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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Comparing the effect of electrode geometry on resistance spot welding of aluminum alloys between experimental results and numerical simulation
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Comparing the effect of electrode geometry on resistance spot welding of aluminum alloys between experimental results and numerical simulation

机译:比较电极几何形状对实验结果与数值模拟铝合金电阻点焊的影响

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摘要

With the tightened emission limits the amount of aluminum sheets in future body-in-white concepts is on the rise. Thus, there is a need for optimizing the joining techniques to fulfill the upcoming challenges linked to high volume production. Especially the electrode life for resistance spot welding as a reliable and established process needs to improve. In order to do so the effect of electrode geometries on the electrode life is investigated. It is shown that the radius of curvature, the size of the face diameter, and the cone angle influences the electrode life. The reason for this behavior is explained by a numerical simulation developed by the TU Dresden. Based on these findings, an analysis with the purpose of investigating an improved electrode geometry is conducted. It is shown that a domed electrode with a radius of curvature of 150mm should be used. This electrode combines the ability to crack the oxide layer effectively while ensuring a sufficient area of contact between electrode and sheet.
机译:随着收紧的排放限制了未来的身体概念中铝板的数量正在上升。因此,需要优化接合技术以实现与大批量生产相关的即将到来的挑战。特别是用于抵抗点焊的电极寿命,作为可靠和建立的过程需要改善。为此,研究了电极几何形状对电极寿命的影响。结果表明,曲率半径,面部直径的尺寸,锥角影响电极寿命。这种行为的原因是由Tu Dresden开发的数值模拟来解释。基于这些发现,进行了研究改进电极几何形状的分析。结果表明,应使用具有150mm曲率半径的圆顶电极。该电极结合了有效地裂解氧化物层的能力,同时确保电极和片材之间的足够接触区域。

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