Ceramic pipe sleeve is a cylindrical covering made of ceramic material that is used to protect pipes from corrosion, wear, and chemical attack.
The main raw material of wear resistant ceramic ring is a special kind of ceramic with AL2O3 as the and the rare metal oxide as the flux, which is melted by high temperature at 1700 °C. The Ceramic Sleeves Lined Pipe as a whole part, and then assemble it into the steel pipe with our high-strength-temperature-resistant epoxy adhesive.
The ceramic pipe sleeve is an inner lining made from ceramic materials such as alumina or silicon carbide. Ceramics are chosen for their exceptional resistance to wear, corrosion, and abrasion. The ceramic sleeve acts as a protective layer inside the pipe, safeguarding it from deterioration when exposed to harsh materials.
Ceramic pipe sleeves are commonly used in industries like mining, mineral processing, power generation, and others that involve the transport of abrasive materials like ores, chemicals, or slurries. They extend the lifespan of pipes and reduce maintenance needs, making them a cost-effective solution for handling challenging materials.
According to customer requirements, we can provide different high-purity alumina ceramic tubes, such as: Alumina ceramic(Al2O3):95%;96%;97%;98%;99%;99.5%:99.7%;99.9%…etc.
A 95% Al2O3 ceramic sleeve refers to a ceramic sleeve or liner that is made of alumina (Al2O3) ceramic material with a purity level of 95%. Alumina ceramic is known for its excellent wear resistance, high-temperature resistance, and corrosion resistance, making it suitable for various industrial applications.
The 95% Al2O3 ceramic sleeve is commonly used in industries such as mining, power generation, chemical processing, and lithium battery material conveying systems. It provides protection against abrasion and corrosion, ensuring the durability and longevity of pipes, elbows, and T pipes.
The specific design and dimensions of the 95% Al2O3 ceramic sleeve may vary depending on the application and manufacturer. It is important to consult with suppliers or manufacturers specializing in ceramic sleeves to ensure that the product meets the specific requirements of your project.
A 99% Al2O3 ceramic sleeve refers to a ceramic sleeve or liner made from alumina (Al2O3) ceramic material with a high purity level of 99%. Alumina ceramic is known for its exceptional properties, including excellent wear resistance, high-temperature resistance, and corrosion resistance.
The 99% Al2O3 ceramic sleeve is commonly used in various industrial applications, including mining, power generation, chemical processing, and oil exploration. It provides superior protection against abrasion, corrosion, and high temperatures, ensuring the longevity and reliability of pipes, elbows, and other components.
The specific design, dimensions, and applications of the 99% Al2O3 ceramic sleeve can vary depending on the manufacturer and project requirements. It is crucial to consult with suppliers or manufacturers specializing in ceramic sleeves to ensure that the product meets the specific needs of your application.
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Insulation pipe ceramic alumina tube is a type of ceramic tube specifically designed for insulation purposes. It is made from alumina (Al2O3) ceramic material, known for its excellent thermal insulation properties.
Insulation pipe ceramic alumina tubes are commonly used in various industrial applications where heat insulation is required, such as in high-temperature furnaces, kilns, and thermal processing equipment. They provide effective insulation by minimizing heat transfer and maintaining temperature stability.
These tubes are typically available in different sizes, thicknesses, and lengths to accommodate specific insulation requirements. They can be used as standalone insulation components or as part of a larger insulation system.
When choosing insulation pipe ceramic alumina tubes, factors such as thermal conductivity, temperature resistance, mechanical strength, and chemical compatibility should be considered to ensure optimal performance in the intended application.
It is a common solution for extending the life of pipelines in harsh environments such as chemical plants, oil refineries, and waste treatment facilities. The ceramic material used in pipe sleeves has excellent resistance to high temperatures, abrasion, and chemical aggression, which makes it an ideal material for protection against corrosion and erosion. The ceramic pipe sleeves come in various sizes and shapes to fit different pipe dimensions and are typically installed by sliding them over the pipe’s outer surface.
Recently 95% alumina ceramic pipe sleeve has been largely applied in lithium battery material conveying system.
The main raw material of wear resistant ceramic sleeve is a special kind of ceramic with AL2O3 as the and the rare metal oxide as the flux, which is melted by high temperature at 1700 °C. The big diameter ceramic sleeve is always a big problem for the ceramic tube manufacturers since it’s very difficult to control the deformation rate of the ceramic sleeve after it’s sintering. Also It will also need an advanced and big isostatic pressing machine to do this. So it will not only express the company’s production capability, but company’s technology. Right now, our factory have owned both advantages which are wear resistant ceramic pressing facilities and technologies.
In addition, the flatness of ceramic casing is also an important factor affecting the size of lithium battery materials.We did a lot of analysis and improved our manufacturing techniques to solve both of these problems.Now it can help lithium battery delivery systems better solve these problems, with better material purity, longer service life and better economic benefits.
95% alumina ceramic sleeve lined pipes, elbows and T pipes have been largely applied in lithium battery material conveying system in recently years.
Overall, ceramic pipe sleeves are an effective and reliable solution for protecting piping systems from the harsh effects of abrasive materials. They offer superior wear resistance, corrosion resistance, and improved efficiency compared to traditional materials, reducing maintenance costs and improving system performance.