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  3. MOLE'S ACT(モールズアクト)
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MOLE'S ACT(モールズアクト)

addressNagano/Suwa-shi/Hunan 5902-1
phone0266-53-1595
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last updated:Jan 26, 2021
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MOLE'S ACT(モールズアクト) List of Products and Services

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"Diffusion bonding" enables the production of high thermal conductivity and lightweight hollow aluminum components.

High thermal conductivity and lightweight hollow components made possible by aluminum diffusion bonding. Heat exchangers and cooling plates can be manufactured.

By using diffusion bonding of aluminum alloys, it is possible to manufacture lightweight hollow components with high thermal conductivity. We can accommodate a maximum size of 500×500. We will respond to customer requests from material procurement to processing. Please contact us for details about materials and specifications.

  • Processing Contract

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Diffusion bonding contributes to the high strength of dissimilar material joints and the reduction of voids.

Joining Dissimilar Materials: A Challenge for New Manufacturing

At MOLE'S ACT Co., Ltd., we utilize atomic diffusion occurring between joining surfaces for 'diffusion bonding' and combine it with our new technology 'CORE-X technology' to achieve high strength at the joint when bonding dissimilar materials, significantly reducing voids. 【Main Metal Materials】 ◯ Tungsten alloy ◯ Copper alloy ◯ Nickel alloy ◯ Stainless steel ◯ Pure titanium ◯ Carbon copper ◯ Porcelax, etc. ◎ For more details, please refer to the PDF materials or feel free to contact us.

  • Processing Contract

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[Case Study] A Must-See for Those Struggling with Mold Heat Exchange and Cooling

Are you having trouble with heat exchange and cooling of molds? We achieve high precision, high quality, and high productivity with a highly flexible heat exchange flow path layout tailored to the product shape!

The Mole's Act (Mole's Work) method is a technique that changes the conventional wisdom of traditional metal processing through diffusion bonding technology and our unique technology (CORE-X). By arranging highly flexible heat exchange (cooling) flow paths in accordance with product shapes, we achieve high precision, high quality, and high productivity. ★The photo at the top left of this page shows an example of processing using the 'MOLE'S ACT method,' which has realized flow paths. 【Here are some benefits of heat exchange tailored to the product!】 ■ Stabilization of mold temperature with fewer shots from the start of molding ■ Resolution of molding issues such as weld lines, sink marks, and stringing during molding ■ Reduction of cycle time due to shorter solidification time ■ Reduced damage to molds ■ Significant cost reduction *For more details, please download the PDF or feel free to contact us.

  • Contract manufacturing
  • Other molds
  • Mold Design

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Strength test results of the DAC1 + Cu hybrid composite using CORE-X technology.

A new technology that enhances the bonding area of the joint to high strength and significantly reduces the voids. This introduces the results of strength tests conducted on cut specimens of DAC1 + Cu joints.

At MOLE'S ACT Co., Ltd., we utilize atomic diffusion that occurs between joining surfaces for our "diffusion bonding" and combine it with our new technology, "CORE-X technology," to enhance the strength of the bonded area and significantly reduce voids. 【Strength tests conducted on cut test specimens of DAC1 + Cu dissimilar material joints!】 Photos of the test results are posted in the upper left of this page. Even when the test specimens were bent or twisted, no fractures occurred at the bonding points, demonstrating the high strength of our bonding technology. ◆ We are currently offering a document summarizing test results and technical data for various materials. Please check it out via the "PDF Download" link below.

  • Processing Contract

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Strength test of joints using CORE-X technology: Test results with alloy tool steel.

A new technology that enhances the joint parts of the composite to high strength and significantly reduces the gaps. This introduces the results of strength tests conducted on cut specimens of alloy tool steel (DAC) composites.

At MOLE'S ACT Co., Ltd., we utilize atomic diffusion occurring between bonding surfaces for our "diffusion bonding," and by combining it with our new technology "CORE-X technology," we can enhance the strength of the bonded joints and significantly reduce voids. 【Strength tests conducted on cut test pieces of DAC bonded joints!】 Photos of the test results are posted in the upper left of this page. Even when the test pieces are bent or twisted, there was no fracture at the bonding parts, demonstrating the high strength of our bonding technology. ◆ We are currently offering a document summarizing test results and technical data for various materials. Please check it out via the "PDF Download" link below.

  • Processing Contract

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Introduction of bond strength test result data for joints using CORE-X technology.

A new technology that enhances the bonding area of the joint to high strength and significantly reduces the gaps. We will introduce the bonding strength test results with various materials through photos.

At MOLE'S ACT Co., Ltd., we utilize atomic diffusion that occurs between joining surfaces for 'diffusion bonding' and combine it with our new technology 'CORE-X technology' to enhance the strength of the joint and significantly reduce voids. 【What happened to the bonded test specimens after various tensile tests?】 The photo at the top left of this page shows the results of the tensile tests. In each material, the bonding interface was not cut, but the base material itself was severed. This demonstrates the high strength achieved through our bonding technology. ◆ We are currently offering materials that summarize test results and technical data for various materials. Please check the "PDF Download" below.

