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Simulation and sensitivity analysis of controlling parameters in resistance spot welding

机译:电阻点焊控制参数的仿真与灵敏度分析

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This study was performed to investigate the fundamental parameters controlling the nugget growth. The parameters were categorized into four groups, i.e. material parameters, electrical parameters, thermal parameters and geometrical parameters. In order to quantify the sensitivity of nugget growth to changes in these parameters, a numerical model which incorporates the electrical, mechanical and thermal contact was developed. As a result, a sensitivity index table was constructed and analyzed to ascertain the relative importance of these characteristic parameters. It was found that the most important factor in determining the variability of nugget growth behavior is the ratio of contact radius to electrode radius and the ratio of electrode radius to the square of specimen thickness. In general for a variation of 10%, the geometrical parameters are most important, followed by the material parameters. The electrical parameters and the thermal parameters are the least important. The importance of contact at the faying interface is greater for the contact area than for the contact resistance.
机译:进行这项研究以研究控制矿块生长的基本参数。这些参数分为四组,即材料参数,电参数,热参数和几何参数。为了量化熔核生长对这些参数变化的敏感性,开发了包含电,机械和热接触的数值模型。结果,构造并分析了灵敏度指标表,以确定这些特征参数的相对重要性。发现确定熔核生长行为可变性的最重要因素是接触半径与电极半径的比以及电极半径与试样厚度的平方的比。通常,对于10%的变化,几何参数是最重要的,其次是材料参数。电气参数和热参数是最不重要的。对于接触区域,在接触界面处接触的重要性比对接触电阻的重要性更大。

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