Silicon carbide
attribute
Calorific Value
0.0
Heat Capacity
712.0
Mass
3.22000002861023
Max Pressure Resistance
623
Melting Point
2700
Oxygen Storage
300
Particle Penetration Rate
0.4
State
Solid
Synthesis Method
None
Thermal Conductivity
1.20000004768372
Synthesis
None
Silicon carbide is the block with the highest melting point and low thermal conductivity, making it an ideal thermal insulation material.
Obtaining method: First, the stone is crushed into dinas by a grinder, the coal is also powdered by a grinder, and then the coal-dians-mixture is synthesized from the dinas and the coal powder. The silicon carbide can be obtained by heating the mixture to 1000 degrees or more at one time.
Pay attention to the heating speed when burning (about 3s). If it is slow, the temperature will be less than 1000 degrees, it will become silicon block. An area can be preheated and fed to thecoal-dians-mixture in advance.
Obtaining method: First, the stone is crushed into dinas by a grinder, the coal is also powdered by a grinder, and then the coal-dians-mixture is synthesized from the dinas and the coal powder. The silicon carbide can be obtained by heating the mixture to 1000 degrees or more at one time.
Pay attention to the heating speed when burning (about 3s). If it is slow, the temperature will be less than 1000 degrees, it will become silicon block. An area can be preheated and fed to thecoal-dians-mixture in advance.
Structure
Material
Diesel
Water
Lead powder
Fine lead ore
Coarse lead ore
Lead ore
Lead
Sulphuric acid
Coal
Charcoal
Coal dians mixture
Silicon
Winding
Circuit board
Semiconductor
Chlorine
Uranium powder
Coal powder
Sulfur powder
Copper powder
Iron powder
Natural gas
Oil
Gas hydrate
Hydrogen
Dinas
Fine sulfur ore
Fine copperore
Fine iron ore
Coarse sulfur ore
Coarse copper ore
Coarse iron ore
Sulfur dioxide
Sulfur
Sulfur ore
Copper ore
Iron ore
soil
stone
Machine
Industry
Engine
Signal
Sensor
Logical
Nuclear
Weapon
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