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Experimental and numerical studies on single-layer reticulated shells with aluminium alloy gusset joints

机译:铝合金角撑节单层网壳的试验与数值研究

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Single-layer reticulated shells with aluminium alloy gusset (AAG) joints have a significant application prospect in spatial structures. To investigate their buckling behaviour, a single-layer reticulated shell with AAG joints subjected to a concentrated load at central joint was tested. The tested shell was a K6 shell with 5 rings, 8 m span and 0.5 m height. Its failure mode, buckling behaviour, internal force distribution of members, stress distribution of plates and joint stiffness were discussed. Finite element (FE) method implemented in the non-linear code ANSYS was adopted for the further investigation of single-layer reticulated shells with AAG joints. The FE procedure was accurately calibrated on the basis of the available experimental results. To develop a deep understanding, parameter studies considering the influence of joint bending behaviour on the buckling behaviour of single-layer reticulated shells were conducted.
机译:具有铝合金角撑板(AAG)接头的单层网状壳在空间结构中具有重要的应用前景。为了研究其屈曲行为,测试了带有AAG接头的单层网状壳体,该接头在中心接头处承受集中载荷。测试的外壳是K6外壳,带有5个环,跨度为8 m,高度为0.5 m。讨论了其失效模式,屈曲行为,构件的内力分布,板的应力分布和接头刚度。采用非线性代码ANSYS中实现的有限元(FE)方法进一步研究了带有AAG接头的单层网状壳。根据现有的实验结果,对FE程序进行了准确的校准。为了加深理解,进行了考虑关节弯曲行为对单层网壳屈曲行为影响的参数研究。

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