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Analysis of two colliding fractionally damped spherical shells in modelling blunt human head impacts

机译:在建模钝头冲击时分析两个碰撞的部分阻尼球壳

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摘要

The collision of two elastic or viscoelastic spherical shells is investigated as a model for the dynamic response of a human head impacted by another head or by some spherical object. Determination of the impact force that is actually being transmitted to bone will require the model for the shock interaction of the impactor and human head. This model is indended to be used in simulating crash scenarios in frontal impacts, and provide an effective tool to estimate the severity of effect on the human head and to estimate brain injury risks. The model developed here suggests that after the moment of impact quasi-longitudinal and quasi-transverse shock waves are generated, which then propagate along the spherical shells. The solution behind the wave fronts is constructed with the help of the theory of discontinuities. It is assumed that the viscoelastic features of the shells are exhibited only in the contact domain, while the remaining parts retain their elastic properties. In this case, the contact spot is assumed to be a plane disk with constant radius, and the viscoelastic features of the shells are described by the fractional derivative standard linear solid model. In the case under consideration, the governing differential equations are solved analytically by the Laplace transform technique. It is shown that the fractional parameter of the fractional derivative model plays very important role, since its variation allows one to take into account the age-related changes in the mechanical properties of bone.
机译:研究了两个弹性或粘弹性球形壳的碰撞,作为人头受到另一个头部或某个球形物体撞击的动态响应的模型。确定实际传递到骨骼的冲击力将需要用于冲击器和人头的冲击相互作用的模型。该模型旨在用于模拟正面撞击中的碰撞情况,并提供一种有效的工具来评估对人头的影响的严重程度并评估脑部受伤的风险。在此建立的模型表明,在撞击瞬间,产生了准纵向和准横向冲击波,然后沿球壳传播。借助不连续性理论构造了波前背后的解决方案。假定壳的粘弹性特征仅在接触域中显示,而其余部分保留其弹性。在这种情况下,假设接触点是具有恒定半径的平面圆盘,并且壳的粘弹性特征由分数导数标准线性实体模型描述。在考虑的情况下,通过拉普拉斯变换技术可以解析控制微分方程。结果表明,分数导数模型的分数参数起着非常重要的作用,因为它的变化使人们可以考虑与年龄有关的骨骼力学性能的变化。

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