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参考极地医学卫生服务雪橇测试以评估潜行。

Reference PMHS Sled Tests to Assess Submarining.

作者信息

Uriot Jérôme, Potier Pascal, Baudrit Pascal, Trosseille Xavier, Petit Philippe, Richard Olivier, Compigne Sabine, Masuda Mitsutoshi, Douard Richard

机构信息

CEESAR.

LAB PSA Peugeot-Citroën Renault.

出版信息

Stapp Car Crash J. 2015 Nov;59:203-23. doi: 10.4271/2015-22-0008.

Abstract

Sled tests focused on pelvis behavior and submarining can be found in the literature. However, they were performed either with rigid seats or with commercial seats. The objective of this study was to get reference tests to assess the submarining ability of dummies in more realistic conditions than on rigid seat, but still in a repeatable and reproducible setup. For this purpose, a semi-rigid seat was developed, which mimics the behavior of real seats, although it is made of rigid plates and springs that are easy to reproduce and simulate with an FE model. In total, eight PMHS sled tests were performed on this semirigid seat to get data in two different configurations: first in a front seat configuration that was designed to prevent submarining, then in a rear seat configuration with adjusted spring stiffness to generate submarining. All subjects sustained extensive rib fractures from the shoulder belt loading. No pelvis fractures and no submarining were observed in the front seat configuration, but two subjects sustained lumbar vertebrae fractures. In the rear seat configuration, all subjects sustained pelvic fractures and demonstrated submarining. Corridors were constructed for the external forces and the PMHS kinematics. They are provided in this paper as new reference tests to assess the biofidelity of human surrogates in different configurations that either result in submarining or do not. In future, it is intended to analyze further seat and restraint system configurations to be able to define a submarining predictor.

摘要

文献中可以找到专注于骨盆行为和下潜情况的雪橇试验。然而,这些试验要么使用刚性座椅进行,要么使用商用座椅进行。本研究的目的是获得参考试验,以便在比刚性座椅更现实的条件下评估假人的下潜能力,但仍处于可重复和可再现的设置中。为此,开发了一种半刚性座椅,它模仿真实座椅的行为,尽管它由刚性板和弹簧制成,易于用有限元模型进行再现和模拟。总共在这个半刚性座椅上进行了八次人体尸体模拟碰撞雪橇试验,以获取两种不同配置下的数据:首先是在前排座椅配置中,该配置旨在防止下潜,然后是在后排座椅配置中,通过调整弹簧刚度来产生下潜。所有受试者均因安全带加载而遭受广泛的肋骨骨折。在前排座椅配置中未观察到骨盆骨折和下潜情况,但有两名受试者遭受腰椎骨折。在后排座椅配置中,所有受试者均遭受骨盆骨折并出现下潜情况。针对外力和人体尸体模拟碰撞运动学构建了通道。本文将其作为新的参考试验提供,以评估人体替代物在导致下潜或不导致下潜的不同配置中的生物逼真度。未来,打算进一步分析座椅和约束系统配置,以便能够定义一个下潜预测指标。

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