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Description
Overview of Zirconium Dioxide Ceramics
Zirconium Dioxide Ceramics, known for their toughness and ability to withstand extreme temperatures, are widely used in medical, automotive, and industrial applications due to their unique properties.
Features of Zirconium Dioxide Ceramics
Exceptional fracture toughness
High thermal expansion
Excellent resistance to wear and corrosion
Biocompatibility for medical implants
(High Purity Monoclinic / Tetragonal Ultra-fine Zirconium Oxide ZrO2 Yttria Stabilized(YSZ) Zirconia Ceramic Powder)
Specifications of High Purity Monoclinic / Tetragonal Ultra-fine Zirconium Oxide ZrO2 Yttria Stabilized(YSZ) Zirconia Ceramic Powder
High Purity Monoclinic/Tetragonal Ultra-fine Zirconium Oxide ZrO2 Yttria Stabilized (YSZ) Zirconia Ceramic Powder is designed for advanced industrial applications. This material combines high chemical stability with exceptional mechanical properties. The powder achieves a purity level exceeding 99.9%, minimizing impurities that could affect performance. Particle sizes range between 0.1 and 0.5 microns, ensuring uniform distribution and dense sintering in final products.
The powder features a dual-phase structure of monoclinic and tetragonal crystal forms. This balance enhances fracture toughness and resistance to thermal shock. Yttria stabilization (3-8 mol%) locks the tetragonal phase at room temperature, preventing phase transitions during temperature changes. The result is a material stable in extreme environments, with operating temperatures up to 2000°C.
This zirconia ceramic powder excels in applications requiring durability and precision. It is ideal for solid oxide fuel cells, oxygen sensors, and thermal barrier coatings. The high surface area improves reactivity in catalytic processes. Medical fields use it for dental implants and prosthetics due to its biocompatibility. Electronics manufacturers rely on it for insulating layers and substrates.
Processing flexibility allows customization of particle size distribution and yttria content. The powder is compatible with techniques like dry pressing, injection molding, and slurry casting. Sintered components exhibit low porosity, high wear resistance, and superior strength. Chemical inertness makes it suitable for corrosive environments.
Strict quality control ensures batch-to-batch consistency. X-ray diffraction and electron microscopy verify phase composition and particle morphology. The material meets industry standards for advanced ceramics. Custom formulations address specific thermal, electrical, or mechanical requirements.
Storage recommendations include airtight containers in dry conditions to prevent moisture absorption. Handling precautions involve standard ceramic powder safety protocols. The product is available in research-scale quantities or bulk industrial orders. Technical support assists with integration into manufacturing processes.
(High Purity Monoclinic / Tetragonal Ultra-fine Zirconium Oxide ZrO2 Yttria Stabilized(YSZ) Zirconia Ceramic Powder)
Applications of High Purity Monoclinic / Tetragonal Ultra-fine Zirconium Oxide ZrO2 Yttria Stabilized(YSZ) Zirconia Ceramic Powder
High purity monoclinic and tetragonal ultra-fine zirconium oxide ZrO2 yttria-stabilized (YSZ) ceramic powder is a versatile material used in many industries. It has high strength, thermal stability, and chemical resistance. These properties make it ideal for advanced applications.
In electronics, YSZ ceramic powder is used to make solid oxide fuel cells (SOFCs). It conducts oxygen ions efficiently at high temperatures. This helps generate clean energy. It is also used in oxygen sensors for automotive exhaust systems. These sensors monitor emissions and improve fuel efficiency.
The medical field uses YSZ powder for dental implants and prosthetics. It is safe for use in the body and resists wear. Dental crowns made from YSZ last longer and look natural. It is also used in joint replacements due to its durability.
Industrial coatings benefit from YSZ ceramic powder. It forms protective layers on metal parts. These layers prevent corrosion and reduce friction. Turbine blades in jet engines use YSZ coatings to handle extreme heat. This improves engine performance and lifespan.
YSZ powder is important in ceramics and refractories. It strengthens materials exposed to high temperatures. Kiln linings and furnace parts made with YSZ withstand repeated heating cycles. This reduces maintenance costs in manufacturing.
The material is used in optical devices. It helps make lenses and windows resistant to scratches and heat. YSZ-based components are reliable in harsh environments. They are used in lasers and sensors for industrial equipment.
Research labs use YSZ powder to develop new materials. Scientists study its phase transitions and stability under different conditions. This helps improve existing applications and find new uses.
YSZ ceramic powder is key in additive manufacturing. 3D-printed parts made with it are precise and strong. This is useful for custom medical devices and complex industrial components.
The aerospace industry relies on YSZ for thermal barrier coatings. These coatings protect spacecraft and satellites from extreme temperature changes. They ensure equipment works reliably in space missions.
High purity YSZ powder is essential in nanotechnology. Its ultra-fine particles enable precise control in producing nanostructured materials. These materials are used in catalysts, sensors, and advanced electronics.
Company Introduction
Advanced Ceramics founded on October 17, 2014, is a high-tech enterprise committed to the research and development, production, processing, sales and technical services of ceramic relative materials and products.. Since its establishment in 2014, the company has been committed to providing customers with the best products and services, and has become a leader in the industry through continuous technological innovation and strict quality management.
Our products includes but not limited to Silicon carbide ceramic products, Boron Carbide Ceramic Products, Boron Nitride Ceramic Products, Silicon Carbide Ceramic Products, Silicon Nitride Ceramic Products, Zirconium Dioxide Ceramic Products, Quartz Products, etc. Please feel free to contact us.(nanotrun@yahoo.com)
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of High Purity Monoclinic / Tetragonal Ultra-fine Zirconium Oxide ZrO2 Yttria Stabilized(YSZ) Zirconia Ceramic Powder
What is High Purity YSZ Zirconia Ceramic Powder used for?
This powder is mainly used in advanced industrial applications. It works for thermal barrier coatings in jet engines and gas turbines. It is applied in dental implants, cutting tools, and electronic sensors. Its high stability makes it suitable for high-temperature environments.
Why add yttria to stabilize zirconia?
Pure zirconia changes structure under heat, causing cracks. Yttria stops this by keeping the material stable. The stabilized version stays strong at high temperatures. This makes it last longer in tough conditions.
How pure is the powder? Why does purity matter?
The powder is over 99.9% pure. High purity means fewer impurities that weaken the final product. Even small contaminants create defects. This level ensures better performance in critical uses like medical devices.
What is the difference between monoclinic and tetragonal phases?
Monoclinic zirconia is stable at room temperature. Tetragonal forms at higher temperatures. Yttria helps lock the material in a mix of tetragonal and cubic phases. This mix improves toughness and stops cracks from spreading.
How to store and handle this powder safely?
Keep it dry in sealed containers. Moisture causes clumping and affects performance. Avoid skin contact by wearing gloves and masks. Static electricity can be risky, so ground equipment properly.
(High Purity Monoclinic / Tetragonal Ultra-fine Zirconium Oxide ZrO2 Yttria Stabilized(YSZ) Zirconia Ceramic Powder)
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