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首页> 外文期刊>International journal of computational methods >Delamination Effect on Flexural Responses of Layered Curved Shallow Shell Panel-Experimental and Numerical Analysis
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Delamination Effect on Flexural Responses of Layered Curved Shallow Shell Panel-Experimental and Numerical Analysis

机译:分层对分层曲面浅壳板实验性和数值分析的弯曲响应的影响

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The bending responses of the delaminated composite curved (single and doubly) shallow shell panel computed numerically and validated with subsequent experimental results. The laminated shell panel model is developed mathematically with the help of two higher-order mid-plane theories and finite element method. The generalized governing equations of the shell panel model is obtained via the variational method and solved numerically using a home-made computer code developed in MATLAB. The consistency of the developed models has been established through the convergence test and validated by comparing the present numerical results with available published data including experimental values. The experimental bending results are obtained via three-point bend test of the fabricated woven Glass/Epoxy composite plate including the delamination (different. size and location) and utilized for the comparison purpose. The numerical and experimental comparison reveals the necessity of the current higher-order models for the delaminated structure. In order to report the comprehensive conclusions related to the flexural strength of laminated structure with internal damage, a detailed parametric study has been carried out numerically and discussed in detail including the effect delamination (size, position and location).
机译:分层复合弯曲(单和双)浅壳板的弯曲响应在数字上计算并验证随后的实验结果。借助于两个高阶中平面理论和有限元方法,在数学上开发了层压壳板模型。通过变分方法获得壳板模型的广义控制方程,并使用在Matlab中开发的自制计算机代码进行数字解决。通过收敛试验建立了开发模型的一致性,并通过将现有的公布数据与包括实验值的可用数据进行比较来验证。实验弯曲结果是通过制造的编织玻璃/环氧复合板的三点弯曲试验获得,包括分层(不同。尺寸和位置)并用于比较目的。数值和实验比较揭示了当前更高阶模型的分层结构的必要性。为了报告与内部损伤的层压结构弯曲强度有关的全面结论,在数值上进行了详细的参数研究,并详细讨论,包括效果分层(大小,位置和位置)。

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