What is zirconia
Zirconium Dioxide has the chemical formula ZrO2. It is zirconium’s main oxide. Normal conditions result in a white, tasteless and odorless crystal. It’s insoluble with water, hydrochloric or dilute sulfuric acid. Chemically, it is inactive. Its properties include high melting point and resistivity, as well as high refractive indices and low thermal expansion coefficient.
Plasma method
A gas is ionized significantly when heated to 3000degC and nearly completely by 5500degC. The electron flow can cause a gas to reach high temperatures when heated by resistance under an electric field. Plasma is the name given to this highly dissociated and thermally conductive gas. Plasma cannot be produced by heating the gas. Instead, it is generally obtained through arc discharge. A plasma spray gun is the easiest plasma generator. It works by applying a direct-current voltage between two electrodes while passing a general inert (nitrogen, oxygen, argon or their mixtures) between them. By using a high frequency current or short circuit, a stable DC-arc is created between the two electrodes. This causes the gas to absorb energy, forming a plasma flame at a high temperature. The zircon fine-powder sent into flames is instantly decomposed to ZrO2 and siO2, with SiO2 being evaporated, and ZrO2 separated.
The plasma-produced high-purity ZrO2 is a unique material. Plasma ZrO2 particles are spherical, while m-ZrO2 Crystals are extremely fine. The practice has shown that ZrO2 crystalline materials formed at high temperatures are very active, and this is crucial for the production of high performance ceramic materials. Also, the plasma process is continuously being improved.
The ZrO2 high-purity produced can be adjusted in particle size to suit the customer’s needs. The high-purity ZrO2 produced is white. If the ZrO2 level is low, then it will be pale yellow or yellowish brown. Stable zirconia tends to be pale yellow. All zirconia materials mentioned above are in monoclinic phases.
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