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A development of simple analysis model on bumper barrier impact and new IIHS bumper impact using the dynamically equivalent beam approach

机译:使用动态等效梁方法开发保险杠护栏碰撞和新IIHS保险杠碰撞的简单分析模型

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This paper presents a simple analysis model for bumper barrier impact and new IIHS (Insurance Institute for Highway Safety) bumper impact instead of a non-linear finite element impact analysis. A dynamically equivalent beam approach was introduced to simplify the non-linear dynamic bumper impact. For a bumper barrier impact, the equivalent curved-beam element was substituted for the bumper beam and the bumper foam. For a new IIHS bumper impact, a modified curved-beam element of bumper barrier impact considering the effect of contoured new IIHS impact barrier was used. The accuracy of this simple analysis model was tested by comparing its results with those of the non-linear finite element analysis. Tested bumper beam types were press type beam and roll forming beam used widely in the current car bumpers. The maximum displacement error between the two models did not exceed 1.95% for a barrier impact and 13.2% for a new IIHS bumper impact. This accuracy is good enough to be used in the early stage of bumper beam design process. This simple analysis model is expected to reduce the car development time and tests cost significantly.
机译:本文提出了一个简单的保险杠障碍影响分析模型和新的IIHS(公路安全保险协会)的保险杠影响,而不是非线性有限元冲击分析。引入了动态等效梁方法来简化非线性动态保险杠的冲击。对于保险杠防撞,用等效的曲梁单元代替保险杠横梁和保险杠泡沫。对于新的IIHS保险杠冲击,使用了考虑轮廓的新IIHS冲击屏障的影响的改进的保险杠屏障冲击弯曲梁元件。通过将其结果与非线性有限元分析的结果进行比较,测试了此简单分析模型的准确性。被测试的保险杠横梁类型是在当前汽车保险杠中广泛使用的压力式横梁和辊压成型梁。两种型号之间的最大位移误差对障碍物的冲击不超过1.95%,对新IIHS保险杠冲击的不超过13.2%。此精度足以在保险杠梁设计过程的早期阶段使用。这种简单的分析模型有望减少汽车开发时间并显着降低测试成本。

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