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Finite-Element-Based Transfer Equations: Post-Mortem Human Subjects versus Hybrid III Test Dummy in Blunt Impact

机译:基于有限元的传递方程:钝器碰撞后的人体后期受试者与混合动力III测试假人

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摘要

In the present study, transfer equations relating the responses of post-mortem human subjects (PMHS) to the mid-sized male Hybrid III test dummy (HIII50) under matched, or nearly-identical, loading conditions were developed via math modeling. Specifically, validated finite element (FE) models of the Ford Human Body Model (FHBM) and the HIII50 were used to generate sets of matched cases (i.e., 256 frontal impact cases involving different impact speeds, severities, and PMHS age). Regression analyses were subsequently performed on the resulting age-dependent FHBM- and HIII50-based responses. This approach was conducted for five different body regions: head, neck, chest, femur, and tibia. All of the resulting regression equations, correlation coefficients, and response ratios (PHMS relative to HIII50) were consistent with the limited available test-based results.
机译:在本研究中,通过数学建模,建立了在匹配或接近完全相同的负载条件下将死后人类受试者(PMHS)与中型雄性Hybrid III测试假人(HIII50)的反应相关的传递方程。具体而言,使用福特人体模型(FHBM)和HIII50的经过验证的有限元(FE)模型来生成匹配的案例集(即256个正面碰撞案例,涉及不同的撞击速度,严重程度和PMHS年龄)。随后对所得的基于年龄的基于FHBM和HIII50的反应进行了回归分析。这种方法是针对五个不同的身体部位进行的:头部,颈部,胸部,股骨和胫骨。所有所得的回归方程,相关系数和响应率(相对于HIII50的PHMS)均与有限的基于测试的结果一致。

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