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Validation of Residual Stresses of Finite Element Simulation of Multi Pass Butt-Welded Plates Using the Contour Method

机译:用等高线法验证多道次对焊板材有限元模拟的残余应力

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In this paper a comparison between the results obtained using multi pass welding finite element (FE) simulation and the contour method was made to evaluate the accuracy in residual stresses simulated for plates with different thicknesses. The contour method has been used to measure the residual stresses in multi pass butt-welded plates. Two 316 austenitic stainless steel multi pass Metal Inert Gas (MIG) butt-welded plates of 10 mm thickness were cut using wire Electric Discharge Machining (EDM). The measurements of the cross-section were made with a coordinate measuring machine (CMM) and the points obtained were used to calculate the residual stresses by mean of static analysis of finite elements. A multi pass welding FE simulation of the two plates was made to obtain the residual stresses after time cooling. The simulated results are generally in good agreement with the experimental measurements. Other plates of 25 mm thickness and the same material were multi pass MIG butt-welded to evaluate the behavior with different thicknesses. In this case the number of passes was 11. The same method was applied to obtain the residual stresses. A comparison between different thicknesses was made. The residual stresses validation will allow the finite element simulation to be used for the later simulation of residual stresses relaxation.
机译:在本文中,使用多道次焊接有限元(FE)模拟获得的结果与轮廓法进行了比较,以评估不同厚度钢板模拟残余应力的准确性。轮廓法已被用来测量多道次对接焊接板中的残余应力。使用电火花线切割加工(EDM)切割两块厚度为10 mm的316奥氏体不锈钢多道次金属惰性气体(MIG)对焊板。横截面的测量是使用坐标测量机(CMM)进行的,所获得的点用于通过有限元的静态分析来计算残余应力。进行了两块板的多道次焊接有限元模拟,以获得时间冷却后的残余应力。模拟结果与实验测量结果基本吻合。将25mm厚度和相同材料的其他板进行多道次MIG对焊,以评估不同厚度的性能。在这种情况下,通过的次数为11。采用相同的方法获得残余应力。进行了不同厚度之间的比较。残余应力验证将允许将有限元模拟用于以后的残余应力松弛模拟。

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