Load path U* analysis in passenger car body structures and load transfer balance in structural components

Y. Kumazawa, S. Kuwahara, M. Omiya, Kunihiro Takahashi
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Abstract

The authors investigate the overall structural balance of stiffness from the viewpoint of load transfer and load paths. The concept of load transfer balance is examined and graphically expressed using U*. Index U* is a new concept introduced by the authors to express load transfer in structures. The load transfer balance is calculated for an automotive body structure under conditions of vertical loading on the front suspension. The load transfer balance of a body affects the drivability of an automobile. Through the use of figures showing the U* distribution along load transfer paths, the balance of load transfer is clearly expressed. From these figures, it is shown that frontal load is mainly transferred to the lower structure rather than to the upper structure in the vehicle body used in this study. Diagrams and histograms for U*sum, which is the summation of two kinds of U*s, are presented in this study to show the load transfer balance more precisely. These figures show that the transition of load transfer balance to the lower structure is caused by the stiffened support effect near the rear supporting points.
乘用车车身结构载荷路径U*分析及结构构件载荷传递平衡
作者从荷载传递和荷载路径的角度研究了整体结构的刚度平衡。负载转移平衡的概念是检验和图形表示使用U*。指标U*是作者提出的表达结构荷载传递的新概念。计算了某汽车车身结构在前悬架垂直载荷作用下的载荷传递平衡。车身的载荷传递平衡关系到汽车的驾驶性能。通过图形显示沿负载传递路径的U*分布,清晰地表达了负载传递的均衡性。从这些图中可以看出,在本研究的车身中,正面载荷主要是向下结构传递,而不是向上结构传递。U*sum是两种U*s的总和,为了更准确地显示负载转移平衡,本研究中使用了U*sum的图表和直方图。由图可知,荷载传递平衡向下部结构的过渡是由后支撑点附近的加劲支撑效应引起的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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