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A new analytical solution and novel energy formulations for non-linear eccentric impact analysis of composite multi-layer/sandwich plates resting on point supports

机译:基于点支撑的多层多层/夹心板非线性偏心冲击分析的新解析方法和新能量公式

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In the present research, an analytical solution based on a new idea of superposition of two kinematic descriptions is presented for dynamic response analysis of a multi-layer/sandwich composite plate with point supports subjected to an eccentric low-velocity impact. Direct and virtual-work-based novel energy formulations are proposed for the problem that take into account the potential energy of the indentation region. The nonlinear governing equations of motions are found based on minimization of the total potential energy of the whole mass plate system, including work of the inertia forces, employing Ritz technique and transformation of the time dependent nonlinear system of governing equations to a non-linear algebraic one through a novel concept. In contrast to the available researches, influence of the lower layers on the stiffness of the contact region is incorporated. Time-dependent responses of a sandwich composite plate with simply supported edges are compared with those of a plate resting on point supports. Verification of the results has been accomplished based on results of ABAQUS computer code. In the results section, the significant effects of the point supports (in comparison to the complete edge supports), initial velocity of the indenter, aspect ratio of the plate, and material properties of the layers on time histories of the contact force and lateral deflection of the plate are investigated.
机译:在本研究中,提出了一种基于两个运动学描述叠加的新思想的解析解决方案,用于具有偏心低速冲击的点支撑的多层/三明治复合板的动力响应分析。针对直接和基于虚拟功的新颖能量公式,提出了考虑到压痕区域的势能的问题。在最小化整个质量板系统的总势能的基础上,找到了运动的非线性控制方程,包括惯性力的功,采用Ritz技术并将时变非线性控制方程系统转换为非线性代数一个通过新颖的概念。与现有研究相反,结合了下层对接触区域刚度的影响。将具有简单支撑边缘的夹心复合材料板与基于点支撑的板的时间相关响应进行了比较。结果的验证已基于ABAQUS计算机代码的结果完成。在结果部分中,点支撑(与完整的边缘支撑相比),压头的初始速度,板的纵横比以及层的材料特性对接触力和横向挠曲的时间历史的显着影响板的调查。

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