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SOOCCI Is Leading One Station Provider Of Stainless Steel Hardware

Many Hardware Factory often using their out sourcing to PVD or open tooling mold in outisde, therefore the quality and color, production speed, they could not control it. Soocci build MIM production line in housing. This could help luxury brand customer to no worry about the quality control of the whole processing. Here is our PVD production line with international standard. 

Metal Injection Molding Is Good Solution For Making High Ending Quality Hardware.

What Is The MIM? Metal Injection Molding (MIM) is a manufacturing process that combines the versatility of plastic injection molding with the strength and properties of metal. It’s often used to produce small, complex metal parts in high volumes

Metal Injection Mold

Why Choose MIM?

  1. Complex Geometries: MIM allows for the production of highly complex and intricate metal parts that would be difficult or impossible to manufacture using conventional methods like machining or casting. This includes features such as undercuts, fine details, and internal cavities.

  2. High Precision: MIM provides excellent dimensional accuracy and repeatability, enabling the production of parts with tight tolerances. This reduces the need for secondary machining operations, saving time and cost.

  3. Material Variety: MIM can process a wide range of metal alloys, including stainless steel, titanium, tool steels, nickel-based alloys, and more. This versatility allows for the production of parts with diverse mechanical, thermal, and corrosion-resistant properties.

  4. Cost-Effectiveness: While tooling costs for MIM can be higher compared to traditional methods, the overall cost per part tends to be lower for high-volume production runs. MIM eliminates the need for multiple machining operations and can produce net or near-net shape parts, reducing material waste.

  5. Design Freedom: MIM offers designers greater freedom to innovate and optimize part designs. Complex geometries can be achieved without sacrificing structural integrity, enabling lightweighting and performance improvements.

  6. Material Properties: The sintering process in MIM results in fully dense metal parts with mechanical properties comparable to wrought materials. Parts produced by MIM exhibit high strength, hardness, and wear resistance, making them suitable for demanding applications.

  7. Reduced Lead Times: MIM typically has shorter lead times compared to traditional manufacturing methods, especially for complex parts. Once the tooling is made, the production process is highly automated and efficient.

  8. Scalability: MIM is suitable for both low and high-volume production, offering scalability to meet varying demand levels without compromising cost-effectiveness.

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