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A comparative numerical study of motorcoach rollover resistance under ECE R66 and proposed NHTSA regulation conditions

机译:ECE R66下运动升降机抗性的比较数值研究,提出了NHTSA调控条件

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Under increasing public concern for the safety of passengers in large passenger vehicles such as buses and motorcoaches, legislative regulations are enforced and continuously updated worldwide. Recently, a new federal regulation was proposed in North America to enhance the safety level of motorcoach passengers under the rollover condition, based on regulation No. 66 of the Economic Commission for Europe (ECE R66), but with more severe loading conditions in the form of the full passenger mass ballasted to all seats. This article presents the results of a comparative study on rollover resistance and energy absorption distribution of a motorcoach structure for loadings of both zero and full passenger mass. Two test conditions are numerically simulated using a complete validated finite element model of a typical motorcoach. The results of the comparison indicate that the test conditions of the proposed regulation with full passenger mass lead to a 4.7 times greater penetration of the surviving space of the passenger compartment than the ECE R66 conditions with zero passenger mass. The distribution of the energy absorption suggests that pillar loops rank first in absorbing energy. Owing to the coupled passenger mass, the National Highway Traffic Safety Administration (NHTSA) proposed regulation places higher requirements on the rollover resistance of the wall beams and seat-wall joints, as their energy absorption ratio at the end of impact increases by 27%. Overall, the results of the study can provide a data basis for the manufacturers to improve the rollover resistance of motorcoaches.
机译:在增加公众对公共汽车和摩托车等大型乘用车的乘客安全性的关注下,立法规则是在全球范围内执行和不断更新的立法规则。最近,在北美提出了一个新的联邦监管,以加强在欧洲经济委员会(ECE R66)的第66号法规规定的滚动条件下的MotorCoach乘客的安全水平,但在表格中具有更严重的负载条件完整的客运群体镇流到所有座位。本文介绍了对零和全乘客质量的负载升降机结构的滚动阻力和能量吸收分布的比较研究结果。使用典型的Motorcoach的完整验证的有限元模型进行数值模拟两种测试条件。比较结果表明,具有全乘客质量的建议调节的试验条件导致乘客舱的幸存空间渗透到零r66条件零乘客质量的欧洲ece r66条件的4.7倍。能量吸收的分布表明,柱循环首先在吸收能量中排名。由于乘客质量耦合,国家公路交通安全管理局(NHTSA)提出的规则对壁梁和座椅墙接头的翻转阻力提出了更高的要求,因为它们在撞击结束时的能量吸收比率增加27%。总体而言,该研究的结果可以为制造商提供数据依据,以提高机动摩托车的滚动阻力。

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