Quartz Block
Quartz Block
Quartz Block
Quartz Block

Quartz Block

  • element:Silicon
  • purity:High Purity
  • shape:Block
  • specification:Customizable based on customer requirements
  • packaging:Customizable based on customer requirements

Quartz block is a high-purity material designed for exceptional thermal resistance, superior mechanical durability, and excellent chemical stability. Manufactured using advanced fusion techniques, it provides minimal thermal expansion, high structural integrity, and optimal transparency for specialized applications. This component is widely used in semiconductor fabrication, optical systems, industrial processing, and scientific research, ensuring reliable performance in high-temperature and precision environments.

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Product Overview
Quartz blocks are made from high-purity quartz material, known for their excellent high-temperature resistance and optical properties. These blocks are widely used in the photovoltaic (PV) industry, particularly during the production of solar cells, as key components in heating and annealing equipment. With strong chemical stability, quartz blocks effectively prevent the release of harmful substances at high temperatures, ensuring the high-quality production of photovoltaic cells.

Key Features

  • High-Purity Quartz: Made from high-purity quartz, ensuring no impurity release in high-temperature environments, guaranteeing the quality of photovoltaic products.
  • High-Temperature Resistance: Exceptional resistance to high temperatures, capable of withstanding working temperatures above 1000°C.
  • Chemical Stability: Strong resistance to chemical corrosion and atmospheric changes, suitable for various harsh process conditions.
  • Good Mechanical Properties: Quartz blocks maintain stable physical properties even in high-temperature and high-pressure environments.
  • Low Thermal Expansion Coefficient: Low thermal expansion coefficient helps maintain dimensional stability in high-temperature environments, reducing thermal stress.

Applications

  • Photovoltaic Industry: Primarily used in the heating and annealing processes of solar cell production, acting as a critical material for high-temperature parts of the equipment.
  • Solar Cell Manufacturing: Serves as a supporting material in production processes that require high-temperature conditions, ensuring stable quality of photovoltaic products.
  • Heat Treatment Processes: Suitable for use in other high-temperature heat treatment and annealing processes as a support and heating medium.
  • Semiconductor Industry: Can be used in high-temperature processing of semiconductor materials, providing a stable thermal environment.

 

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