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Suppessing Cracking in Resistance Welding AA5754 By Mechanical Means

机译:用机械手段防止AA5754电阻焊中的裂纹

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In this paper mechanical aspects of cracking during single-and multi-spot welding of AA5754 was investigated by both experimental and analytical approaches. The ijpact of mechanical loading on crack initiation and propagation was studied with the consideration of various process parameters including the loading imposed by electrodes, the formation of liquid nugget, and constraining factors during and after welding. Tensile properties of AA5754 and their dependence on the temperature were tested at room and up to solidus temperatures, in order to provide a reference of cracking stress, Thermal-mechanical analysis was conducted based on the temperature field around the nugget and the state of stress encountered during welding. This analysis revealed that tensile stress might build up in the vicinity of the nugget during cooling, thus explained the experimental observation. General guidelines for suppressing cracking were proposed, i.e. to provide sufficient constraint around the weld spot during and after welding.
机译:本文通过实验和分析方法研究了AA5754单点和多点焊接过程中开裂的力学方面。研究了机械载荷对裂纹萌生和扩展的影响,其中考虑了各种工艺参数,包括电极施加的载荷,熔核的形成以及焊接过程中和焊接后的约束因素。为了在室温和最高固相线温度下测试AA5754的拉伸性能及其对温度的依赖性,以便提供开裂应力的参考,根据熔核周围的温度场和所遇到的应力状态进行了热力学分析。在焊接过程中。该分析表明,在冷却过程中,拉力可能会在熔核附近积聚,从而解释了实验观察结果。提出了抑制裂纹的一般准则,即在焊接期间和之后在焊点周围提供足够的约束。

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