Endura Coatings - The Ceramic Composite Coating Process
ENDURA COATINGS Composite Ceramic Coatings Process STEP 1 PROPRIETARY SURFACE CLEANING Aluminum surface converted to an aluminum oxide (ceramic). (Typically 0.001" surface growth and a 0.001" surface penetration.) MATRIX GROWTH ORIGINAL SURFACE MATRIX PENETRATION BASE ALUMINUM STEP 2 SURFACE CONVERSION The newly formed ceramic matrix is vacuumed infused with sub-micron sized particles of high temperature, low friction and reinforced fluoropolymers. MATRIX GROWTH ORIGINAL SURFACE MATRIX PENETRATION BASE ALUMINUM STEP 3 FLUOROPOLYMER DEPOSIT Different fluoropolymers are utilized to optimize specific performance objectives. MATRIX GROWTH ORIGINAL SURFACE MATRIX PENETRATION BASE ALUMINUM STEP 4 FLUOROPOLYMER INFUSION http://www.enduracoatings.com © Endura® Coatings ENDURA COATINGS Composite Ceramic Coatings Process STEP 1 PROPRIETARY SURFACE CLEANING Aluminum surface converted to an aluminum oxide (ceramic). (Typically 0.001" surface growth and a 0.001" surface penetration.) MATRIX GROWTH ORIGINAL SURFACE MATRIX PENETRATION BASE ALUMINUM STEP 2 SURFACE CONVERSION The newly formed ceramic matrix is vacuumed infused with sub-micron sized particles of high temperature, low friction and reinforced fluoropolymers. MATRIX GROWTH ORIGINAL SURFACE MATRIX PENETRATION BASE ALUMINUM STEP 3 FLUOROPOLYMER DEPOSIT Different fluoropolymers are utilized to optimize specific performance objectives. MATRIX GROWTH ORIGINAL SURFACE MATRIX PENETRATION BASE ALUMINUM STEP 4 FLUOROPOLYMER INFUSION http://www.enduracoatings.com © Endura® Coatings
Endura Coatings - The Ceramic Composite Coating Process
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