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Spray coating processing SPRAY PROCESSING

Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application
Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application
Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application
+
  • Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application
  • Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application
  • Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application

Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application


Using the American Miller plasma cladding equipment and technology, on-site construction can be carried out to apply wear-resistant ceramic coatings, making it suitable for hopper, screw, and ribbon mixing and conveying systems in the lithium-ion new energy industry.

Key words :

喷涂加工

新能源锂电设备

螺带叶片陶瓷涂层

喷涂纳米陶瓷涂层

Request for quotation Phone: 020-84836251

Product Description

New Energy Lithium Battery Equipment Screw Blade Ceramic Coating Project

Guangzhou Sanxin Company utilizes American Miller plasma cladding equipment and technology to perform on-site cladding of wear-resistant ceramic coatings, making it suitable for hopper, screw, and ribbon mixing and conveying systems in the lithium-ion new energy industry.

1. Utilizing the American Miller plasma process, a high-temperature plasma arc exceeding 10,000 degrees is generated, directly melting pure ceramics and spraying them onto the substrate at high pressure and high velocity to form a coating that achieves direct metallurgical bonding with the substrate.

2. The coating contains no chemical contaminants such as epoxy polymers, adhesives, or other bonding agents that could contaminate the powder. Additionally, the coating is free of metallic components and does not increase the level of metallic foreign particles. Over the long term, compared to other coatings, it significantly reduces the magnetic foreign particle count by 10–50 parts per billion (PPB).

3. The ceramic coating thickness is 0.6–1.8 mm, and production can begin immediately after construction is completed.

  On-site Spray Coating Process for Plasma Coatings

1. Clear the site, enclose the construction area, and connect construction equipment to electricity and gas.

2. Sandblasting treatment of the substrate surface to meet or exceed Sa2.5 standard;

3. On-site spray coating construction using plasma cladding;

4. Quality inspection: The composition analyzer checks the material composition and the content of metallic impurities; coating hardness and thickness are also inspected, followed by construction acceptance.



 1625022585(1)


 1625022672(1)

 

 

 

 

 

Prev: New energy spiral and ribbon spray coating construction for ceramic powder application—spraying nano-ceramic coatings.

Next: Tungsten carbide spraying equipment for screw flights, screws, stirring shafts, and conveying pipes

Online Quotation

Action
Submit a request for quotation

Spraying equipment SPRAY EQUIPMENT

Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application
Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application
Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application
+
  • Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application
  • Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application
  • Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application

Plasma Spray Coating—New Energy Lithium Battery Equipment: Ceramic Coating Engineering for Helical Ribbon Blades; Nano-Ceramic Coating by Spray Application


Using the American Miller plasma cladding equipment and technology, on-site construction can be carried out to apply wear-resistant ceramic coatings, making it suitable for hopper, screw, and ribbon mixing and conveying systems in the lithium-ion new energy industry.

Key words:

喷涂加工

新能源锂电设备

螺带叶片陶瓷涂层

喷涂纳米陶瓷涂层

Request for quotation E-mail:CarrieFeng07@outlook.com

Product Description

New Energy Lithium Battery Equipment Screw Blade Ceramic Coating Project

Guangzhou Sanxin Company utilizes American Miller plasma cladding equipment and technology to perform on-site cladding of wear-resistant ceramic coatings, making it suitable for hopper, screw, and ribbon mixing and conveying systems in the lithium-ion new energy industry.

1. Utilizing the American Miller plasma process, a high-temperature plasma arc exceeding 10,000 degrees is generated, directly melting pure ceramics and spraying them onto the substrate at high pressure and high velocity to form a coating that achieves direct metallurgical bonding with the substrate.

2. The coating contains no chemical contaminants such as epoxy polymers, adhesives, or other bonding agents that could contaminate the powder. Additionally, the coating is free of metallic components and does not increase the level of metallic foreign particles. Over the long term, compared to other coatings, it significantly reduces the magnetic foreign particle count by 10–50 parts per billion (PPB).

3. The ceramic coating thickness is 0.6–1.8 mm, and production can begin immediately after construction is completed.

  On-site Spray Coating Process for Plasma Coatings

1. Clear the site, enclose the construction area, and connect construction equipment to electricity and gas.

2. Sandblasting treatment of the substrate surface to meet or exceed Sa2.5 standard;

3. On-site spray coating construction using plasma cladding;

4. Quality inspection: The composition analyzer checks the material composition and the content of metallic impurities; coating hardness and thickness are also inspected, followed by construction acceptance.



 1625022585(1)


 1625022672(1)

 

 

 

 

 

Prev: New energy spiral and ribbon spray coating construction for ceramic powder application—spraying nano-ceramic coatings.

Next: Tungsten carbide spraying equipment for screw flights, screws, stirring shafts, and conveying pipes

Online Quotation

Action
Submit a request for quotation