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High Wear Resistance Alumina Ceramic for Industrial Electric Insulation and Applications

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High Wear Resistance Alumina Ceramic for Industrial Electric Insulation and Applications

Product Description:

Introducing our premium Alumina Ceramic, a high-performance material known for its exceptional properties and versatility. Alumina Ceramic, also referred to as Al2O3, is a widely used ceramic material prized for its excellent thermal and mechanical characteristics.

One of the key attributes of our Alumina Ceramic product is its low Thermal Expansion Coefficient of 8.3 × 10^-6/℃, making it highly resistant to thermal shock and capable of withstanding extreme temperature variations without compromising its structural integrity. This property ensures reliable performance in demanding thermal environments, making it a preferred choice for various industrial applications.

Furthermore, our Alumina Ceramic boasts an impressive Dielectric Strength of 15 KV/mm, highlighting its superior electrical insulation properties. This exceptional dielectric strength makes it ideal for applications requiring dependable electrical insulation and protection against voltage breakdown, ensuring safe and efficient operation in electrical systems.

With a Melting Point of 2072°C, our Alumina Ceramic product exhibits outstanding thermal stability and can withstand high operating temperatures without softening or deforming. This high melting point enables it to maintain its structural integrity and performance under extreme heat conditions, making it a reliable choice for applications requiring heat resistance and thermal durability.

In addition to its thermal and electrical properties, our Alumina Ceramic is renowned for its remarkable Tensile Strength of 200 MPa, providing excellent mechanical strength and resistance to mechanical stresses. This high tensile strength ensures the material's durability and reliability in demanding mechanical applications, where superior strength and toughness are essential.

Overall, our Alumina Ceramic product offers a unique combination of thermal, electrical, and mechanical properties, making it a versatile and high-performance material for a wide range of industrial applications. Whether you need exceptional thermal stability, reliable electrical insulation, or superior mechanical strength, our Alumina Ceramic is the ideal choice for meeting your demanding requirements.


Features:

  • Product Name: Alumina Ceramic
  • Application: Industrial Ceramic
  • Tensile Strength: 200 MPa
  • Thermal Expansion Coefficient: 8.3 × 10^-6/℃
  • Elastic Modulus: 380 GPa
  • Dimensional Tolerance: ±0.001 mm

Technical Parameters:

Manufacturing MethodDry Pressing Or Isostatic Pressing
Wear ResistanceHigh
Dielectric Strength15 KV/mm
Melting Point2072°C
Materials92% Alumina Powder
MachinabilityDifficult
SizeVarious Sizes Available
Dimensional Tolerance±0.001 Mm
Tensile Strength200 MPa
Thermal Expansion Coefficient8.3 × 10^-6/℃

Applications:

One key attribute of Alumina Ceramic is its low Thermal Expansion Coefficient of 8.3 × 10^-6/℃. This property makes it ideal for applications where thermal stability is crucial, such as in high-temperature environments or thermal management systems.

Another notable feature of Alumina Ceramic is its high Dimensional Tolerance of ±0.001 mm. This precise dimensional control allows for the manufacturing of intricate components with tight tolerances, making it perfect for use in precision engineering applications.

Alumina Ceramic is available in Various Sizes, offering flexibility in design and application. Whether it's small intricate parts or large structural components, Alumina Ceramic can be tailored to meet the specific size requirements of different projects.

The Elastic Modulus of Alumina Ceramic is 380 GPa, indicating its excellent stiffness and resistance to deformation under stress. This property makes it suitable for applications where high mechanical strength is essential, such as in structural components or load-bearing parts.

Overall, the superior material properties of Alumina Ceramic, or Al2O3, make it an excellent choice for a wide range of applications, including but not limited to electrical insulators, wear-resistant components, cutting tools, biomedical implants, and more. Its combination of thermal stability, dimensional accuracy, size variability, and high elastic modulus make it a go-to material for demanding environments and applications.


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