• Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
  • Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
  • Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
  • Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling

Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling

Application: Aerospace, Electronics, Medical, Refractory, High Temperature/ High Vacuum Welding
Material Composition: Alumina, Al2O3
Speciality: High Insulation, High Strength
Type: Ceramic Parts
Treatment: Glazed, Polishing
Color: White+Metal
Manufacturer/Factory & Trading Company

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Fujian, China
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Basic Info.

Coating Thickness
8-30μm
Plated Layer
Nickel/Copper/Gold
Processing Service
Welding, Moulding
Plating Thickness
2-9μm
Max. Use Temperature
1600ºC
Transport Package
Carton Packing
Specification
Customized
Trademark
INNOVACERA
Origin
Fujian, China

Product Description

Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
 
Water-cooled power feedthroughs are often used in applications where high temperatures necessitate cooling. This includes high-amperage applications where the cooling allows more amperage to be pushed through the conductor without raising temperatures past specs.
 
The typical applications is the connection terminals of vacuum furnaces and heaters. There are also high-frequency coils that enter and exit water. Generally, they are low-voltage and high-current, and a small part of them are high-voltage. Because the current passing through is relatively large, it is concerned that the temperature generated by the current will be too high. Therefore, internal water is generally used for heat dissipation. The diameter of the existing electrode conductive rod is 12mm (200A), 16mm (350A), 20mm (500A), 30mm (1000A).
 
Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
Alumina Ceramic Properties
 
 
 
 
 
Properties
Units
 
Alumina Ceramic
 
 
Purity
wt%
 
95%
99%
99.8%
Volume Density
g/cm3
 
3.65
3.8
≥3.89
Water Absorption
%
 
0
0
0
Crystal SizeGrain Size
μm
 
4-5
4-5
4-5
Vickers Hardness, HV1.0
Gpa
 
14
1600
≥15
Flexural Strength
Mpa
 
300
310
≥300
Coefficient of Linear
Expansion
20-500
1x10-6 mm/
6.5-7.5
6.5-7.5
6.5~7.5
 
20-800
 
6.5-8.0
6.5-8.0
6.5~8.0
Thermal Conductivity
W/m·K( 20)
 
20
25
≥20.9
Specific Heat Capacity
KJ/(kg·K)
 
≥0.8
≥0.8
≥0.8
Dielectric Strength
KV/mm
 
≥12
15*106
≥12
Volume Resistivity
Ω·cm 20
 
≥1014
≥1014
≥1014
 
Ω·cm 300
 
≥1011
≥1011
≥1011
 
Ω·cm 500
 
≥109
≥109
≥109
Dielectric Constant
1MHz
 
9
9-10
9-10
Tangent of Dielectric Loss
1MHz
 
≤4x10-4
≤2x10-4
≤3x10-4
Surface Roughness
μm
 
0.4 After Machine
0.1-0.4 After Machine
0.1-0.4 After Machine
Max Working Temperature
 
 
1600
1600
1650
 
Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
Water-Cooled Power Feedthrough for High Temperatures Necessitate Cooling
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