  • Processing Contract

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Joining of dissimilar materials using CORE-X technology: Example of SUS series + Cu.

A new technology that strengthens the bonding between different materials and significantly reduces voids. Verification of dissimilar material joints using SUS and Cu!

At MOLE'S ACT Co., Ltd., we utilize atomic diffusion occurring between joining surfaces for 'diffusion bonding' and combine it with our new technology 'CORE-X technology' to achieve high strength at the joint when bonding dissimilar materials, significantly reducing voids. The photo at the top left of this page shows the bonding of SUS series and Cu using our technology. The joining surfaces are closely adhered, demonstrating high strength. We are currently offering a document summarizing test results and technical data for various materials. Please view it via the "PDF Download" link below.

  • Processing Contract

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Joining of dissimilar materials using CORE-X technology: Case of S45C + Cu

A new technology that strengthens the bonding between different materials and significantly reduces voids. Verification of dissimilar material joints using S45C + Cu!

At MOLE'S ACT Co., Ltd., we utilize atomic diffusion occurring between joining surfaces for "diffusion bonding," and by combining it with our new technology "CORE-X technology," we can achieve high strength at the joint when bonding dissimilar materials and significantly reduce voids. The photo at the top left of this page shows the bonding of S45C and Cu using our technology. The bonding surfaces are closely adhered, demonstrating high strength. ◆ We are currently offering a document summarizing test results and technical data for various materials. Please view it via the "PDF Download" link below.

  • Processing Contract

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Joining of dissimilar materials using CORE-X technology: A case study of Fe and Cu.

A new technology that strengthens the bonding between different materials and significantly reduces voids. Verification of dissimilar material joints using Fe and Cu!

At MOLE'S ACT Co., Ltd., we utilize atomic diffusion occurring between joining surfaces for 'diffusion bonding' and combine it with our new technology 'CORE-X technology' to achieve high strength at the joint when bonding dissimilar materials, significantly reducing voids. [Bonding of Dissimilar Materials with Fe and Cu] The photo at the top left of this page shows the bonding of Fe and Cu using our technology. The joining surfaces are closely adhered, demonstrating high strength. ◆ We are currently offering a document summarizing test results and technical data for various materials. Please view it via the "PDF Download" link below.

  • Processing Contract

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Interface observation of diffusion bonding using CORE-X technology: A case study of powder steel.

A new technology that enhances the strength of joints and significantly reduces voids. Verification of interface observation results using ELMAX (powder steel)!

At MOLE'S ACT Co., Ltd., we utilize atomic diffusion occurring between joining surfaces for our "diffusion bonding" and combine it with our new technology, "CORE-X technology," to enhance the strength of the bonded area and significantly reduce voids. 【Test Results with ELMAX (Powder Steel)】 In cases of conventional diffusion bonding alone, there were many voids and insufficient strength; however, by applying "CORE-X technology" along with quenching, we achieved high strength. Additionally, in fracture tests, no fractures occurred at the bonding area, demonstrating high strength. ◆ Please also take a look at the photo in the upper left corner of the page! ◆ We are currently offering a document summarizing test results and technical data for various materials. Please check it out via the "PDF Download" link below.

  • Processing Contract

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Interface observation of diffusion bonding using CORE-X technology: An example of SUS420J2 series.

A new technology that combines diffusion bonding to enhance the strength of joints and significantly reduce voids. Verification of interfacial observation results in SUS420J2 series!

At MOLE'S ACT Co., Ltd., we utilize atomic diffusion occurring between joining surfaces for a process called 'diffusion bonding,' and by combining this with our new technology 'CORE-X technology,' we can enhance the strength of the bonded area and significantly reduce voids. [Test Results with STAVAX (SUS420j2 Series)] In cases where only conventional diffusion bonding was used, there were many voids and insufficient strength. However, by applying 'CORE-X technology' along with quenching and tempering, we achieved high strength. Additionally, in fracture tests, no fractures occurred at the joint, demonstrating high strength. ◆ Please also take a look at the photo in the top left corner of the page! ◆ We are currently offering a document summarizing test results and technical data for various materials. Please check it out via the "PDF Download" link below.

  • Processing Contract

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Interface observation of diffusion bonding using CORE-X technology: A case study of cold work die steel.

A new technology that combines diffusion bonding to enhance the strength of joints and significantly reduce voids. Verification of interfacial observation results using SKD11 (cold work die steel)!

At MOLE'S ACT Co., Ltd., we utilize atomic diffusion occurring between joining surfaces for our "diffusion bonding" and combine it with our new technology "CORE-X technology" to enhance the strength of the bonded area and significantly reduce voids. [Test Results with SKD11 (Cold Work Die Steel)] In the case of conventional diffusion bonding alone, there were many voids and insufficient strength; however, by applying "CORE-X technology" along with quenching, we achieved high strength. Furthermore, in the fracture test, no fractures occurred at the joint, demonstrating high strength. ◆ Please also take a look at the photo in the top left corner of the page! ◆ We are currently offering a document summarizing test results and technical data for various materials. Please check it out via the "PDF Download" link below.

