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Numerical investigation of residual thermal stresses in welded joints of heterogeneous steels with account of technological features of multi-pass welding

机译:考虑多道次焊接技术特征的异种钢焊接接头残余热应力数值研究

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The paper describes a two-dimensional mathematical model to evaluate stresses in welded joints formed in multi-pass welding of multi-layered steels. The model is based on a system of equations that includes the Lagrange's variational equation of the incremental theory of plasticity and the Biot's variational principle for heat transfer simulation. In the constitutive equations, the changes in the volume which occur as a result of phase transitions can be taken into account Therefore, the prehistory and impact of thermal processing of materials on macroscopic properties of the medium can be considered. The variational-difference method is used to solve both the heat transfer equation for calculation of the non stationary temperature field and the quasi-static problem of ther-moplasticity at each time-step. The two-dimensional problems were solved to estimate the residual thermal stresses (for the case of plane stress or plane strain) during cooling of welds and assessing their impact on strain localization in the heat-affected zone under tensile and compressive loading considering differences in mechanical properties of welded materials. It is shown that at initial stages of the plastic flow, the residual stresses significantly affect the processes of stress concentration and localization of strains in welded joints. To estimate the model parameters and to verify the modeling results, the available experimental data from scientific literature obtained on the basis of the Satoh test for different welding alloys was used.
机译:本文描述了一个二维数学模型,用于评估多层钢多道次焊接中形成的焊接接头的应力。该模型基于方程组,其中包括可塑性增量理论的拉格朗日变分方程和传热模拟的毕奥变分原理。在本构方程中,可以考虑由于相变而发生的体积变化。因此,可以考虑材料的史前历史和热处理对介质宏观性能的影响。变分差分法既可以求解用于计算非平稳温度场的传热方程,又可以求解每个时间步的热塑性准静态问题。解决了二维问题,以估计焊缝冷却过程中的残余热应力(对于平面应力或平面应变而言),并考虑了机械力的差异,评估了它们在拉伸和压缩载荷下对热影响区的应变局部化的影响焊接材料的性能。结果表明,在塑性流动的初始阶段,残余应力会显着影响应力集中和焊接接头应变局部化的过程。为了估算模型参数并验证建模结果,使用了基于Satoh试验从不同焊接合金获得的科学文献中的可用实验数据。

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