1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath

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Overview of 1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath

1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath is manufactured from 99%+ pure aluminum oxide (Al₂O₃), delivering exceptional mechanical strength and thermal stability. These advanced ceramic parts maintain dimensional stability in extreme environments up to 1800°C, making them perfect for demanding applications in semiconductor equipment, aerospace components, chemical processing, and high-temperature industrial machinery.

Features of 1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath

Ultra-High Temperature Resistance – Withstands continuous operation up to 1800°C

Exceptional Mechanical Strength – Superior hardness and wear resistance compared to metals

Corrosion & Chemical Proof – Resists acids, alkalis, and harsh industrial chemicals

Electrical Insulation – Excellent dielectric properties for electronic applications

Customizable Designs – Available in complex geometries with tight tolerances (±0.01mm)

1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath

(1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath)

Specification of 1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath

This silicon carbide plate handles extreme heat in alumina electrolysis cells. It withstands temperatures up to 1600°C. This makes it perfect for lining the bath area. The bath holds molten materials. These materials are very corrosive. The plate resists chemical attack well. It keeps its shape and strength under tough conditions.

The plate is made from high-purity silicon carbide. This material is sintered under intense heat. This process creates a dense, strong structure. Density is critical. High density stops bath materials soaking in. It prevents erosion and cracking. The plate lasts longer because of this.

Thermal shock resistance is vital. Bath temperatures change quickly sometimes. The plate handles rapid heating and cooling cycles. It won’t crack or spall easily. This reliability reduces downtime. Downtime costs money.

Mechanical strength is another key point. The plate supports heavy loads. It must bear the weight of the bath materials. It must also handle physical stresses during operation. Its high strength prevents breakage. Operators can trust its durability.

Electrical insulation matters too. The electrolysis process uses powerful electric currents. The plate provides good electrical insulation. This keeps the process stable and efficient. It prevents unwanted electrical paths.

Use this plate for lining electrolysis bath sidewalls. It protects the cell structure. It keeps the bath contained and operating correctly. Its performance saves money. You need fewer replacements. Production stays steady. It offers a solid solution for demanding high-temperature applications.

1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath

(1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath)

Applications of 1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath

Alumina electrolysis baths operate under extreme conditions. These baths face very high temperatures and corrosive materials. This environment demands robust materials. The 1600°C refractory silicon carbide (SiC) plate excels here. Its core strength is handling intense heat. 1600°C is well within its capability. This prevents melting or warping inside the bath.

Corrosion presents a major challenge. The molten bath chemicals aggressively attack many materials. Silicon carbide offers outstanding chemical resistance. It withstands attack from the bath salts and gases. This resistance significantly extends the plate’s service life. It reduces costly shutdowns for replacements.

Thermal shock resistance is another key benefit. Bath operations involve temperature changes. SiC plates manage these rapid shifts effectively. They resist cracking or breaking. This reliability ensures stable bath operation over time.

Thermal conductivity matters greatly. SiC plates conduct heat efficiently. This helps maintain consistent bath temperatures. Uniform temperature distribution improves electrolysis efficiency. It supports better alumina dissolution and metal production.

Mechanical strength is essential. The plates bear physical loads within the cell structure. SiC provides high structural integrity. It resists cracking under pressure. This ensures the bath lining remains protected.

Using these SiC plates protects the cell lining. They act as a strong barrier. This barrier shields the underlying insulation and steel shell. Preventing premature failure saves money. It avoids major repairs.

The result is longer cell life. Reduced maintenance needs boost overall productivity. Production uptime increases. Operational costs decrease. These plates are a practical solution for demanding electrolysis bath applications.


Company Profile

Alumina Technology Co., Ltd,. We focus on the research and development, production and sales of alumina products, serving the electronics, ceramics, chemical and other industries. Since its establishment in 2005, the company has been committed to providing customers with the best products and services, and has become a leader in the industry through continuous technological innovation and strict quality management.


Our products includes but not limited to Alumina Boat, Alumina Crucible, Alumina Dish, Alumina Foam Filter, Alumina Plate, Alumina Rod, Alumina Bar, Alumina Balls, Filter Alumina, Nano Alumina Powder, Spherical Alumina Powder, ect. please feel free to contact us.(nanotrun@yahoo.com)



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By air, by sea, by express, as customers request.

5 FAQs of 1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath

1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath

(1600℃ Refractory SIC Silicon Carbide Plate for Alumina Electrolysis Bath)

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