Relative density for silicon nitride (SiN) is 3.18 Silicon nitride’s Morse hardness range is 9. It has a low coefficient of thermal expansion, excellent chemical stability, and high oxidation resistance. The material is decomposed into nitrogen and silica at the age of 1900. Silicon nitride has a very strong strength and is resistant to heat. Even at 1200°C, the strength of silicon nitride will not be affected. It won’t melt when heated. The material will continue to be inert until the year 1900. It can resist corrosion of nearly all organic and inorganic acids. Silicon nitride is hard and has a low coefficient of thermal extension. It also exhibits excellent thermal shock stability.
Silicon nitride properties
The product has good resistance to high temperatures.
High strength for fractures
Good bending strength.
Crescendo and mechanical fatigue
You can expect high wear resistance, hardness and impact resistance.
Superior resistance to thermal shock.
Thermoplastic expansion is low.
Insulator for electrical power.
High resistance to oxygenation
High resistance to chemical corrosion
What advantages does silicon nitride offer?
A low thermal expansion factor of silicon nitride makes it superior to other technical ceramics in terms of thermal shock resistance. It’s extremely durable, with a high melting point and excellent resistance to oxidation. It can therefore endure the toughest high temperature or high load conditions.
Silicon nitride bearings are used in spacecraft’s main engines. They have been identified as being one of few ceramic materials that can resist severe thermal shocks or thermal gradients caused by oxygen and hydrogen rocket engines. This material has proven to be reliable and completely reliable through the whole space shuttle programme.
Why is silicon Nitride used?
It is used for heat engine materials and insulating materials.
Silicon nitride clays can be used for combustion chambers of gas turbines, as well as for pipelines and valves of electromagnetic pumps. They are useful in conveying liquid aluminum, permanent mould, and molten-steel separation rings.
It has a low friction coefficient, and it is often used for high-temperature bearings. The working temperature of silicon nitride can exceed 1200F. This is 2.5x higher than the working temperature of normal alloy bearings. Its work speed is also 10 times greater than those of regular bearings.
A silicon nitride-ceramic with high electrical insulation and resistance to heat and cold can be used for an electric plug. It can significantly reduce engine start time, and allow the vehicle to begin quickly even in freezing weather.
High temperature resistance, good microwave permeability, high dielectric properties, as well as excellent heat strength make silicon nitride ceramics ideal for radar radomes in aircraft and missiles.
Silicon Nitride Price
Price is affected by many things, such as the demand and supply in the market and industry trends. Economic activity. Unexpected events.
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Silicon Nitride Supplier
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