4.7 Article

Influences of Co addition and austenitizing temperature on secondary hardening and impact fracture behavior in P/M high speed steels of W-Mo-Cr-V(-Co) system

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.msea.2007.04.014

关键词

W-Mo-Cr-V(-Co) high speed steel; secondary hardening; impact fracture behavior; Co addition; austenitizing temperature

资金

  1. National Research Foundation of Korea [R01-2006-000-10922-0, R01-2003-000-10341-0] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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The secondary hardening and fracture behavior in P/M high speed steels of W-Mo-Cr-V(-Co) system has been investigated in terms of Co addition and austenitizing temperature. Austenitizing was conducted at 1100 and 1175 degrees C of relatively low and high temperatures, respectively. Tempering was performed in the range of 500-600 degrees C. Coarse primary carbides retained after heat treatment were V-rich MC and W-Mo-rich M6C types. Since the dissolution of W-Mo-rich M6C with relatively low stability was more promoted with increasing austenitizing temperature, the alloy content of the W and Mo in the matrix was enhanced. In turn, it gives a significant influence on the precipitation of fine secondary alloy carbides, that is, secondary hardening during tempering. The major secondary carbides were W-Mo-Cr-rich M2C type. The peak hardness was observed in the tempering range of 500-540 degrees C, depending on Co addition and austenitizing temperature. With an increase in austenitizing temperature, the aging deceleration was observed. This phenomenon may be attributed to the increased content of W and Mo in the matrix, both diffusing slowly in the matrix and inhibiting growth of M2C carbide, as compared to Cr. In addition, the aging acceleration occurred in the Co bearing alloy, promoting the precipitation of M2C carbides, as well as the overall increase in hardness. In general, the impact toughness was decreased with an increase in hardness. In addition, the impact toughness to hardness balance was lowered in the Co bearing alloy. (C) 2007 Elsevier B.V. All rights reserved.

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