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Finite element analysis on static performance on combined truss with rectangular steel tube and concrete-filled steel tube

机译:矩形钢管组合桁架静态性能有限元分析及混凝土钢管

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Finite element analysis on three trusses was carried out in order to study the performance of combined truss with steel tube and concrete filled steel tube. The first specimen was a RHS trass, the second one was a combined truss with steel tube and concrete filled steel tube, and the third one was a concrete-filled steel tube truss. The results show that the finite element model can reflect the static performance of combined truss and can carry out the affective parameters analysis, which can offer theory evidence for engineering application of combined truss. The damage of three trusses was all due to the joint failure and the failure mode was all punishing shearing failure, but the concrete filled changed by the failure place of joints. The bearing capacity of three trusses was controlled by the jionts and the strength and stiffness of jionts were increased by the concrete filled in the chord, therefore the bearing capacity of trusses was increased while the deformation of trasses was decreased. In combined truss with steel tube and concrete filled steel tube, the concrete-filled steel tube joints can improve the bearing capacity and the steel tube joint can satisfy the requirements of deformation, which have obvious advantages in the engineering application.
机译:三个桁架的有限元分析,以研究钢管和混凝土钢管组合桁架的性能。第一个样品是RHS曲线,第二个是钢管和混凝土填充钢管的组合桁架,第三个是一个混凝土钢管桁架。结果表明,有限元模型可以反映组合桁架的静态性能,并可以进行情感参数分析,可以为合并桁架的工程应用提供理论证据。由于关节故障,故障模式全部惩罚剪切失效,但填充的混凝土填充的混凝土因接头的故障地位而变化。三个桁架的承载力由jionts控制,吉恩斯的强度和刚度被填充在和弦中的混凝土增加,因此桁架的承载力增加,而瓦质的变形降低。在钢管和混凝土填充钢管的组合桁架中,混凝土钢管接头可以提高轴承能力,钢管接头可以满足变形的要求,在工程应用中具有明显的优势。

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