order to ensure the quality of welding, a careful inspection should be carried out to find out the cause of defects. Before the inspection, the tool should be sandblasted or gently ground to adhere to the solder and impurities on the blade surface, and clean with kerosene.

Check items and requirements.

Check weld strength

After the green silicon carbide grinding wheel is used to grind the back of the cutter, check the thickness of the solder layer, and the thickness is below 0.15mm. No holes and solder defects can be found at the base of the blade, and the welding seam should not be more than 10% of the total length of the weld. If there is a hole, the blade will fall off when cutting.

Check the position of the blade in the knife slot.

If the blade is misaligned and sagging exceeds the technical conditions, rewelding shall be performed.

Check welding strength

Use a wooden hammer or a copper hammer to hit the blade with medium strength or with a hammer with a strong stroke. The blade is not removed from the knife slot to be qualified. Check the welding strength of cemented carbide welding blade, not necessarily each inspection, also use spot check method.

Check the blade flatness

If there are obvious pits on the blade, the blade should be overheated and deformed, and the welding blade should be fired.

Check the crack

When the blade is cleaned by kerosene, if the blade is cracked, the kerosene seeps into the crack and the black line is visible to the naked eye. It can also be observed with a magnifying glass of 10-40 times.

Check the blade crack, and also use color flaw detection: 65% of kerosene, 30% of transformer oil and 5% turpentine solution, slightly more Sudan red. Put tool blade part in 10 to 15 minutes in the solution, then use clean water, coated with a layer of clay (kaolin), the surface was observed after baking thousand, if there is crack on the cemented carbide welding blade, then the color of the solution was revealed on clay, with the naked eye can see. The cracked blade cannot be used and needs to be resoldered.

In addition to the several commonly used car 7J welding methods mentioned above, there are methods such as oil protection, electric furnace, forge furnace and brazing furnace with reducing gas.

Related link: http://www.wococarbide.com/

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February 01, 2018

Product advantage of tungsten carbide tube drawing dies

Wire drawing die of the scope of application is very extensive, mainly for the drawing bar, wire rod, wire, pipe and other linear difficult processing object, steel, copper, tungsten, molybdenum and other metal and alloy material of drawing processing. As the material that can use tungsten carbide wire drawing die, must have enough strength and wear resistance. The molds of tungsten carbide wire drawing dies are basically WC-Co cemented carbide. WC-Co carbide is composed of very hard elements (tungsten carbide) sandwiched between very soft matrix (cobalt) layers. The most important element in cemented carbide is tungsten carbide. There is only a small amount of the matrix metal film, filled with the space of carbide grains. Since the thermal expansion properties of carbide and cobalt are different, when the matrix metal film is combined with hard particles, they are subjected to severe plastic constraints. This will increase the strength of the base metal and lead to embrittlement of the matrix metal. This actually determines the performance of the cemented carbide. At high temperature, tungsten carbide can still guarantee its hardness. When the temperature reaches 600 degrees, the hardness of cemented carbide can be the same as the hardness of high speed steel at room temperature. Hard metal has higher compressive strength than any kind of artificial material, and it also has high elasticity and rigidity modulus. Other properties of cemented carbide include thermal conductivity better than most steel and low friction coefficient. These characteristics are very important for the fabrication and processing of metal pipes.

The quality of tungsten carbide in tungsten carbide wire drawing dies plays an important role in the service life of wire drawing die. The design and manufacture of tungsten carbide wire drawing dies, if the service life is long, the maintenance is small, and the speed of drawing is improved, the following three problems must be solved:

1. The inlet cone and working cone are lengthened to establish a good lubrication pressure, while the lubricating cone Angle should be shortened appropriately.

2. The diameter belt must be straight, and its height should be reasonable.

3, work cone Angle and sizing belt junction should not have transition Angle, at least to minimize, typically less than 0.5 degree.

The tungsten carbide wire drawing mould is of high hardness, and the quality of the pipe is high and the surface roughness is low. At the same time, the wear resistance of tungsten carbide wire drawing die is good, the service life of die is long. The machining precision, durability and wear resistance of the tungsten carbide wire drawing die are better than that of ordinary pipe drawing dies.

