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Construction and evaluation of thoracic injury risk curves for a finite element human body model in frontal car crashes

机译:正面车祸中有限元人体模型的胸椎损伤风险曲线的构建和评估

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There is a need to improve the protection to the thorax of occupants in frontal car crashes. Finite element human body models are a more detailed representation of humans than anthropomorphic test devices (ATDs). On the other hand, there is no clear consensus on the injury criteria and the thresholds to use with finite element human body models to predict rib fractures. The objective of this study was to establish a set of injury risk curves to predict rib fractures using a modified Total Human Model for Safety (THUMS). Injury criteria at the global, structural and material levels were computed with a modified THUMS in matched Post Mortem Human Subjects (PMHSs) tests. Finally, the quality of each injury risk curve was determined. For the included PMHS tests and the modified THUMS, DcTHOR and shear stress were the criteria at the global and material levels that reached an acceptable quality. The injury risk curves at the structural level did not reach an acceptable quality. (C) 2015 Elsevier Ltd. All rights reserved.
机译:需要改进对正面车祸中乘员胸部的保护。有限元人体模型比拟人化测试设备(ATD)更能代表人类。另一方面,对于损伤标准和用于有限元人体模型预测肋骨骨折的阈值尚无明确共识。这项研究的目的是使用修改后的总体安全人类模型(THUMS)建立一组伤害风险曲线,以预测肋骨骨折。在匹配的事后人类受试者(PMHS)测试中,使用改良的THUMS计算了整体,结构和材料级别的伤害标准。最后,确定每条伤害风险曲线的质量。对于包括的PMHS测试和改进的THUMS,DcTHOR和剪切应力是达到可接受质量的整体和材料标准。结构级别的伤害风险曲线未达到可接受的质量。 (C)2015 Elsevier Ltd.保留所有权利。

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