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A closed form solution for the impact analysis of elastic ellipsoidal thin shells

机译:弹性椭圆形薄壳冲击分析的封闭形式解决方案

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In this paper the impact of a hollow elastic ellipsoidal thin shell with an elastic flat half space is analyzed. Due to the nonlinearity and complexity of the impact equation, classical numerical solutions cannot be employed. A closed-form solution for this problem is accomplished, using Hertzian theory [6] and the Vella's analysis [17] in conjunction with the Newtonian method and a linearization scheme. The closed-form solution facilitates a parametric study of this problem. In next step, the closed-form analytical solution is validated by other research studies and explicit finite element method. Good agreement between the closed-form solution and other numerical results is observed. Based on the closed-form solution the maximum total deformation of the shell, the maximum transmitted force and the time duration of the contact were determined. The variations of the total deflection and the transmitted force as a function of the shell thickness and the different geometry of the shell were also determined. Finally it is concluded that the closed form equations are trustworthy and appropriate to investigate the impact of elastic ellipsoidal shells. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文分析了具有弹性扁平半空间的空心弹性椭圆形薄壳的冲击。由于冲击方程的非线性和复杂性,无法采用经典的数值解。使用Hertzian理论[6]和Vella分析[17]结合牛顿方法和线性化方案,完成了针对该问题的闭式解决方案。封闭形式的解决方案有助于对此问题进行参数研究。下一步,通过其他研究和显式有限元方法对闭合形式的解析解进行验证。观察到封闭形式解与其他数值结果之间的良好一致性。基于闭合形式的解决方案,可以确定壳体的最大总变形,最大传递力和接触时间。还确定了总挠度和传递力随壳体厚度和壳体不同几何形状的变化。最后得出的结论是,闭合形式方程是可信赖的,并且适合研究弹性椭球壳的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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