Work drawing die is towards high strength, high hardness, high wear resistance, conforms to the requirements of the new technology and material emerge in endlessly, work drawing die greatly improve wear resistance, wear and damage time delay, obviously increasing life of drawing die, machining accuracy has improved. The application scope of drawing processing is gradually expanding, from coarse to fine specifications of pipes.

The physical and chemical properties of wire drawing die must meet the requirements of high hardness, impact resistance, wear resistance and low friction coefficient. In mass production, long life die materials should be selected, such as tungsten carbide, high strength and toughness, high wear-resistant mould steel (such as YG15, YG20). tungsten carbide has good polishing, low energy consumption, wear-resisting, high temperature resistance, good corrosion resistance, and its recyclable and other excellent properties, making it an important material for drawing mould.

Related link: http://www.wococarbide.com/Transaction/en_information.html

 

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January 24, 2018

Application in various fields of tungsten alloy plates

Tungsten alloy plates are refractory metal, which have two-phase composites consisting of W-Ni- Fe or W-Ni- Cu or even W-Ni-Cu-Fe, some tungsten alloys also contain Co、Mo、Cr, etc. Tungsten alloy can be machined into various shapes, such as rods, cubes, blocks, bricks, rings, plates, etc.

Applications for Tungsten Alloy Plate:

1) Sports goods: Professional tungsten alloy plate for darts benchmarking. The to fall series: the bullet type, type water, pipe type, half water droplets type, type cylinder have.

2) Counterweight products: High-density tungsten alloy plates with counterweight series: with the balance of mechanical hammer; Fly hammer; Oil drilling counterweight rod; Darts rod; Golf counterweight piece; The car counterweight piece; mobile phones, game oscillator; aerospace the gyroscope; The pendulum clocks; counterweight balance ball; Shockproof tool rod.

tungsten alloy plate

3) Electrical material: electrical discharge machining of electrode and resistance welding electrode; high proportion electrical contacts, air circuit breaker in the contacts.

4) High temperature alloy heat sink: due to high temperature resistant and good thermal performance, electronics industry isswitching to tungsten alloy plates as heat sink materials.

Tungsten Alloy Plate Introduction

Tungsten Alloy Plates properties

1, Width*Length: (2.0-250.0mm)*(2.0-250.0mm)

2, Thickness: 2mm-15mm

3, Density: 15.8-18.75 g/cm3

4, Composition: W content: 85-99%, W-Ni-Fe, W-Ni-Cu

5, Surface: Sintering surface, Forged surface, Ground surface

Tungsten alloy plates are produced by good processing property billets and special cold and hot rolling technology; they can be used to make tungsten target, tungsten heat elements, tungsten radiation shields and tungsten boats for electronics, lightening, electro-vacuum industries.

Tungsten alloy plates play very important role in manufacturing of collimator for nuclear medicine, nuclear research, geologging and homeland security. These materials provide reliable protection against X-rays and gamma radiation.

The thickness of the tungsten alloy plate is as follows:

Foil - a thickness of less than 0.005 in. (0.13 mm).

Plate - thickness greater than or equal to 0.188 inches (4.75 mm).

Sheet - thickness less than or equal to 0.187 inches (4.75 mm) to greater than or equal to 0.005 inches (0.13 mm)
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January 19, 2018

