80Cu 8.5Al 1Fe 10Polyester Powder from Stanford Advanced Materials is a specialized powder designed for producing abradable coatings in aerospace and industrial turbines, offering excellent wear resistance, anti-galling properties, and low friction in marine environments prone to salt corrosion.
Related Products: Nano Copper Nickel Alloy Spherical Powder, Nano Copper Zinc Alloy Powder
80Cu 8.5Al 1Fe 10Polyester Powder from Stanford Advanced Materials is a specialized powder designed for producing abradable coatings in aerospace and industrial turbines, offering excellent wear resistance, anti-galling properties, and low friction in marine environments prone to salt corrosion.
Related Products: Nano Copper Nickel Alloy Spherical Powder, Nano Copper Zinc Alloy Powder
85Cu 8.5Al 1Fe 10Polyester Powder combines pre-alloyed aluminum bronze with a specially formulated polyester, designed specifically for abradable coatings in aerospace and industrial turbine applications. These coatings effectively manage clearance in seal areas, reducing wear on rotating components and enhancing gas path efficiency. The powder demonstrates excellent resistance to fretting and sliding wear fatigue, which is particularly advantageous for titanium alloys under high contact pressures. Additionally, it provides anti-galling properties while maintaining low frictional forces and preventing damage to titanium surfaces, which is essential for performance in marine environments.
Nominal Chemistry |
85Cu 8.5Al 1Fe 10Polyester |
Nom. Particle Size Distr.(µm) |
-88 +11 |
Morphology |
Irregular |
Max. Service Temperature (°C) |
650 |
Range of Apparent Density (g/cm3) |
4.5 |
Our 85Cu 8.5Al 1Fe 10Polyester Powder is meticulously handled during storage and transportation to maintain the quality of the product in its original condition.
Q1: Can coatings made from 85Cu 8.5Al 1Fe 10Polyester Powder withstand high contact pressures?
A1: Yes, coatings made from this powder exhibit excellent sliding wear fatigue protection for components under high contact pressures, making them suitable for demanding aerospace and industrial applications.
Q2: How are coatings applied using 85Cu 8.5Al 1Fe 10Polyester Powder?
A2: Coatings are typically applied using thermal spray techniques such as atmospheric plasma spray (APS) or combustion powder thermospray, ensuring uniform coverage and adherence to substrate surfaces.
Q3: What are the benefits of using 85Cu 8.5Al 1Fe 10Polyester Powder over other materials?
A3: This powder offers superior wear resistance, anti-galling performance, and corrosion protection compared to conventional materials, thereby prolonging the lifespan and efficiency of turbine components.