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Low Cycle Fatigue of Seam Welds-Numerical Simulation under Consideration of Material Inhomogeneities

机译:材料不均匀性焊缝焊缝数值模拟的低循环疲劳

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Austenitic stainless steel of type X6CrNiNb18-10 is a commonly used material for pipelines of power plants. The fatigue behavior of these components is often operationally determined by thermo-mechanical stresses. Welded joints are subjected to various geometries and micro structural inhomogeneities, which lead to complex stresses in the component. This is the reason for a reduced fatigue life, in contrast to material's life itself, is observed. A parametric finite element model is developed, to investigate the influence parameters. In order to take into account the nonuniform hardness distribution in the region of the weld seam, hardness measurements are the base for the consideration of a material mismatch in plastic behavior. The material parameters for the used Chaboche material model must be modified individually, depending on the mismatch. In addition, the consideration of imperfections of the welding geometry is an important factor, too. Using a local approach by using measured geometry-parameters of the weld seam, acceptable accordance between experimentally and numerically calculated fatigue lives can be gained. The observed phenomena in experimental investigations that fatigue failure occurs either at the base metal or at the weld toe (depending on the loading conditions) can be reproduced by numerical simulations. This knowledge is used to develop an approach for lifetime estimation.
机译:X6CrNINB18-10型奥氏体不锈钢是发电厂管道的常用材料。这些组分的疲劳行为通常通过热机械应力来操作地确定。焊接接头经受各种几何形状和微结构不均匀性,这导致组分中的复合应力。这是观察到材料的生命本身对疲劳寿命减少的原因。开发了参数化有限元模型,以研究影响参数。为了考虑焊缝区域的不均匀硬度分布,硬度测量是考虑塑性行为中材料不匹配的基础。根据不匹配,必须单独修改二手Chaboche材料模型的材料参数。此外,考虑焊接几何形状的缺陷也是一个重要因素。通过使用局部方法使用焊缝的测量几何参数,可以获得根据实验和数值计算的疲劳寿命的可接受的。在实验研究中观察到的现象,即疲劳破坏在贱金属或焊接脚趾处发生(取决于负载条件),可以通过数值模拟来再现。该知识用于开发寿命估计的方法。

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