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Response sensitivity analysis of laminated composite shells based on higher-order shear deformation theory

机译:基于高阶剪切变形理论的层合复合材料壳响应灵敏度分析

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摘要

Laminated composite shells are widely used as structural components in important aerospace, marine, automobile engineering structures. Thus, appropriate evaluation of sensitivities of responses like deflection, frequency, buckling etc. due to changes in design variables is of great importance for efficient and safe design of such structures. The present paper deals with a comprehensive sensitivity analysis of laminated composite shells using finite element with more accurate theoretical model based on higher-order shear deformation theory (HSDT). The sensitivity analysis of deflection and natural frequency with respect to important design parameters such as material parameters, angle of fiber orientation, radius of curvature, density of materials and external load is presented. Furthermore, sensitivity-based importance factor for each parameter is obtained so that the most important parameters affecting the shell responses can be readily identified. The response sensitivities obtained by the proposed formulation are compared with those obtained by the finite difference procedure. An extensive parametric study has been carried out considering different variables to understand the performance of laminated shell.
机译:层压复合材料壳被广泛用作重要的航空航天,船舶,汽车工程结构的结构部件。因此,适当地评估由于设计变量的变化而引起的诸如挠曲,频率,屈曲等响应的敏感性对于这种结构的有效和安全设计非常重要。基于高阶剪切变形理论(HSDT),本文利用有限元和更精确的理论模型对复合材料层合壳的灵敏度进行了全面的分析。针对材料参数,纤维取向角度,曲率半径,材料密度和外部载荷等重要设计参数,对挠度和固有频率进行了敏感性分析。此外,获得每个参数的基于灵敏度的重要性因子,以便可以轻松识别影响壳响应的最重要参数。通过提议的配方获得的响应灵敏度与通过有限差分法获得的响应灵敏度进行比较。进行了广泛的参数研究,考虑了不同的变量,以了解层压壳的性能。

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