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Silicon Carbide (SiC) Powder - by Metallography World Corporation

Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges.  Silicon Carbide also has the resistivity necessary to perform as a semiconductor material.  Because of these properties, Silicon Carbide is used in a wide range of applications and industries.   Silicon Carbide is produced by heating silica sand and a carbon source, typically petroleum coke, to high temperatures in a large, open “Acheson” furnace.  The result of this high-temperature process is the crystalline form of Silicon Carbide grains, of both Green and Black coloring.  The color difference is due to the purity of the silicon carbide.  Green SiC coloring is a result of fewer impurities than the Black SiC.  Metallurgical Supplies offers both Macro and Micro grit sizing.  Our Silicon Carbide is offered in standard FEPA sizes, custom particle sizes, custom densities, and custom chemistries. 

Black Silicon Carbide (SiC) Properties

  • High Hardness
  • Chemical Inertness
  • High Thermal Conductivity
  • Abrasion / Wear Resistance
  • Abrasive
  • Low Coefficient of Thermal Expansion
  • Thermal Shock Resistance
  • Strength at High-Temperature Ranges
  • Electrical Conductivity

Black Silicon Carbide (SiC) Application's

  • Abrasives
  • Sintered Parts
  • Hot-Pressed Parts
  • Reaction Bonded Parts
  • Metal Matrix Composites
  • Wire-saw
  • Body Armor
  • Vehicle Armor
  • Heat Transfer / Thermal Management
  • High Temp Sensors
  • Ceramic Wear Parts
  • Refractory
  • Grinding
  • Milling
  • Lapping

Typical Silicon Carbide (SiC) Properties Sic is an artificial (man-made) mineral known for its very high hardness and abrasion resistance. Common applications include pump seals, valve components, and wear-intensive applications such as rollers and paper industry retainers.

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F1200 - 3.0 ±0.5μ - Black Silicon Carbide (SiC), 1lb

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F1200 - 3.0 ±0.5μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide als..

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F1000 - 4.5 ±0.8μ - Black Silicon Carbide (SiC), 1lb

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F1000 - 4.5 ±0.8μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide als..

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F800 - 6.5 ±1μ - Black Silicon Carbide (SiC), 1lb

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F800 - 6.5 ±1μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide also h..

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F600 - 9.3 ±1μ - Black Silicon Carbide (SiC), 1lb

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F600 - 9.3 ±1μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide also h..

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F500 - 12.8 ±1μ - Black Silicon Carbide (SiC), 1lb

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F500 - 12.8 ±1μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide also ..

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F400 - 17.3 ±1μ - Black Silicon Carbide (SiC), 1lb

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F400 - 17.3 ±1μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide also ..

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F360 - 22.8 ±1.5μ - Black Silicon Carbide (SiC), 1lb

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F360 - 22.8 ±1.5μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide als..

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F320 - 29.2 ±1.5μ - Black Silicon Carbide (SiC), 1lb

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F320 - 29.2 ±1.5μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide als..

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F280 - 36.5 ±1.5μ - Black Silicon Carbide (SiC), 1lb

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F280 - 36.5 ±1.5μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide als..

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F240 - 44.5 ±2μ - Black Silicon Carbide (SiC), 1lb

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F240 - 44.5 ±2μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide also ..

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F230 - 53 ±3μ - Black Silicon Carbide (SiC), 1lb

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F230 - 53 ±3μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide also ha..

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F220 - 58μ - Black Silicon Carbide (SiC), 1lb

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F220 - 58μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide also has t..

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F180 - 69μ - Black Silicon Carbide (SiC), 1lb

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F180 - 69μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide also has t..

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F150 - 82μ - Black Silicon Carbide (SiC), 1lb

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F150 - 82μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide also has t..

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F120 - 109μ - Black Silicon Carbide (SiC), 1lb

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F120 - 109μ - Black Silicon Carbide (SiC), 1lb Silicon Carbide is used due to its properties of high hardness (Mohs hardness > 9), wear resistance, its chemical inertness, high thermal conductivity, abrasion resistance, low coefficient of thermal expansion, thermal shock resistance, and strength at high-temperature ranges. Silicon Carbide also has ..

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