• CN:11-2187/TH
  • ISSN:0577-6686

›› 1988, Vol. 24 ›› Issue (4): 98-102.

• 论文 • 上一篇    

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奥氏体中锰钢的耐磨性与形变诱发马氏体及位错强化的关系

何镇明;姜启川;付绍伯;谢敬佩   

  1. 吉林工业大学
  • 发布日期:1988-09-01

RELATIONS BETWEEN WEAR RESISTANCE AND TRANSF ORMATION INDUCED MARTENSITE(αPHASE),DISLOCATION STRENGTHENING OF AUSTENITIC MEDIUM MANGANESE STEEL

He Zhenming;Jiang Qiehuan;Fu Shaobo;Xie Jingpei   

  1. Jilin Institute of Technology
  • Published:1988-09-01

摘要: 本文利用电镜和X射线等检验手段及磨损与现场运行实验,研究了非强烈冲击工况下奥氏体中锰钢的耐磨性与形变诱发马氏体和位错强化的关系。实验结果表明:奥氏体稳定性低的中锰钢,由于形变诱发马氏体的产生及其与位错交互作用促进了加工硬化能力和耐磨性的提高,而奥氏体稳定性高的中锰钢则是由于溶质原子和第二相粒子与位错产生的交互作用所致。因此降低碳、锰含量,大量形成第二相弥散硬粒子或增加溶质原子深度是提高奥氏体中锰钢加工硬化能力和耐磨性的有效途径。

关键词: 耐磨性, 位错, 形变诱发马氏, 中锰钢

Abstract: The relationship between wear resistance and transformation induced martensite (α phase), dislocation strengthening of austenitic medium manganese steels under non-severe impact loading conditions had been studied by means of TEM, X-ray diffraction, laboratory wear test and worksites test. The results indicate that for medium manganese steels with lower austenitic stability, the formation of transformation induced martensite and the interaction of dislocations with it can increase the work hardening ability and the wear resistance; while the increase of work hardening and the wear resistance of medium manganese steels with higher austenitic stability is the result of the interaction of the solute atoms and the second phase hard particles. Therefore, the effective way of increasing the work hardening ability and the wear resistance of austenitic medium manganese steels is to decrease the C and Mn contents and to form a large amount of dispersed fine hard particles, or to increase the concentration of solute atoms.

Key words: 耐磨性, 位错, 形变诱发马氏, 中锰钢