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What is Metallized Alumina Ceramic?
2025-03-04

What is Metallized Alumina Ceramic?

                                                  (Metallized Alumina Ceramic Produced by Wintrustek)


Alumina ceramic can resists heat shock and has good compressive strength and thermal conductivity. Because of its low thermal expansion, it can be used in furnaces in the form of tubes, crucibles, and thermocouple sheaths. Alumina is a good material for ball valves, piston pumps, and deep drawing tools because of its high hardness and good resistance to wear. Additionally, brazing and metalizing processes make it simple to combine with metals and other ceramic materials.

 

Ceramic materials that have metal layers or coatings bonded to their surfaces using certain techniques are known as "metallized ceramics." This produces parts that enable dependable metal-to-ceramic sealing in industrial and electrical applications by fusing the conductivity of metal with the insulating and thermal qualities of ceramic. Ceramic metallization is the process of firmly adhering a layer of metal film to the ceramic surface. Realizing the welding of ceramic and metal is the primary function. A more sophisticated use is to create a circuit on the ceramic's surface, which can be used as a wire to transfer current in addition to being welded.


In the production of metallic ceramics, ceramic substrates are precisely CNC machined, and then metallic layers are applied using techniques such as physical vapor deposition or molybdenum-manganese metallization. In order to guarantee appropriate adhesion and electrical conductivity for a range of electronic and industrial applications, the components go through surface polishing, quality inspection, and high-temperature sintering to form robust metal-ceramic connections.

 

Typical metalized alumina ceramics are painted with molybdenum and then plated with nickel. The ceramic surface to be brazed is coated with a mixture of molybdenum and manganese particles, glass additives, and volatile carriers. The coating can be applied robotically, by spraying, or by hand painting.

 

Properties

  • Anti corrosion

  • High elasticity modulus

  • High strength of compression..

  • Abrasion resistance

  • High precision

  • Resistance to impact

  • Excellent stability

  • Superior high-tech ceramic materials

  • Excellent performance in welding sealing

  • Good insulation performance

  • great density and great toughness

  • Inertness of chemicals

  • Low thermal conductivity

  • Strong resistance to wear

  • Strong resistance to fracture

 

 

Applications

  • Defense

  • Electronics for medicine

  • Textile machinery

  • Automobile sector

  • Use of high power and high temperature

  • Electronics industry

  • Electrical transmission and distribution

  • Solid Oxide Fuel Cells

  • Avionics





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