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Finite element modeling of low floor mass transit bus and analysis of frontal impact scenarios.

机译:低层公交车的有限元建模和正面碰撞场景分析。

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There is no international regulation for the frontal collision of the buses, protecting their occupants and partners in traffic. There are some regulation such as ECE R-80 which deals with strength of seat structure of the coaches and their anchorages strength. There is increasing need to focus issues like occupant protection and full scale crash testing regulation for buses. This thesis attempts to collect possible subjects required for international regulation required for crashworthiness of transit buses.;This research attempts to develop and validate a model of transit bus for all three impact conditions. The full finite element model is developed with help hypermesh software and its validation and analysis is done with help Ls-Dyna nonlinear finite element solver. The cost of actual testing and secrecy maintained by manufacturers make research process difficult and increase the importance of computer simulations. To boost the research of crash worthiness of transit need for computer model is felt.;This thesis examines several frontal crash test procedures and evaluates how well each procedure meets the objective. This validated model is used to analyze various real world impact scenarios and its analysis with European and federal regulation. This validated model is used to extract crash pulses of various impact scenarios at the center of gravity of the bus. These extracted crash pulses are applied to the madymo model to estimate the injuries to occupants of the bus. This thesis discusses the design aspects of bus frontal impact behavior as one of the main subjects of bus crashworthiness and results of previous full scale tests comparing the Fem simulation results carried out on the transit bus.
机译:对于公共汽车的正面碰撞,没有国际法规,以保护其乘员和交通伙伴。有一些法规,例如ECE R-80,涉及教练座位结构的强度及其锚固强度。越来越需要关注诸如乘员保护和公共汽车全面碰撞测试法规之类的问题。本论文试图收集公交公共汽车防撞性所需的国际法规要求的可能课题。本研究试图针对三种影响条件开发并验证公交公共汽车模型。完整的有限元模型是使用help hypermesh软件开发的,其验证和分析是通过help Ls-Dyna非线性有限元求解器完成的。制造商维护的实际测试成本和保密性使研究过程变得困难,并增加了计算机仿真的重要性。为了促进人们对运输途中碰撞价值的研究,人们需要计算机模型。本文研究了几种正面碰撞测试程序,并评估了每个程序对目标的满意程度。该经过验证的模型可用于分析各种现实世界的影响情景,并根据欧洲和联邦法规对其进行分析。这个经过验证的模型可用于提取公交车重心处各种碰撞场景的碰撞脉冲。这些提取的碰撞脉冲被应用于发动机模型,以估计对公共汽车乘员的伤害。本文讨论了作为车辆防撞性的主要主题之一的公交车正面碰撞行为的设计方面,并比较了在公交车上进行的Fem仿真结果进行的先前全面测试的结果。

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