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Numerical Study and Experimental Validation of Dynamic Characteristics of Delaminated Composite Flat and Curved Shallow Shell Structure

机译:层状组合扁弯扁壳结构动力特性的数值研究与实验验证。

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In this paper, the transient behavior of an internally damaged laminated composite plate and shell structure under the influence of different mechanical loading types and constraint conditions has been analyzed numerically. For the numerical purpose, two well-known higher-order displacement kinematics are used to model the doubly curved shell panel in association with the finite-element steps. In addition, the internal delamination is modeled with the help of two sublaminate approaches including the intermittent continuity condition to obtain the necessary solutions. Further, the domain has been discretized with the assistance of a biquadratic nine-noded quadrilateral element. The panel motion equation is derived by integrating the total Lagrangian expression and solved to evaluate the time-dependent responses via an in-house computer code in association with Newmark's direct integration scheme. The stability of the found numerical solutions are checked through a convergence test and compared with established benchmark solutions. The performance of the developed numerical models are established by comparing the results with the subsequent experiments. Finally, the effect of internal debonding (size, position, and location) and other design parameters on the time-dependent deflections of the delaminated composite panel are examined including the geometries (spherical, cylindrical, elliptical, and hyperboloid) and discussed in detail. (C) 2017 American Society of Civil Engineers.
机译:本文对内部损伤的层合板和壳结构在不同机械载荷类型和约束条件影响下的瞬态行为进行了数值分析。出于数值目的,使用两个众所周知的高阶位移运动学来模拟与有限元步骤相关的双曲壳板。另外,内部分层是在两个子分层方法(包括间歇性连续条件)的帮助下建模的,以获取必要的解决方案。此外,借助双二次九节点四边形元素将域离散化。面板运动方程是通过对总的拉格朗日表达式进行积分而得出的,并通过与Newmark的直接积分方案关联的内部计算机代码进行求解,以评估与时间有关的响应。通过收敛测试检查找到的数值解的稳定性,并与建立的基准解进行比较。通过将结果与后续实验进行比较,可以建立所开发数值模型的性能。最后,研究了内部剥离(尺寸,位置和位置)和其他设计参数对分层复合面板随时间变化的挠度的影响,包括几何形状(球形,圆柱形,椭圆形和双曲面),并进行了详细讨论。 (C)2017年美国土木工程师学会。

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