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MODAL ANALYSIS OF BUS ROLL CAGE STRUCTURE FOR OPTIMUM ROLLOVER DESIGN

机译:用于最佳翻转设计的母线滚动笼结构模态分析

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Improvement of vehicle stability and crashworthiness to reduce rollover and to provide increased occupant protection in the event of rollover requires that the effects of design parameters on vehicle rollover propensity are thoroughly understood. Improvement of rollover characteristics of buses currently requires extensive experimentation and considerable resources associated with rollover destruction of experimental bus structures. There is an unmet need for a more efficient developmental process which would incorporate computer modelling and simulation. This paper presents an alternative research approach based on experimental and analytical modal analysis of the bus roll cage structure. Modal analysis is used to identify the dynamic characteristics of the structure and to tailor those characteristics in order to increase the overall rollover stability of the bus and its rollover strength while minimising the deformation of the internal residual space. Full scale tests have been carried out on a standard roll cage structure which has been designed and manufactured to suit typical two axle single deck bus constructions used for route, school or charter bus services.
机译:车辆的稳定性和碰撞安全性的改进,以减少翻车,并提供侧翻的情况下,增加乘员保护要求的车辆侧翻倾向的设计参数的影响进行彻底的理解。的公共汽车的翻转特性的改善目前需要广泛的实验,并与实验总线结构中的侧翻破坏有关大量的资源。还有一个更有效的发展过程,其将纳入计算机建模和仿真需求得不到满足。此提出了一种基于总线滚架结构的实验和分析模态分析的替代研究方法。模态分析用于识别在为了提高总线的整体倾翻稳定性和它的翻转强度,同时最小化内部剩余空间的变形结构的,并调整这些特性的动态特性。全量程测试已经在它的设计和制造适合用于路线,学校或包车服务,典型的两轴单层巴士建筑标准的防滚架结构进行。

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