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首页> 外文期刊>International journal of applied mechanics >DYNAMIC RESPONSE OF BRAIN SUBJECTED TO BLAST LOADINGS: INFLUENCE OF FREQUENCY RANGES
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DYNAMIC RESPONSE OF BRAIN SUBJECTED TO BLAST LOADINGS: INFLUENCE OF FREQUENCY RANGES

机译:爆炸载荷对大脑的动态响应:频率范围的影响

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摘要

Blast wave induced a frequency spectrum and large deformation of the brain tissue. In this study, new material parameters for the brain material are determined from the experimental data pertaining to these large strain amplitudes and wide frequencies ranging (from 0.01Hz to 10MHz) using genetic algorithms. Both hyperelastic and viscoelastic behavior of the brain are implemented into 2D finite element models and the dynamic responses of brain are evaluated. The head, composed of triple layers of the skull, including two cortical layers and a middle dipole sponge-like layer, the dura, cerebrospinal fluid (CSF), the pia mater and the brain, is utilized to assess the effects of material model. The results elucidated that frequency ranges of the material play an important role in the dynamic response of the brain under blast loading conditions. An appropriate material model of the brain is essential to predict the blast-induced brain injury.
机译:爆炸波引起频谱和脑组织的大变形。在这项研究中,使用遗传算法,根据与这些大应变幅度和宽频率范围(从0.01Hz到10MHz)有关的实验数据确定了大脑材料的新材料参数。将大脑的超弹性和粘弹性行为都实现到2D有限元模型中,并评估大脑的动态响应。头部由头骨的三层组成,包括两个皮质层和一个中间偶极海绵状层,硬脑膜,脑脊液(CSF),脑脊液和大脑,用于评估材料模型的效果。结果表明,材料的频率范围在爆炸载荷条件下在大脑的动态响应中起着重要作用。适当的大脑材料模型对于预测爆炸诱发的脑损伤至关重要。

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