TY - CHAP
T1 - Effect of Epsilon Carbides on Mechanical Properties and Wear Resistance of Low Alloy Abrasion Resistance Steel
AU - Deng, Xiangtao
AU - Fu, Tianlian
AU - Li, Junhui
AU - Li, Xiaolin
AU - Wang, Zhaodong
AU - Wang, Guodong
N1 - Publisher Copyright:
© 2016 by The Minerals, Metals & Materials Society. All rights reserved.
PY - 2015/11/6
Y1 - 2015/11/6
N2 - In this paper, different morphology and size of nano epsilon carbides (ε-carbides) were obtained by low temperature tempering for a low alloy abrasion resistance steel, the variation of mechanical properties and three-body impact wear resistance as the variation of carbides were investigated. The results shownthat as the formation of needle like type ε-carbides, the yield strength, low temperature impact toughness and three-body impact wear resistance were all increased. While when the ε-carbides grow up to the bigger rodliketype, the hardness and toughness decreased sharply, as well as the three body impact abrasion wear resistance. The wear mechanisms ofthe steel obtained different carbides were also analyzed.
AB - In this paper, different morphology and size of nano epsilon carbides (ε-carbides) were obtained by low temperature tempering for a low alloy abrasion resistance steel, the variation of mechanical properties and three-body impact wear resistance as the variation of carbides were investigated. The results shownthat as the formation of needle like type ε-carbides, the yield strength, low temperature impact toughness and three-body impact wear resistance were all increased. While when the ε-carbides grow up to the bigger rodliketype, the hardness and toughness decreased sharply, as well as the three body impact abrasion wear resistance. The wear mechanisms ofthe steel obtained different carbides were also analyzed.
KW - Epsilon carbides
KW - Low temperature tempering
KW - Mechanical property
KW - Three-body impact abrasive wear behavior
UR - http://www.scopus.com/inward/record.url?scp=84979518717&partnerID=8YFLogxK
U2 - 10.1002/9781119223399.ch105
DO - 10.1002/9781119223399.ch105
M3 - 章节
AN - SCOPUS:84979518717
SN - 9781119223306
SP - 843
EP - 849
BT - HSLA Steels 2015, Microalloying 2015 and Offshore Engineering Steels 2015 Conference Proceedings
PB - wiley
ER -