99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency

Product Details
Application: Heat Exchanger, Refractory Lining, Thermal Insulation
Material: Alumina Ceramic
Shape: Plate
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  • 99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency
  • 99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency
  • 99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency
  • 99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency
  • 99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency
  • 99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency
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Basic Info.

Flexural Strength
300MPa
Max Use Temperature
1600°c
Color
White
Processing Service
Welding, Moulding
Material Option
96%, 99%, 99.7% Alumina
Type
Ceramic Plates
Transport Package
Standard Safety Cartons with Plastic Foams
Specification
Customized
Trademark
INNOVACERA
Origin
Fujian, China
Production Capacity
100000 Piece/Pieces Per Month

Product Description

 
Innovacera produced precision ceramic components which have a positive effect on durability in the photovoltaic industry. Advance ceramic components play a important role in solar energy technology and improve efficiency in various areas of photovoltaic systems.
 
Below is some typical ceramic products for Photovoltaic industry.
Ceramic insulation rings for thermal decoupling in solar systems.
Ceramic encapsulation offer superior thermal conductivity, facilitating efficient heat dissipation from the solar cells, thereby mitigating thermal stress and enhancing overall performance. Also provide a robust barrier, safeguarding the delicate solar cells throughout their operational lifespan.


 
99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency
Ceramic heat sinks protect from overheating in high-concentration photovoltaic systems. Fine ceramic bearings and bushings are used in the drives of tracked photovoltaic systems.Ceramic rollers give precise rolling of flat wires in PV systems.High thermal ceramic substrates for solar application.
99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency
99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency

Ceramic components are widely use in the photovoltaic industry is because of their excellent properties in corrosion resistance,good electrical insulator and mechanical strength. So the alumina ceramic, zirconia ceramic, silicon nitride ceramic, aluminum nitride is ideal ceramic material for making ceramic part for photovoltaic industry.

 
99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency
99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency

Photovoltaic system needs ceramic suction plate, ceramic rack, ceramic top tooth block, top comb pins, side comb plates as below are very hard to machine because it needs high quality control in the flatness, deformation and surface finish and Innovacera make it.

In addition to their electrical and thermal properties, ceramic parts contribute to the optical enhancement of solar panels.Ceramics play a crucial role in the manufacturing of solar commentators, which focus sunlight onto photovoltaic cells to intensify energy generation. Ceramics, with their ability to withstand high temperatures and harsh operating conditions, serve as ideal materials for the fabrication of concentrator components, ensuring long-term performance and reliability.


 
99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency
99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency

Alumina Ceramic Property
Property
Unit
92% Alumina Ceramic
95% Alumina Ceramic
99% Alumina Ceramic
Density
g/cm3
≥3.63
≥3.68
≥3.83
Water absorption
%
O
O
O
Sintering temperature
°C
1500-1700
1600-1800
1700-1800
Hardness
HV
≥1400
≥1500
≥1650
Flexural strength
Kgf/cm2
3000
3000
3000
Compressive strength
Kgf/cm2
24000
25000
26000
Fracture toughness
Map.m3/2
3~4
3~4
4~5
Maximum temperature
°C
1600
1700
1800
Coefficient of thermal expansion
/°C
8*10-6
8*10-6
8*10-6
Heat shock
T(°C)
220
220
220
Thermal conductivity
W/m.k(25-300°C)
25 14
25 14
25 14
 
20°C
 
>1012
>1012
>1012


99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency99.7% Alumina Ceramic Components Ceramic Handling Arm Improve Photovoltaic Efficiency

 

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