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Injection Molding(mim) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Jul 23, 2025~Aug 19, 2025
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Injection Molding Product List

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Metal Injection Molding 'μ-MIM'

It is possible to manufacture precision nozzles with curved flow paths! A metal processing technology that solves the challenges of conventional machining.

The "μ-MIM" is a metal injection molding technology that enables the production of precision nozzles with special shapes, such as those with curved internal flow paths or freeform geometries, which cannot be processed using conventional methods. It supports mass production of small nozzles with diameters of a few millimeters and weights of less than a few grams. This technology contributes to solving technical challenges in fine, micro, and high-functionality components. 【Features】 ■ Capable of producing precision nozzles with special shapes ■ Stable mass production ■ Ideal for mass production of small precision nozzles weighing less than a few grams *For more details, please contact us or refer to the catalog.

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Copper-based micro parts Metal Injection Molding (MIM)

A new technology that enables mass production of intricate shapes that are difficult to achieve with cutting processes! It eliminates the high material costs unique to copper.

Copper is a metal that excels in electrical conductivity and thermal conductivity, and is used in various applications, including electronic devices, resulting in the existence of many complex and finely shaped copper parts. Taihei Industry proposes cost reduction solutions through the adoption of Metal Injection Molding (MIM) for current mass-produced parts, which have high material costs and poor material yield when produced by cutting, as well as for complex-shaped parts that are difficult to process by cutting in the first place. We can accommodate a variety of copper-based materials, from pure copper to brass, nickel silver, and cupronickel! Taihei Industry proposes cost reduction solutions through the adoption of MIM for current mass-produced parts, which have high material costs and poor material yield when produced by cutting, as well as for complex-shaped parts that are difficult to process by cutting. *For more details, please download the catalog or contact us directly.

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Technologies possible with MIM (Metal Injection Molding)

With high density and few nests, surface treatment allows for use as decorative items! Here are examples of technologies that can be achieved with MIM.

MIM (Metal Injection Molding) is a type of powder metallurgy method that uses metal powder as raw material, allowing for the mass production of complex-shaped parts with high precision and strength. On our company website, we showcase examples such as "mold shape creation for screw shapes (without machining)," as well as "mold creation for curved shapes" and "engraving of characters," using photographs. Please take a look. [Examples (Partial)] ■ Mold shape creation for screw shapes (without machining) - Capable of handling not only male threads but also female threads ■ Mold creation for curved shapes - Curved surfaces that are difficult to process can be molded without issues ■ Improvement of edge precision - By effectively utilizing the mold split, edges can be produced - Compared to lost wax, sharper angles can be created *For more details, please refer to the PDF materials or feel free to contact us.

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  • Injection Molding Machine

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MIM suitable for processing difficult-to-cut materials such as stainless steel and titanium.

By changing the processing that was traditionally done through cutting to the MIM method, we have reduced costs by 50%, eliminated parting lines, and improved appearance!

The MIM manufacturing method involves molding two parts and joining them, but it allows for molding with a single mold. This eliminates PL step differences at the joints and deformation of hollow sections due to joining pressure, resulting in cost reductions through integration. Depending on the metal material, it can flexibly accommodate difficult-to-machine materials (such as stainless steel and titanium) and complex shapes, enabling metal molding. Since molds are created, mass production is also possible. 【Features】 ■ No PL step differences at the joints ■ No deformation of hollow sections due to joining pressure ■ Cost reductions through integration ■ Metal molding is possible even for complex shapes that are difficult to machine ■ Mass production is possible due to mold creation ■ Flexible response depending on the metal material *For more details, please refer to the PDF document or feel free to contact us.

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Manufacturing method of MIM (Metal Injection Molding)

Leave metal powder injection molding to us.

Our company is engaged in a new form of metal parts manufacturing technology called "Metal Powder Injection Molding," which integrates metal powder metallurgy technology with plastic injection molding technology. By mixing metal powder with a binder (such as plastic resin), we perform injection molding within a mold, followed by a debinding process to remove the binder, and then high-temperature sintering to produce high-density metal products. *We have published a manufacturing method using illustrations on our website. We leverage the extensive knowledge of metal materials from the Mitsui Metals Group and combine it with plastic injection molding technology to provide high-quality, low-cost MIM products. **Features of MIM:** - Capable of producing complex three-dimensional shapes and suitable for mass production - Achieves higher dimensional accuracy - High density, high strength, high hardness, and high corrosion resistance - Compatible with various materials and difficult-to-machine materials - Proposes labor-saving in subsequent processes and cost reduction, etc. *For more details, please download the PDF or contact us.

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MIM (Metal Injection Molding) Case Study [Medical Components]

We can also respond to increased production quantities! Here are examples of cases where we were adopted for cost reduction reasons.

Here is an example of our company’s "MIM manufacturing method" applied to medical components. The high unit cost due to the total cutting process was a challenge before adoption. The method was adopted for cost reduction reasons. It offers advantages such as being more affordable compared to total cutting production and the ability to accommodate increased production quantities. 【Case Overview】 ■ Technology Overview: Near-net shape, mass production ■ Challenges Before Adoption: High unit cost due to total cutting process ■ Reason for Adoption: Cost reduction ■ Features/Benefits - More affordable compared to total cutting production - Capable of accommodating increased production quantities *For more details, please refer to the related links or feel free to contact us.

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MIM (Metal Injection Molding)

Relative density is over 95%, making it high density! The construction method can be smoothly replaced.

