Product

Silicon Carbide Rod

Silicon carbide (SiC) rod is a type of heating element made from a ceramic material that is highly durable and can withstand extremely high temperatures. It is commonly used in industrial heating applications such as melting and processing metals, ceramics, and glass.

Additional information

Application

Crystals, Electronic componets, Glass, Metallurgy, Refractory material

Package

Wooden Box

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Product Description

Silicon Carbide Rod is a type of heating element made from silicon carbide, a highly durable and heat-resistant material. It is commonly used in high-temperature industrial heating applications such as furnaces, kilns, and other thermal processing equipment.

Silicon Carbide Rods are designed to provide rapid and uniform heating, even in the most challenging high-temperature environments. They are capable of operating at temperatures up to 1600°C, making them ideal for use in applications where other heating elements would fail.

Silicon Carbide Rods are typically manufactured by mixing silicon carbide powder with binders and then extruding the mixture into the desired shape. The extruded shape is then sintered at high temperatures to form a solid and durable heating element.

Silicon Carbide Rods are highly durable and can withstand thermal shock, mechanical shock, and chemical attack. They also have a high resistance to oxidation, which makes them ideal for use in air and oxygen-rich environments.

Overall, Silicon Carbide Rods are a popular choice for high-temperature industrial heating applications because of their durability, reliability, and efficiency.

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Physical And Chemical Indicators

Please check the pictures of 5th.
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Product Applications

  • Industrial heating applications such as melting and processing metals, ceramics, and glass.
  • Kilns for firing ceramics and glass.
  • High-temperature furnaces for heat treatment, annealing, and sintering.
  • Semiconductor manufacturing equipment.
  • Environmental test chambers.
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Product Advantages

  • Can withstand extremely high temperatures up to 1600°C.
  • Faster heating times compared to other heating elements.
  • Longer lifespan, with the ability to withstand repeated thermal cycling.
  • Greater resistance to oxidation and corrosion than other materials.
  • Highly efficient, allowing for more precise temperature control and lower energy consumption.
  • High strength and rigidity, even at high temperatures.
  • Ability to produce uniform heating over the entire length of the rod.
  • Compatible with a wide range of process atmospheres, including vacuum, inert, and oxidizing environments.

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