Alumina Ceramic Terminal Blocks
Alumina Ceramic Terminal Blocks
Alumina Ceramic Terminal Blocks
Alumina Ceramic Terminal Blocks

Alumina Ceramic Terminal Blocks

  • element:Al₂O₃
  • purity:99%
  • shape:Busbar (Rail-type)
  • specification:Customized as per Customer Requirements
  • packaging:Customized Packaging per Customer Requirements

Alumina ceramic terminal blocks offer exceptional electrical insulation, optimized thermal stability, and superior mechanical durability. Designed for industrial applications, they ensure reliable connectivity, extended lifespan, and high-precision structural integrity.

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Product Overview:
Alumina Ceramic Terminal Blocks, also known as ceramic busbars, are designed for high-performance electrical equipment. These terminal blocks feature precisely machined holes and rail designs to provide accurate connections and fixation within electrical systems. The high hardness and strength of alumina ceramics ensure that the terminal blocks maintain structural stability even under high-pressure, high-temperature, and heavy-load conditions, thereby ensuring the safety and long lifespan of electrical equipment.

Product Features:

  • Precision-Machined Holes and Rail Design:Ensures stable and precise connections, optimizing the reliability of electrical systems.
  • High Hardness and Strength:Alumina ceramics possess a Vickers hardness of up to 15.7 GPa and a bending strength of 330 MPa, ensuring structural stability in high-pressure and high-temperature environments.
  • Superior Electrical Insulation:Guarantees safe operation in high-voltage environments, effectively preventing electrical faults.
  • Excellent High-Temperature Performance:Capable of maintaining performance at extreme temperatures of up to 1650°C, making it suitable for high-temperature operating environments.

Applications:

  • Electrical Equipment:Widely used in high-voltage and high-temperature electrical devices such as transformers, motors, and switchgear.
  • Industrial Applications:Suitable for industrial machinery and systems that require high precision and reliability, such as control systems and sensor interfaces.
  • High-Temperature Environments:Ideal for applications in heat treatment equipment, furnace temperature control systems, and other high-temperature industrial uses.
  • Specialized Equipment:Used in chemical processing equipment, laboratory instruments, and other fields requiring superior corrosion resistance and mechanical stability for critical connections and fixation.

 

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