
Tungsten Steel Shoe Spikes 9.5mm Spot Tungsten Carbide Nail Core
Threaded anti-skid nails range from standard threaded anti-skid nails to large threaded anti-skid nails to racing threaded anti-skid nails.

Threaded anti-skid nails range from standard threaded anti-skid nails to large threaded anti-skid nails to racing threaded anti-skid nails.
Anti-skid shoes are commonly used in the 6.5-1 series, JX100, JX110, JX300A, JX300B, etc.
Tires are commonly used in the 8-1 series, 9-1 series, 12-1 series, 8-11-2 series, 9-11-2 series, etc.
Racing cars, ice and snow drift races are commonly used in anti-skid nails 6-20, 6-25, 6-27, etc., all-steel and tungsten steel nail cores are available!
The company has been involved in high-density alloy products (mainly tungsten alloys) for many years. Through years of technical and process accumulation, it has unique core technologies in alloy formula design and powder preparation. In the past two years, in order to accelerate the development of high-density alloy projects, the company has conducted in-depth research on the MIM process (metal powder injection molding technology). The MIM process can produce high-density, high-precision, and high-complexity precision structural parts and high-density alloy products. In terms of MIM new product development, the company has successively developed a series of golf ball products (such as ball heads, tungsten screws, counterweights, etc.), linear motor accessories, bathroom hardware accessories, industrial parts, non-magnetic steel and other products, and built a pilot production line for MIM new products. The relevant products have been trial-sold and the market feedback is good. A group of high-quality customers represented by Goertek have been developed, laying a good foundation for the development of the project in 2024. The MIM metal injection molded parts produced by the company have been used in the field of consumer electronics.
MIM technology makes up for the technical deficiencies or inability to produce parts of traditional processing methods. It does not only compete with traditional processing methods. MIM technology can play its advantages in the field of parts that cannot be produced by traditional processing methods.
From the analysis of the process essence of MIM, it is currently the most suitable process for mass production of high-melting-point materials, high-strength, and complex-shaped parts.
Its advantages can be summarized as follows:
(1) MIM can form various metal parts with complex three-dimensional shapes (as long as the material can be made into fine powder). The density and performance of each part of the part are consistent, that is, isotropic. It provides greater freedom for part design.
(2) MIM can produce parts that are close to the final shape to the maximum extent, with high dimensional accuracy.
(3) Even in solid-phase sintering, the relative density of MIM products can reach more than 95%, and its performance is comparable to that of forged materials. In particular, the dynamic performance is excellent.
(4) The price of automatic molding machines for powder metallurgy (PM) is several times higher than that of injection molding machines. MIM can conveniently use a multi-cavity mold with high molding efficiency, long mold service life, and convenient and quick mold replacement and adjustment.
(5) The injection material can be reused repeatedly, and the material utilization rate is over 98%.
(6) Fast product turnaround. Great production flexibility, and a short time from design to production of new products.
(7) MIM is particularly suitable for mass production, and product performance consistency is good. If the parts produced are properly selected and the quantity is large, higher economic benefits can be achieved.
(8) MIM has a wide range of materials and a broad application field. A wide range of materials can be used for injection molding, such as carbon steel, alloy steel, tool steel, refractory alloy, cemented carbide, high-density alloy, etc.
MIM is the abbreviation of Metal Injection Molding, which is a near-net-shape molding technology that injects metal powder into a mold after mixing and kneading with a binder. Zhongwei Precision MIM Project was established in 2003, mainly engaged in the research and development and production of tungsten alloy MIM and titanium alloy MIM. As the project continues to grow and develop, production lines for metals such as stainless steel have been added. At present, the project has MIM and processing platforms and production lines for tungsten alloy, stainless steel, iron-based alloy, copper alloy, soft magnetic material, non-magnetic steel and other materials, and has sintering equipment such as atmosphere-protected push plate furnace and vacuum furnace, with a monthly production capacity of more than 50 million pieces.

Tubeless Tire Repair Nail Metal Injection Molding Parts
Racing Car JX9-21.5-2 Anti-skid Spikes Metal Injecti...
Metal Injection Molded Tungsten Steel Tire Anti-skid...
Drift Racing Studs Exposed 4mm Metal Injection Molde...
Bicycle Tire Stud Metal Injection Molding
Automobile Tire Threaded Anti-skid Spikes Metal Inje...
Send Inquiry





