Silicon nitride has an inorganic chemical formula of Si3N4. It is an important structural ceramic with high hardness. The material can also resist shocks of heat and cold. It can be heated to more that 1000 degrees Celsius in the atmosphere. If it is quickly cooled, then it does not break. The excellent properties of silicon-nitride ceramics is why it's often used in the manufacture of mechanical components, such as bearings. A silicon nitride-ceramics heat-receiving layer for engine components that is resistant to high heat and difficult to transmit heat can help improve the quality of diesel engines as well as save fuel.
For what purpose is Silicon Nitride?
Silicon nitride serves as a high quality refractory material. For example, SI3N4 SIC refractory is combined with sic. This fine-structure ceramic material is known for its uniformity and mechanical strength. It's also called the SI3N4BN-BN horizontal continuous casting seperation ring. This product meets all technical requirements and is very resistant to thermal shock.
Materials made of silicon nitride are extremely stable in temperature, resistant to oxidation, and have high dimensions. Covalent compounds with high bond strength can create an oxide protective shield in the atmosphere. Silicon nitride also exhibits good chemical stability. It doesn't oxidize, so it won't be affected by any molten metals.
These ceramic materials from silicon nitride are suitable for use in high temperature engineering components, advanced and complex refractory materials, chemical industry corrosion-resistant, sealing and cutting components as well.
The strong bond that silicon nitride makes with aluminum dioxide, silicon carbide or thorium oxide is what allows it to be used in modification.
You can use silicon nitride in solar cells. When the silicon nutride film has been coated with the PECVD procedure, it can serve as an antireflection film that reduces incident light. However, the hydrogen molecules of the reaction product are also introduced to the silicon wafer during deposition. These acted as passivation defect. However, this atomic relationship of silicon silicon nitride with silicon nitride does not necessarily equal 4:3. It is subject to fluctuations due to process conditions. Also, different physical properties of films that correspond to different atomic relationships can have different physical characteristics.
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