Analysis of the characteristics and principles of thermal spraying

Thermal spraying is to point to a series of process, fine and dispersed metal or nonmetal coating material, in a molten or semi-molten state, deposit to a after the preparation of the substrate surface, forming a spray deposit. It USES a heat source (such as arc, plasma spraying and combustion flame, etc.) will be powder or filiform metal or nonmetal material heated to melt or half molten state, and then with the help of a flame itself or compressed air injection at a certain speed to the pretreatment of substrate surface, deposit formed by surface coating of a kind of technology with a variety of functions.
Characteristics of thermal spraying technology:
1. The matrix material is not restricted, can be metal and non-metal, can be sprayed on various matrix materials;
2. The coating materials can be sprayed widely, and thermal spraying technology can be used to spray almost all solid engineering materials, such as hard alloy, ceramic, metal, graphite, etc.
3. In the process of thermal spraying, the substrate material temperature rise is small, without stress and deformation;
4. Thermal spraying operation is flexible and easy to operate.
5. Thermal spray coating thickness can range from 0.01 to a few millimeters;
6. The thermal spraying coating has various properties, which can form a coating with various special functions such as abrasion resistance, corrosion resistance, heat insulation, oxidation resistance, insulation, conduction and radiation protection.
7. Thermal spraying adaptability and economic benefits are good.
Principle of thermal spraying, thermal spraying refers to a series of process, in the process, subtle and dispersed metal or nonmetal coating material, in a molten or semi-molten state, deposit to a after the preparation of the substrate surface, forming a spray deposit. The coating material can be powder, ribbon, filaments or stick. Thermal spray gun is provided by fuel gas, or electric arc plasma arc necessary quantity of heat, heat the thermal spraying material in plastic state or molten, again through the acceleration of compressed air, make a constrained particle beam impact to the substrate surface. The particles that impact on the surface are deformed by stamping, forming laminated sheets that adhere to the prepared substrate surface, cooling and piling up, eventually forming a layered coating. The coating can achieve high temperature corrosion resistance, wear resistance, heat insulation and electromagnetic wave.
Thermal spraying material: spraying powder occupies a very important position in the whole hot spray material. Thermal spraying alloy powder includes nickel base, iron base and cobalt alloy powder, and is applied to repair and protection of mechanical parts according to different coating hardness.
Thermal Spray Application
That under the action of high-speed airflow of atomized into fine droplet particles or high temperature, at high speed jet to the treated surface, form a solid layer, so that the workpiece surface with different hardness, wear resistance, corrosion resistance, heat resistance, oxidation resistance, heat insulation, insulation, conductive, seal, disinfection, microwave radiation, and other various special physical and chemical properties. It can repair the old and waste in the maintenance of the equipment, and make the scrapped parts come back to life; It can also be strengthened and pre-protected in new product manufacturing to make it "live longer."

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January 18, 2018

Tungsten carbide round rods

Carbide rods, also known as tungsten carbide bar, It is a kind of tungsten carbide (WC) as the main raw material, combined with other precious metals and paste phase by suppressed by adopting the method of powder metallurgy sintering of high hardness, high strength alloy material, widely used in national production and processing fields, such as tungsten steel drill bits.
Carbide rod, as a new technology and new material. Its main features are stable mechanical properties, easy to weld, high wear resistance and high impact resistance. It is mainly used in the manufacture of metal cutting tools, wood, hardness and abrasion resistant products.
Tungsten carbide round rods blank process.
Pulverizing to formula according to the requirements of USES, the wet and dry mix - crushing - and sieving to join after forming agent, then to sieve made the mixture, drying granulating to suppress - molding - low pressure sintering, molding (blank) and external circular grinding fine grinding (blank without this procedure) to detect size, packing and warehousing.
Properties of carbide round rod material properties.
1. High quality ultrafine tungsten carbide and imported cobalt powder are used as raw materials.
2. Adopt the world advanced low-pressure sintering technology for standardized production.
3. High strength and high hardness.
4, has the extremely good red hardness, good abrasion resistance, high elastic modulus, high bending strength, good chemical stability, acid, alkali, high temperature oxidation), corrosion resistance, good impact toughness, low expansion coefficient of thermal conductivity, conductive characteristics of similar to iron and its alloy.
5. Advanced and advanced equipment: Germany imported 10MPa low pressure sintering furnace sintering.
6. Unique new process: vacuum high pressure sintering. In the final stage, the product adopts pressure sintering, which greatly reduces porosity, improves compactness and greatly improves mechanical properties of products.
7. Product features: there are many materials, which can be used for different purposes; Complete specifications, the blank size precision (reduce the processing quantity, improve the production efficiency).
8. Quick service: quick delivery, quick delivery and prompt delivery.

Tungsten carbide round rod application
Carbide rods application scope is widespread, applicable to the production of tungsten steel drill bits, the tiny bit of PCB industry, electrode rods of photoelectric communication industry, machinery processing industry carbide drill, drill shank, top, push rod, wear-resisting precision parts, CNC milling cutter and the whole belt hole machining tool choice high quality material, etc.

