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Experimental assessment of vehicle performance and injury risk for cutaway buses using tilt table and modified dolly rollover tests

机译:使用倾斜台和改进的多莉侧翻测试对敞篷客车的车辆性能和伤害风险进行实验评估

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Background: Rollover crashes of buses occur less frequently than do those involving passenger cars; however, they are associated with higher fatality rates. During rollover crashes, a vehicle experiences multidirectional acceleration and multiple impacts, yielding a complex interaction between structural components and its occupants. A better understanding of vehicle and occupant's motion, structural deformation, and vehicle and road interactions are necessary to improve the safety of the occupants during this event. One of the key factors in rollover crashworthiness assessment is to investigate the relationship between the strength of the vehicle's structure and the risk of injury outcomes. However, rollover crashes involving buses have received less research attention than have those involving passenger cars. Experimental studies in bus rollover safety have mainly focused on the structural integrity of the passenger compartment without considering the occupant responses. The main goal of this research is to evaluate the rollover mechanism and associated injury risk during two experimental rollover tests for a paratransit cutaway bus that is commonly used by transit agencies.Methods: The modified dolly rollover (MDR) and tilt table (TT) tests were conducted using a similar bus and anthropomorphic test device (ATD) configurations. In each test, a 2-point and 3-point belted Hybrid III 50th percent male ATDs were used to quantify the kinematics of the occupants. The deformation index (DI), accelerations and angular velocities of the bus's CG were measured as vehicle responses. The collected data were then calibrated and filtered to assess the effects of the test procedure on kinematic responses of the vehicle and occupants. Next, the effectiveness of the 2-point vs 3-point seatbelt to reduce or prevent the injuries, the vulnerable body regions and corresponded injury risk were evaluated.Results: The residual space remained intact (DI < 1) during both rollover tests, however, the ATD responses were quite different. The results of the injury assessment indicate that the risk of the injuries in the MDR test was significantly higher than the TT test. The highest risk of injuries was identified for the head, neck, and shoulder of 2-point belted ATD during the MDR test. Also, the main source of injuries during the MDR test was partial ejection due to the shattered side window, whereas for the TT test impacts between the ATDs and the side window and/or window frame were the injury causes. From the vehicle point of view, the total energy produced in the MDR was 3.5 times higher than the TT test, but the overall structural deformation in the TT test was higher than MDR test. Overall, the tilt table test provides a more severe scenario compared to the MDR test for the assessment of structural strength. Considering the limited real-world injury data in rollover crashes of buses, the MDR test presented the more realistic occupant responses.
机译:背景:公交车发生侧撞事故的频率要低于乘用车。但是,它们与更高的死亡率相关。在侧翻碰撞期间,车辆会经历多向加速和多次撞击,从而在结构部件及其乘员之间产生复杂的相互作用。必须更好地了解车辆和乘员的运动,结构变形以及车辆和道路的相互作用,以在此事件中提高乘员的安全性。翻车防撞性评估的关键因素之一是研究车辆结构强度与伤害后果风险之间的关系。但是,与乘用车相比,涉及公共汽车的翻车事故受到的研究关注较少。公交翻车安全性的实验研究主要集中在乘客车厢的结构完整性上,而不考虑乘员的反应。这项研究的主要目的是在公共交通部门常用的辅助公交客车的两次实验性翻车测试中评估翻车机理和相关的伤害风险。方法:改进的多莉翻车(MDR)和倾斜台(TT)测试使用类似的总线和拟人测试设备(ATD)配置进行。在每个测试中,使用2点和3点的皮带式混合动力III型50%男性ATD来量化乘员的运动学。测量公共汽车的CG的变形指数(DI),加速度和角速度作为车辆响应。然后对收集到的数据进行校准和过滤,以评估测试程序对车辆和乘员运动学响应的影响。接下来,评估了两点式安全带与三点式安全带在减少或预防伤害,脆弱的身体部位以及相应的伤害风险方面的有效性。结果:在两次侧翻测试中,剩余空间均保持不变(DI <1) ,ATD的响应则完全不同。伤害评估的结果表明,MDR测试中受伤的风险显着高于TT测试。在MDR测试期间,确定了两点式安全带ATD的头部,颈部和肩膀受伤的最高风险。同样,在MDR测试期间,受伤的主要来源是由于侧窗破损而导致部分弹出,而对于TT测试,ATD与侧窗和/或窗框之间的碰撞是造成伤害的原因。从车辆的角度来看,MDR中产生的总能量比TT试验高3.5倍,但TT试验中的整体结构变形高于MDR试验。总体而言,与MDR测试相比,倾斜台测试在评估结构强度方面提供了更为严峻的环境。考虑到公交车侧翻事故中的实际伤害数据有限,MDR测试显示了更为现实的乘员反应。

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