We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Heat Treatment Technology.
ipros is IPROS GMS IPROS One of the largest technical database sites in Japan that collects information on.

Heat Treatment Technology Product List and Ranking from 9 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

Heat Treatment Technology Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

  1. サカモト工業 Osaka//Manufacturing and processing contract
  2. 國友熱工 竜王工場 Shiga//Manufacturing and processing contract
  3. 小山鋼材 Osaka//Trading company/Wholesale
  4. 4 SDC田中 Osaka//Aviation & Aerospace
  5. 5 岡谷熱処理工業 Nagano//Manufacturing and processing contract

Heat Treatment Technology Product ranking

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

  1. Color heat treatment technology "Tempa Color" サカモト工業
  2. Rapid Cooling Low Distortion Heat Treatment Technology "KS Treatment" 小山鋼材
  3. Heat treatment technology "Radiant Quenching" 國友熱工 竜王工場
  4. SDC Plasma Vacuum Heat Treatment Technology [Numerous Achievements in Aerospace Field] SDC田中
  5. 4 Heat treatment technology "precipitation hardening treatment (aging heat treatment)" 國友熱工 竜王工場

Heat Treatment Technology Product List

16~17 item / All 17 items

Displayed results

Rapid Cooling Low Distortion Heat Treatment Technology "KS Treatment"

We propose suitable heat treatment conditions for each material! Introduction to rapid cooling low distortion heat treatment technology.

To improve the lifespan of die-casting molds, it is necessary to enhance heat crack resistance and melt loss resistance, while also giving sufficient consideration to resistance against crack propagation and fracture, as well as toughness. Increasing the hardness of the mold is effective against initial heat cracks, but it poses risks of large fractures and issues regarding the propagation of cracks once they occur. Conversely, reducing hardness eliminates the risk of large fractures, but problems remain concerning initial heat checks. Our rapid cooling low distortion heat treatment technology, "KS Treatment," focuses on identifying which temperature range significantly affects the performance of the mold material between the quenching temperature and the end of cooling, and we propose suitable heat treatment conditions for each material. [Features] ■ Two-stage rapid cooling low distortion heat treatment "KS2/KSV Treatment" - Depending on material characteristics, various cooling conditions and cooling control using cooling dampers, as well as partial cooling using localized cooling nozzles, can be selected. ■ Multi-stage rapid cooling low distortion heat treatment "KS3/KS-R Treatment" - Capable of heat treating some of the largest die-casting molds in Japan. *For more details, please refer to the PDF document or feel free to contact us.

  • Other contract services

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Aerospace SDC Plasma Vacuum Heat Treatment Technology

Surface modification technology that contributes to the lightweighting and durability improvement of aircraft.

In the aviation industry, reducing the weight of components is a critical issue for improving fuel efficiency and ensuring safety. At the same time, high durability that can withstand harsh environments is also required. Metal components such as titanium, stainless steel, and nickel are needed to be lightweight while also providing strength, but they are prone to issues such as wear, galling, and corrosion, making surface treatment essential for improvement. Our SDC plasma vacuum heat treatment technology addresses these challenges by modifying the surface of components to enhance wear resistance and galling prevention performance, contributing to the lightweight and longevity of aircraft. 【Application Scenarios】 - Aircraft engine components - Airframe structural components - Fasteners 【Benefits of Implementation】 - Improved fuel efficiency through weight reduction of components - Extended lifespan of components due to enhanced wear resistance and galling prevention performance - Cost reduction through decreased use of lubricants

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration