有限元法
材料科学
接触力学
热的
复合材料
发热
接触分析
接触面积
结构工程
压力(语言学)
开发(拓扑)
热分析
摩擦学
振幅
接触区
热机械分析
计算机模拟
接触区
数值分析
材料性能
机械工程
冶金
作者
Chunyan He,Zhen Yang,Pan Zhang,Shaoguang Li,Meysam Naeimi,Rolf Dollevoet,Zili Li
标识
DOI:10.1016/j.triboint.2024.109577
摘要
<p>Polygonal wear is a type of damage commonly observed on the railway wheel tread. It induces wheel-rail impacts and consequent train/track components failure. This study presents a finite element (FE) thermomechanical wheel-rail contact model, which is able to cope with the three possible generation and development mechanisms of polygonal wear: initial defects, thermal effect, and structural dynamics. The polygonal wear-induced impact contact and further development of wear are simulated. The simulated elastic contact solutions are verified against the program CONTACT. Different material properties (elastic, elasto-plastic and elasto-plastic-thermo, i.e. with thermal softening) and initial polygonal profiles are then applied to the FE model to investigate the influence of wheel/rail material and wear amplitude on wheel-rail contact stress and wear development. The simulations indicate that the wheel-rail impact-induced temperature may reach up to 362 ℃ at the contact interface, and the high temperature at the contact area influences wheel-rail contact stress and wear depth.</p>
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