Part Size: 1-150 mm
Weight: 0.1-300 g
Tolerance: ±0.3%
Surface Finish: Ra 0.8–1.6 um
Materials: SS316L, 17-4PH, SS420, Ti Alloy etc
Density: ≥96–99% Wrought
Secondary Operations: CNC, Polishing, Laser Marking
Industry Expertise
Factory Price
OEM/ODM Services
MIM Hand Tool Components are precision metal parts used in professional and consumer hand tools. MIM technology provides excellent strength, wear resistance, and dimensional consistency for complex tool designs.
Typical products include ratchet components, locking mechanisms, connectors, jaws, and precision tool structures.
Metal Injection Molding combines the design flexibility of plastic injection molding with the mechanical properties of metal materials, making it an ideal manufacturing solution for MIM heat simk components applications. MIM technology enables the production of intricate geometries, thin-wall structures, internal features, and near-net-shape components while maintaining excellent dimensional consistency and superior surface finish.
Compared with traditional manufacturing methods, MIM significantly reduces secondary machining operations, lowers production costs, and improves assembly consistency, making it highly suitable for medium- and high-volume OEM production.
Overview:
Metal Injection Molding is suitable for hand tool components requiring:
High mechanical strength
Wear resistance
Complex geometries
Reduced machining costs
High-volume manufacturing
Available Materials:
17-4PH Stainless Steel
Tool Steel M2, M4, M42
D2 Tool Steel
Low Alloy Steel
Key Advantages:
● Excellent Mechanical Properties
Near-wrought material performance.
● Superior Wear Resistance
Ideal for demanding tool applications.
● Complex Geometry Capability
Supports multifunctional tool designs.
● Cost-Effective Production
Reduces secondary machining.
FAQ:
Can MIM replace machining in hand tools?
For many complex and high-volume components, MIM significantly reduces manufacturing costs while maintaining excellent performance.
Why choose MIM instead of casting?
MIM offers superior precision, better surface quality, and more complex geometries."
Back to Top