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Elasto-plastic stability of single-layer reticulated shells with aluminium alloy gusset joints

机译:铝合金角撑节单层网壳的弹塑性稳定性

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The single-layer reticulated shell with aluminium alloy gusset (AAG) joints is an innovative space structure system, and has been widely used in the building engineering. According to the bending behaviour of AAG joints obtained from the theoretical formulae, the finite element (FE) models of K6 AAG joint shells were established in the ANSYS program. The buckling performance of K6 shells with semi-rigid and rigid joints was discussed. It is indicated that the semi-rigid behaviour of AAG joints had a significant effect on the buckling performance of 1(6 shells. To develop a further understanding, parametric studies were performed, varying the span-to-thickness ratio, height-to-span ratio, ring, member section, joint bending behaviour, joint stiffness model, material property, load distribution, support condition and initial geometric imperfection. It is found that the effects of these parameters on the elasto-plastic stability of K6 shells with rigid and AAG joints were different obviously. At last, to predict the elasto-plastic buckling load of AAG joint shells, theoretical formulae were proposed on the basis of the FE results of more than 8000 shell models.
机译:具有铝合金角撑板(AAG)接头的单层网状壳体是一种创新的空间结构系统,已广泛应用于建筑工程中。根据从理论公式获得的AAG接头的弯曲行为,在ANSYS程序中建立了K6 AAG接头壳体的有限元(FE)模型。讨论了半刚性和刚性接头的K6壳的屈曲性能。结果表明,AAG接头的半刚性行为对1(6壳)的屈曲性能有显着影响。为进一步了解,进行了参数研究,改变了跨度-厚度比,高度-跨距比,环,构件截面,接头弯曲行为,接头刚度模型,材料特性,载荷分布,支撑条件和初始几何缺陷,发现这些参数对具有刚性和刚性的K6弹壳的弹塑性稳定性的影响。 AAG接头的差异明显,最后,为了预测AAG接头壳体的弹塑性屈曲载荷,根据8000多个壳体模型的有限元结果,提出了理论公式。

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