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Thermal contact conductance effect in modeling of resistance spot welding process of aluminum alloy 6061-T6

机译:热接触电导在铝合金6061-T6电阻点焊过程建模中的作用

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摘要

In this study, a finite element model was developed based on the thermal contact conductance for predicting the nugget formation during the welding process in aluminum alloy 6061-T6. Since the strength of spot welded joints is completely dependent on nugget dimensions, an axisymmetric coupled structural-thermal-electrical finite element model was built and utilized to predict the nugget size. The thermal contact conductance, which is considered as a function of temperature and surface roughness, was applied in the contact area between electrode-workpiece and workpiece-workpiece. The results were validated by the data obtained from the nugget experimental measurement tests on the aluminum alloy and the previous study on steel. The obtained data from finite element model enjoys good agreement with the experimental nugget measurement tests. The results indicate that in the modeling of aluminum alloys spot welding, the thermal contact conductance has a major role in nugget enlargement during the welding process and cannot be ignored. In addition, it was shown that by increasing the welding heat input to the nugget zone, the contact resistance at the interfaces (electrode-sheet and sheet-sheet) will be decreased. As a result of that, the height of the nugget increases with a higher rate comparing to its diameter. Furthermore, in this study, the effects of spot welding parameters such as the welding current and the welding time are investigated on nugget dimensions.
机译:在这项研究中,建立了基于热接触电导的有限元模型,以预测铝合金6061-T6焊接过程中的熔核形成。由于点焊接头的强度完全取决于熔核尺寸,因此建立了轴对称结构热电有限元模型并将其用于预测熔核尺寸。在电极-工件和工件-工件之间的接触区域中施加了热接触电导,它被认为是温度和表面粗糙度的函数。通过对铝合金进行的金块实验测量测试和先前对钢进行的研究获得的数据验证了结果。从有限元模型获得的数据与实验金块测量测试具有良好的一致性。结果表明,在铝合金点焊建模中,热接触电导率在焊接过程中对熔核增大起着主要作用,不能忽视。另外,已经表明,通过增加输入到熔核区的焊接热,界面(电极片和片片)上的接触电阻将减小。结果,相比于其直径,熔核的高度以更高的速率增加。此外,在本研究中,研究了点焊参数(如焊接电流和焊接时间)对熔核尺寸的影响。

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