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Determination of Residual Stresses Numerically Obtained in ASTM AH36 Steel Welded by TIG Process

机译:TIG工艺焊接的ASTM AH36钢中残余应力的数值确定

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Residual stresses have been numerically determined in welded joints. In this study, the numerical model is based on the coupling of different physical phenomena considering the thermal, mechanical and metallurgical nature of a welding process. The ABAQUS software program was used to perform the numerical simulations, based on the finite element method (FEM). The aspects related to the mathematical modeling of complex welding procedures were pondered with the FEM: variations in the physical and mechanical properties of the materials as a function of the temperature; the transience and the speed of the welding process, the material phase transformations; the different mechanisms of heat exchange with the environment (convection and radiation); all them associated with a high level of nonlinearity. The heat source used in this analytical model for heat supply was the double ellipsoid model proposed by Goldak, in which a 60 mm × 50 mm and 3 mm rectangular ASTM AH36 steel plate was used for the TIG process simulations. Throughout this work, the optimization of the welding procedures currently practiced in petrochemical and ship building industries can be applied to reduce the levels of residual stresses.
机译:残余应力已通过数值确定了焊接接头。在这项研究中,数值模型是基于考虑焊接过程的热,机械和冶金性质的不同物理现象的耦合而得出的。基于有限元方法(FEM),使用ABAQUS软件程序进行数值模拟。用有限元法考虑了与复杂焊接过程的数学建模有关的方面:材料的物理和机械性能随温度的变化;焊接过程的瞬态和速度,材料相变;与环境进行热交换的不同机制(对流和辐射);所有这些都与高度的非线性有关。该分析模型中用于供热的热源是Goldak提出的双椭圆体模型,其中将60 mm×50 mm和3 mm的矩形ASTM AH36钢板用于TIG工艺仿真。在整个工作过程中,可以应用目前石化和造船业中最优化的焊接程序来降低残余应力水平。

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