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Calculation of 3D residual notch stress intensity factors by means of the peak stress method

机译:通过峰值应力法计算3D残余凹口应力强度因子

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摘要

In the recent literature new approaches were developed to include the residual stress effects in fatigue strength assessments of welded joints. Among these, the local approach based on the calculation of the Residual Notch Stress Intensity Factors (R-NSIFs) seems very promising. Unfortunately, its main drawback is linked to the difficulty to assess such parameters by means of numerical simulation of the welding process, because of the high mesh density required to capture the residual stress field singularity. In this scenario, new numerical methodologies are needed which use coarse meshes, such as the Peak Stress Method (PSM). In this work, an investigation is described aimed at analyzing the PSM applicability to estimate the R-NSIF values in a 3D butt-welded joint. It was shown that the R-NSIF values obtained 'via' the PSM by using 3D models are quite higher (about 45%) as compared to estimations obtained by means of a 2D model, under generalized plain strain condition. This was attributed to the limitation of 2D models to correctly assess the residual stress field induced by welding processes.
机译:在最近的文献中,开发了新方法,包括焊接关节疲劳强度评估中的残余应力影响。其中,基于剩余凹口应力强度因子(R-NSIF)计算的局部方法似乎非常有前途。遗憾的是,由于捕获残余应力场奇异性所需的高网状密度,其主要缺点与难以评估这些参数的难度相关联。在这种情况下,需要使用粗网格的新数值方法,例如峰值应力法(PSM)。在这项工作中,描述了一种研究,旨在分析PSM适用性来估计3D对接接头中的R-NSIF值。结果表明,与通过2D模型获得的估计相比,使用3D模型获得的R-NSIF值是相比更高的(约45%),其在概括的普通应变条件下获得。这归因于2D模型的限制,以正确评估通过焊接过程引起的残余应力场。

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