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Thermal Conductivity 3.5 to 4.5 W per meter Kelvin Mullite ceramic for high temperature applications and excellent thermal stability

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Thermal Conductivity 3.5 to 4.5 W per meter Kelvin Mullite ceramic for high temperature applications and excellent thermal stability

Thermal Conductivity 3.5 to 4.5 W per meter Kelvin Mullite ceramic for high temperature applications and excellent thermal stability
Thermal Conductivity 3.5 to 4.5 W per meter Kelvin Mullite ceramic for high temperature applications and excellent thermal stability Thermal Conductivity 3.5 to 4.5 W per meter Kelvin Mullite ceramic for high temperature applications and excellent thermal stability Thermal Conductivity 3.5 to 4.5 W per meter Kelvin Mullite ceramic for high temperature applications and excellent thermal stability

Large Image :  Thermal Conductivity 3.5 to 4.5 W per meter Kelvin Mullite ceramic for high temperature applications and excellent thermal stability

Product Details:
Place of Origin: CHINA
Brand Name: KAMTAI
Certification: ISO 9001
Model Number: MOLAISHITAOCI
Payment & Shipping Terms:
Minimum Order Quantity: 1000PCS
Price: NEGOTIATE
Packaging Details: WOODEN BOX
Delivery Time: 30 DAYS AFTER PAYMENT
Payment Terms: TT
Supply Ability: 500000PCS/MONTH

Thermal Conductivity 3.5 to 4.5 W per meter Kelvin Mullite ceramic for high temperature applications and excellent thermal stability

Description
Mechanical Strength: 200 - 300 MPa Color: White To Light Brown
Melting Point: 1840 - 1850 °C Dielectric Constant: 6 - 7
Hardness: 7 - 8 Mohs Thermal Expansion Coefficient: 4.5 - 5.5 × 10⁻⁶ /K
Thermal Conductivity: 3.5 - 4.5 W/m·K Origin: China

Product Description:

The Engineered Mullite Ceramic Material stands out as a high-performance solution designed to meet the demanding requirements of various industrial applications. Renowned for its exceptional mechanical strength, this advanced Mullite Ceramic Material exhibits a robust strength ranging between 200 to 300 MPa, making it highly reliable for structural components exposed to rigorous mechanical stress. Its unique combination of strength and thermal stability makes it an indispensable material in environments where both durability and heat resistance are paramount.

One of the most notable features of this Mullite Ceramic Thermal Insulator is its remarkable working temperature capability. It can withstand continuous operation at temperatures up to 1400℃, which positions it as an excellent choice for high-temperature applications. This thermal resilience ensures that the material maintains its integrity and performance under extreme heat, making it ideal for use in refractory linings and kiln furniture. These applications demand materials that not only resist thermal shock but also maintain dimensional stability and mechanical strength at elevated temperatures, criteria that this advanced Mullite Ceramic Material meets with ease.

The product’s color ranges from white to light brown, reflecting its purity and the quality of the raw materials used in its manufacture. This subtle coloration is often indicative of the mullite phase and minimal impurities, which contribute to its excellent thermal and mechanical properties. Additionally, the Mullite Ceramic Thermal Insulator typically exhibits low porosity, generally less than 15%. This low porosity is critical as it enhances the material’s resistance to chemical attack, reduces thermal conductivity, and improves its overall mechanical strength, making it a superior choice for demanding industrial environments.

Applications of this Engineered Mullite Ceramic Material are diverse and critical across multiple industries. In refractory linings, it serves as a protective barrier that shields furnaces and reactors from extreme heat and corrosive atmospheres, thereby extending equipment life and improving operational efficiency. Its high mechanical strength and thermal resistance also make it ideal for kiln furniture, where it supports ceramic wares during firing processes without deforming or deteriorating. Furthermore, due to its excellent electrical insulating properties combined with thermal stability, this Mullite Ceramic Thermal Insulator is widely used in electrical insulators, providing reliable insulation in high-temperature electrical applications.

