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首页> 外文期刊>Stapp Car Crash Journal >Evaluation of Thoracic Deflection as an Injury Criterion for Side Impact Using a Finite Elements Thorax Model
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Evaluation of Thoracic Deflection as an Injury Criterion for Side Impact Using a Finite Elements Thorax Model

机译:使用有限元胸部模型评估胸廓偏转作为侧面碰撞的伤害指标

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摘要

This study aims to investigate the relationship between the number of rib fractures and the thoracic deflection in side impact, and in particular its variability with respect to various loading configurations. The relevance of thoracic deflection as an injury criterion depends on the existence or not of this variability. Few studies were dedicated to this issue in the literature. First, a validation database was established, which covers different impact directions (frontal, lateral and oblique), different loading types (impactor, belt and airbag), and different injury levels (from the absence of, to presence of numerous ribs fractured). The HUMOS human body model was then modified and validated versus the database. Besides the typical validation in terms of global response, particular attention was paid to validate the model with respect to the ribcage strain profile, the occurrence of rib fractures and their locations. Some key features relative to the thorax modeling (such as the connection between the ribcage and the surrounding tissues) were also investigated. Using this model, the relationship between the rib fracture and thoracic deflection was studied versus loading type. It was demonstrated that this relationship does not change significantly from one loading type to another, supporting the thoracic deflection as a relevant indicator of ribcage injury level. In addition, the relationship between the thoracic response and the test severity (such as impact velocity or distance between airbag and subject), was also established for each kind of loading. These relationships, obtained over a unique subject, are free of uncertainty relative to cadaver scattering, measurement and autopsy. They provide a consistent characterization of thoracic injuries under various test conditions and therefore, can be used to guide cadaver test protocol development and result analysis. [PUBLICATION ABSTRACT]
机译:这项研究的目的是研究肋骨骨折的数量与侧面碰撞中胸廓偏转之间的关系,尤其是其在各种载荷形态下的变异性。胸廓偏斜作为损伤标准的相关性取决于这种变异性的存在与否。文献中很少有研究致力于该问题。首先,建立一个验证数据库,该数据库涵盖不同的撞击方向(正面,侧面和倾斜),不同的负载类型(撞击器,皮带和安全气囊)和不同的伤害水平(从不存在,到存在大量断裂的肋骨)。然后,针对数据库修改并验证了HUMOS人体模型。除了在总体响应方面的典型验证之外,还特别关注了关于胸腔应变分布,肋骨骨折的发生及其位置的模型验证。还研究了一些与胸部建模有关的关键特征(例如胸腔与周围组织之间的连接)。使用该模型,研究了肋骨骨折和胸廓挠度与负荷类型之间的关系。结果表明,这种关系从一种负荷类型变为另一种负荷类型并没有显着变化,支持胸廓偏转是胸腔损伤程度的相关指标。此外,还针对每种载荷确定了胸腔反应与测试强度(例如撞击速度或安全气囊与受试者之间的距离)之间的关系。在一个独特的主题上获得的这些关系相对于尸体散射,测量和尸检没有不确定性。它们在各种测试条件下均能提供一致的胸部损伤特征,因此可用于指导尸体测试协议的开发和结果分析。 [出版物摘要]

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  • 来源
    《Stapp Car Crash Journal》 |2009年第1期|p.155-191|共37页
  • 作者单位

    Eric Song, Xavier TrosseilleLAB PSA Peugeot-Citroën RenaultPascal BaudritCEESARAddress correspondence to Eric Song, LAB Peugeot-Citroën Renault, 132 Rue des Suisses, 92000 Nan terre, France. Electronic mail: eric.song@lab-france.com;

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