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Bearing capacity of fastener steel tube full hall formwork support base on stability of pressed pole with multiple point restraint against rotation

机译:紧固件钢管全霍尔模板支撑基座对压杆稳定性的轴承容量,旋转多点约束

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Through advanced non-linear finite element models in different geometric parameters that considering the semi-rigid character of the couplers, the critical loads and failure modes of many fastener steel tube full hall formwork supports (FFS) with and without bridging were evaluated. Thirteen FFS specimens were tested to failure in order to examine the stability behavior and failure modes of them. The finite element analysis (FEA) results were well consistent with those of the test what could prove its validity. On the basis of FEA and experimental research, simplified models and corresponding calculation formulas were established for the FFS under uniform load through choosing different buckling modes, which were verified by the experimental and analytical results and turned out to be accurate enough in predicting the strength. The simplified models presented here considering the semi-rigid character of right-angle coupler, effect of adjacent horizontal tube which provided a very useful reference for the industry as well as academia for design and future research.
机译:通过考虑耦合器的半刚性特性的不同几何参数中的先进的非线性有限元模型,评估了许多紧固件钢管全霍尔模板支撑(FFS)的临界负荷和故障模式进行了评估。测试13个FFS样本以进行故障,以检查它们的稳定性行为和失效模式。有限元分析(FEA)结果与测试有效性的测试良好。在FEA和实验研究的基础上,通过选择不同的屈曲模式,为FFS建立了简化的模型和相应的计算公式,通过选择不同的屈曲模式,通过实验和分析结果验证,并证明在预测力度方面足够准确。这里考虑了右角耦合器的半刚性特性,相邻水平管的效果提供了对工业以及设计和未来研究的学术界提供了非常有用的参考的简化模型。

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