Advanced Mullite Ceramic Material is engineered to deliver consistent performance in harsh environments, thanks to its optimized microstructure and chemical composition. The balance between alumina and silica phases in mullite ensures that this material offers not only superior mechanical strength but also excellent thermal shock resistance and low thermal expansion. This combination minimizes the risk of cracking and structural failure during rapid temperature changes, a critical feature for applications involving thermal cycling.

In summary, the Engineered Mullite Ceramic Material is a versatile, high-strength, and thermally stable product that excels in applications requiring robust mechanical properties and high-temperature performance. Its low porosity and aesthetically appealing white to light brown color further enhance its suitability for industrial use. Whether employed as a refractory lining, kiln furniture, or electrical insulator, this advanced Mullite Ceramic Material ensures longevity, reliability, and efficiency, making it a preferred choice for engineers and manufacturers seeking premium ceramic solutions.

 

Features:

  • Product Name: Engineered Mullite Ceramic Material
  • Chemical Composition: 3Al2O3·2SiO2
  • Thermal Expansion Coefficient: 4.5 - 5.5 × 10⁻⁶ /K
  • Thermal Shock Resistance: 250
  • Hardness: 7 - 8 Mohs
  • Origin: China
  • Designed as a High Temperature Mullite Ceramic for superior performance
  • Excellent durability and stability as a High Temperature Mullite Ceramic material
 

Technical Parameters:

Material Mullite Ceramic
Chemical Composition 3Al2O3·2SiO2
Density 3.1 - 3.2 G/cm³
Thermal Conductivity 3.5 - 4.5 W/m·K
Porosity Typically <15%
Dielectric Constant 6 - 7
Working Temperature 1400℃
Thermal Shock Resistance 250
Mechanical Strength 200 - 300 MPa
Origin China
 

Applications:

The KAMTAI MOLAISHITAOCI Mullite Ceramic product, originating from China and certified by ISO 9001, is an advanced mullite ceramic material designed to meet the rigorous demands of various industrial applications. Renowned for its exceptional thermal shock resistance up to 250°C and a low thermal expansion coefficient of 4.5 - 5.5 × 10⁻⁶ /K, this engineered mullite ceramic material ensures durability and reliability in high-temperature environments. With a melting point ranging between 1840 - 1850 °C and a working temperature capacity of up to 1400℃, this product is ideal for applications requiring superior heat resistance and stability.

Due to its excellent thermal and mechanical properties, the KAMTAI MOLAISHITAOCI mullite ceramic is extensively utilized in the manufacturing of kiln furniture, furnace linings, and high-temperature insulation components. Its robust thermal shock resistance makes it suitable for use in industries such as metallurgy, glass production, and ceramics, where sudden temperature changes are frequent and material integrity is critical. Additionally, this advanced mullite ceramic material is often employed in manufacturing crucibles, burner nozzles, and heat exchangers, providing long service life and enhanced performance under extreme conditions.

In scenarios where precision and consistency are paramount, such as semiconductor manufacturing and aerospace engineering, the engineered mullite ceramic material from KAMTAI offers excellent dimensional stability and resistance to thermal deformation. This makes it a preferred choice for components exposed to rapid heating and cooling cycles. The product is also packaged securely in wooden boxes to ensure safe delivery, with a supply ability of 500,000 pieces per month, accommodating large-scale industrial demands.

With a minimum order quantity of 1000 pieces and flexible pricing negotiable to meet client requirements, the KAMTAI MOLAISHITAOCI mullite ceramic product supports seamless integration into diverse production lines. Delivery is efficiently managed within 30 days after payment, with payment terms via TT, ensuring timely procurement and supply chain reliability. Overall, this advanced mullite ceramic material is indispensable for industries seeking high-performance materials capable of withstanding harsh thermal environments while maintaining structural integrity and operational efficiency.

Contact Details
Yixing City Kam Tai Refractories Co.,ltd

Contact Person: Mr. Bruce

Tel: 86-18351508304

Fax: 86-510-8746-8690

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