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January 16, 2018

Tungsten carbide sandblasting nozzle

Generally, the materials including steel, cast iron, Tungsten carbide sandblasting nozzle are produced. At present, most factories use steel spray nozzles, and a few are made of ceramic sand jet nozzles, but these two shotcrete nozzles have short service life and are not ideal. Under the action of high speed sand, the inner hole gradually wears out or becomes a flared mouth, which can not be used continuously. Hard alloy sandblast nozzle, also known as tungsten steel shotcrete. Hard alloy sandblasting nozzles with high hardness, high strength, corrosion resistance, high temperature resistant and low expansion coefficient, and a series of excellent features, at the same time, the wear-resisting performance is good, service life is long, compared with the steel sand blasting nozzle, 20 ~ 25 times can be improved.
Sand blasting is the motive force of compressed air or abrasive pump, which can be sprayed on the surface of parts by spraying gun to achieve the purpose of cleaning and finishing. Currently, sandblasting technology is widely used in machinery, petroleum, chemical industry, automobile, ship, aerospace, metallurgy, glass, coal and other industries. Sand blasting nozzle is the main wear resistant components in the sandblasting equipment, with a variety of dry or wet sand blasting machine, surface strengthening, surface cleaning, surface coating, surface modification and jet cutting one of the key components of machinery and equipment. Hard alloy sandblasting nozzles with high strength and toughness, good thermal conductivity, the hardness of cemented carbide is higher than the metal material, hard alloy sandblasting nozzle erosion rate is smaller than metal material, the erosion resistance higher than metal sand blasting nozzle, is the ideal choice of the blasting nozzle material.
The failure mode of the hard alloy sandblast nozzle.
Erosion wear is main failure form of tungsten carbide sandblasting nozzle, it refers to a solid surface with liquid containing solid particles, the contact of relative movement, the loss of the surface material, with solid particles of fluid can be high speed air flow, also can be fluid flow, the former produce spray sand erosion, the latter is called type slurry erosion. Hard alloy sandblasting nozzles wear belongs to the low Angle of erosion (15 or less) of erosion wear. The effect of erosion and wear behavior of many factors such as environment parameters (such as the Angle of attack, the erosion speed, the erosion of time and temperature, etc.), abrasive performance (such as hardness, particle size and shape, etc.), the performance of target (such as hardness, fracture toughness and microstructure structure, etc.

Structure classification of tungsten carbide sandblast nozzle.
1. Straight hole tungsten carbide sandblasting nozzle. Its internal structure is only the contraction section and the straight section, the structure is simple, easy to make. This type of nozzle cannot overcome the eddy current phenomenon in the inlet side, the pressure loss is large, and the abrasive outlet speed is less than 100m/s under the pressure condition of 0.7mpa. Generally used in small sandblasting equipment.
2. Venturi carbide sandblast nozzle. The structure of venturi nozzle is divided into three parts: contraction section, flat section and diffusion section. The working efficiency is 15% to 40% higher than the straight hole nozzle, and the abrasive consumption is reduced by 20%.
3. Double vented carbide sandblast nozzle. It is composed of two nozzles before and after, and the area of sandblasted area is 35% larger than that of the standard wenner nozzle, and the outlet speed of sandblasting medium is reduced. This nozzle is usually used for surface treatment of large areas of moderate strength.
4. Angle hard alloy sandblasting nozzle. Make the movement direction of the abrasive flow changes, can be used to clean the Bridges, towers and other steel structure truss, the pipe inner surface, makes it hard for the cleaning of parts can be directly hit by abrasive, achieve the purpose of cleaning.
Application of tungsten carbide sandblast nozzle.
Tungsten carbide shotcrete nozzles are mainly used for oil drilling, aircraft, ship, automobile, bridge, construction engineering, railway and other fields of coating engineering and surface treatment. Sand blasting can be divided into dry sandblasting and wet sand blasting. Its sand grains are quartz sand, carborundum and river sand, among which quartz sand application is the most common. Hard alloy sandblasting nozzles are cleaning, decontamination products, mainly used in ships, Bridges, water conservancy, machinery, chemical industry, container, pipe and other large equipment and parts surface sand blasting, rust removal, decontamination treatment. The hard alloy sandblast nozzle has the characteristics of high strength, high hardness and high wear resistance. The hardness (HRA) of hard alloy sandblasting nozzle (HRA) is 89-93, with a density of 14.4-15g/cm3, and the bending strength is not less than 1500Mpa. Hard alloy is the most widely used nozzle material. Its wearability is obviously better than alumina ceramics, and it can be used for hundreds of hours and is widely used in various structure sandblasting nozzles.

