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Absorbable energy monitoring scheme: new design protocol to test vehicle structural crashworthiness

机译:可吸收能量监测方案:测试车辆结构耐撞性的新设计协议

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摘要

In vehicle crashworthiness design optimization detailed system evaluation capable of producing reliable results are basically achieved through high-order numerical computational (HNC) models such as the dynamic finite element model, mesh-free model etc. However the application of these models especially during optimization studies is basically challenged by their inherent high demand on computational resources, conditional stability of the solution process, and lack of knowledge of viable parameter range for detailed optimization studies. The absorbable energy monitoring scheme (AEMS) presented in this paper suggests a new design protocol that attempts to overcome such problems in evaluation of vehicle structure for crashworthiness. The implementation of the AEMS involves studying crash performance of vehicle components at various absorbable energy ratios based on a 2DOF lumped-mass-spring (LMS) vehicle impact model. This allows for prompt prediction of useful parameter values in a given design problem. The application of the classical one-dimensional LMS model in vehicle crash analysis is further improved in the present work by developing a critical load matching criterion which allows for quantitative interpretation of the results of the abstract model in a typical vehicle crash design. The adequacy of the proposed AEMS for preliminary vehicle crashworthiness design is demonstrated in this paper, however its extension to full-scale design-optimization problem involving full vehicle model that shows greater structural detail requires more theoretical development.
机译:在车辆防撞性设计优化中,基本上可以通过动态有限元模型,无网格模型等高阶数值计算(HNC)模型来实现能够产生可靠结果的详细系统评估。但是,这些模型的应用尤其是在优化研究期间它们本质上对计算资源的内在需求,求解过程的条件稳定性以及对于详细的优化研究缺乏可行的参数范围的知识,基本上受到了挑战。本文提出的可吸收能量监测方案(AEMS)提出了一种新的设计方案,该方案试图克服在评估汽车结构的耐撞性时遇到的此类问题。 AEMS的实施涉及基于2DOF集总质量弹簧(LMS)车辆碰撞模型研究各种可吸收能量比下的车辆部件的碰撞性能。这样可以迅速预测给定设计问题中有用的参数值。通过开发关键负载匹配标准,可以进一步改进经典一维LMS模型在车辆碰撞分析中的应用,该标准可以对典型车辆碰撞设计中抽象模型的结果进行定量解释。本文证明了拟议的AEMS足以进行初步的车辆防撞设计,但是将其扩展到涉及显示更多结构细节的完整车辆模型的全面设计优化问题需要更多的理论发展。

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