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Ratcheting led surface failure of medium carbon bainitic steel under mild operation conditions
引用本文:PengDou YouguoLi KaimingLiang BingzheBai. Ratcheting led surface failure of medium carbon bainitic steel under mild operation conditions[J]. 北京科技大学学报(英文版), 2005, 12(1): 60-66
作者姓名:PengDou YouguoLi KaimingLiang BingzheBai
作者单位:DepartmentofMaterialsScienceandEngineering,LaboratoryoftheAdvancedMaterials,TsinghuaUniversity,Beijing100084,China
摘    要:The behavior of rolling contact fatigue (RCF) of medium carbon bainitic back-up roll steel was investigated under its actual work conditions. A kind of asperity-scale surface originated cracks, which is lying parallel or at an acute angle to the surfaces, initiated after unidirectional plastic flow of the material in thin surface layer had occurred. Theoretical analysis indicates that they nucleate due to plastic ratcheting induced by asperity contact stresses, and consequently are named as ratcheting cracks. After nucleating and initially propagating, they arrest at some depth and resume propagating till about 70%-80% of the RCF failure life by initially turning parallel to contact surfaces. Their behavior of initiation and propagation is confined to a thin layer prior to the formation of surface distress. According to the critical principle of the preventive grinding strategy, removing the asperity influenced surface layer at about 70%-80% of the RCF failure life can effectively prevent the ratcheting cracks from developing into surface distress, which can lead to the formation of macro-RCF failure soon.

关 键 词:棘轮效应 表面缺陷 中炭钢 平面控制系统 热轧工艺

Ratcheting led surface failure of medium carbon bainitic steel under mild operation conditions
Peng Dou,Youguo Li,Kaiming Liang,Bingzhe Bai. Ratcheting led surface failure of medium carbon bainitic steel under mild operation conditions[J]. Journal of University of Science and Technology Beijing, 2005, 12(1): 60-66
Authors:Peng Dou  Youguo Li  Kaiming Liang  Bingzhe Bai
Abstract:The behavior of rolling contact fatigue (RCF) of medium carbon bainitic back-up roll steel was investigated under its actual work conditions. A kind of asperity-scale surface originated cracks, which is lying parallel or at an acute angle to the surfaces, initiated after unidirectional plastic flow of the material in thin surface layer had occurred. Theoretical analysis indicates that they nucleate due to plastic ratcheting induced by asperity contact stresses, and consequently are named as ratcheting cracks. After nucleating and initially propagating, they arrest at some depth and resume propagating till about 70%-80% of the RCF failure life by initially turning parallel to contact surfaces. Their behavior of initiation and propagation is confined to a thin layer prior to the formation of surface distress. According to the critical principle of the preventive grinding strategy, removing the asperity influenced surface layer at about 70%-80% of the RCF failure life can effectively prevent the ratcheting cracks from developing into surface distress, which can lead to the formation of macro-RCF failure soon.
Keywords:rolling contact fatigue  medium carbon bainitic steel  ratcheting  ratcheting crack  elastic shakedown limit
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