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Dynamic performance analysis of a light van body-in-white structure

机译:轻型货车白车身结构的动态性能分析

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摘要

Requirement for low emissions and better vehicle performance has led to the demand for lightweight vehicle structures. Lighter gauge panels are being used to construct the body-in-white (BIW) monocoque structure, which is the basic component of the vehicle body. Since lighter gauge panels tend to generate more vibration and interior noise, it is necessary to optimize the dynamic performance of lightweight vehicle structures in order to achieve acceptable levels of vibro-acoustic performance. The design of a light commercial van structure has evolved over the years and through a lightweighting exercise the current BIW is about 10 per cent lighter than the previous BIW even though the volume capacity was increased by 15 per cent and the load-carrying capacity by 18 per cent. In this study, the dynamic performance of the current production light van BIW structure is investigated. Its performance is assessed against the structural dynamic performance standards which have been established for this class of structures. While the input mobility performance was found to exceed the standards easily, the modal mobility performance was found to be unsatisfactory owing to the occurrence of local panel resonant modes in the two side panels. A finite element model of the structure was developed to study the effect of adding stringers to the roof and side panels to eliminate some of the local panel modes and thus to improve the dynamic performance of the structure.
机译:对低排放和更好的车辆性能的需求导致对轻型车辆结构的需求。较轻规格的面板用于构造白车身(BIW)单壳结构,这是车身的基本组成部分。由于较轻规格的面板往往会产生更多的振动和内部噪音,因此有必要优化轻型车辆结构的动态性能,以达到可接受的振动声性能水平。轻型商用面包车结构的设计已经发展了多年,通过轻量化实践,当前的BIW比以前的BIW轻约10%,尽管其容积容量增加了15%,承载能力增加了18%百分。在这项研究中,研究了当前生产的轻型货车BIW结构的动态性能。根据针对此类结构建立的结构动态性能标准评估其性能。尽管发现输入迁移率性能很容易超过标准,但是由于在两个侧面板中出现局部面板共振模式,所以模态迁移率性能不令人满意。开发了结构的有限元模型,以研究在屋顶和侧板上增加纵梁的效果,以消除某些局部板模式,从而改善结构的动态性能。

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