Zirconium dioxide (chemical name: ZrO2), is zirconium's main oxide. It's a powder with an odorless, white color.
Purity: 99.5%
Pebble size: 20nm - 200nm
Zirconium oxide ZrO2 powder:
Zirconium dioxide also known as Zirconia or zirconium , is a white-crystalline oxide of zirconium . The mineral baddeleyite, which is a monoclinic crystal structure, is its natural form. The cubic zirconia dopant stabilized cubic structured zirconia can be made in different colors and used as a gem or a replica of a diamond.
Zirconia does not react chemically. Concentrated sulfuric acid or hydrofluoric acid slowly destroy it. If heated, it becomes zirconium carbonide. If heated in chlorine with carbon, it becomes zirconium trichloride.
Zirconiumoxid has been one of the most researched ceramic materials. ZrO2 is a monoclinic crystal at room temperature, but transitions to tetragonal at higher temperatures. When the structure shifts from monoclinic, to tetragonal, to cubic it experiences large volume changes that cause cracking upon cooling at high temperatures.
It is possible to identify three types of phases. It is common to see higher symmetry at higher temperatures. The cubic phase is stable for a very small number of the ytrium and calcium oxides. Cubic is also the case for rare minerals like tazheranite (Zr Ti and Ca)O2. TiO2 has six-coordinated Ti in all phases. Monoclinic Zirconia, however, has seven coordinated zirconium center. The zirconium-titanium atom is larger than the one in monoclinic zirconia.
ZrO2 bands are dependent upon the phase of the material (cubic or tetragonal), and methods used to prepare it. The typical values range between 5-7 eV. Tetragonal zirconia Polycrystal (TZP) is an exceptional case of zirconia. It is made up of the metastable phase of zirconia and is therefore a special example of polycrystalline zirconia.
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Zirconium oxide ZrO2 powder performance:
Inactive zirconium dioxide chemically has high melting points, high resistanceivity and low coefficients of thermal expansion. This makes it important as a high temperature resist material, ceramic insulation material and ceramic sunblock. raw material. The band gap lies between 5-7eV and 5-8eV.
Technical Parameters of Zirconium Oxide ZrO2 Powder :
Zirconium Oxide particle size: 200nm
Zirconium Oxide crystal monoclinic:
Zirconium Oxide purity: 99.9%
Fe2O3 content: <=0.003
SiO2 content: <=0.003
TiO2 content: <=0.03
Al2O3 content: <=0.002
Na2O content: <=0.001
CaO content = =0.002
How does Zirconium oxide ZrO2 Powder get made?
Stable zirconia forms the bulk of industrial refractory materials. To the zircon fuse, carbon and stabilizable Calcium oxide were combined. The solution was then used to produce a solid solution. Finally, stably Zirconia, which was made from the combination of the zirconia, calcium oxide, and carbon, was used for forming a solid mixture. The majority of stable, partially stabilized zirconia used for fine ceramics was prepared using wet.
It is also the most popular and widely used method. Pure water is used to dissolve the purified chloride Zirconium. Then, filter the insoluble matter and adjust the concentration of the solution. Add the cerium chloride solution or other rare earth metals, as well as ammonia Water Medium, for precipitation. Hot water was used to wash the precipitate. Then it was dried, filtered and calcined. You can make ultrafine zirconia dust by treating the calcined material.
To control how much stabilizer is used, partial stabilization of zirconia can be done. This is necessary to maintain stability. Partially stabilized zirconia is strong and resistant to thermal shock, so it has a wide range of applications in structural ceramics.
Zirconium Oxide ZirO2 powder:
Metal zirconium or zirconium compound, fire bricks/crucibles, high frequency ceramics, and abrasive material, as well as ceramic pigments. Zirconates can be used for piezoelectric ceramic products and daily ceramics.
Refractory
Zirconia fibers can be described as a polycrystalline refractory fibre material. Because of its high melting temperature, non-oxidation, and other excellent high-temperature characteristics, ZrO2 fibers have higher use temperatures that other refractory fibres like alumina, mullite, or aluminum silicate fibers. Zirkonia fibers can be stored for extended periods in extremely high temperature oxidation conditions above 1500°C. The highest temperatures are as high at 2200°C and as low as 2500°C. Even 2500°C is able to retain a full fiber shape. Fiber material.
Gas turbine
A plasma spray zirconium oxide thermal barrier coating has made tremendous progress on-air gas turbines. This has been applied to turbine sections of gas turbines in a limited range. The coating is capable of reducing the temperature from 50 to 200°C of the hot-temperature members. This can greatly improve their durability, temperature, and maintain high temperatures. This improves the efficiency of your engine.
Zirconium Oxide Ceramic Material
The refractive value of zirconia, which is also large and has high melting points, is strong enough to be used in the industry for kilns. The products of piezoelectric ceramic are filters, speakers and ultrasonic detectors. You can also find zirconium tubes, industrial ceramic glazes and zircon tile for precious metals smelting. The nano-grade zirconia is also used to polish, glaze, and create high-temperature pigment matrix materials.
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Additionally, zirconia may be used for the production of enamel, white-hot gas masks and the white glass refractorycrucible. X-ray photography. Grinder material. The light source lamp is made from thick circuit capacitive material and piezoelectric crystal transducer formulations for infrared meters.
Zirconium Oxide powder storage conditions :
Zirconium Oxide ZrO2 should be stored dry, cool, and sealed.
Shipping and Packing of Zirconium oxide ZrO2 Powder :
You can pack it in two plastic bags with the inside.
Zirconium Oxide ZrO2 powder packing - vacuum packaging, 100g, 500g, 1kg/bag or 25kg/barrel. Or as requested.
Zirconium oxide ZrO2 Powder Shipping: Can be sent by sea or air as soon as payment receipt is received.
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