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Numerical study on the mechanical response of brain under the impact loading based on elastic-viscoelastic model

机译:基于弹性-粘弹性模型的冲击载荷下大脑力学响应的数值研究

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摘要

The mechanical response of the brain on the impact process, and the relationship of brain injury and load are investigated rarely due to the complexity of brain. An elastic-viscoelastic model for analyzing the brain impact injury is presented. The elastic-viscoelastic correspondence principle is used to obtain the stress in the brain under impact. This mechanical model is in a good agreement with experimental results, and it can be applied to simulate and analyze brain injury. The results show that the stress of the brain is estimated under the different impact loads. The maximum stress of the brain may reduce by one order of magnitude, whether someone wears the safety helmet or not. Based on the interesting and rational mechanical model, it can be applied in designing the reasonable thickness of safety helmet for protecting brain and provide theoretical basis to determine injury index. (C) 2016 Elsevier Inc. All rights reserved.
机译:由于大脑的复杂性,很少研究大脑对撞击过程的机械反应以及大脑损伤与负荷的关系。提出了一种用于分析脑撞击损伤的弹性-粘弹性模型。弹性-粘弹性对应原理用于获得冲击下大脑的压力。该力学模型与实验结果吻合良好,可用于模拟和分析脑损伤。结果表明,在不同的冲击负荷下,大脑的压力是估计的。无论是否戴着安全帽,大脑的最大压力可能会降低一个数量级。在有趣合理的力学模型的基础上,可用于设计合理厚度的护脑安全帽,为确定损伤指标提供理论依据。 (C)2016 Elsevier Inc.保留所有权利。

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