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Rollover Analysis of a Bus Using Beam and Nonlinear Spring Elements

机译:使用梁和非线性弹簧元件的总线的翻转分析

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In case of bus rollover, the body structure of a bus should be designed to ensure the survival space for passengers. So, this study focused on evaluating the rollover strength through a computer simulation using the commercial code, LS-DYNA3D at the initial stage of vehicle development. For this purpose, section structure of the bus frame was first modeled using simple beam elements, and the impact boundary conditions required by ECE regulation No. 66 were applied. In order to validate the beam element model, the simulation results were compared to those of shell element model. Since the analysis error with beam element model was mainly caused by the difference in strain energy at the T-shaped connecting joint, the joint connection was modified with nonlinear springs to account for the local buckling. With the improved beam model, the results were in a good agreement to shell element model, but the simulation times were much reduced.
机译:在公交车滚动的情况下,公共汽车的车身结构应设计为确保乘客的生存空间。因此,本研究专注于通过使用商业代码,LS-DYNA3D在车辆发育的初始阶段来评估翻转强度。为此目的,首先使用简单的光束元件建模汇流框架的截面结构,并施加ECE规则所需的冲击边界条件。为了验证光束元素模型,将仿真结果与壳元素模型进行比较。由于具有光束元件模型的分析误差主要是由T形连接接头处的应变能差异引起的,因此用非线性弹簧修改接头连接,以解释局部屈曲。利用改进的光束模型,结果与壳体元素模型很好,但模拟时间差得多。

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