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Deformation of a cantilever composite anisogrid lattice cylindrical shell loaded by transverse inertia forces

机译:横向惯性力加载的悬臂复合各向异性网格格子圆柱壳的变形

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Bending of a cantilever composite anisogrid lattice cylindrical shell with the rigid disk attached to its free end is considered in the paper. The structure is subjected to transverse inertia loading. An analytical model has been developed based on the membrane theory of orthotropic cylindrical shells. The lattice structure is modeled as a continuous shell characterized by the effective membrane stiffnesses. The analytical formula was derived to calculate displacements of the disk and predict the bending stiffness of the structure under the transverse inertia load. The solution has been verified by comparison with a finite-element analysis. Applications of the formula to the design analysis and selection of the structural parameters of a spacecraft body lattice structure are demonstrated considering constraints imposed on the displacements of the disk. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本文中考虑了悬臂复合材料各向异性网格格子圆柱壳的弯曲,其刚性盘连接到其自由端。该结构承受横向惯性载荷。基于正交异性圆柱壳的膜理论,已经建立了一个分析模型。将晶格结构建模为以有效膜刚度为特征的连续壳。推导了解析公式来计算圆盘的位移并预测结构在横向惯性载荷下的弯曲刚度。该解决方案已通过与有限元分析相比较进行了验证。考虑到施加在磁盘位移上的约束条件,证明了该公式在航天器体格结构的设计分析和结构参数选择中的应用。 (C)2015 Elsevier Ltd.保留所有权利。

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