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A three-dimensional thermal finite element analysis of AISI 304 stainless steel and copper dissimilar weldment

机译:AISI 304不锈钢和铜制异种焊接的三维热有限元分析

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The aim of this study to developed a 3-D thermal finite element model for dissimilar material welding of AISI-304 stainless steel and copper. Welding of similar material is widely studied using experimental and numerical methods but the problem becomes trivial for the welding of dissimilar materials especially in ferrous and nonferrous materials. Finite element analysis of dissimilar material welding is a cost-effective method for the understanding and analysis of the process. The finite element analysis has been performed to predict the heat affected zone and temperature distribution in AISI-304 stainless steel and copper dissimilar weldment using MSC Marc 2017. Due to the difference in physical properties of these materials the behavior of heat affected zone and temperature distribution are perceived to be different. To verify the accuracy of the thermal finite element model, the welding process was simulated with butt-welded joints having same dimensions and parameters from Attarha and Far [1]. It is found from the study that the heat affected zone is larger in copper weld pads than in AISI 304 stainless steel due to large difference in thermal conductivity of these two weld pads.
机译:该研究的目的是开发了一种用于AISI-304不锈钢和铜不同材料焊接的三维热有限元模型。使用实验和数值方法广泛研究类似材料的焊接,但是对于尤其是铁焊材料,尤其是含铁和有色材料的焊接变得微不足道。不同材料焊接的有限元分析是一种经济有效的理解和分析过程的方法。已经进行了有限元分析以预测使用MSC Marc 2017预测AISI-304不锈钢和铜异种焊接中的热影响区域和温度分布。由于这些材料的物理性质差异,热影响区域和温度分布的行为被认为是不同的。为了验证热有限元模型的准确性,用具有相同尺寸和来自Attarha的尺寸和参数的对接接头模拟焊接过程。从研究中发现,由于这两个焊接垫的导热率的导热率差异,热影响区域比AISI 304不锈钢更大。

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