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Spray coating processing SPRAY PROCESSING
Tungsten carbide wear-resistant coating applied by dispersion disk spraying
1. Specialized isolation layers for lithium equipment and tungsten carbide wear-resistant coatings applied to dispersing disc surfaces—tungsten carbide wear-resistant coatings are now widely used in the lithium-battery slurry industry and are suitable for various components in lithium battery equipment, including dispersing discs, helical shafts, spiral mixers, wear-resistant parts of pulverizers, tank bodies, cylindrical vessels, conical hoppers, powder-handling machines, feeders, electrode manufacturing equipment, and other wear-resistant coatings. 2. The hardness of the tungsten carbide coating reaches above HRC75, making it one of the hardest and most wear-resistant coatings after diamond. It effectively prevents metal ions from entering the powder, thereby avoiding metal contamination of the powder caused by material wear. 3. Guangzhou Sanxin utilizes American Plazex supersonic spraying equipment and imports high-quality tungsten carbide materials. Tungsten carbide coatings are particularly well-suited for applications involving particle abrasion. 4. During coating application, the workpiece temperature does not exceed 150 degrees Celsius, ensuring no deformation occurs in the workpiece. 5. The coating’s surface roughness is around R3.2, with a controllable coating thickness ranging from 0.10 to 0.35 mm. After pore-sealing treatment, the coating does not react with NMP. 6. Depending on the specific operating environment, you can select wear- and corrosion-resistant coatings tailored to your needs.
耐磨
涂层
碳化钨
设备
喷涂
工件
螺旋
行业
分散
Product Description
Lithium equipment-specific isolation layer, tungsten carbide wear-resistant coating sprayed onto the surface of the dispersion disc; tungsten carbide wear-resistant coating spray.
1. 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, tank bodies, cylindrical vessels, conical hoppers, powder feeders, material conveyors, electrode manufacturing equipment, and wear-resistant coatings.
2. The tungsten carbide coating achieves a hardness of HRC75 or higher, making it one of the hardest and most wear-resistant coatings after diamond. It prevents metal ions from entering the powder, thereby safeguarding the powder against contamination caused by wear of metallic materials.
3. Guangzhou Sanxin uses American Praxair supersonic spraying equipment and selects imported tungsten carbide materials. Tungsten carbide coatings are primarily suitable for applications involving particle abrasion.
4. During coating application, the workpiece temperature must not exceed 150 degrees, and the workpiece must remain free of any deformation.
5. The coating roughness is R3.2 on the left, and the coating thickness is controllable within the range of 0.10 to 0.35 mm. After pore-sealing treatment, the coating does not react with NMP. 6. Depending on the specific application environment, you can select wear-resistant and corrosion-resistant coatings.



Prev: Lithium-ion hybrid machine coated with tungsten carbide
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Related products
Spraying equipment SPRAY EQUIPMENT
Tungsten carbide wear-resistant coating applied by dispersion disk spraying
1. Specialized isolation layers for lithium equipment and tungsten carbide wear-resistant coatings applied to dispersing disc surfaces—tungsten carbide wear-resistant coatings are now widely used in the lithium-battery slurry industry and are suitable for various components in lithium battery equipment, including dispersing discs, helical shafts, spiral mixers, wear-resistant parts of pulverizers, tank bodies, cylindrical vessels, conical hoppers, powder-handling machines, feeders, electrode manufacturing equipment, and other wear-resistant coatings. 2. The hardness of the tungsten carbide coating reaches above HRC75, making it one of the hardest and most wear-resistant coatings after diamond. It effectively prevents metal ions from entering the powder, thereby avoiding metal contamination of the powder caused by material wear. 3. Guangzhou Sanxin utilizes American Plazex supersonic spraying equipment and imports high-quality tungsten carbide materials. Tungsten carbide coatings are particularly well-suited for applications involving particle abrasion. 4. During coating application, the workpiece temperature does not exceed 150 degrees Celsius, ensuring no deformation occurs in the workpiece. 5. The coating’s surface roughness is around R3.2, with a controllable coating thickness ranging from 0.10 to 0.35 mm. After pore-sealing treatment, the coating does not react with NMP. 6. Depending on the specific operating environment, you can select wear- and corrosion-resistant coatings tailored to your needs.
耐磨
涂层
碳化钨
设备
喷涂
工件
螺旋
行业
分散
Product Description
Lithium equipment-specific isolation layer, tungsten carbide wear-resistant coating sprayed onto the surface of the dispersion disc; tungsten carbide wear-resistant coating spray.
1. 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, tank bodies, cylindrical vessels, conical hoppers, powder feeders, material conveyors, electrode manufacturing equipment, and wear-resistant coatings.
2. The tungsten carbide coating achieves a hardness of HRC75 or higher, making it one of the hardest and most wear-resistant coatings after diamond. It prevents metal ions from entering the powder, thereby safeguarding the powder against contamination caused by wear of metallic materials.
3. Guangzhou Sanxin uses American Praxair supersonic spraying equipment and selects imported tungsten carbide materials. Tungsten carbide coatings are primarily suitable for applications involving particle abrasion.
4. During coating application, the workpiece temperature must not exceed 150 degrees, and the workpiece must remain free of any deformation.
5. The coating roughness is R3.2 on the left, and the coating thickness is controllable within the range of 0.10 to 0.35 mm. After pore-sealing treatment, the coating does not react with NMP. 6. Depending on the specific application environment, you can select wear-resistant and corrosion-resistant coatings.



Prev: Lithium-ion hybrid machine coated with tungsten carbide
Online Quotation