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Injection Molding(injection) - メーカー・企業と製品の一覧

更新日: 集計期間:Jul 23, 2025~Aug 19, 2025
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Injection Moldingの製品一覧

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Injection molding for DSI hollow bodies

About injection molding for DSI hollow bodies.

DSI (Die Slide Injection Molding) is an injection molding method developed by Japan Steel Works that allows for the rapid and accurate molding of complex internal structures in hollow bodies. In the first injection, semi-finished products (two-part products) are molded, and the mold is slid using a hydraulic mechanism to form the hollow body. Further, melting and bonding are performed through a second injection. The DSI method also resolves issues such as uneven wall thickness and weak bonding strength that were seen in conventional hollow molding methods. ■Features■ - Capable of molding complex hollow bodies and assembly molding with insert parts, as well as sealing molding. - Eliminates the need for post-processing, contributing to reduced molding costs and increased productivity. - Bonding areas have a strength approximately 1.5 to 2.0 times that of vibration welding. - Easy control of wall thickness (1.5 to 5.0 mm) and high dimensional accuracy. *For more details, please inquire through a request for materials or download.

  • Calibration and repair
  • Contract manufacturing

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Features and Applications of PIM

It is possible to mold and sinter metals with extremely high melting points, such as titanium, with high precision!

"PIM (Powder Injection Molding)" is an abbreviation for powder injection molding, a method of injection molding a mixture of fine powders such as metal or ceramic powders and organic binders. The sintered bodies obtained through PIM have extremely high dimensional accuracy and contribute to various industrial fields as sintered products used in machinery, electronic components, and green devices. Additionally, our company is developing heat sinks with complex three-dimensional shapes that maximize heat dissipation effects using our proprietary ceramic powder injection molding technology. 【Features】 - Complex and difficult-to-process shapes can be mass-produced at low cost and high efficiency using our unique technology. - Environmentally friendly binder for powder injection molding. - Feedstock materials with high handling properties tailored to injection molding conditions. *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing
  • Processing Contract
  • Other electronic parts

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Introduction to PIM (Powder Injection Molding) technology!

PIM (Powder Injection Molding) is a technology that allows materials that are difficult to process to be shaped into net shapes with high precision!

Atect Co., Ltd., a manufacturer of metal and ceramic injection molding, is a comprehensive PIM manufacturer that consistently handles everything from material development and manufacturing to molding, sintering, and secondary processing. "PIM" stands for Powder Injection Molding, a technology that involves injection molding using a mixture of metal (MIM) or ceramic (CIM) powders and organic binders. Processing shapes that require precision often relies on cutting, which can pose challenges in terms of mass production and cost when dealing with large quantities, and there are also constraints on processing methods for complex shapes. Our technology provides solutions to these challenging issues! 【Features】 ■ High freedom in materials allows for the injection molding of various metals and ceramics into complex shapes. ■ Our technology enables the molding and sintering of high melting point metals such as stainless steel and titanium with high precision. ■ Silicon nitride and aluminum nitride, which are gaining significant attention as heat dissipation materials for electric vehicles and power semiconductors, can also be molded using our technology. *For more details, please refer to the related links or feel free to contact us.

  • Contract manufacturing

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MIM (Metal Injection Molding)

Advanced technology that produces valuable products! Higher strength can be achieved than with conventional powder metallurgy.

"MIM" stands for Metal Injection Molding, which refers to the process of metal powder injection molding. It involves mixing metal powders of less than 10 microns with a binder made of resin and wax, forming the material, and then debinding and sintering it to manufacture metal products. This technology is highly productive and suitable for mass production of complex-shaped parts, offering potential cost advantages. 【Features】 ■ A wide variety of metals, including difficult-to-machine materials, can be used ■ High precision processing with a tolerance of ±0.5% on dimensional values ■ Capable of near-net-shape three-dimensional forms ■ Higher strength than conventional powder metallurgy can be achieved ■ Cost advantages are expected *For more details, please refer to the related links or feel free to contact us.

  • Processing Contract

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Achieving an unprecedented surface gloss by eliminating internal defects with a unique binder PIM.

World-class technology! A luxurious exterior surface and finely crafted functional interior.

"PIM (Powder Injection Molding)" is an abbreviation for powder injection molding, a manufacturing method that involves injecting a mixture of fine powders, such as metal or polymer microparticles, and a binder into a mold. At Atect, we accommodate a range of materials from metal alloys like titanium and stainless steel to ceramics such as alumina and zirconia, as well as nickel-free materials. We also achieve the integral molding of intricate shapes in difficult-to-machine materials that were previously impossible. Our unique binder eliminates internal defects, and by polishing the surface, we achieve a level of surface gloss that is on a different dimension compared to conventional PIM. 【Features】 - Molding of a wide variety of materials - Fine processing with net shape processing at will - Achieving a mirror finish due to the absence of internal defects For more details, please contact us or download the catalog.

  • Other machine elements

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Micro Metal Powder Injection Molding "μ-MIM"

We have developed a manufacturing technology for metal powder injection molding applied to micro components, resulting in high-density, high-precision, and complex-shaped sintered products called "μ-MIM"!

At Taishō Industrial, we accept orders for prototype to mass production of high-density, high-precision, and complex-shaped "μ-MIM" products through metal powder injection molding. Metal Injection Molding (MIM) is a technology that involves mixing and kneading metal powder with a binder made of resin and wax, injecting it into a mold, and then sintering it after debinding to produce metal products. We are expanding these MIM technologies into micro components, developing our unique technology as "μ-MIM," and aiming for further technological advancements. "μ-MIM" offers high freedom in material selection, enabling the production of difficult-to-cut materials and high melting point materials. It allows for mass production of complex-shaped precision metal parts and the manufacturing of composite materials through the bonding of different materials. We also implement insert MIM molding for parts with undercuts, contributing to the reduction of assembly, press-fitting, and other processes, as well as improving quality stability and reducing costs, while accommodating screw shapes and transfers. For more details, please contact us or download our catalog.

  • Injection Molding Machine
  • Processing Contract

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Micro Metal Powder Injection Molding "μ-MIM"

We have developed a manufacturing technology for metal powder injection molding applied to micro components, resulting in high-density, high-precision, and complex-shaped sintered products called "μ-MIM"!

At Taishō Industrial, we accept orders for the prototyping and mass production of high-density, high-precision, and complex-shaped "μ-MIM" products through metal powder injection molding. Metal Injection Molding (MIM) is a technology that involves mixing and kneading metal powder with a binder made of resin and wax, injecting it into a mold, and then sintering it after removing the binder to produce metal products. We are expanding these MIM technologies into micro components, developing our unique technology as "μ-MIM," and aiming for further technological advancements. "μ-MIM" offers high freedom in material selection, enabling the production of difficult-to-cut materials and high melting point materials. It allows for the mass production of complex-shaped precision metal parts and the manufacturing of composite materials through the joining of dissimilar materials. We also implement insert MIM molding for the production of complex-shaped parts with undercuts, contributing to the reduction of processes such as assembly and press-fitting, ensuring quality stability, and lowering costs, while accommodating screw shapes and transfers. For more details, please contact us or download the catalog.

  • Injection Molding Machine
  • Processing Contract

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