



Tungsten Alloy Cutting Tools
Tungsten alloy cutting tools for high-performance machining in aerospace, automotive and precision engineering — superior hardness, wear resistance and dimensional stability via PM/MIM processing.
- Materials
- Tungsten alloy (self-developed tungsten powders)
- Features
- Exceptional hardness and edge retention, high thermal stability under continuous cutting, complex tool geometries with tight tolerances, TiN/TiAlN/DLC coating compatible, near-net-shape forming
- Application
- Aerospace component machining, automotive engine and structural part cutting, high-precision mold and die manufacturing, hard alloy and composite metalworking, micro-precision tooling for electronics and medical devices.
Specifications
| Parameter | Value |
|---|---|
| Coating Options | TiN, TiAlN, DLC |
| Process | PM/MIM near-net-shape / PM/MIM 近净成形 |
Frequently Asked Questions
What materials and process are used for Tungsten Alloy Cutting Tools?
Tungsten Alloy Cutting Tools is made from Tungsten alloy (self-developed tungsten powders) and is formed by MIM/PM (metal injection molding / powder metallurgy) near-net-shape and sintered to a relative density of ≥ 98%, which keeps mechanical properties close to wrought material.
What are the key specifications of Tungsten Alloy Cutting Tools?
Typical specifications: Coating Options: TiN, TiAlN, DLC; Process: PM/MIM near-net-shape / PM/MIM 近净成形. The full parameter list is in the specifications table on this page; custom requirements can be discussed against your drawing.
What is the MOQ and lead time for Tungsten Alloy Cutting Tools?
MOQ is 1000 pcs. Mold lead time is about 20 days (mold fee typically RMB 20–40k depending on part geometry), and production lead time is about 7 days once the mold is validated; secondary processing adds 3–5 days.
Related Applications
Related Products

Iron Base Alloy MIM Parts
Materials: Fe2Ni, Fe4Ni, Fe8Ni, FeC, FeCuC
High strength, high hardness
View Details
Automotive Powder Metallurgy Parts
Materials: Proprietary PM/MIM iron-based alloy powders
High strength-to-weight ratio, near-net-shape forming, tight tolerances, excellent wear and friction resistance, complex geometries with internal cavities, heat treatment and coatings supported
View Details
Copper Nickel Tungsten Components
Materials: Cu-Ni-W alloy (self-developed powders)
High strength with excellent thermal/electrical conductivity, superior corrosion and oxidation resistance, thin-wall complex geometries, homogeneous microstructure, cost-effective high-volume production
View Details
Copper Tungsten EDM Electrodes
Materials: Tungsten copper (W-Cu), W70Cu30 to W90Cu10
High arc resistance, rapid thermal dissipation, uniform erosion rate, machinable for fine-tolerance complex shapes, minimal thermal distortion, PM/MIM near-net-shape production
View Details