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高碳、高合金鐵基滲銅燒結閥座材料

Copper-infiltrated/Sintered Iron-based Alloy with High Content of Carbonand Alloying Elements Used for Valve-Seats

  • 摘要: 研究了基體中不同合金元素及熱處理對高碳、高合金鐵基滲銅燒結閥座材料的密度和力學性能的影響。結果表明,用機械混合高碳、高合金粉末壓坯經過一步法燒結/熔滲后,密度達到7.88g/cm3(相對密度98.2%),硬度和抗彎強度分別達到HRc45.4和1124MPa。將滲銅后的材料在900℃淬火,580℃高溫回火后,鐵顆粒中組織主要為回火馬氏體,材料硬度達到HRc40以上。

     

    Abstract: The influence of different alloying elements and heat-treatment on the density and mechanical properties of the copper-infiltrated/sintered iron-based alloy was investigated. The iron-based alloy blank with high content of carbon and alloying elements was developed by mechanical mixing. After copper-infiltration/sintering, the material has the density of 7. 88 g/cm3 (the relative density of 98.2%), hardness of HRc 45.2 and TRS of 1 124 MPa. After quenching at 900℃ and high-temperature at 580℃, with large amount of martensite in the microstructure the material possesses the hardness of over HRc 40.

     

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