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首页> 外文期刊>Materials Science and Technology >Room temperature hardness of carbide strengthened cast alloys in relation to their carbon content and aging temperature Part 3 - Case of iron alloys
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Room temperature hardness of carbide strengthened cast alloys in relation to their carbon content and aging temperature Part 3 - Case of iron alloys

机译:碳化物增强铸造合金的室温硬度与碳含量和时效温度的关系第3部分-铁合金的情况

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摘要

Vickers macroindentation was performed on seven cast and aged Fe-30Cr based alloys with carbon contents varying from 0 to 2·0 wt-%. The measured hardness was studied versus the carbon content and the aging temperature (1000, 1100 and 1200°C). The hardness increases with the carbon content, first slowly but much faster when the carbides fraction reaches 30 vol.-%. A hardness of 600 HV or more can then be achieved. For low carbon contents, the hardness increases slower than a law of mixture of the volume fractions and of the hardness of carbides and matrix. This is due to the great difference in hardness between the two phases, which leads to the deformation of the matrix only. Beyond the critical value of 30 vol.-% of carbides, i.e. when the carbon content approaches 2 wt-%, hardness drastically increases since the main role in resistance against indentation is then played by the hard carbides skeleton, which has become continuous enough.
机译:在7种铸造和时效的Fe-30Cr基合金中进行了维氏宏观压痕,碳含量从0到2·0 wt%不等。研究了测得的硬度与碳含量和时效温度(1000、1100和1200°C)的关系。硬度随碳含量的增加而增加,首先是缓慢的,但当碳化物的比例达到30 vol .-%时,硬度会更快。然后可以达到600HV或更高的硬度。对于低碳含量,硬度的增加速度要慢于体积分数和碳化物与基体硬度的混合律。这是由于两相之间的硬度差异很大,仅导致基体变形。超过30%(体积)的碳化物的临界值,即当碳含量接近2%(重量)时,硬度急剧增加,因为硬抗碳化物骨架发挥了抗压痕的主要作用,而硬碳化物骨架已经足够连续了。

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  • 来源
    《Materials Science and Technology》 |2009年第8期|1003-1008|共6页
  • 作者

    Berthod P.;

  • 作者单位

    Laboratoire de Chimie du Solide Minéral (CNRS UMR 7555), Faculté des Sciences et Techniques, Université Henri Poincaré Nancy 1, Nancy-Université, Boulevard des Aiguillettes, BP 70239, F-54506 Vandoeuvre les Nancy, France, Email: patrice.berthod@lcsm.uhp-nancy.fr;

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