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Comparison of Human Surrogate Responses in Underbody Blast Loading Conditions

机译:人类替代反应在底部爆破造成条件下的比较

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Impact biomechanics research in occupant safety predominantly focuses on the effects of loads applied to human subjects during automotive collisions. Characterization of the biomechanical response under such loading conditions is an active and important area of investigation. However, critical knowledge gaps remain in our understanding of human biomechanical response and injury tolerance under vertically accelerated loading conditions experienced due to underbody blast (UBB) events. This knowledge gap is reflected in anthropomorphic test devices (ATDs) used to assess occupant safety. Experiments are needed to characterize biomechanical response under UBB relevant loading conditions. Matched pair experiments in which an existing ATD is evaluated in the same conditions as a post mortem human subject (PMHS) may be utilized to evaluate biofidelity and injury prediction capabilities, as well as ATD durability, under vertical loading. To characterize whole body response in the vertical direction, six whole body PMHS tests were completed under two vertical loading conditions. A series of 50th percentile hybrid III ATD tests were completed under the same conditions. Ability of the hybrid III to represent the PMHS response was evaluated using a standard evaluation metric. Tibial accelerations were comparable in both response shape and magnitude, while other sensor locations had large variations in response. Posttest inspection of the hybrid III revealed damage to the pelvis foam and skin, which resulted in large variations in pelvis response. This work provides an initial characterization of the response of the seated hybrid III ATD and PMHS under high rate vertical accelerative loading.
机译:乘员安全的影响生物力学研究主要集中在汽车碰撞过程中载荷对人类受试者的影响。在这种负载条件下对生物力学反应的表征是一种积极和重要的调查领域。然而,危重知识差距仍然是我们对人类生物力学反应和损伤耐受性在垂直加速的装载条件下的理解,由于底部爆炸(UBB)事件而经历的垂直加速的装载条件。这种知识间隙反映在用于评估乘员安全性的拟人测试装置(ATD)中。需要实验来在UBB相关的负载条件下表征生物力学响应。匹配对实验,其中现有的ATD在与后验验的人受试者(PMH)相同的条件下,可用于评估垂直装载下的生物尺寸和损伤预测能力,以及ATD耐久性。为了在垂直方向上表征全身反应,在两个垂直装载条件下完成六个全身PMHS测试。在相同条件下完成了一系列50百分位杂交III ATD测试。使用标准评估度量评估杂交III代表PMHS响应的能力。胫骨加速度在响应形状和幅度均相当,而其他传感器位置的响应具有大的变化。杂交III的后测试检测显示对骨盆泡沫和皮肤的损伤,这导致骨盆反应的大变化。本作品提供了在高速垂直加速负载下坐姿的混合III ATD和PMHs响应的初始表征。

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