MIM (Metal Injection Molding) is a type of powder metallurgy method that uses metal powder as raw material, allowing for the mass production of parts with complex three-dimensional shapes with high precision and strength. It is a composite technology of "plastic injection molding technology" and "powder metallurgy technology," making it possible to manufacture complex shapes that can be molded with plastic using metal. With a single molding process, a shape close to the final product (near-net shape) can be obtained, aiming for a reduction in machining. Additionally, through the application of insert technology, it can accommodate hollow and undercut shapes. Primarily using stainless steel, which is considered a difficult-to-machine material, we also handle materials such as superalloys. (A list of main materials is available in the catalog.) 【Features】 ■ Three-dimensional complex shapes ■ High precision ■ High strength ■ Mass production ■ Difficult-to-machine materials *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract
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  • Injection Molding Machine

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A Simple Explanation of Powder Injection Molding in Manga! "What is PIM?"

Introducing the differences between conventional molding methods and powder injection molding (PIM), along with their advantages and examples of use! *Free manga available!

This booklet provides an easy-to-understand explanation of the new molding technology for metals and ceramics called 'PIM' through manga. PIM is a method of shaping by injecting powdered raw materials into a mold. There are two types: "MIM" and "CIM," both of which can be produced at Atect. 【Features】 ■ The binder has high fluidity, allowing it to reach the details of the mold. ■ It is suitable for small parts and complex shapes. ■ It has high dimensional accuracy in a near-net state, eliminating the need for post-processing such as cutting. ■ Unlike cutting, a large number of parts can be produced from a single mold. ■ By changing the mold, parts of various shapes can be created. ■ High-hardness parts with good dimensional accuracy can be produced without worrying about the hardness of the tools. *For more details, please refer to the PDF document or feel free to contact us.

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What is the molding technology of metals and ceramics called 'PIM'? Explained in a manga.

"What are the differences from conventional molding methods? What are the differences from casting?" A clear explanation of molding technologies! We will also introduce several application examples.

This booklet provides an easy-to-understand explanation of the metal and ceramic molding technology "PIM" through manga. PIM is a method of shaping by injecting powdered raw materials into a mold. There are two types: "MIM" and "CIM," and Atect can produce both. 【Features】 ■ The binder has high fluidity, allowing it to reach the details of the mold. ■ Suitable for small parts and complex shapes. ■ It has high dimensional accuracy in a near-net state, eliminating the need for post-processing such as cutting. ■ Unlike cutting, a large number of parts can be produced from a single mold. ■ By changing the mold, parts of various shapes can be created. ■ High-hardness parts with good dimensional accuracy can be produced without worrying about the hardness of the tools. *For more details, please refer to the PDF document or feel free to contact us.

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Gauss Corporation Powder Injection Molding Technology Introduction

Products can be easily manufactured even from materials and shapes that are difficult to cut!

The "Powder Injection Molding Method" is a manufacturing process that involves mixing organic binders with materials, injecting them into a mold, and then debinding followed by sintering. Since the raw material is in powder form, it is an excellent technology that allows for easy productization even for materials that are difficult to machine or have complex shapes. Unlike other techniques, it can form the final product shape (=NET) or something close to it in one go. Our company conducts Metal Powder Injection Molding (MIM) and Ceramic Powder Injection Molding (CIM), producing products with raw materials tailored to our customers' applications. Please feel free to inquire. 【Features】 ■ The most advantageous manufacturing method for selecting materials and creating products with free shapes ■ Suitable for productization of materials that are difficult to machine due to the use of powder as raw material ■ High precision that allows for the omission of post-processing ■ Capable of producing both metals and ceramics *For more details, please refer to the catalog or feel free to contact us.

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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.

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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.

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Free distribution of the MIM technology handbook that achieves VA/VE cost reduction.

This book explains the MIM technology that materializes ultra-small size check valves that fit on your fingertip! A website has been launched that gathers the largest collection of MIM case studies!

The "Handbook of Basic Technology for Metal Powder Injection Molding" is a booklet that covers the fundamental knowledge, case studies, and design points of "MIM (Metal Powder Injection Molding)," which is gaining attention for its ability to create complex shapes in a single molding process while reducing labor and costs! It achieves VA/VE cost reductions that are essential for designers. This technology has seen significant adoption across various industries in recent years, including medical, precision instruments, machine tools, industrial machinery, automotive parts, and electrical equipment. 【Overview of Contents】 ■ What is Metal Injection Molding (MIM)? ■ Growing Demand for MIM ■ Characteristics of MIM ■ Key Points for Designers on Introducing and Designing MIM Parts ■ MIM Parts Design: VA/VE and Cost Reduction Case Studies, etc. ◇◇ We have created and published 'MIM Technology.com,' a platform that provides practical technical information about MIM! ◇◇ We will continuously add examples of applications, achievable precision, possible shapes, and more, aiming to be one of the largest MIM technical information sites in Japan. Please check the link below regularly to assist in your new product development! *For more details, please download the catalog or feel free to contact us.

  • Injection Molding Machine
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Free distribution of the MIM technology handbook that achieves VA/VE cost reduction.

MIM technology that realizes the world's smallest check valve that can be inserted into human arteries! This book explains metal powder injection molding!

The "Handbook of Basic Technologies for Metal Powder Injection Molding" is a booklet that covers the fundamental knowledge, case studies, and design points of "MIM (Metal Powder Injection Molding)," which is gaining attention for its ability to create complex shapes in a single molding process while reducing labor and costs! It is a must-see for designers looking to achieve VA/VE cost reductions. This technology has seen significant adoption across various industries in recent years, including medical, precision instruments, machine tools, industrial machinery, automotive parts, and electrical equipment. 【Overview of Contents】 ■ What is Metal Injection Molding (MIM)? ■ Growing Demand for MIM ■ Characteristics of MIM ■ Key Points for Designers on Introducing and Designing MIM Parts ■ MIM Parts Design: VA/VE and Cost Reduction Case Studies, etc. *We are currently offering a free excerpt of the technical handbook! If you would like the complete version, please download the catalog and contact us!

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