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Green Silicon Carbide is of higher purity than black silicon carbide. In addition, to maintaining hardness close to the diamond, it is also excellent in grinding and polishing properties which will not be affected by chemicals.
Introduction
Green Silicon Carbide is of higher purity than black silicon carbide. In addition, to maintaining hardness close to the diamond, it is also excellent in grinding and polishing properties which will not be affected by chemicals.
Parameter
Item | F Grit | Chemical Composition (%) | Size Distribution (%) | Bulk Density (g/cm3) | |||||||||||||
SIC (% min) | Fe2O3 (% max) | F.C. (% max) | D3 | D50 | D94 | ||||||||||||
Marco Grits | F24 | 99.00% | 0.15% | 0.15% | / | / | / | 1.50-1.60 | |||||||||
F30 | 99.00% | 0.15% | 0.15% | / | / | / | 1.50-1.60 | ||||||||||
F36 | 99.00% | 0.15% | 0.15% | / | / | / | 1.50-1.60 | ||||||||||
F40 | 99.00% | 0.15% | 0.15% | / | / | / | 1.50-1.60 | ||||||||||
F46 | 99.00% | 0.15% | 0.15% | / | / | / | 1.48-1.58 | ||||||||||
F54 | 99.00% | 0.15% | 0.15% | / | / | / | 1.48-1.58 | ||||||||||
F60 | 99.00% | 0.15% | 0.15% | / | / | / | 1.48-1.58 | ||||||||||
F70 | 99.00% | 0.15% | 0.15% | / | / | / | 1.46-1.56 | ||||||||||
F80 | 99.00% | 0.15% | 0.15% | / | / | / | 1.46-1.56 | ||||||||||
F90 | 99.00% | 0.15% | 0.15% | / | / | / | 1.44-1.54 | ||||||||||
F100 | 99.00% | 0.15% | 0.15% | / | / | / | 1.40-1.50 | ||||||||||
F120 | 99.00% | 0.15% | 0.15% | / | / | / | 1.38-1.48 | ||||||||||
F150 | 98.50% | 0.20% | 0.20% | / | / | / | 1.38-1.48 | ||||||||||
F180 | 98.50% | 0.20% | 0.20% | / | / | / | 1.30-1.40 | ||||||||||
F220 | 98.50% | 0.20% | 0.20% | / | / | / | 1.30-1.40 | ||||||||||
Micro Powder | F240 | ≥99 | ≤0.15 | ≤0.15 | ≤70 | 44.5±2.0 | ≥28 | 1.38 | |||||||||
F280 | ≥99 | ≤0.15 | ≤0.15 | ≤59 | 36.5±1.5 | ≥22 | 1.31 | ||||||||||
F320 | ≥99 | ≤0.15 | ≤0.15 | ≤49 | 29.2±1.5 | ≥16.5 | 1.28 | ||||||||||
F360 | ≥99 | ≤0.15 | ≤0.15 | ≤40 | 22.8±1.5 | ≥12 | 1.26 | ||||||||||
F400 | ≥99 | ≤0.15 | ≤0.15 | ≤32 | 17.3±1.0 | ≥8 | 1.16 | ||||||||||
F500 | ≥99 | ≤0.15 | ≤0.15 | ≤25 | 12.8±1.0 | ≥5 | 0.98 | ||||||||||
F600 | ≥99 | ≤0.15 | ≤0.15 | ≤19 | 9.3±1.0 | ≥3 | / | ||||||||||
F800 | ≥98.5 | ≤0.15 | ≤0.15 | ≤14 | 6.5±1.0 | ≥2 | / | ||||||||||
F1000 | ≥97 | ≤0.15 | ≤0.15 | ≤10 | 4.5±0.8 | ≥1 | / | ||||||||||
F1200 | ≥96.5 | ≤0.15 | ≤0.15 | ≤7 | 3.0±0.5 | ≥0.8 | / |
HSA silicon carbide complies with GB∕T 2480-2022 General Abrasive Silicon Carbide national standard
Item | P Grit | SIC (% min) | Fe2O3 (% max) | F.C. (% max) | ||||||||
Marco Grits | P24-90 | 99.00% | 0.15% | 0.15% | ||||||||
P100-240 | 98.50% | 0.20% | 0.20% | |||||||||
Micro Powder | P280-400 | 98.50% | 0.20% | 0.20% | ||||||||
P500-1000 | 98.00% | 0.25% | 0.25% | |||||||||
P1200 | 98.00% | 0.25% | 0.25% | |||||||||
P1500-2000 | 97.50% | 0.30% | 0.30% |
HSA silicon carbide complies with GB∕T 2480-2022 General Abrasive Silicon Carbide national standard
Features




Заявки


Materials for precision finishing grinding wheels (magnetic heads, тощо) and high-grade polishing grinding wheels.


Cutting and precision lapping materials for ceramics, cemented carbide, new material, тощо.


Cutting and precision lapping materials for quartz, silicon and various glass and magnetic materials


For wear-resistant, fire-resistant and corrosion-resistant materials, it can also be used to make rocket nozzles, gas turbine blades, тощо.
Упаковка
Ми можемо запропонувати 1 млн/25 кг тканих пластикових пакетів, і 25 кг паперових пакетів.
Our Green Silicon Carbide is carefully handled during storage and transportation to preserve the quality of our product in its original condition.


Чорний карбід кремнію
Black silicon carbide is a widely used abrasive product, with excellent wear resistance, висока твердість, high density, low impurities and other advantages, commonly used in sandblasting grinding, полірування, free grinding, making various abrasives, тощо.




Зелений карбід кремнію
Green silicon carbide is made from quartz sand and petroleum coke refined in a resistance furnace, due to its relatively stable chemical properties, high thermal conductivity, low coefficient of thermal expansion, and good wear resistance.
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