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首页> 外文期刊>Journal of biomechanical engineering. >Finite element model study of head impact based on Hybrid III head acceleration: the effects of rotational and translational acceleration
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Finite element model study of head impact based on Hybrid III head acceleration: the effects of rotational and translational acceleration

机译:基于混合动力III头部加速度的头部撞击的有限元模型研究:旋转和平移加速度的影响

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摘要

The translational and rotational components of acceleration measured at the center of gravity of a Hybrid III dummy head were used to investigate their individual and combined effects on a two-dimensional finite element model of the human brain.Each component of acceleration generated distinct patterns of deformation. Although translational acceleration is related to pressure and rotational acceleration has a dominant effect on shear deformations, complete acceleration (combination oftranslation and rotation) yielded the highest values in all stresses and produced a maximum shear stress at the top of the brain.
机译:在Hybrid III假人头部的重心处测量的加速度的平移和旋转分量用于研究它们对人脑二维有限元模型的个体影响和组合影响,每个加速度分量都产生不同的变形模式。尽管平移加速度与压力有关,并且旋转加速度对剪切变形具有主要影响,但是完全加速度(平移和旋转的组合)在所有应力下产生的值最高,并且在大脑顶部产生最大的剪切应力。

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