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Alumina Ceramic Components
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Ceramic Housing
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Metallized Alumina Ceramics
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Custom Ceramic Parts
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Alumina Ceramic Insulator
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Alumina Ceramic Rings
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Pressure Sensor Ceramic
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Advanced Technical Ceramics
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Advanced Engineering Ceramics
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Fuse Ceramic
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Ceramic Connector Blocks
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Electronic Ceramic Components
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Magnetron Ceramic
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Zirconia Ceramic Parts
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Alumina Ceramic Rods
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Mr.FarnReply very fast and easy to talk!
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Mr.JacksonGood service and nice to talk.
High Hardness Density Zirconia Ceramic Parts 6.0g/cm3 3.9g/cm3

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Whatsapp:0086 18588475571
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Skype: sales10@aixton.com
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xProduct Name | Zirconia Ceramic Parts / Structural Machining Ceramic Parts | Heat Expansion Rate (10-6K-1) | 10 |
---|---|---|---|
Tensile | 30 Kpsi - 32 Kpsi | Flexural | 55 Kpsi - 60 Kpsi |
Compressive | 300 Kpsi - 330 Kpsi | Density | 6.0g/cm3 And 3.9g/cm3 |
Fine-machining | CNC | Forming Process | Isostatic Pressing |
C.O.T.E | 75 In / In°C (x10^7) - 78 In / In°C (x10^7) | Working Temperature | 1500 °C - 1750 °C |
Dielectric Constant | 9.5 - 9.8 | Volume Resistivity | >10^14 Ohm-cm |
Dielectric Strength | 16 KV/mm - 20 KV/mm | ||
Highlight | irconia Ceramic Parts 3.9g/cm3,6.0g/cm3 Zirconia Ceramic Components |
Zirconia Drawing Machine Tower Round , Wire Wheels , Reel.
1. Description:
In the form of an industrial laser, fire is now a common technology for cutting and drilling sintered sheets of alumina, aluminum nitride, and zirconia.Initially developed for the electronics industry, where thin sheets of electrical insulation were cut, drilled, and prepared to be turned into insulators or as the base for a specific electronic device, conductive tracks and pads could easily be added at a later stage to enable precise fabrication. The laser can be programmed to repeat patterns and, as no other tooling is required, the process is still fast and efficient.
The industrial lasers we use are generally low power, which restricts the thickness of the ceramic sheets we can machine. In alumina, we can laser cut up to 0.120” thick. In aluminum nitride, which is more difficult to laser cut, as it conducts heat better than alumina, we can laser cut up to 0.85” thick. Most of these start as 4” x 4” substrates. These can be tape cast, lapped, or polished; processes which are more practical and economical to carry out before laser machining.
1) High density.
2) High fracture toughness .
3) High hardness High Mechanical Strength.
4) Low thermal conductivity Excellent insulation .
5) Good Wear resistance.
6) Resistant to Corrosion and Chemical Attack.
7) Extreme Temperature Stability.
8) Outstanding Electrical and Electronic Properties.
3. Material Features / Properties:
Color | White or Ivory | White or Ivory | White or Ivory | |
Density | g/cm 3 | 3.82 | 3.9 | 3.92 |
Hardness | HRA | 83 | 85 | 85 |
Flexural Strength | Mpa (psi*10 3 ) | 375 | 386 | 381 |
4. Technical Parameters:
Technical Parameters of Ceramics | ||||||||
Items | Test Conditions | Unit or Symbol | 99% AL2O3 | 95% AL2O3 | 90% AL2O3 | Zirconia | Steatite | Silicon Carbide |
Volume Density | -- | g/cm3 | ≥3.70 | ≥3.62 | ≥3.40 | ≥5.90 | ≥2.60 | ≥3.08 |
Tightness | -- | Pa·m³/s | ≤1.0×10-11 | ≤1.0×10-11 | ≤1.0×10-11 | - | - | - |
Liquid Permeability | -- | -- | Pass | Pass | Pass | Pass | - | |
Flexural Strength | - | MPa | ≥300 | ≥280 | ≥230 | ≥1100 | ≥120 | ≥400 |
Elastic Modulus | - | GPa | - | ≥280 | ≥250 | ≥220 | - | 400 |
Poisson Ratio | - | - | - | 0.20~0.25 | 0.20~0.25 | - | - | - |
Thermal Shock Resistance | 800℃( Room Temperature) Cycle: 10 times | Pass | Pass | Pass | - | - | - | |
Coefficient of Linear Expansion | 20℃~100℃ | ×10-6 K-1 | - | - | - | ≤8 | - | |
20℃~500℃ | ×10-6 K-1 | 6.5~7.5 | 6.5~7.5 | 6.5~7.5 | 6.5~11.2 | - | - | |
20℃~800℃ | ×10-6 K-1 | 6.5~8.0 | 6.5~8.0 | 6.3~7.3 | - | 4 | ||
20℃~1200℃ | ×10-6 K-1 | - | 7.0~8.5 | - | - | - | - | |
Coefficient of Thermal Conductivity | 20℃ | W/(m·k) | - | - | - | - | - | 90~110 |
1000℃ | ||||||||
Dielectric Constant | 1MHz 20℃ | - | 9.0~10.5 | 9.0~10 | 9.0~10 | - | ≤7.5 | - |
1MHz 50℃ | - | - | 9.0~10 | - | - | - | - | |
10GHz 20℃ | - | 9.0~10.5 | 9.0~10 | 9.0~10 | - | - | - | |
Volume Resistivity | 100℃ | Ω·cm | ≥1.0×1013 | ≥1.0×1013 | ≥1.0×1013 | - | ≥1.0×1012 | - |
300℃ | ≥1.0×1013 | ≥1.0×1010 | ≥1.0×1013 | - | - | - | ||
500℃ | ≥1.0×109 | ≥1.0×108 | -- | - | - | - | ||
Disruptive Strength | D.C | kV/mm | ≥17 | ≥15 | ≥15 | - | ≥20 | - |
Chemical Durability | 1:9HCl | mg/c㎡ | ≤0.7 | ≤7.0 | - | - | - | - |
10%NaOH | mg/c㎡ | ≤0.1 | ≤0.2 | - | -- | - | - | |
Grain Size | - | μm | - | 3~12 | - | - | - | - |
5. Process Flows:
Formulating --- Granulating --- Forming --- Sintering --- Grinding --- Printing --- Nickel Plating --- Assembing --- Brazing --- Inspecting --- Packing
6. Application Fields:
Widely apply for new energy vehicles, charging piles, solar power generation, energy storage and power storage system, electric vehicle power system and so on.
7. Production Facilities: Prilling Tower , Forming Machine , High Temperature Sintering Kiln
8. Detection Devices:
Electric Performance Tester , Film Thickness Analyzer , Granulometer , Helium Mass Spectrometer Leak Detector , Universal Pull Force Meter
9. Order Flow Steps as belows: Inquiry ---Quotation --- Place an order --- Production --- Delivery
10. Our advantages: Quality Assurance ; Price Competitive ; Factory Supply Directly ; Good Service
11.Shipping and Package:
12. Our aimed market :
Notes:Above information only for reference and please contact with us for more details freely when you have any inquiry!