|
Product Details:
|
| Hardness: | 7 - 8 Mohs | Melting Point: | 1840 - 1850 °C |
|---|---|---|---|
| Origin: | China | Thermal Conductivity: | 3.5 - 4.5 W/m·K |
| Thermal Expansion Coefficient: | 4.5 - 5.5 × 10⁻⁶ /K | Color: | White To Light Brown |
| Mechanical Strength: | 200 - 300 MPa | Porosity: | Typically <15% |
The Advanced Mullite Ceramic Material is a highly valued product known for its exceptional thermal and electrical properties. Composed primarily of Mullite Ceramic with the chemical composition 3Al2O3·2SiO2, this material stands out in various industrial applications due to its outstanding stability and durability. The unique structure of this ceramic provides it with remarkable resistance to high temperatures, making it an ideal choice for environments where thermal insulation and resistance are critical.
One of the most significant attributes of this Advanced Mullite Ceramic Material is its thermal expansion coefficient, which ranges between 4.5 and 5.5 × 10⁻⁶ /K. This low thermal expansion rate ensures that the material maintains its integrity and dimensional stability even under rapid temperature changes, preventing cracks and mechanical failure. As a result, it is highly effective in applications requiring consistent performance under thermal stress.
Visually, the Mullite Ceramic product exhibits a color spectrum from white to light brown, reflecting its purity and the quality of its manufacturing process. This coloration is not only aesthetically pleasing but also indicative of the material’s composition and heat treatment history. Such characteristics make it suitable for use in environments where both function and form are important.
Another critical feature of this product is its dielectric constant, which ranges from 6 to 7. This moderate dielectric constant makes the Advanced Mullite Ceramic Material an excellent electrical insulator, capable of withstanding high voltages without conducting electricity. Consequently, it is widely utilized in electronic and electrical components to prevent electrical leakage and ensure safety and efficiency.
In addition to its thermal and electrical insulating properties, the Advanced Mullite Ceramic Material is also known for its high mechanical strength and excellent chemical stability. It resists corrosion and degradation even when exposed to harsh chemicals and extreme environmental conditions. This makes it a preferred choice for use in industries such as aerospace, electronics, metallurgy, and power generation.
The Mullite Ceramic Thermal Insulator, derived from this advanced material, plays a crucial role in enhancing energy efficiency and protecting sensitive components from heat damage. Its ability to maintain performance at elevated temperatures while minimizing thermal conductivity helps reduce energy consumption and improve the lifespan of equipment. This makes it an essential component in furnaces, kilns, heat exchangers, and other high-temperature applications.
Furthermore, the Advanced Mullite Ceramic Material is valued for its versatility and ease of fabrication. It can be manufactured into various shapes and sizes to meet specific application requirements. Whether used as insulation bricks, tubes, plates, or complex structural parts, this material delivers consistent performance and reliability.
In summary, the Mullite Ceramic product, characterized by its chemical composition of 3Al2O3·2SiO2, low thermal expansion coefficient, appealing white to light brown color, and moderate dielectric constant, represents a pinnacle of advanced ceramic engineering. Its outstanding thermal insulation capabilities, electrical insulation properties, and mechanical robustness make it an indispensable material in modern industrial processes. The Advanced Mullite Ceramic Material and Mullite Ceramic Thermal Insulator continue to set the standard for high-performance ceramic materials, providing solutions that meet the demanding needs of various high-tech industries.
| Mechanical Strength | 200 - 300 MPa |
| Color | White To Light Brown |
| Thermal Expansion Coefficient | 4.5 - 5.5 × 10⁻⁶ /K |
| Dielectric Constant | 6 - 7 |
| Thermal Conductivity | 3.5 - 4.5 W/m·K |
| Porosity | Typically <15% |
| Chemical Composition | 3Al 2 O 3 ·2SiO 2 |
| Melting Point | 1840 - 1850 °C |
| Applications | Refractory Linings, Kiln Furniture, Electrical Insulators |
| Material | Mullite Ceramic |
The KAMTAI Mullite Ceramic product, model number MOLAISHITAOCI, is a high temperature mullite ceramic designed for a wide range of industrial applications. Originating from China and certified with ISO 9001, this product ensures top-quality performance and reliability. With a chemical composition of 3Al2O3·2SiO2, it offers exceptional thermal stability and durability, making it an ideal choice for environments requiring thermal insulation at extreme temperatures up to 1400℃.
This high temperature mullite ceramic is extensively used as a mullite ceramic thermal insulator in industries such as metallurgy, ceramics manufacturing, glass production, and chemical processing. Its excellent thermal conductivity, ranging from 3.5 to 4.5 W/m·K, allows it to effectively manage heat transfer, reducing energy consumption and protecting equipment from thermal damage. The material’s robustness and resistance to thermal shock make it suitable for furnace linings, kiln furniture, and heat exchangers where prolonged exposure to high temperatures is common.
KAMTAI’s mullite ceramic products are packaged carefully in wooden boxes to ensure safe transportation and delivery within 30 days after payment via TT. With a supply ability of 500,000 pieces per month and a minimum order quantity of 1000 pieces, this product is well-suited for large-scale industrial applications and supply chain requirements. Pricing is negotiable, allowing for flexible procurement arrangements to meet diverse customer needs.
Typical application occasions for the high temperature mullite ceramic include thermal insulation in heat treatment furnaces, refractory linings in steel and non-ferrous metal smelting, and components in high-temperature reactors. It is also widely used in aerospace and automotive industries where materials must withstand extreme heat without compromising structural integrity. The combination of high melting point, low thermal expansion, and excellent chemical stability makes this mullite ceramic the preferred solution for demanding thermal insulation scenarios.
In summary, KAMTAI’s high temperature mullite ceramic product offers a reliable, high-performance solution for thermal insulation needs across various high-temperature industrial settings. Its superior material properties and robust manufacturing standards ensure that it meets the rigorous demands of modern industrial processes, making it an indispensable component for enhancing energy efficiency and equipment longevity.
Contact Person: Mr. Bruce
Tel: 86-18351508304
Fax: 86-510-8746-8690