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Development and Application of Stress-Based Skull Fracture Criteria Using a Head Finite Element Model

机译:基于头部有限元模型的基于应力的颅骨骨折准则的开发与应用

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References(22) Cited-By(1) Skull fractures occurring under various impacts are required to be evaluated during forensic investigations or during design of a head protection device. Finite element analysis using a human head model is an effective evaluation tool for it, because investigating of the behavior of skull fracture such as the start and the progress can be easily performed. JARI Head Tolerance Curve (JHTC), which is an existing criterion for skull fracture based on the cadaver head drop tests, uses head acceleration as the parameter, though the fractures are mainly caused by stress concentration on local area. In this study, we tried to develop stress-based criteria for skull fracture, and to simulate skull fracture by using a head finite element model, which we previously developed. Forehead dropping simulations with five different conditions were performed, and the results were found to be nearly equivalent to the JHTC tests in terms of effective acceleration of head and its duration time. We then determined critical stresses for skull fracture as a function of duration time, based on the time histories of stresses on the skull surface in the five simulation results. Furthermore, we applied our criteria to two forehead impact simulations. We could observe fracture on the skull followed by sharply decreasing in stress on fractured elements as well as increasing in stress on its neighboring elements, and also variation in shapes and ranges of fractured element distribution. These results indicate that the criteria could evaluate skull fracture in detail under different patterns of impact.
机译:参考文献(22)被引用的依据(1)在各种冲击下发生的颅骨骨折需要在法医调查期间或在头部保护装置设计期间进行评估。使用人头模型进行有限元分析是一种有效的评估工具,因为可以轻松地进行颅骨骨折行为的调查,例如开始和进展。 JARI Head Tolerance Curve(JHTC)是基于尸体头部跌落测试的颅骨骨折的现有标准,它使用头部加速度作为参数,尽管骨折的主要原因是局部区域的应力集中。在这项研究中,我们尝试开发基于应力的颅骨骨折标准,并通过使用先前开发的头部有限元模型来模拟颅骨骨折。进行了五种不同条件下的前额掉落模拟,发现结果在头部的有效加速度及其持续时间方面几乎与JHTC测试相当。然后,我们基于五个模拟结果中颅骨表面应力的时间历史,确定了颅骨骨折的临界应力与持续时间的函数关系。此外,我们将标准应用于两个前额撞击模拟。我们可以观察到颅骨上的骨折,紧接着是破裂元素上的应力急剧减小,接着是邻近元素上的应力增大,并且破裂元素分布的形状和范围也发生变化。这些结果表明,该标准可以详细评估不同冲击方式下的颅骨骨折。

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