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Micromechanics behavior of fatigue cracks in Hadfield steel railway crossing 被引量:1

Micromechanics behavior of fatigue cracks in Hadfield steel railway crossing
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摘要 In order to predict the mechanism of the formation and propagation of rolling contact fatigue cracks in Hadfield steel railway crossings(HSRC),the residual strain,microstructure,crystal orientation,and microhardness surrounding fatigue cracks were investigated.Results show that the formation and propagation of fatigue cracks in HSRC have no correlation with the crystal orientation and boundaries of grains.The hardness and residual strain in the field around the fatigue crack are lower than those in other regions.The compressive strain around the fatigue crack is released after crack propagates,which reduces the hardness around the fatigue crack.Deformation twins and dislocations play a key role in the work hardening of HSRC. In order to predict the mechanism of the formation and propagation of rolling contact fatigue cracks in Hadfield steel railway crossings (HSRC), the residual strain, microstructure, crystal orientation, and microhardness surrounding fatigue cracks were investigated. Results show that the formation and propagation of fatigue cracks in HSRC have no correlation with the crystal orientation and boundaries of grains. The hardness and residual strain in the field around the fatigue crack are lower than those in other regions. The compressive strain around the fatigue crack is released after crack propagates, which reduces the hardness around the fatigue crack. Deformation twins and dislocations play a key role in the work hardening of HSRC.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第5期1151-1154,共4页 中国科学(技术科学英文版)
基金 supported by the National Science Foundation for Distinguished Young Scholars(Grant No.50925522)
关键词 接触疲劳裂纹 铁路道口 高锰钢 力学行为 细观 显微硬度 残余应变 晶体取向 hadfield steel, EBSD, residual strain, work hardening, fatigue cracks
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