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首页> 外文期刊>Journal of Engineering Mechanics >Beam-Column and Tie-Bar Effects in Internally Pressurized Thin Arbitrarily Laminated Cantilever Cylindrical Shells
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Beam-Column and Tie-Bar Effects in Internally Pressurized Thin Arbitrarily Laminated Cantilever Cylindrical Shells

机译:内压薄任意层悬臂圆柱壳的梁柱效应和拉杆效应

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摘要

An arbitrarily laminated, anisotropic cantilever cylindrical shell of finite length, under uniform internal pressure, is analyzed using kinematic relations under the framework of classical lamination theory. Extensive numerical results are presented for two model problems, pertaining to two-layer, asymmetrically laminated, anisotropic cantilever cylindrical shells, illustrating the influence of layer anisotropy and lamination sequence on the beam-column/tie-bar effects, which, in turn, severely affect the free-end displacements and other response quantities of interest. Furthermore, because the beam-column effect can cause severe wrinkling in a thin asymmetrically laminated cylindrical shell, the possibility of its elimination through composite tailoring (a combination of stacking sequence and fiber orientation angle in a constituent lamina) has also been explored. Finally, the effect of length-to-radius ratio is also numerically investigated. (C) 2014 American Society of Civil Engineers.
机译:在经典层压理论的框架下,利用运动学关系分析了在均匀内压下任意长度的有限长度的各向异性各向异性悬臂圆柱壳。给出了关于两个模型问题的广泛数值结果,这些问题涉及两层非对称层压的各向异性悬臂圆柱壳,说明了层各向异性和层合顺序对梁柱/拉杆效应的影响,进而严重影响了梁柱/拉杆效应影响自由端位移和其他感兴趣的响应量。此外,由于束柱效应会在不对称层压的薄圆柱壳中引起严重的起皱,因此,也探索了通过复合剪裁(在组成层中堆叠顺序和纤维取向角的组合)消除皱纹的可能性。最后,还对长度与半径之比的影响进行了数值研究。 (C)2014美国土木工程师学会。

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