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 Fastening Hardware Parts are precision components designed for joining, fixing, and assembly applications across various industries.
Typical products include threaded inserts, locking components, clips, fasteners, connectors, and mounting systems.
Metal Injection Molding combines the design flexibility of plastic injection molding with the strength and durability of metal materials, making it particularly suitable for producing miniature and complex fastening hardware components that are difficult or costly to manufacture through conventional machining, die casting, or investment casting.
Key system components are developed according to customer drawings, CAD files, material requirements, tolerance requirements, surface finish needs and production volume. Customization must be reviewed together with MIM manufacturability, tooling feasibility, shrinkage behavior and inspection strategy.
Overview:
MIM is ideal for fastening components requiring:
Complex shapes
Miniaturization
Tight tolerances
High-volume production
Key Advantages:
● Excellent Mechanical Performance
Suitable for high-load operating conditions.
● Reduced Manufacturing Costs
Ideal for OEM production.
● High Precision
Ensures assembly consistency.
● Long Service Life
Excellent fatigue and wear resistance.
FAQ:
What fastening products are suitable for MIM?
Threaded inserts, clips, precision fasteners, locking components, and miniature connectors.
When should I choose MIM instead of CNC machining or stamping?
Choose MIM when the part is small, metal, geometrically complex and needed in repeat production volume. CNC may be better for low-volume prototypes or highly localized precision features. Stamping may be better for flat sheet-metal parts. MIM becomes more attractive when the part has 3D features, holes, hooks, bosses, pivots and compact functional geometry that would be costly to machine or stamp."
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