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On the assessment of the macro-element methodology for full vehicle crashworthiness analysis

机译:关于整车耐撞性分析的宏观方法论的评估

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摘要

Very fast full vehicle simulations through the use of effective, but drastically simplified digital models is a topic of great interest to automotive manufacturers and research communities. A non-conventional modelling and simulation approach using the macro-element methodology, embedded in Visual Crash Studio (VCS), is assessed. Modelling practices for converting finite element models to macro-element models are developed and presented. A large number of automotive systems, ranging from components and sub-systems to full vehicle models, is investigated. Numerical results obtained from VCS and the finite element code LS-DYNA compared moderately in the majority of the cases. The accuracy and efficiency of the macro-element methodology for vehicle crashworthiness analysis as well as the necessity for model corrections are discussed. Through improved functionality and accuracy, the macro-element methodology could potentially enable engineers to evaluate multiple conceptual designs in shorter times and revolutionise the vehicle development phase.
机译:通过使用有效但大大简化的数字模型进行非常快速的整车仿真,是汽车制造商和研究界非常感兴趣的话题。评估了嵌入到Visual Crash Studio(VCS)中的使用宏元素方法的非常规建模和仿真方法。开发并介绍了将有限元模型转换为宏观元素模型的建模方法。研究了从零件和子系统到整车模型的大量汽车系统。在大多数情况下,从VCS和有限元代码LS-DYNA获得的数值结果进行了适度的比较。讨论了用于车辆耐撞性分析的宏元方法的准确性和效率,以及进行模型校正的必要性。通过改进的功能和准确性,宏元素方法可能使工程师能够在更短的时间内评估多个概念设计,并彻底改变汽车开发阶段。

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