Imparts hardness (to 65Rc), lubricity, excellent resistance to wear and corrosion, high dielectric strength, and excellent release properties.
Excellent resistance to wear and abrasion, increased hardness (to 80Rc), low coefficient of friction, permanent lubricity, and good release properties.
Polymer Coatings
Series 300
For Ferrous & Non-Ferrous Metals, Plastics or Glass »
Surface coatings are engineered to provide maximum release (non-stick), durability, corrosion and chemical resistance, and low friction properties.
Solid / Dry Film Lubricant Coatings
Series 400
For Ferrous & Non-Ferrous Metals and their Alloys »
Coatings are designed to prevent wear, galling, corrosion resistance and provide excellent dry film lubrication, even at high temperatures.
Ultra-hard (to 90Rc), thin film, enhanced PVD (Physical Vapor Disposition) coatings provide superior resistance to wear, abrasion, corrosion and enhanced non-stick properties.
Thermal Spray Coatings
Series 900
For Ferrous & Non-Ferrous Metals and their Alloys »
Permanent non-stick performance with superior resistance to wear and abrasion; our proprietary composites utilize the most advanced material reinforcements available in thermal spray technology today. Coatings achieve metallurgical or mechanical bond strength for surface synergies not previously attainable in release, lubrication, low friction, hardness, wear, heat transfer and other properties.
Polymer Diamond Composite Integrations
Series 1000 (M1)
For most Ferrous & Non-Ferrous Metals »
Patented synergistic system conforms to all surfaces, combining thermal-chemical cleaning, surface conversion, and the timed, controlled diffusion of sub-micron, ultra-hard particulates for the most advanced, wear-hardened structural reinforcement physically attainable. Vacuum-impregnated matrices are infused with special high-release lubricating particles for remarkably low surface energy.
Composite Diamond Coatings
Series 1100
For Most Ferrous & Non-Ferrous Metals »
Patented, unique technology for diamond integration throughout a proprietary autocatalytic nickel alloy. The ingenuity of the matrix is in its perfection of wear & abrasion, particle size, geometry and dispersion, to create the physical properties of diamond, the hardest material known, on all conforming surfaces and most alloys. Nano-composites are available for precision lower builds; higher CDC is attainable up to 0.010 inch, with sustainable properties.
Sessile drop method and optics capture higher contact angles using Endura® Surfaces. Higher contact angles mean lower surface energy and unrivaled non-stick performance. The above picture depicts a liquid droplet on an endura coated surface, demonstrating our ability to achieve the a formementioned 'higher contact angle' and thus greater non-stick properties.
Endura® Coatings application engineers will assist you in determining the best coating chemistry for your application.
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