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首页> 外文期刊>Journal of structural engineering >Improved Form-Finding of Tensegrity Structures Using Blocks of Symmetry-Adapted Force Density Matrix
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Improved Form-Finding of Tensegrity Structures Using Blocks of Symmetry-Adapted Force Density Matrix

机译:使用对称适应的力密度矩阵块改进张力结构的找形

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摘要

Form-finding analysis is very important for developing innovative tensegrity structures. Nevertheless, it is frequently difficult to determine simultaneously the prestress mode and the exact nodal coordinates for a given geometry. This paper presents an improved symmetry method for analytical form-finding of tensegrity structures. The method is based on group representation theory and the force density method, and requires only the specified symmetry type and connectivity of a structure. The force densities of a d-dimensional tensegrity structure can be accurately determined using the zero determinant of d small-sized block matrices of a symmetry-adapted force density matrix. The nodal coordinate vectors can be obtained from the null spaces of the blocks through symmetry spaces for rigid-body translations along d directions. A number of geometries with cyclic symmetry, dihedral symmetry, or tetrahedral symmetry are investigated. Illustrative examples show that the proposed method allows significant simplification of the form-finding process. The analytical solutions offer all feasible stable or superstable tensegrity structures with expected symmetries. The obtained prestress modes for each independent structural configuration necessarily retain full symmetry.
机译:查找形式分析对于开发创新的张力结构非常重要。然而,通常很难同时确定给定几何形状的预应力模式和确切的节点坐标。本文提出了一种改进的对称方法,用于张拉结构的解析找形。该方法基于组表示理论和力密度方法,并且仅需要指定的对称类型和结构的连通性。 d维张力结构的力密度可以使用对称对称力密度矩阵的d个小块矩阵的零行列式准确确定。节点坐标向量可以通过对称空间从块的零空间中获得,这些对称空间用于沿d方向进行刚体平移。研究了许多具有循环对称性,二面体对称性或四面体对称性的几何形状。说明性示例表明,所提出的方法可以显着简化找形过程。分析解决方案提供了所有具有预期对称性的可行的稳定或超稳定张力结构。为每个独立的结构配置获得的预应力模式必须保持完全对称。

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