Metal Powder Injection Molding = MIM in a nutshell.
Metal Injection Molding (MIM)
An overview of MIM explained in manga!! Appearing before an employee struggling with material procurement is...
Corporate Catalog An overview of MIM explained in manga format. It is an easy-to-read document due to its manga style. This book provides a simple way to learn about MIM when considering its implementation.
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basic information
MIM is a metal processing technology that combines injection molding and powder metallurgy. We propose manufacturing solutions focused on iron, titanium, and difficult-to-machine components to help our customers reduce manufacturing costs. Our technology, which minimizes friction and wear in products and parts, contributes to improving the durability and lifespan of our customers' components and reducing manufacturing costs by achieving zero defects.
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Applications/Examples of results
Complex metal parts, ball screws (Fe-based), seat belts (important safety components), interior parts such as buttons (SUS), titanium (medical), connectors (copper), sensors, difficult-to-machine materials, mechanical components, movable and sliding parts, engine parts, component parts for medical devices, sensor housings, endoscope parts, disposable items, non-insured related items ⇒ cosmetic surgery, dentistry, firearms, defense equipment, power tools, tools (such as ratchets), clutches (one-way), hinges (glasses), bearings, bicycle-related items, artificial joints, power generation infrastructure, PCs, all-solid-state batteries (especially electrodes), VR equipment, power generation equipment-related, renewable energy-related.
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Our group is engaged in the manufacturing and sales of automotive-related products (piston rings, valve seats, and other automotive-related products) as well as marine and other products, along with related businesses. Our products are adopted in various types of engines, backed by reliable technology and a rich lineup of quality. In addition to automotive and marine products, we also handle MIM (Metal Injection Molding) parts that can achieve small and complex shapes, axial gap motors optimal for AGVs, motor cores (powdered magnetic cores), highly biocompatible titanium alloys (NiFreeT), and medical device components (dental implants).