High Hardness Green Silicon Carbide Abrasive for Surface Preparation

Min.Order: 1
Product origin: Zhengzhou, Henan, China
Infringement complaint: complaintComplaint
US$ 600 ~ 800

Description
Product Description

 

Green silicon carbide is a high-quality abrasive material made from silicon carbide grains and petroleum coke in an electric resistance furnace at high temperatures. 
Its unique crystal structure gives it high toughness, durability, and resistance to wear and tear. Green silicon carbide is widely used in the manufacturing of grinding wheels, cutting tools, and abrasive blasting media.
Green silicon carbide is also used in various industrial applications such as surface preparation, metalworking, and ceramics manufacturing. Its properties make it an excellent choice for use in high-temperature applications, such as furnace linings, refractories, and heating elements.

 

 
 
 
Product Parameters
 
Physic Properties 
Color
Green
Crystal form
Polygon
Mohs hardness
9.2-9.6
Micro hardness
2840~3320kg/mm²
Melting point
1723
Maximum operating temperature
1600
True density
3.21g/cm³
Bulk density
2.30g/cm³
   
Chemical composition
Grains
Chemical composition(%)
Sic
F.C.
Fe2O3
16#--220#
≥99.0
≤0.30
≤0.20
240#--2000#
≥98.5
≤0.50
≤0.30
2500#--4000#
≥98.5
≤0.80
≤0.50
6000#-12500#
≥98.1
≤0.60
≤0.60
Application
 
 
1.Abrasive: Green silicon carbide is widely used as an abrasive material in various industries, including automotive, aerospace, metalworking, and jewelry. It is used for grinding, cutting, and polishing of hard metals and ceramics.

2.Refractory: Green silicon carbide is also used as a refractory material in high-temperature applications such as furnaces and kilns due to its high thermal conductivity and low thermal expansion.

3.Electronics: Green silicon carbide is used as a substrate material for electronic devices such as LEDs, power devices, and microwave devices due to its excellent electrical conductivity and thermal stability.

 
4.Solar energy: Green silicon carbide is used as a material for manufacturing solar panels due to its high thermal conductivity and low thermal expansion, which helps in dissipating heat generated during the operation of solar panels.

5.Metallurgy: Green silicon carbide is used as a deoxidizing agent in the production of iron and steel. It helps in removing impurities from the molten metal and improving the quality of the final product.

6.Ceramics: Green silicon carbide is used as a raw material for manufacturing advanced ceramics such as cutting tools, wear-resistant parts, and high-temperature components due to its high hardness, high strength, and excellent thermal stability.
 
Packaging & Shipping
1ton/jumbo bag
 
Jumbo bag + Wooden pallets

25kgs/bag, 40 bags/jumbo bag

25kgs/woven bag or kraft paper bag

All package can be customized according to customers' requirements
 
Factory Display

Founded in 1996, Zhengzhou Xinli Wear-resistant Materials Co., Ltd. Is a professional integrative enterprise specializing in R&D, producing, and selling various wear-resistant materials. Such as white fused alumina, white corundum powder, alumina powder, green silicon carbide powder, brown fused alumina, brown corundum powder and other wear-resistant materials. With about 25 years experiences, Zhengzhou Xinli has become the first enterprise that achieves the original crystal granularity to standard 0.3μm, which can help to gain the effect of metal mirror polishing.
 
 

The company has passed iso9001:2015 quality management system certification. It has 2 dumping furnaces and 3 fixed furnaces, 12000V magnetic separator, ball mill, Bamako, OMAX resistance and laser particle size detector and other advanced production equipment and testing instruments. Adhere to innovation, standardized, refined production, so that every customer can use stable quality, price concessions products is our consistent goal!

At present, our company has exported to South Korea, Japan, Vietnam, Thailand, the United States, Chile, Mexico and other countries, and has won unanimous praise from customers.

Our Advantages
  • High hardness
     

  • High thermal conductivity
     

  • Low thermal expansion
     

  • Chemical inertness
     

  • Electrical conductivity
     

  • Biocompatibility
     

  • Environmental friendliness
     

  • Cost-effectiveness

 

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