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Dielectric Constant 6 to 7 Advanced Mullite Ceramic Material Offering High Thermal Shock Resistance and Mechanical Strength for Industrial

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Dielectric Constant 6 to 7 Advanced Mullite Ceramic Material Offering High Thermal Shock Resistance and Mechanical Strength for Industrial

Dielectric Constant 6 to 7 Advanced Mullite Ceramic Material Offering High Thermal Shock Resistance and Mechanical Strength for Industrial
Dielectric Constant 6 to 7 Advanced Mullite Ceramic Material Offering High Thermal Shock Resistance and Mechanical Strength for Industrial Dielectric Constant 6 to 7 Advanced Mullite Ceramic Material Offering High Thermal Shock Resistance and Mechanical Strength for Industrial Dielectric Constant 6 to 7 Advanced Mullite Ceramic Material Offering High Thermal Shock Resistance and Mechanical Strength for Industrial

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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

Dielectric Constant 6 to 7 Advanced Mullite Ceramic Material Offering High Thermal Shock Resistance and Mechanical Strength for Industrial

Description
Dielectric Constant: 6 - 7 Porosity: Typically <15%
Origin: China Thermal Conductivity: 3.5 - 4.5 W/m·K
Melting Point: 1840 - 1850 °C Thermal Expansion Coefficient: 4.5 - 5.5 × 10⁻⁶ /K
Hardness: 7 - 8 Mohs Material: Mullite Ceramic

Product Description:

The Mullite Ceramic product is an advanced mullite ceramic material engineered to meet the highest standards of thermal insulation and durability. Known for its exceptional properties, this mullite ceramic thermal insulator is widely utilized in applications requiring superior thermal management and chemical stability. The material's unique chemical composition of 3Al2O3·2SiO2 imparts remarkable characteristics, making it an indispensable choice in various industrial sectors.

One of the standout features of this engineered mullite ceramic material is its excellent thermal conductivity, ranging between 3.5 and 4.5 W/m·K. This property ensures efficient heat dissipation while maintaining insulation, which is critical in environments exposed to high temperatures. The moderate thermal conductivity balances heat transfer and retention, allowing the material to perform effectively as a thermal insulator in furnaces, kilns, and other high-temperature equipment.

Another vital attribute of this advanced mullite ceramic material is its low thermal expansion coefficient, measured between 4.5 and 5.5 × 10⁻⁶ /K. This low expansion rate ensures minimal dimensional changes when subjected to temperature fluctuations, reducing the risk of cracks and structural failures. The stability afforded by this characteristic makes the mullite ceramic thermal insulator especially suitable for precision applications where dimensional consistency is critical under thermal stress.

Thermal shock resistance is a crucial factor for materials exposed to rapid temperature changes, and this mullite ceramic product excels in this regard with a thermal shock resistance rating of 250. This high resistance to thermal shock means the material can endure sudden temperature shifts without degrading or losing its structural integrity. This makes it ideal for use in environments such as aerospace, automotive, and industrial processes where rapid heating and cooling cycles are common.

In addition to its thermal properties, the engineered mullite ceramic material offers excellent chemical stability due to its intrinsic composition of 3Al2O3·2SiO2. This chemical composition provides outstanding resistance to corrosion and chemical attack from various acids and alkalis, enhancing the material's longevity and performance in harsh chemical environments. This makes the mullite ceramic thermal insulator highly reliable for use in chemical processing plants and other industrial settings where exposure to aggressive substances is frequent.

Manufactured through advanced ceramic processing techniques, this mullite ceramic product combines high mechanical strength with thermal and chemical resilience, making it an all-around robust material. Its versatility allows it to be tailored for specific applications, including refractory linings, electrical insulators, and high-temperature structural components. The engineered mullite ceramic material's ability to maintain its properties under extreme conditions ensures that it remains a preferred choice for engineers and designers seeking dependable thermal insulation solutions.

Overall, the mullite ceramic thermal insulator represents a fusion of superior material science and manufacturing expertise. Its carefully controlled thermal conductivity, low thermal expansion coefficient, and exceptional thermal shock resistance, combined with excellent chemical stability, position it as a leading product in the field of advanced ceramic materials. Whether used in industrial furnaces, aerospace components, or chemical plants, this mullite ceramic product delivers reliable, long-lasting performance that meets the demanding requirements of modern technology and industry.

 

Features:

  • Product Name: Mullite ceramic
  • Working Temperature: 1400℃
  • Mechanical Strength: 200 - 300 MPa
  • Material: Mullite Ceramic
  • Hardness: 7 - 8 Mohs
  • Chemical Composition: 3Al2O3·2SiO2
  • High Temperature Mullite Ceramic suitable for extreme thermal environments
  • Excellent Mullite Ceramic Thermal Insulator properties
  • Durable and reliable High Temperature Mullite Ceramic for industrial applications
 

Technical Parameters:

Color White To Light Brown
Applications Refractory Linings, Kiln Furniture, Electrical Insulators
Mechanical Strength 200 - 300 MPa
Porosity Typically <15%
Hardness 7 - 8 Mohs
Dielectric Constant 6 - 7
Thermal Shock Resistance 250
Chemical Composition 3Al2O3·2SiO2
Density 3.1 - 3.2 G/cm³
Thermal Conductivity 3.5 - 4.5 W/m·K
 

Applications:

The KAMTAI MOLAISHITAOCI Mullite ceramic product, originating from China and certified with ISO 9001, is an advanced mullite ceramic material designed to meet the demanding needs of various industrial applications. With a high melting point ranging between 1840 to 1850 °C and a density of 3.1 to 3.2 g/cm³, this mullite ceramic thermal insulator offers exceptional thermal stability and durability, making it ideal for high-temperature environments.

Thanks to its outstanding thermal conductivity of 3.5 to 4.5 W/m·K and a low thermal expansion coefficient of 4.5 to 5.5 × 10⁻⁶ /K, this advanced mullite ceramic material effectively resists thermal shock and maintains structural integrity under fluctuating temperatures. It is widely used in furnace linings, kiln components, and heat treatment equipment where superior heat insulation and mechanical strength are critical. Its robust chemical composition of 3Al2O3·2SiO2 ensures excellent corrosion resistance, further enhancing its performance in harsh industrial conditions.

The product is suitable for various application occasions, such as metallurgical processes, glass manufacturing, and chemical processing industries. It serves as an efficient thermal insulator in high-temperature reactors, combustion chambers, and thermal barriers, helping to improve energy efficiency and reduce heat loss. Its ability to withstand extreme heat and mechanical stress also makes it perfect for use in aerospace and automotive industries for components exposed to intense thermal environments.

KAMTAI's MOLAISHITAOCI mullite ceramic product is packaged securely in wooden boxes to ensure safe transportation and delivery within 30 days after payment. With a supply ability of up to 500,000 pieces per month and a minimum order quantity of 1000 pieces, it is an excellent choice for large-scale industrial projects. Pricing is negotiable, and payment terms are typically handled via TT, providing flexibility for international buyers.

In summary, this advanced mullite ceramic material from KAMTAI combines high-performance thermal insulation with remarkable mechanical properties, making it an indispensable component in industries requiring reliable and efficient heat management solutions. Whether for thermal insulation, structural support, or chemical resistance, the MOLAISHITAOCI model is engineered to deliver superior results in diverse scenarios and application occasions.

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Yixing City Kam Tai Refractories Co.,ltd

Contact Person: Mr. Bruce

Tel: 86-18351508304

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