Pre-alloyed Powder FeCuNiSn (X6-620) Description
Pre-alloyed Powder FeCuNiSn (X6-620) is manufactured by atomization method. Since each powder particle contains various metal elements that make up the alloy, the composition uniformity of the pre-alloyed powder is quite good.
This powder has a low sintering temperature, which can effectively reduce sintering loss, reduce the amount of elemental tin, and reduce production costs. The carcass has a high degree of alloying, which can improve the overall performance of the carcass.
Pre-alloyed Powder FeCuNiSn (X6-620) Specifications
Specification
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Sintering Temperature (℃)
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800
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Oxygen Content (%)
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≤0. 25
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Carcass Hardness
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100-110 HRB
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Theoretical Density (g/cm3)
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8.08
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Bulk Density (g/cm3)
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3.3
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Bending Strength (Mpa)
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1200-1500
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Pre-alloyed Powder FeCuNiSn (X6-620) Applications
Pre-alloyed Powder FeCuNiSn (X6-620) is suitable for small saw blades for wall grooves, medium-diameter saw blades for stone and concrete, and grinding products such as grinding discs, grinding blocks, and hobs.
Pre-alloyed Powder FeCuNiSn (X6-620) Packaging
Our Pre-alloyed Powder FeCuNiSn (X6-620) is carefully handled during storage and transportation to preserve the quality of our product in its original condition.
Pre-alloyed Powder FeCuNiSn (X6-620) FAQs
1. What are the main applications of FeCuNiSn (X6-620) powder?
FeCuNiSn (X6-620) powder is primarily used in the manufacturing of components that require low sintering temperatures, such as wear-resistant parts, electrical contacts, and other industrial applications where cost efficiency and performance are key.
2. How does FeCuNiSn (X6-620) powder improve production efficiency?
By lowering the sintering temperature, FeCuNiSn (X6-620) powder reduces sintering loss and minimizes the amount of elemental tin required. This leads to lower production costs and enhanced process efficiency.
3. What are the key benefits of using Pre-alloyed FeCuNiSn (X6-620) powder?
Low sintering temperature: Reduces sintering loss and enhances production efficiency. Reduced use of elemental tin: Lowers material costs while maintaining performance. Cost-effective: Helps to reduce overall production costs without compromising on quality.