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Study of structural optimization design on a certain vehicle body-in-white based on static performance and modal analysis

机译:基于静态性能和模态分析的特定车身结构优化设计研究

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摘要

The intensity analysis was proposed for a certain all-aluminum vehicle body-in-white, and an optimistic method of the vehicle body was carried out based on lightweight target. The finite element model of vehicle body-in-white was established, and the flexural rigidity and torsional rigidity of the vehicle body are calculated according to the actual operating conditions of the vehicle. The flexural rigidity and torsional rigidity of the vehicle body are calculated, and the main opening deformation of the vehicle body under these two working conditions was studied. Finally, based on the thickness of the body panel, the structural sensitivity analysis of the vehicle body was carried out. According to the sensitivity analysis data, the optimization variable is determined with lightweight as the target, and the vehicle body structure is optimized. The results showed that the static and dynamic performance indexes of the white body were higher than the standards of similar motorcycle type at home and abroad, the bending stiffness of the structurally improved basic model after sensitivity optimization was reduced by 2.1% compared with before optimization, but still much higher than the target reference value (122,000 N/mm). And the quality of the vehicle body was reduced, which met the lightweight requirements of optimized design after the optimization of the thickness of the improved basic model.
机译:对于某个全铝车身,提出了强度分析,并且基于轻质目标进行车身的乐观方法。建立了车辆身体上的有限元模型,并且根据车辆的实际操作条件计算了车身的弯曲刚度和扭转刚度。计算了车身的弯曲刚度和扭转刚度,研究了在这两个工作条件下车身的主开口变形。最后,基于主体面板的厚度,进行了车身的结构敏感性分析。根据灵敏度分析数据,优化变量用轻质作为目标来确定,并且车身结构被优化。结果表明,白体的静态和动态性能指数高于国内外类似摩托车型标准的标准,在优化前比较敏感性优化后结构改善的基本模型的弯曲刚度降低了2.1%,但仍然远远高于目标参考值(122,000 n / mm)。并且车身的质量减少,在优化改进的基本模型的厚度之后达到了优化设计的轻量级要求。

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