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Numerical simulation of residual stresses induced by TIG butt-welding of thin plates made of AISI 316L stainless steel

机译:由AISI 316L不锈钢制成的薄板TIG对接焊接诱导残余应力的数值模拟

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The paper herein presented refers to the numerical simulations of a TIG butt-welding process applied to thin plates made of an AISI 316L austenitic stainless steel. Finite element (FE) thermal analyses were initially carried out in order to obtain the transient temperature distributions in the plates, and, subsequently time-dependent thermal results were used in the FE structural analyses, in order to calculate the residual stresses and deformations introduced by the welding process. A double Gaussian distribution - namely a double ellipsoid -, with front and rear dimension's areas of the arc defined based on real weld bead's measurement, was used as the heat source model (power density), and it was considered that it moved at constant speed. Numerical results calculated were in good agreement with the experimental residual stresses measured by the hole-drilling method, showing the adequacy of the method implemented and its potential to estimate residual stresses and distortions. In fact, it was found a deviation of 19% for the maximum principal stress calculated, while for the minimum principal stress a deviation value of 9% was obtained; in addition, the simulated weld bead presented slight deviations from the macrograph sample and the differences related to the depth of the weld pool were around 2%.
机译:本文提出的纸张是指施加到由AISI 316L奥氏体不锈钢制成的薄板的TIG对接焊接过程的数值模拟。最初进行有限元(Fe)热分析,以便在平板中获得瞬态温度分布,随后在Fe结构分析中使用时间依赖的热结果,以便计算所引入的残余应力和变形焊接过程。双高斯分布 - 即双椭圆形 - ,具有基于实际焊珠测量的弧线的前后尺寸和后尺寸的区域,用作热源模型(功率密度),并且认为它以恒定速度移动。计算的数值结果与通过空穴钻井方法测量的实验残余应力吻合良好,显示了所实施的方法的充分性及其估计残余应力和扭曲的潜力。实际上,发现最大主应力的偏差为19%,而对于最小主应力,获得了9%的偏差值;此外,模拟焊接珠子呈现与宏观样品的轻微偏差,与焊接池的深度相关的差异约为2%。

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