HP Fama

High Performance Coatings
for Molds & Dies

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HP Fama

HP Fama – Multi-Purpose Solution with Higher Toughness and Lower Coefficient of Friction

HP Fama is a TiC based coating that redefines excellence in molds and dies. Crafted as a multi-purpose solution with higher toughness and lower friction, HP Fama stands out for its wear resistance, sliding wear resistance, and anti-galling feature. Experience the mastery of TiC coating in applications such as stainless steel forming, roll forming & deep drawing, high-speed punching, stamping, forming of steel and sheet metal, and punching.

Key Features    
  • TiC-based coating: HP Fama utilizes a TiC based coating, ensuring advanced performance in molds and dies
  • Multi-purpose excellence: Tailored to work in various applications, HP Fama excels when higher toughness and lower friction are essential
  • Wear resistance: Experience superior wear resistance, ensuring prolonged tool life
  • Sliding wear resistance: HP Fama offers exceptional sliding wear resistance, contributing to precision in molds and dies
  • Anti-galling feature: Stands out in high-speed punching with the anti-galling feature, ensuring reliable performance

Applications
  • Stainless steel forming: Achieve precision in stainless steel forming, enhancing the durability of molds and dies
  • Roll forming & deep drawing: HP Fama excels in this kind of applications, ensuring efficiency and consistency
  • High-speed punching: Stands out in high-speed punching operations with the anti-galling feature of HP Fama
  • Stamping and forming of steel and sheet metal: Experience versatility in stamping and forming applications, ensuring reliable tool performance

Choose HP Fama coating that elevates performance in molds and dies. Explore the advanced features of HP Fama coating technology for enhanced precision in various manufacturing applications.

* Duplex coating available (Nitride + Coating), for more information, please contact our sales department or sales@primuscoating.com The depth of nitriding will depend on the material of the part. 

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