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Carbon Carbon Crucible Support
Category:
Photovoltaic thermal field products
Summary:
Made of carbon fiber reinforced carbon based composite materials, it has advantages such as high temperature resistance, high strength, corrosion resistance, low thermal expansion, and lightweight, and is widely used in semiconductor, aerospace, metallurgy and other fields.
Keywords:
Keywords:
| Density (g/cm ³) | ≥1.3 |
| Bending strength (MPa) | ≥60 |
| Thermal expansion coefficient (10-6/℃) | <1.0 |
| Room temperature thermal conductivity (W/(m.k)) | ≥15 |
| Processing temperature (° C) | 2100 |
| Ash content (ppm) | ≤200 |
The Carbon Carbon Crucible Support is a high-performance component that plays a crucial role in various high-temperature industrial processes, especially in the semiconductor, solar, and metallurgical industries. Engineered with advanced carbon-carbon composite materials, this support offers exceptional strength, thermal stability, and chemical resistance, making it an ideal choice for supporting crucibles under extreme conditions.
The core of the Carbon Carbon Crucible Support lies in its unique material composition. Carbon-carbon composites are formed by reinforcing carbon fibers with a carbon matrix through a series of complex manufacturing processes. This results in a material that combines the high strength - to - weight ratio of carbon fibers with the excellent thermal and chemical properties of carbon. As a result, the crucible support can withstand high temperatures up to 2000°C or even higher, far surpassing the capabilities of traditional metal supports.
In high-temperature applications, such as single-crystal silicon growth in the semiconductor industry, maintaining the stability of the crucible is of utmost importance. The Carbon Carbon Crucible Support provides a reliable and rigid base for the crucible, ensuring that it remains in place during the growth process. Its low coefficient of thermal expansion minimizes the risk of thermal stress-induced deformation, which could otherwise affect the quality of the final product. This stability is crucial for producing high-quality semiconductor wafers and solar cells with consistent performance.
Another significant advantage of the Carbon Carbon Crucible Support is its excellent chemical resistance. In metallurgical processes where reactive chemicals and molten metals are involved, the support can resist corrosion and degradation, ensuring a long service life. It does not react with most molten metals, which is a common issue with metal-based supports. This property not only reduces the need for frequent replacements but also prevents contamination of the materials being processed, maintaining the purity and quality of the end products.
The design of the Carbon Carbon Crucible Support is also optimized for ease of use and maintenance. It is lightweight compared to metal supports, making it easier to handle and install. The smooth surface finish reduces the adhesion of molten materials, facilitating quick and easy cleaning. Additionally, the support can be customized according to specific customer requirements, including size, shape, and load-bearing capacity, to meet the diverse needs of different high-temperature processes.
Why Choose Us?
Our products are applied in numerous fields, including automotive, aerospace, rail transit, photovoltaic, wind energy, sports and leisure.
R&D
Jiyon's R&D team is dedicated to innovating carbon-ceramic brake discs, enhancing performance, durability, and safety. By optimizing materials, improving thermal stability, and reducing weight, we provide superior solutions for high-performance vehicles and motorsports. Jiyon leads industry innovation.
Innovation
Covers an area of 100 acres and has carefully built a carbon based composite material production and research and development base with an annual production capacity of 2500 tons.
Strict Quality Control
Our products are applied in numerous fields, including automotive, aerospace, rail transit, photovoltaic, wind energy, sports and leisure.
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