1. Chun?peng Liu,Rui?ming Ren,De?yi Liu1,Xiu?juan Zhao,Chun?huan Chen,An EBSD Investigation on the Evolution of the Surface Microstructure of D2 Wheel Steel During Rolling Contact Fatigue ,Tribology Letters ,2020, 68:47
2. Chun-peng Liu, Peng-tao Liu, Jin-zhi Pan, Chun-huan Chen & Rui-ming Ren, Effect of original microstructure on wear property of ER9 wheel steel, Ironmaking &Steelmaking, 2020, DOI: 10.1080/03019233.2020.1741280
3. Jun Hua,Xiujuan Zhao,Pengtao Liu,Jinzhi Pan,Chong Su,Ruiming Ren,Study on the mechanism for polygonisation formation of D2 wheel steel and its effect on microstructure and properties under rolling wear conditions ,Wear,2020,450–451,203261.
4. Chun-peng Liu,Peng tao Liu,Jin zhi Pan,Chun huan Chen,Rui ming Ren,Effect of pre-wear on the rolling contact fatigue property of D2 wheel steel, 2020,Wear 442-443,203154
5. Chun-peng Liu ,Rui ming Ren,De yi Liu,Xiu juan Zhao,Chun huan Chen,An EBSD investigation on the evolution of the surface microstructure of D2 wheel steel during rolling contact fatigue ,Tribology letters,2020,68:67
6. Chen Yuda, Ren Ruiming, Zhao Xiujuan, Chen Chunhuan, Pan Rui. Study on the surface microstructure evolution and wear property of bainitic rail steel under dry sliding wear[J]. Wear, 2020, 448-449: 203217
7. Chen Yuda, Ren Ruiming, Pan Jinzhi, Pan Rui, Zhao Xiujuan. Microstructure evolution of rail steels under different dry sliding conditions: A comparison between pearlitic and bainitic microstructures[J]. Wear, 2019, 438-439: 203011
8. Chun-Peng Liu, Xiu-Juan Zhao,Peng-Tao Liu, Jin-Zhi Pan and Rui-Ming Ren,Influence of contact stress on surface microstructure and wear property of D2/U71Mn wheel-rail material,Materials,2019,12(19)3268
9. 张关震,任瑞铭,吴 斯,尹鸿祥,丛韬,赵方伟,高俊莉,不均匀组织对动车组车轮踏面剥离的影响研究,中国铁道科学, 2019,40(5):80-85
10. 马林,任瑞铭,刘鹏涛,潘睿,赵秀娟,D2车轮钢原始组织对滚动磨损性能的影响,表面工程,2019,48(11):275-282
11. Wang, S.S., Zhao, X.J., Liu, P.T., Pan, J.Z., Chen, C.H. and Ren, R.M. Investigation of the Relation between Rolling Contact Fatigue Property and Microstructure on the Surface Layer of D2 Wheel Steel. Materials Sciences and Applications, 2019,10, 509-526.
12. 辛悦,赵秀娟,潘金芝,潘睿,任瑞铭,D2车轮钢原始组织对滑动磨损性能的影响,摩擦学学报,2019,39(4):480-488
13. 王文宇,刘德义,刘鹏涛,赵秀娟,任瑞铭,球化退火态重载车轮钢CL70磨损性能及组织演化,摩擦学学报,2019,39(3):357-365
14. 冯嘉雨,刘德义,刘鹏涛,赵秀娟,任瑞铭,轮轨材料滚动摩擦条件下的波磨形成过程研究,材料热处理学报,2019,40(7):117-123.
15. Yuda Chen, Xiujuan Zhao, Pengtao Liu, Rui Pan, Ruiming Ren,Influences of local laser quenching on wear performance of D1 wheel steel ,wear.2018,414-415:243-250(IF2.96)
16. Chun-peng Liu, Xiu-juan Zhao, Peng-tao Liu, Chong Xu, Rui-ming Ren,Influence of slip ratio on worn-surface microstructure and fatigue wear behavior of D2 wheel steel ,Journal of Iron and Steel Research, International,2018, 25:1278-1286(IF1.126)
17. 陶贵闯,赵秀娟,潘金芝,潘睿,任瑞铭,D2高速车轮钢在滑动磨损下的白层形成与剥落,摩擦学学报2018,38(4)437-444
18. Rui Pan, Ruiming Ren, Xiujuan Zhao, Chunhuan Chen. Influence of microstructure evolution during the sliding wear of CL65 steel. Wear. 2018,400-401:169-176
19. Rui Pan, Ruiming Ren, Chunhuan Chen, Xiujuan Zhao. Formation of Nanocrystalline Structure in Pearlitic Steels by Dry Sliding Wear. Materials Characterization. 2017, 132:397-404.
20. Rui Pan, Ruiming Ren, Chunhuan Chen, Xiujuan Zhao. The Microstructure Analysis of White Etching Layer on Treads of Rails. Engineering Failure Analysis. 2017,82:39-46.
21. Rui Pan, Xiujuan Zhao, Pengtao Liu, Ruiming Ren. Micro-mechanism of Polygonization Wear on Railroad Wheels. Wear. 2017,392-393:213-220.
22. 陈煜达、潘金芝、刘鹏涛、赵秀娟、任瑞铭,表面粗糙度对动车组车轮钢弯曲疲劳性能的影响,表面技术,2017,46(02):172-177.
23. 管晓梅、李国军、黎春阳、任瑞铭,喷雾干燥法合成纳微多孔球形LiFePO4/C锂离子电池正极材料(英文版),Transactions of Nonferrous Metals Society of China,2017,27(01):141-147.
24. 张关震、任瑞铭、丛韬、张弘、付秀琴,时速250km等级动车组自主化车轮的耐磨性能试验研究,中国铁道科学,2017,38(1):117-122
25. 潘睿、任瑞铭、陈春焕、赵秀娟、陈煜达,钢中摩擦磨损白层的研究现状,材料研究学报,2016,28(7):1-7
26. 潘睿、任瑞铭、陈春焕、陈煜达、赵秀娟,钢轨踏面马氏体白层组织分析,材料热处理学报,2016,37(7):167-171
27. 杨姗洁、任瑞铭、陈春焕、潘睿、赵秀娟,动车组车轮轮缘塑性变形白层组织分析,摩擦学学报,2016,36(5),623-628
28. 吴从前、任瑞铭、刘鹏涛、陈春焕、赵秀娟,304不锈钢空化水射流表面空蚀损伤研究,材料研究学报,2016,30(06):473-480.
29. 黎春阳、李国军、樊欣、张炳、任瑞铭,耐高温甲基苯基硅树脂的合成,有机硅材料,2016,30(1):5-10.
30. 阚晓阳、刘鹏涛、周卯旸、赵秀娟、陈春焕、任瑞铭,纯钛空化水射流处理表面空蚀损伤,航空材料学报,2015,35(04):22-27.
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