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Methodological approach for reducing computational costs of vehicle frontal crashworthiness analysis by using simplified structural modelling

机译:用简化的结构建模降低车辆正面耐心分析计算成本的方法方法

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A challenge in the design and optimisation of the vehicle front structures is the high computational costs required for crash analysis. A methodological approach to simplifying finite element vehicle models and crash barriers is presented in this paper. The methodology uses global deformation characteristics of structures which are obtained from the global crash model. For the simplification of the vehicle crash model, structural regions which sustain only elastic deformations during the frontal crash are replaced by kinematic numerical representations which describe both stiffness and load paths at the interface of the substituted structures. Verification studies of the simplified vehicle model show a very good agreement of the global and local structural response during the frontal crash. Further simplifications were applied to the offset deformable barrier by replacing its detailed crushing behaviour by kinematic descriptions. Through the combined use of both simplified numerical representations, the computational cost of a Euro new car assessment program (NCAP) offset crash analysis can be reduced by around 92%. With the obtained time reduction, structural optimisation studies of the remaining structure can be conducted efficiently for the identification of weight reduction potentials.
机译:车辆前结构的设计和优化中的挑战是碰撞分析所需的高计算成本。本文提出了一种简化有限元车模型和碰撞屏障的方法方法。该方法使用从全局碰撞模型获得的结构的全局变形特征。为了简化车辆碰撞模型,在前碰撞期间只维持弹性变形的结构区域被用于在取代结构的界面处描述刚度和负载路径的运动数值表示。简化车型的验证研究表明,在正面碰撞期间全球和局部结构响应的非常良好的一致性。通过通过运动描述取代其详细的粉碎行为,将进一步简化应用于偏移可变形屏障。通过综合使用两种简化的数值表示,欧元新车评估计划(NCAP)抵消崩溃分析的计算成本可以减少约92%。利用所获得的时间减少,可以有效地对剩余结构进行结构优化研究,以识别重量减轻电位。

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