  • Processing Contract

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[New Technology] Contributing to the High Strength of Joints 'CORE-X Technology'

Joinable without losing material properties or melting the joint interface! Technical documentation is currently being distributed.

"CORE-X Technology" is a new technology that enables high-strength bonding for assemblies created through diffusion bonding. It allows for bonding without melting the joint interface and does not compromise material properties. Additionally, post-bonding processing and heat treatment can be performed without issues. 【What CORE-X Technology can achieve】 - High-strength bonding across the entire joint surface - Bonding without melting the joint interface - Bonding that retains material properties - Capability for post-bonding processing and heat treatment - Simultaneous bonding of multiple cross-sections is possible (Note: Bonding characteristics are influenced by alloy components) *For detailed information about the technology, please download the PDF document from the link below.

  • Processing Contract

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MOLE'S ACT method for highly flexible heat exchange (cooling) flow path configuration.

Are you having trouble with heat exchange and cooling of molds? We achieve high precision, high quality, and high productivity with a highly flexible heat exchange flow path layout tailored to product shapes!

The Moles Act (Mole's Work) method is a technique that changes the conventional wisdom of traditional metal processing through diffusion bonding technology and our unique technology (CORE-X). By arranging highly flexible heat exchange (cooling) flow paths according to the product shape, we achieve high precision, high quality, and high productivity. 【Benefits of heat exchange tailored to the product!】 ■ Stabilizes mold temperature with fewer shots from the start of molding ■ Solves molding troubles such as weld lines, sink marks, and stringing during molding ■ Reduces cycle time by shortening solidification time ■ Reduces damage to the mold ■ Significant cost reduction *For more details, please download the PDF or feel free to contact us.

  • Contract manufacturing
  • Other molds
  • Mold Design

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Diffusion bonding in the development of composite materials and new materials.

A joining method that utilizes the diffusion of atoms occurring between joining surfaces. Contributes to the development of composite materials and new materials!

"Diffusion bonding" is a method of joining that utilizes the diffusion of atoms occurring between the joining surfaces. By joining metals, it is possible to create arbitrary spaces within, enabling the manufacture of hollow components. Additionally, it can also join dissimilar materials, contributing to the development of new materials. 【Features】 ■ Utilizes atomic diffusion for bonding ■ Enables the manufacture of hollow components by joining metals ■ Supports the joining of dissimilar materials ■ Contributes to the development of composite materials and new materials *For more details, please refer to the catalog. Feel free to contact us with any inquiries.

  • Processing Contract

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Built-in flow channel for heat exchange in die-casting molds

A technique made possible by joining! To eliminate burn-in during die casting! Curved inserts and the arrangement of heat exchange flow paths are possible!

With the "Heat Exchange Flow Path Built-in Insert" from Molls Act Co., Ltd., it has become possible to incorporate a free heat exchange flow path using metal bonding in die-casting molds. 【Features】 ■ Currently achieving 350,000 shots in durability tests (ongoing) ■ Resolves seizure issues in die-casting ■ Allows for curved inserts and flexible arrangement of heat exchange flow paths ~ If you are experiencing issues with seizing or heat exchange, please feel free to consult us! ~ *For more details, please download the PDF or feel free to contact us.

  • Contract manufacturing
  • Other molds
  • Mold Design

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High-cycle mold for flow path internal organs

Joining processing that does not lose the properties of the material! Quenching, sub-zero, and surface treatment options are available!

The Moles Act (Mole's Work) method is a technique that changes the conventional wisdom of metal processing, established through diffusion bonding technology and our unique technology (CORE-X). High-cycle molds created using this unique method have exceptional stability in bonding strength due to the innovation of bonding equipment and CORE-X technology. 【Features】 ■ Bonding processing that does not lose the characteristics of the material ■ Compatible with hardening, sub-zero treatment, and surface treatment ■ High precision, high quality, and high productivity ■ Support from material procurement to completion *For more details, please download the PDF or feel free to contact us.

  • Plastic Mould
  • Resin mold
  • Other molds

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High Cycle Sprue Bush for Resin Molding

Increased productivity with the use of high-cycle molds. Compatible with hardening, sub-zero treatment, and surface processing.

We manufacture and provide "High Cycle Sprue Bushes for Resin Molding" utilizing our unique metal solid joining technology. By incorporating heat exchange channels, we achieve high precision, high quality, and high productivity. We accommodate custom sizes and shapes, and processes such as hardening, sub-zero treatment, and surface treatment are also available. 【Features】 ■ Compatible with high cycle molds ■ Full service from material procurement to completion ■ Capable of lengths up to 300 *For more details, please refer to the materials. Feel free to contact us with any inquiries.

  • Plastic Mould
  • Resin mold
  • Other molds

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