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Fatigue life assessment of railway rail subjected to welding residual and contact stresses

机译:焊接残余应力和接触应力作用下的铁路疲劳寿命评估

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摘要

Even though repair welding has been adopted as a useful remedial technique for railway rail, cracks were found beneath the weld layer under wheel-to-rail contact conditions. In the present study, lifetime assessment of a typical railway rail subjected to both welding residual and contact stresses is carried out to resolve this issue; A finite element method to predict the residual stress was established by taking into account the in-situ overlay welding process and applied for the rail with different welding depths to examine optimum weld geometry as well as failure causes. Subsequently, the contact stress during a wheel rolled over the weld was calculated and combined with the residual stress for fatigue damage assessment. The residual stress was reduced as the increase of the welding depth so that sufficient grinding before the overlay process will be beneficial to prevent unanticipated failure and the combined stress should be considered for accurate fatigue life assessment of the overlay-welded railway rail.
机译:尽管已采用修补焊接作为铁路的有用补救技术,但在轮对轨接触条件下,在焊接层下方仍发现了裂纹。在本研究中,对一条典型的受焊接残余应力和接触应力共同作用的铁路进行了寿命评估,以解决该问题。考虑到原位堆焊工艺,建立了一种预测残余应力的有限元方法,并将其应用于具有不同焊接深度的钢轨,以检查最佳焊接几何形状以及失效原因。随后,计算了车轮在焊缝上滚动时的接触应力,并将其与残余应力相结合以进行疲劳损伤评估。随着焊接深度的增加,残余应力减小,因此在堆焊之前进行充分的磨削将有助于防止意外的故障,因此应考虑组合应力以准确评估堆焊铁路的疲劳寿命。

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