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January 12, 2018

Tungsten Carbide Geological Mining Tools

Tungsten carbide geological mining tools are made of WC-Co alloy. According different geological mining tools, different rock hardness, or in different parts of the geological mining tools, requiring an average WC grain and containing cobalt are also different . Tungsten carbide geological mining tools material in addition to the requirements of high purity, and require WC, C particles are generally coarse, for WC total carbon and free carbon, there are strict requirements range. tungsten carbide geological mining tools has formed a relatively stable and mature production technology, widely used as a molding agent paraffin wax, vacuum dewaxing (and hydrogen dewaxing) and vacuum sintering.

Tungsten carbide geological mining tools take on the important task of engineering geology, oil exploration, mining and civil construction. Tungsten carbide geological mining tools as traditional geological mining tools, geological mining tools by the complex role of impact and abrasion, harsh working conditions, there are at least wear mine rock form more than four, namely: thermal fatigue wear, shock wear the shock of fatigue wear and abrasive wear. tungsten carbide geological mining tools compared with the general geological mining tools, have higher hardness, strength and toughness. tungsten carbide able to adapt to changing conditions better,and under the guarantee toughness does not fall have further improve the wear resistance of the alloy.


tungsten carbide bits as the common part of tungsten carbide geological mining tools, one tungsten carbide bit can replace 4 to 10 steel bits, its penetration rate twice as high, while the tungsten carbide drill bit replacement less often, improve production efficiency, perforation rate. Tooth tungsten carbide drill for, it is required to adapt to a variety of rock properties teeth, perforation rate, abrasion resistance, shock resistance, so as to achieve long service life. Tungsten carbide drill bit has become a major tool for high-efficiency perforated. Currently tungsten carbide geological mining tools for large and medium-sized open-air metal mines, especially for large open pit type non-ferrous metal perforation, tungsten carbide geological mining tools has broad prospects.


Selection of tungsten carbide geological mining tools 

Tungsten carbide geological mining tools have high hardness and excellent wear resistance and heat resistance of some, but it is a very sensitive to surface cracks or defects, poor performance of the anti-shock cold quasi-brittle materials; its compressive strength is high, but the tensile strength is very low. Meanwhile, the stress concentration is also very sensitive. Selection of geological mining tools with tungsten carbide grade, should be the main consideration alloy shock resistance and abrasion resistance. Various items of property flexural strength, hardness, density, coercive force, fracture toughness, porosity, dirt degrees, the average grain size of tungsten tungsten carbide , etc., can reflect different aspects of shock resistance and wear resistance of the alloy. 

Selection tungsten carbide geological mining tools, the shock of extremely hard rock and heavy drills big power should focus on the toughness of the tungsten carbide alloy, the choice of a higher amount of cobalt-containing tungsten carbide alloy grades; for hard and brittle, and the corrosive rock, should focused on the wear resistance of the tungsten carbide alloy, the choice of a slightly lower amount of cobalt tungsten carbide alloy grades; on the hard and medium hard rock below, should use low cobalt-containing, high hardness tungsten carbide alloy grades; for use under heavy mining coal mining tungsten carbide cutter used mainly to reduce the cobalt content increased, grain size so that the shock toughness of the alloy greatly improved flexural strength; for column teeth, cross, three-blade drill head is the choice of the cobalt-containing lower amounts of tungsten carbide .


