氧化锆陶瓷矩形板状merits

氧化锆陶瓷矩形板状结构件是一类兼具高强度、高韧性与优异耐磨性能的先进陶瓷部件。材料本身的“相变增韧”机制,在保持陶瓷耐腐蚀、耐高温特性的同时,大幅提升抗裂与抗冲击能力,广泛应用于自动化设备承载板、耐磨衬板、精密支撑基板、半导体设备结构件等领域。

Description

氧化锆陶瓷矩形板状-氧化锆陶瓷异形板-氧化锆陶瓷安装基板-氧化锆陶瓷可加工-来图定制

氧化锆陶瓷矩形板状的优点

氧化锆陶瓷矩形板具有高强度、高韧性和优异耐磨性能,抗冲击能力强,不易开裂。其耐腐蚀、耐高温,尺寸稳定性好,适合精密装配。板状结构受力均匀,适用于承载与支撑。广泛应用于自动化设备、机械结构、半导体及化工领域,具备寿命长、稳定性高等优势。

  • 高强度高韧性,抗冲击更可靠
  • 相变增韧结构,使用更稳定
  • 超耐磨性能,寿命更长
  • 耐腐蚀能力强,适应复杂工况
  • 板状结构稳定,承载更均匀
  • 高精度加工,适配精密设备

Application of magnesium-stabilized zirconia ceramics

Magnesium-stabilized zirconia ceramics are widely used in several fields due to their unique performance characteristics:

1. Industrial applications:
Wear-resistant parts: Used in the manufacture of highly wear-resistant mechanical parts, such as pump bushings, sealing rings and valve components, which can significantly extend the service life of the equipment.
Cutting tools: Used in the manufacture of cutting tools and cutting tools, due to its high hardness and wear resistance can maintain good performance in high-precision machining.

2. Aerospace:
High-temperature components: Used as high-temperature structural components in aero-engines and gas turbines, capable of withstanding extremely high temperatures and pressurized environments.
Thermal Barrier Coatings: Surface coatings for turbine blades and other high-temperature components that provide excellent thermal protection.

3. Electronic and electrical:
Insulators and substrates: Used as insulators and substrates for high-frequency circuits and power electronics due to their excellent electrical insulation properties and thermal stability.

4. Chemicals and energy:
Catalyst Carrier: Used in the chemical industry as a catalyst carrier, providing good chemical stability and high temperature performance.
Fuel Cell Components: Used as an electrolyte material in solid oxide fuel cells, its ionic conductivity and high temperature resistance enhance cell efficiency and life.

Magnesium-stabilized zirconia ceramics play a key role in a variety of fields thanks to their excellent physical and chemical properties, significantly enhancing the performance and durability of equipment.

Basic properties of magnesium-stabilized zirconia ceramics

Magnesium-stabilized zirconia ceramics use magnesium oxide (MgO) as a stabilizer for zirconia, and the crystal structure is cubic lattice after molding, which is more stable. Magnesia-zirconia has better resistance to high temperature and humidity because it is not affected by phase migration. Magnesia-zirconia maintains its strength even in humid, high-temperature environments where the mechanical properties of yttrium oxide partially stabilized zirconia begin to deteriorate.

  • Color: yellow
  • Density: 5.7 g/cm3
  • Hardness: 11.8 GPa
  • Maximum working temperature: 2000°C
  • Thermal conductivity: 2.2W.(MK)-1
  • Flexural strength: ≥900 Mpa
  • Fracture toughness: >7.0 (Mpa.m1/2)
  • Coefficient of thermal expansion (0~1400℃): 10.2×10-6/℃

Suppliers of Magnesium-stabilized zirconia ceramics

To Good Ceramics is a professional ceramic supplier, we have many years of experience in producing high quality precision ceramic parts. We utilize our experienced team and in-depth knowledge of ceramic materials to create the best precision ceramic products for our customers at competitive prices.

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