Reaction Bonded Silicon Carbide Roller

1. Our Reaction Bonded Silicon Carbide Roller's length can be 3900mm and outer diameter can be 80mm.
2. The service life of our Reaction Bonded Silicon Carbide Roller is more than 10 times that of alumina ceramics roller.
3. Our Reaction Bonded Silicon Carbide Rollers have the characteristic of strong wear resistance, high temperature bearing capacity, long-term use without bending deformation and so on.

  • STARLIGHT
  • Shenyang, China
  • Based on the quantity ordered by the product
  • 500t/year

Details

Introduction of SISIC Roller:

Our SISIC Roller has excellent high-temperature flexural strength, oxidation resistance, strong wear resistance, and will not break or bend when used for a long time at high temperatures. SISIC Roller is suitable for high-temperature firing zones of roller kilns such as daily ceramics, sanitary porcelain, and architectural porcelain. Our SiSiC Rollers last more than 10 times longer than alumina ceramic rods.Widely used in lithium industry and auto industry. SISIC Roller

Advantages of SISIC Roller:

1.Our SISIC Roller is made of solid material with stable structure, strong impact resistance and long-lasting durability.

2.Our SISIC Roller is made of selected materials and is waterproof. Our products are easy to clean and are corrosion and rust resistant.

3.Our company has strong technology and advanced equipment, and our SISIC Roller have precise dimensions.


Applications of SISIC Roller in High-Temperature Industries‌

Reaction Bonded Silicon Carbide Rollers have emerged as critical components in industries requiring exceptional thermal, mechanical, and chemical stability. SISIC Roller's unique manufacturing process, combining silicon infiltration with carbon preforms, results in a dense, high-strength ceramic material capable of withstanding extreme environments. SISIC Roller's properties make SISIC Roller indispensable in applications where traditional metals or ceramics fail.

In the ceramics and metallurgical sectors, SISIC Roller rods are widely used in high-temperature kilns and furnaces. SISIC Roller's outstanding thermal shock resistance ensures reliable performance during rapid heating or cooling cycles, minimizing deformation or cracking. For instance, in ceramic tile production, Reaction Bonded Silicon Carbide Rollers serve as rollers in roller hearth kilns, transporting heavy loads while maintaining dimensional stability under prolonged heat exposure. Similarly, in steel annealing lines, they endure corrosive atmospheres and mechanical stress, significantly extending service life compared to alumina-based alternatives.

The semiconductor and solar industries also benefit from Reaction Bonded Silicon Carbide Rollers properties. In diffusion and CVD (chemical vapor deposition) processes, the material's purity and resistance to aggressive gases prevent contamination, ensuring consistent product quality. Additionally, Reaction Bonded Silicon Carbide Rollers's low thermal expansion coefficient enhances precision in high-temperature wafer handling systems.

A key advantage of SISIC Rollers lies in their cost-effectiveness. Despite higher initial costs, their extended lifespan and reduced downtime for replacements translate to long-term savings. Furthermore, Reaction Bonded Silicon Carbide Rollers' lightweight nature lowers energy consumption in rotating systems.

As industries increasingly prioritize energy efficiency and process reliability, SISIC Rollers are poised to play an even greater role in advancing high-temperature manufacturing technologies. Their adaptability to extreme conditions continues to drive innovation across multiple industrial frontiers.


About us:

The main application areas of our products include: high-temperature alumina-zirconia product industry, daily ceramics, sanitary ceramics, electrical ceramics, electronic ceramics, honeycomb ceramics, lithium batteries, metallurgical chemical industry, etc. In recent years, with the continuous innovation of manufacturing processes, new products have begun to be used in emerging fields such as semiconductors, photovoltaics and water treatment  industry.


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