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Buckling, vibration, and energy solutions for underwater composite cylinders

机译:水下复合缸的屈曲,振动和能量解决方案

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摘要

This study presents closed-form solutions for the critical buckling pressures and characteristic frequencies of underwater composite cylinders. The analytical solutions were derived using the full stiffness definitions from composite laminate theory, making them suitable for symmetric, asymmetric, hybrid, and/or double-shell (sandwich) cylindrical composite structures. These closed-form solutions were developed for critical buckling pressures in a hydrostatic environment as well as for critical buckling energy in a dynamic environment with combined hydrostatic and transient loads. Also, the characteristic frequencies were derived for a submerged and pressurized environment to account for added fluid mass and hydrostatic pressures. Computational and experimental data were used to validate the derived analytical work. The resulting solutions for critical buckling pressures agreed with numerical and experimental results for single-shell cylindrical structures. Moreover, for double-shell cylindrical structures with foam cores (sandwich structures), the collapse pressure is shown to be proportional to the core's transverse shear modulus. The solutions were suitable for predicting the collapse pressure for sandwich structures with relatively low-density cores. Lastly, solutions for estimating the energy emitted during an implosion event and the energy required for buckling in sub-critical pressure environments were also derived and validated with the experimental data.
机译:本研究为水下复合汽缸的关键屈曲压力和特性频率提出了闭合溶液。使用来自复合层压材料理论的全刚度定义来得出分析溶液,使它们适用于对称,不对称,混合动力和/或双壳(夹层)圆柱形复合结构。这些封闭式溶液是在静液压环境中的关键屈曲压力开发的,以及在动态环境中的关键屈曲能量,具有组合的静水和瞬态载荷。而且,衍生出浸没和加压环境的特征频率,以占添加液体质量和静水压力。计算和实验数据用于验证导出的分析工作。由单壳圆柱结构的数值和实验结果同意的关键屈曲压力所产生的解决方案。此外,对于具有泡沫芯(夹层结构)的双壳圆柱形结构,塌陷压力被示出与芯的横向剪切模量成比例。该溶液适用于预测具有相对低密度芯的夹层结构的塌陷压力。最后,还导出并验证了用于估计在爆炸事件期间发出的能量的解决方案以及在亚临界压力环境中屈曲所需的能量。

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