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Stress Analysis and Validation of Superstructure of 15-Meter Long Bus under Normal Operation

机译:正常运行下15米长总线上部结构的应力分析与验证

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The strength of the superstructure of a bus is very critical to the safety of passengers, both in normal operation and in the event of accident. During the normal operation, the structure of the bus is subjected to several loads, which may be induced by its inertia during vehicle maneuvering (i.e. braking and cornering) or by external loads from the road (i.e. crossing over a speed bump). Moreover, there is a substantial possibility that these loads may lead to a structural failure. Hence, it is necessary to determine stresses occurred in the bus's superstructure to ensure its integrity under these driving scenarios. This paper presents techniques implemented to analyze stresses on the superstructure of a newly designed 15-meter long bus subjected to loads previously mentioned using Finite Element Method (FEM). The stress analysis technique used in each scenario is selected based upon the frequency intensity of load excitations and the dynamic responses of the structure. Besides, the results obtained from FEM, particularly strains, are validated with the experimental ones to investigate the fidelity of the selected techniques.
机译:公共汽车的上部结构的强度对于乘客的安全性非常重要,这两者都在正常运行和事故发生时。在正常操作期间,公共汽车的结构受到几负载,其可以通过其惯性在车辆操纵(即制动和转弯)或通过从道路的外部载荷(即穿过速度凸块)来诱导。此外,这些负载可能导致结构故障的显着可能性。因此,有必要确定在总线上层建筑中发生的应力,以确保其在这些驾驶场景下的完整性。本文呈现了实施的技术,以分析使用有限元方法(FEM)前面提到的载荷的新设计的15米长公共汽车上部结构的应力。基于负载激励的频率强度和结构的动态响应来选择每个场景中使用的应力分析技术。此外,从FEM,特别是菌株获得的结果用实验组验证,以研究所选技术的保真度。

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