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January 11, 2018

Application environment and application scope of tungsten carbide bushing

tungsten carbide bushing with tungsten carbide powder as main raw material, at the same time with cobalt powder as binder and then mixing injection mould pressing sintered and eventually into corresponding, therefore tungsten carbide bushing with the tungsten carbide material of high hardness and high bending strength, wear resistance and corrosion resistance and its also spoke highly of by the user, widely used in various industrial fields.

In order to cater for the use of customers in different fields, tungsten carbide bushing can be made of different carbides. According to different binder, the tungsten carbide plate number is mainly divided into YG series and YN series. Generally speaking, the YG series cemented carbide bushing has higher flexural strength, while YN series cemented carbide bushing has better corrosion resistance than the former.
According to the different application ranges, we manufacture of cemented carbide liner usually has a high precision size, is also due to their high precision grinding degree, size precision, high wear resistance and corrosion resistance, tungsten carbide bushing is widely by many domestic and foreign customers praise.
In addition, due to the different use environment of cemented carbide bushing, there are several types: tungsten carbide bushing, tungsten carbide guide sleeve and tungsten carbide drill sleeve, etc. According to the customer's design drawing, we can customize the tungsten carbide liner to meet the user's different usage environment.
tungsten carbide bushing in terms of stretching, mainly some stretching, copper, stainless steel parts by using frequency is too high,it’s easy to heat, wear bushing, thus make blunt needle movement, product size error, and the bad appearance of the products.
With the improvement of oil production, the superficial surface oil reduce, in order to ensure that oil consumption of people gradually to the deep well, high Angle Wells, but gradually increased the difficulty of the drilling for oil and therefore the exploitation of oil components requirements with good wear resistance, corrosion resistance and impact resistance, etc.
tungsten carbide bushing as wear parts in the mechanical oil Wells, with high hardness, good wear resistance, smooth finish higher performance, already more and more widely applied in modern society, satisfied the need of daily and special performance. Some enterprises adopt spray welding technology to improve the durability and service life of cemented carbide bushing.
After spray welding of cemented carbide liner to HRC60 hardness, wear resistance is better, can meet the application requirements of petroleum machinery industry, but the tungsten carbide bushing need to spray after welding turning processing, in order to guarantee the size of the drawings and accuracy requirements.

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January 04, 2018

Tungsten alloy bars are widely used and popular

Tungsten alloys can be made in various shapes, but the most commonly used shape is a round bar, which can be treated with thermal machinery to improve its mechanical properties. The tungsten alloy rotary forging stick is made of tungsten alloy rodsthrough forging, thus greatly increasing its tensile strength, and its strength is at least 1050 MB to 1200 MB. Tungsten alloy spinning rod is formed by extrusion and sintered tungsten carbide powder. Sizes range from 3mm to 50mm.

 

The tungsten alloy bars are mainly made from square and round tungsten alloys. The hollow tungsten alloy bar is one of the important types of tungsten alloy bars. Tungsten alloy rod machining process, tungsten alloy rod is hollowed out by a single point cutting tool, in order to realize a bigger hole, such as boring and artillery barrel diameter precision of hole or holes, it can also be used to cut a tapered hole.

 

Tungsten alloy bars can be divided into several types. At both ends of the tungsten carbide, this is just working. If the existing hole is a pass hole, it can be supported at one end and can be supported. The hollowed-out tungsten alloy bars are made through existing holes, then in the "back" work, while hollowing out the process. The tungsten bar is formed by pressing the burning and then rolling. Smaller dimensions are made from subsequent drawings. The rod has various direct lengths, the diameter of the surface forgings is generally 3 mm or more, and the finished product is generally below 3 mm. A non-central product can also be provided. It can also provide specific length and special components according to the requirements.

 

Tungsten alloy bars are widely used and popular

 

These kinds of rods can be further processed, usually used to make the balance weight, radiation shielding, military defense equipment, welding rod, extrusion die, also used in some sport, such as darts, steel billet, golf clubs, etc. in addition, we can produce and provide tungsten rods as Anviloy 1150 counterparts, nature is very similar between them. Due to its high density, high melting point, small capacity, good hardness, excellent wear resistance, high tensile strength, tungsten alloy bars are more and more popular.

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