首页> 外文期刊>Journal of Engineering Mechanics >Nonlinear Flexural Analysis of Shallow Carbon/Epoxy Laminated Composite Curved Panels: Experimental and Numerical Investigation
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Nonlinear Flexural Analysis of Shallow Carbon/Epoxy Laminated Composite Curved Panels: Experimental and Numerical Investigation

机译:浅碳/环氧层压复合弯曲板的非线性挠曲分析:实验和数值研究

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摘要

In this work, the nonlinear flexural behavior of laminated carbon/epoxy composite panels is investigated numerically using a generalized nonlinear mathematical model based on two higher-order shear deformation midplane kinematics and Green-Lagrange type geometrical nonlinearity. The exact flexural behavior of the laminated panel is computed by considering all the nonlinear higher order terms in the present mathematical model. The nonlinear governing equations are obtained using variational principles and discretized through suitable finite-element steps. The desired nonlinear responses are computed numerically using the direct iterative method. The proposed nonlinear models have been validated by comparing the responses with those available in published literature and the experiment (three-point bend test) as well. In addition, the linear and nonlinear flexural responses of the laminated carbon/epoxy flat panel are also computed using ANSYS 13.0 simulation finite element analysis package. Finally, the efficacy and applicability of the proposed models have been checked by solving some numerical examples for different geometrical parameters (thickness ratio, aspect ratio, curvature ratio, and constraint condition) and discussed in detail. The practical importance of the proposed nonlinear higher-order theory for the laminated structure is highlighted by comparing the linear and nonlinear responses with experimental (three-point bend test) and simulation results.
机译:在这项工作中,使用基于两个高阶剪切变形中平面运动学和Green-Lagrange型几何非线性的广义非线性数学模型,对碳/环氧树脂复合材料层压板的非线性挠曲行为进行了数值研究。通过考虑本数学模型中的所有非线性高阶项,可以计算出层压板的精确弯曲行为。使用变分原理获得非线性控制方程,并通过适当的有限元步骤离散化。所需的非线性响应是使用直接迭代方法通过数值计算的。通过将响应与已发表的文献和实验(三点弯曲试验)中的响应进行比较,验证了所提出的非线性模型。此外,还使用ANSYS 13.0模拟有限元分析软件包计算了碳/环氧层压板的线性和非线性挠曲响应。最后,通过求解一些不同几何参数(厚度比,纵横比,曲率比和约束条件)的数值示例,检验了所提出模型的有效性和适用性,并进行了详细讨论。通过将线性和非线性响应与实验(三点弯曲试验)和仿真结果进行比较,突出了所提出的非线性高阶理论对叠层结构的实际重要性。

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