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What is silicon nitride (SiN)?
Silicon nitride has the chemical formula Si3N4. It is a ceramic material of high strength, inherent lubricity and wear resistance. It is a atomic crystal and resists oxidation in high temperatures. It is also resistant to the impact of both cold and heat. It won’t be damaged if you heat it to over 1000degC and cool it quickly, then quickly heat it again. The excellent characteristics of silicon-nitride ceramic are the reason why it is used in many mechanical components, such as bearings and turbine blades. It can also be used to produce mechanical seal rings, permanent moldings, and more. When silicon nitride is used for the heating surfaces on engine components, it can not only improve the quality of an engine, but also fuel efficiency and thermal efficiency. China, Japan, the United States and other countries are developing such engines.
How to prepare silicon nitride
It is widely used in China. It is low cost and relatively easy. Metal silicon powder is heated with nitrogen or ammonia in an atmosphere. The metal silicon and nitrogen source directly react and form silicon nitride.
This method is cost-effective and requires little equipment. The metal silica powder nitridation is an exothermic process. If heat cannot be released at the right time during the process of nitriding, metal silicon powder nearby will melt and cause severe problems. The result of the nitriding. The nitriding process is controlled by the temperature, speed and particle size. The nitride silicon is not uniformly shaped. The silicon nitride must be prepared by other methods such as ball milling, which are not very efficient and introduce impurities into the process.
In the presence of high-temperature nitrogen, SiO2 is reduced with carbon powder. SiO2 is first converted to gas-phase SiO. Gas-phase SiO then reacts with the nitrogen in atmosphere to produce silicon nitride.
Thermal decomposition uses SiCl4 to react at low temperature with ammonia gas in order to obtain solid imino silica (Si(NH2)), or amino silica (Si(2)NH4). These two silicides may be decomposed under high temperatures in order to obtain nitride Silicon. This method can be used to prepare large quantities of high purity silicon nitride in a very short time. This method can produce silicon nitride that is high in purity and has uniform particle size. Currently, this method is used to produce high-quality and high-purity silicon nitride.
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