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Bending of the composite lattice cylindrical shell with the midspan rigid disk loaded by transverse inertia forces

机译:横向惯性力加载中跨刚性圆盘的复合格子圆柱壳的弯曲

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Bending deformation of a composite lattice cylindrical shell with the rigid disk attached at the midspan is studied in this paper. The shell with the disk is subjected to a transverse inertia load. The problem is solved using a continuum model of the lattice structure and equations of the semi -membrane theory of orthotropic cylindrical shells. The shells with two variants of the end supports are analysed. Analytical formulas providing the tools for fast and accurate calculations of the transverse disk displacement are derived. Based on these solutions, a parametric study of the effects of the shell length, angle of orientation of helical ribs of the lattice structure and their number on the disk displacement is performed. The results of calculations have been successfully verified using a finite-element analysis. The analytical formulas proposed in this work can be efficiently employed by design engineers to perform analyses of composite lattice cylindrical shells in aerospace applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了在中跨附有刚性圆盘的复合格圆柱壳的弯曲变形。带圆盘的壳体承受横向惯性载荷。使用正交各向异性圆柱壳的晶格结构的连续模型和半膜理论方程来解决该问题。分析了带有两个端部支撑变体的壳体。得出了可以快速,准确地计算横向盘位移的工具的分析公式。基于这些解决方案,对壳长,晶格结构螺旋肋的取向角及其数量对磁盘位移的影响进行了参数研究。计算结果已使用有限元分析成功验证。设计工程师可以有效地利用这项工作中提出的分析公式,对航空航天应用中的复合晶格圆柱壳进行分析。 (C)2016 Elsevier Ltd.保留所有权利。

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