Dongguan Ming Rui Ceramic Technology Co.,ltd
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Gold Index: 16085
Place of Origin: | Guangdong, China (Mainland) |
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Chinese Machining Ceramic Parts With Injection Forming And Kiln Sintering
* Tests under room temperature environment;
* The above information is offered for comparison only. Exact
properties will vary depending on the manufacturing method
and part configuration.
Applications of Alumium Oxide Ceramics
- Seal faces
- Valve seats
- Machine components
- High temperature electrical insulators
- High voltage insulators
- Electronic components & substrates
- Ballistic armor
- Roller & Ball bearings
- Wear or corrosion resistant linings
- Semiconductor parts
- Laser cavities
- Tap plates
- Shot blasting nozzles
- Knife sharpeners
- Microwave components
- Frictionless clutches
- Kiln furnitures
Zirconium Oxide Ceramics
Zirconium Oxide (ZrO2 - also known as zirconia) is a material with very high resistance to crack propagation. Zirconia also has very high thermal expansion and is therefore often the material of choice for joining ceramic and steel. Another outstanding property combination is the very low thermal conductivity and high strength. Zirconium oxide ceramics are used, among other applications, as tools for wire forming, as auxiliaries in welding processes, as insulating rings in thermal processes.
Industrial Ceramic Intriduction
Aluminium Oxide, Al2O3 is the most widely applied and cost effective technical ceramic material. It offers a combination of superior mechanical strength and electrical properties, wear resistance and corrosion resistance. The maximum working temperature is up to 1700 °C with relatively high thermal conductivity. It is also an electrically insulating material with a high electrical resistivity. The good corrosion resistance makes it insoluble in water and slightly soluble in strong acid and alkaline solution.
Company Introduction
Mingrui ceramic manufacture and provides alumina ceramic components for a wide range of application like Mechanical Equipment, Electronic & Electrical, Oil Drilling, Medical, Chemical Industry etc. According to actual application and customer's requirement, the purities vary from 95%-99.7% and the forming methods will be different. The forming methods applied in our plant include dry pressing, isostatic pressing, injection moulding, extrusion moulding. With experienced engineers and talented workers, we are confident to offer high quality, high precision, complex components for customers worldwide.
Precision Ceramics has years of experience designing and developing technical ceramic solutions for a wide variety of applications and industries.Chinese Machining Ceramic Parts With Injection Forming And Kiln Sintering. We offer this expertise to all of our customers to ensure the best design and materials are chosen for their specific application and needs. Chinese Machining Ceramic Parts With Injection Forming And Kiln Sintering,Typically, our custom technical ceramic components and parts we supply are used for one of three main reasons:
Chinese Machining Ceramic Parts With Injection Forming And Kiln Sintering
High temperature ceramics – crucibles, nozzles, lasers, furnace/kiln fixtures
Chinese Machining Ceramic Parts With Injection Forming And Kiln Sintering
Wear and corrosion resistant ceramics – plates, housings, gages, caps/lids
Chinese Machining Ceramic Parts With Injection Forming And Kiln Sintering
Electrical insulation ceramics – contact blocks, standoffs, fasteners, spacers
Chinese Machining Ceramic Parts With Injection Forming And Kiln Sintering
Precision Ceramics is one of the world’s premiere technical ceramic suppliers – contact us to see what technical ceramics we can create for you.
Chinese Machining Ceramic Parts With Injection Forming And Kiln Sintering
General Characteristics of Materials:
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Characteristic
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Ceramics
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Metals
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Polymers
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Refractory
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Density
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Low to High
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Low to High
|
Low
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Low to Medium
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Hardness
|
High
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Medium
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low
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Medium
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Toughness
|
low
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High
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Medium
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low
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Wear Resistance
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High
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Medium
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low
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Medium
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Tensile Strength
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Low to Medium
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High
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low
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low
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Compressive Strength
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High
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Medium to High
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low to Medium
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High
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Young’s Modulus
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Medium to High
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Low to High
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Low
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Medium
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Dimensional Stability
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High
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low to Medium
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low
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/
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Thermal Expansion
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Low to Medium
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Medium to High
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High
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low
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ThermalConductivity
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Medium
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Medium to High
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Low
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Medium
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Thermal Shock
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Low
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Medium to High
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High
|
low to Medium
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Electrical Resistance
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High
|
low
|
High
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/
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Chemical Resistance
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High
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low to Medium
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Medium
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/
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Oxidation Resistance
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Medium to High
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low
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low
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/
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Machinability
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Medium
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low
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