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Spray coating processing SPRAY PROCESSING
Tungsten carbide screw coating
Surface wear-resistant coatings for spiral shafts in lithium battery equipment, screw conveyor machinery, battery raw material crushers, mixers, conical hoppers, powder handling machines, feeding systems, and more.
Lithium battery equipment pipeline spraying with tungsten carbide
Currently widely used in the lithium battery slurry industry, it is suitable for various equipment in the lithium battery sector, including dispersion disks, screw shafts and spiral mixers, wear-resistant components for pulverizers, tanks, cylindrical bodies, conical hoppers, powder feeders, material conveyors, electrode manufacturing equipment, and wear-resistant coatings.
Tungsten carbide coating for screw rods, wear-resistant coating for screw rods
In response to the demands of various plastic products, most of the ultra-engineering plastics currently in use contain additives such as flame retardants, glass fibers, calcium carbonate, and modifiers, which lead to rapid corrosion, wear, and shortened service life of the barrel and screw.
Surface coating with wear-resistant layer + non-stick coating for lithium battery industry equipment
Tungsten carbide screw coating
Surface wear-resistant coatings for spiral shafts in lithium battery equipment, screw conveyor machinery, battery raw material crushers, mixers, conical hoppers, powder handling machines, feeding systems, and more.
We specialize in thermal spray coating services for various industries.
If your products have high requirements for surface finish and dimensional accuracy, or if they will be in long-term contact with liquids and thus demand enhanced wear resistance and corrosion protection, you should choose our company’s tungsten carbide coating applied using the American Praxair JP8000 equipment. From materials to equipment, processes to solutions—we’ve got it all covered in coatings.
Injection Molding Machine and Extruder Screw with Tungsten Carbide, Hard Alloy, and Ceramic Coating
In response to the demands of various plastic products, most of the ultra-engineering plastics currently in use contain additives such as flame retardants, glass fibers, calcium carbonate, and modifiers, which lead to rapid corrosion, wear, and shortened service life of the barrel and screw. This process ensures that the sprayed alloy layer is completely resistant to peeling, cracking, and porosity, and strictly controls issues such as workpiece deformation.