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 Tool Holder Parts are precision components used in CNC machining systems and industrial tooling applications.
Metal Injection Molding combines the design flexibility of plastic injection molding with the strength and durability of metal materials, making it an ideal manufacturing process for miniature and high-precision electronic components.
Our custom MIM consumer electronics parts are manufactured using stainless steels, titanium alloys, magnetic materials, and specialty alloys to provide excellent mechanical performance, corrosion resistance, and aesthetic appearance.
Overview:
MIM is suitable for tool holder components requiring:
Tight tolerances
High rigidity
Wear resistance
Complex geometries
Available Materials
| Stainless Steel | 304L, 316L, 17-4 PH, 420, 430, 440 |
| Titanium Alloy | Ti-6Al-4V |
| Superalloys | Inconel, Hastelloy, Co-based Low Alloy Steels, 2-8% Ni (4600, 4650) |
| Magnetic Alloys | 2-6% Si-Fe, 50% Ni-Fe, 50% Co-Fe |
| Controlled Expansion Alloys | Fe-36Ni (Invar), F-15 (Kovar) |
| Electrical Materials | Pure Copper, Beryllium-Copper, Brass |
| Tool Steels | AISI M2, M3/2, M4, T15, M42, D2 |
| Heavy Alloys | Tungsten-Copper, W-Fe-Ni, Molybdenum-Copper, Custom compostions to suit customer specifications |
Material selection can be customized according to strength, wear resistance, corrosion resistance, and magnetic performance requirements.
Key Advantages:
● Excellent Precision
Ensures machining stability.
● High Strength
Suitable for industrial tooling systems.
● Reduced Machining Costs
Near-net-shape manufacturing capability.
FAQ:
Why choose MIM for tool holder parts?
MIM provides highly precise and complex components with lower manufacturing costs.
What are the advantages of MIM over CNC machining?
Compared with CNC machining, MIM offers:
Lower material waste
Reduced production cost
Better suitability for complex geometries
High-volume manufacturing capability
Improved assembly consistency
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