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首页> 外文期刊>Metallurgical and Materials Transactions A >Microstructures and Hardness/Wear Performance of High-Carbon Stellite Alloys Containing Molybdenum
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Microstructures and Hardness/Wear Performance of High-Carbon Stellite Alloys Containing Molybdenum

机译:含钼高碳司太立合金的显微组织和硬度/磨损性能

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摘要

Conventional high-carbon Stellite alloys contain a certain amount of tungsten which mainly serves to provide strengthening to the solid solution matrix. These alloys are designed for combating severe wear. High-carbon molybdenum-containing Stellite alloys are newly developed 700 series of Stellite family, with molybdenum replacing tungsten, which are particularly employed in severe wear condition with corrosion also involved. Three high-carbon Stellite alloys, designated as Stellite 706, Stellite 712, and Stellite 720, with different carbon and molybdenum contents, are studied experimentally in this research, focusing on microstructure and phases, hardness, and wear resistance, using SEM/EDX/XRD techniques, a Rockwell hardness tester, and a pin-on-disk tribometer. It is found that both carbon and molybdenum contents influence the microstructures of these alloys significantly. The former determines the volume fraction of carbides in the alloys, and the latter governs the amount of molybdenum-rich carbides precipitated in the alloys. The hardness and wear resistance of these alloys are increased with the carbide volume fraction. However, with the same or similar carbon content, high-carbon CoCrMo Stellite alloys exhibit worse wear resistance than high-carbon CoCrW Stellite alloys.
机译:常规的高碳司太立合金含有一定量的钨,主要用于增强固溶体基体。这些合金设计用于抵抗严重磨损。高碳含钼Stellite合金是新开发的700系列Stellite系列,其中钼替代钨,特别适用于在严重磨损条件下腐蚀的情况。在这项研究中,通过实验研究了三种不同碳和钼含量的高碳Stellite合金,分别称为Stellite 706,Stellite 712和Stellite 720,着眼于显微组织和相,硬度和耐磨性,使用SEM / EDX / XRD技术,洛氏硬度计和销盘摩擦计。发现碳和钼含量均显着影响这些合金的微观结构。前者决定合金中碳化物的体积分数,后者决定合金中析出的富钼碳化物的量。这些合金的硬度和耐磨性随碳化物体积分数的增加而增加。然而,在碳含量相同或相似的情况下,高碳CoCrMo司太立合金的耐磨性比高碳CoCrW司太立合金差。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2015年第12期|5504-5513|共10页
  • 作者单位

    Department of Mechanical and Aerospace Engineering Carleton University">(1);

    Research Center of Laser Processing Technology and Engineering Zhejiang University of Technology">(2);

    Research Center of Laser Processing Technology and Engineering Zhejiang University of Technology">(2);

    Research Center of Laser Processing Technology and Engineering Zhejiang University of Technology">(2);

    Kennametal Stellite Inc.">(3);

    Kennametal Stellite Inc.">(3);

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