Tungsten Carbide Alloy Plates

High Hardness Wear Resistance And Impact Resistance For Making Punching Molds


  • Min.Order Quantity: 5 Piece/Pieces
  • Supply Ability: 10000 Piece/Pieces per Month

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分割线分隔效果
Description
  • Characteristics of Tungsten carbide material

    1. High hardness:
      1.  The hardness of tungsten carbide is extremely high, second only to diamond, which gives it excellent wear resistance. During the use of the valve, it can effectively resist the erosion and wear of the medium, extending the service life of the valve.
    2. Corrosion resistance:
      1. Tungsten carbide has stable chemical properties and is not easily reacted with corrosive media such as acid, alkali, salt, etc. It can be used for a long time in harsh corrosive environments without damage.
    3. High temperature resistance:
      1. The melting point of tungsten carbide is as high as 2870 ℃ (also known as 3410 ℃), which has good high temperature resistance and can maintain stable performance under high temperature conditions.
    4. High strength:
      1. Tungsten carbide has high strength and can withstand significant pressure and impact forces, ensuring stable operation of valves under harsh working conditions.

 

  • Characteristics of Tungsten carbide plates

    1. High density microstructure:
    2. Tungsten carbide alloy sheet has a compact microstructure, which makes its performance more stable and reliable.
    3. Good processing performance:
    4. Despite the high hardness of tungsten carbide alloy sheets, cutting, drilling, milling and other processing operations can still be carried out through appropriate processes and equipment.
    5. Customizability:
    6. The shape, size, and performance of tungsten carbide alloy sheets can be customized according to specific application requirements to meet customers' personalized needs.

 

  • Advantages of Tungsten carbide plates

    1. High hardness and wear resistance:
    2. Tungsten carbide alloy sheet has extremely high hardness, making it have excellent wear resistance in various wear environments. High hardness also means that it can resist scratches and wear, extending its service life.
    3. Good impact resistance:
    4. Compared with other hard alloys, tungsten carbide alloy sheets maintain high hardness while also having a certain degree of toughness, which can resist impact loads.
    5. Corrosion resistance:
    6. Tungsten carbide alloy sheet has good corrosion resistance to various chemicals and can maintain stable performance in harsh industrial environments.
    7. High thermal stability:
    8. Tungsten carbide alloy sheets can maintain stable hardness and strength at high temperatures, and are not easily deformed or melted.

 

  • Application of Tungsten carbide plates

    1. Cutting tools:
    2. The high hardness and wear resistance of tungsten carbide alloy sheet make it an ideal material for manufacturing high-performance cutting tools, such as blades, saw blades, milling cutters, etc.
    3. Wear resistant components:
    4. Tungsten carbide alloy sheets are used as wear-resistant components in environments that require high wear resistance, such as wear-resistant liners in oil and gas extraction equipment, wear-resistant rollers in conveying equipment, etc.
    5. Aerospace field:
    6. In the aerospace field, tungsten carbide alloy sheets are used to manufacture high-temperature components such as engine blades, combustion chambers, etc., to meet the needs of extreme conditions such as high temperature and high pressure.
    7. Medical devices:
    8. Tungsten carbide alloy sheets are also used to manufacture certain components in medical devices, such as surgical knives, bone drills, etc., and are highly favored due to their excellent hardness and wear resistance.
    9. Other applications:
    10. In addition, tungsten carbide alloy sheets are widely used in industries such as electronics, power, metallurgy, and chemical engineering, as well as as as raw materials for manufacturing superhard cutting tools and wear-resistant semiconductor films.
分割线分隔效果
Material Performance Table
Cobalt Binder Grade
Grade
Composition   (% in weight) Physical Properties   Grain size(μm) Equivalent
to
domestic
Density g/cm³(±0.1) Hardness   HRA(±0.5) TRS Mpa(min) Porosity
WC Ni Ti TaC A B C
KD115 93.5
6.0 - 0.5 14.90 93.00 2700 A02 B00 C00 0.6-0.8 YG6X 
KD335 89.0 10.5 - 0.5 14.40 91.80 3800 A02
B00 C00
0.6-0.8 YG10X 
KG6 94.0 6.0 - - 14.90 90.50 2500 A02
B00
C00
1.2-1.6 YG6 
KG6 92.0 8.8 - - 14.75 90.00 3200 A02
B00
C00
1.2-1.6 YG8 
KG6 91.0 9.0 - - 14.60 89.00 3200 A02
B00
C00
1.2-1.6 YG9 
KG9C 91.0 9.0 - - 14.60 88.00 3200 A02
B00
C00
1.6-2.4 YG9C 
KG10 90.0  10.0  - - 14.50 88.50 3200 A02
B00
C00
1.2-1.6 YG10 
KG11 89.0  11.0  - - 14.35 89.00 3200 A02
B00
C00
1.2-1.6 YG11 
KG11C 89.0  11.0  - - 14.40 87.50 3000 A02
B00
C00
1.6-2.4 YG11C 
KG13 87.0  13.0  - - 14.20 88.70 3500 A02
B00
C00
1.2-1.6 YG13 
KG13C 87.0  13.0  - - 14.20 87.00 3500 A02
B00
C00
1.6-2.4 YG13C 
KG15 85.0  15.0  - - 14.10 87.50 3500 A02
B00
C00
1.2-1.6 YG15 
KG15C 85.0  15.0  - - 14.00 86.50 3500 A02
B00
C00
1.6-2.4 YG15C 
KD118 91.5  8.5  - - 14.50 83.60 3800 A02
B00
C00
0.4-0.6 YG8X 
KD338 88.0  12.0  - - 14.10 92.80 4200 A02
B00
C00
0.4-0.6 YG12X 
KD25 77.4  8.5  6.5  6.0 12.60 91.80 2200 A02
B00
C00
1.0-1.6 P25 
KD35 69.2  10.5  5.2  13.8 12.70 91.10 2500 A02
B00
C00
1.0-1.6 P35 
KD10 83.4  7.0  4.5 4.0 13.25 93.00 2000 A02
B00
C00
0.8-1.2 M10 
KD20 79.0  8.0  7.4 3.8 12.33 92.10 2200 A02
B00
C00
0.8-1.2 M20 
Nickel Binder Grades
Grade  Composition(%inweight) Physical Properties   Equivalent
to
domestic
Density g/cm3(±0.1) Hardness HRA(±0.5) TRS Mpa(min) Porosity Grainsize(μm)
WC Ni Ti A B C
KDN6 93.8 6.0  0.2 14.6-15.0 89.5-90.5 1800 A02 B00 C00 0.8-2.0 YN6
KDN7 92.8 7.0  0.2 14.4-14.8 89.0-90.0 1900 A02 B00 C00 0.8-1.6 YN7
KDN8 91.8 8.0  0.2 14.5-14.8 89.0-90.0 2200 A02 B00 C00 0.8-2.0 YN8
KDN12 87.8 12.0  0.2 14.0-14.4 87.5-88.5 2600 A02 B00 C00 0.8-2.0 YN12
KDN15 84.8 15.0  0.2 13.7-14.2 86.5-88.0 2800 A02 B00 C00 0.6-1.5 YN15

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