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Ceramic Thermal Spray Roller for Glass

Sample provided! Contributing to the improvement of slip properties in glass manufacturing lines.

In the glass industry, the transport of glass sheets on the manufacturing line is significantly influenced by sliding properties. Particularly in high-speed transport or high-temperature environments, increased friction resistance of rollers raises the risk of scratching or breaking glass sheets. Additionally, roller wear can lead to line stoppages and increased maintenance frequency, potentially decreasing production efficiency. Our ceramic thermal spray pass line rollers achieve high durability and low friction resistance through localized thermal spraying, supporting the smooth transport of glass sheets. 【Usage Scenarios】 - Transport rollers in glass manufacturing lines - Transport of glass sheets in high-temperature environments - High-speed transport lines 【Benefits of Implementation】 - Prevention of glass sheet scratching - Improved transport efficiency - Reduction in maintenance costs

If it's fine ceramics, then it's Nihon Ceratec.

basic information

【Features】 - High durability - Significantly improved lifespan due to standard specifications for localized thermal spraying - Excellent cost performance - Smoothness of the sprayed surface - Ceramic thermal spraying can also be applied to fabric-reinforced bake (limited to plasma spraying) 【Our Strengths】 We conduct custom research and development as well as manufacturing of fine ceramics materials and components. Using alumina, zirconia, and silicon carbide as materials, we support various advanced industries. Please feel free to contact us with your inquiries.

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For more details, please refer to the PDF document or feel free to contact us.

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Our company conducts custom research and development as well as manufacturing of fine ceramics materials and components. We also support various advanced industries using materials such as alumina, zirconia, and silicon carbide. Please feel free to contact us if you have any inquiries.