Customization: | Available |
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Packing: | Standard |
MOQ: | 1000 |
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Product Type | CNC Machining Parts |
Material | Aluminum, Brass, Bronze, Stainless Steel, Plastic etc. |
Thickness | Customized |
Width | Customized |
Unit | Piece |
Process | Injection Molding, MIM |
Shipping | Sea, Air, Express, DHL / EMS |
MOQ | 1000pcs |
Package | Carton or Wooden Box |
Standard | CE, DIN, EN, ASTM etc. |
Capacity | Up to 10 Tons |
This product is manufactured using Metal Injection Molding (MIM), an advanced manufacturing technology that combines the design flexibility of plastic injection molding with the strength and integrity of metal materials. MIM allows for the production of complex, precision components in high volumes while maintaining tight tolerances and excellent surface finishes.
MIM parts are made from fine metal powders that are mixed with a thermoplastic binder to form a feedstock. This feedstock is then injected into a mold cavity to create a "green part" which undergoes debinding and sintering to remove the binder and densify the metal structure. The result is a near-net-shape metal part with mechanical properties comparable to wrought materials.
The product demonstrates the core advantages of MIM, including high strength, excellent dimensional accuracy, and intricate geometries that would be difficult or expensive to achieve using conventional machining or casting. Features such as undercuts, threads, thin walls, or detailed surface textures can be produced directly in the mold, reducing or eliminating the need for secondary operations.
Our MIM-manufactured components are ideal for industries that require high-performance small metal parts, including automotive, medical, consumer electronics, and precision instruments. These parts can be made from a wide range of materials, including stainless steels, tool steels, titanium alloys, and magnetic alloys, offering a broad spectrum of mechanical, chemical, and thermal properties.
By using the MIM process, we are able to provide customers with cost-effective solutions for complex part designs, fast production cycles, and consistent quality. Each part is rigorously inspected to meet stringent industry standards, ensuring reliability and performance in critical applications.