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Nonlinear buckling and postbuckling of cable-stiffened prestressed domes

机译:电缆加筋预应力拱顶的非线性屈曲和后屈曲

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摘要

Nonlinear buckling phenomenon of a novel type of structure, namely, a prestressed dome, is investigated using a nonlinear finite-element model. A prestressed dome is formed by buckling its individual flat members into arch frame works, and then the structure may be stiffened by cable loops in the circumferential direction. A corotational formulation of a 3D beam element, and a cable element, which is modeled as a catenary between connected points in the dome, are used to develop an algorithm for nonlinear stability analysis of the system by considering large displacements and rotations. The incremental load technique using a Newton-Raphson iteration scheme in conjunction with Crisfield's modified arc-length method is utilized to trace the nonlinear path of equilibrium. Buckling of prestressed domes with different numbers and locations of cable stiffeners are studied, and the results show that skeletal domes with stiffeners buckle at much higher loads than the corresponding unstiffened domes.
机译:使用非线性有限元模型研究了一种新型结构即预应力圆顶的非线性屈曲现象。通过将其单个扁平构件屈曲成拱形框架结构来形成预应力圆顶,然后可以通过沿圆周方向的电缆环使结构变硬。使用3D梁元素和电缆元素的配比公式,将其建模为穹顶中连接点之间的悬链线,通过考虑大的位移和旋转来开发系统非线性稳定性分析的算法。利用牛顿-拉夫森迭代方案的增量载荷技术,结合克里斯菲尔德的改进弧长方法,来追踪平衡的非线性路径。研究了具有不同数量和位置的电缆加劲肋的预应力拱形结构的屈曲,结果表明,带有加劲肋的骨架拱形结构在弯曲载荷下的屈曲强度远高于相应的未加筋拱形结构。

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