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Strain and stress concentration of completely overlapped tubular CHS joints under basic loadings

机译:在基本载荷下完全重叠的管状CHS接头的应变和应力集中

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摘要

A completely overlapped tubular circular hollow section (CHS) joint specimen is tested under lap brace axial loading (AX), in-plane (IPB) and out-of-plane bending (OPB) to determine the strain concentration factor (SNCF) at the intersection of members for the verification of a finite element (FE) model. The experimental results showed that the strain distribution on the outer surface of members near the weld toe of the joint is fairly linear. The maximum SNCF of the joint occurs at the through brace saddle near the lap brace under AX and OPB and at the lap brace crown heel under IPB. The SNCF at the intersection of the chord and through brace for the joint under IPB and OPB is negligible. For the FE analysis, the comparison of SNCF between the test specimen and the 8-node thick shell FE model under AX, IPB and OPB load cases shows reasonably good agreement with average differences of 7.9 percent, 10.6 percent and 5.8 percent respectively. The comparison of stress concentration factor (SCF) revealed that the existing T/Y-joint equations are not suitable for predicting the SCF of completely overlapped tubular CHS joints. The SCF of completely overlapped tubular CHS joints can effectively be reduced by proper control of its geometrical properties.
机译:在搭接轴轴向载荷(AX),面内(IPB)和面外弯曲(OPB)下测试完全重叠的管状圆形空心截面(CHS)接头样品,以确定在变形时的应变集中系数(SNCF)验证有限元(FE)模型的成员的交集。实验结果表明,在接头的焊趾附近的构件外表面上的应变分布是线性的。关节的最大SNCF发生在AX和OPB下靠近膝部支撑的直通鞍形鞍处,以及IPB下的膝部支撑冠状跟。在IPB和OPB下的连接处,通过弦撑的交点处的SNCF可以忽略不计。对于有限元分析,在AX,IPB和OPB载荷情况下,试样与8节点厚壳有限元模型的SNCF的比较显示出相当好的一致性,平均差异分别为7.9%,10.6%和5.8%。应力集中系数(SCF)的比较表明,现有的T / Y接头方程不适用于预测完全重叠的管状CHS接头的SCF。完全重叠的管状CHS接头的SCF可以通过适当控制其几何特性来有效降低。

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