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Joint resistance depending on joint force of high current aluminum joints

机译:接头电阻取决于大电流铝接头的接头力

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This work deals with the results of theoretical and experimental studies on the relationship between the joint resistance of high current aluminum joints and their decreasing joint force by creep of the conductor material. The joint resistance of aluminum busbar joints with machined and with randomly rough joint surfaces is measured depending on joint force. In the case of joints with machined joint surfaces the plastic deformation on the joint surface after releasing the joints is ascertained by optical microscopy. It is assumed that the plastically deformed portion of the joint surface equals the area of a-spots. Thus the number and the mean radius of the a-spots and the distance between them are determined. Holm's and Greenwood's formulas for multi-spot-contacts are used to calculate the joint resistance. In the case of joints with randomly rough joint surfaces the surface profile is measured by means of a laser profilometer. The rough surfaces are described by model-surfaces with spherical summits. The elastic and plastic deformation of load-bearing summits is calculated by means of the finite element method (FEM). The number and the load-bearing area of the summits under an increasing and afterwards decreasing normal force (tightening and releasing) is determined. Furthermore it is assumed, that the load bearing area equals the area of a-spots. Holm's formulas for multi-spot contacts and Greenwood's theory of the mechanical contact of randomly rough surfaces are used to calculate the joint resistance depending on an increasing and afterwards decreasing joint force. The results of calculation are compared to those of the measurements.
机译:这项工作涉及理论和实验研究的结果,这些研究涉及大电流铝接头的接头电阻与其因导体材料的蠕变而降低的接头力之间的关系。测量铝制母线接头的机械加工接头和随机粗糙接头表面的接头电阻,具体取决于接头力。对于具有机械加工接头表面的接头,通过光学显微镜确定松开接头后接头表面的塑性变形。假定接合面的塑性变形部分等于a点的面积。因此,确定了a点的数量和平均半径以及它们之间的距离。 Holm和Greenwood的多点接触公式用于计算接头电阻。对于接头表面随机粗糙的接头,其表面轮廓通过激光轮廓仪进行测量。粗糙表面由带有球形凸台的模型表面描述。承重山顶的弹性和塑性变形是通过有限元方法(FEM)计算的。确定在法向力增加(然后减小)(拧紧和释放)之后,山顶的数量和承重区域。此外,假定承载面积等于a点的面积。 Holm的多点接触公式和随机粗糙表面机械接触的Greenwood理论被用来根据增加和随后减少的接合力来计算接合阻力。将计算结果与测量结果进行比较。

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