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Sandwich assemblies of composites square hollow sections and thin-walled panels in compression

机译:复合材料的三明治组件方形空心型材和薄壁板受压

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摘要

Sandwich structures were built up by two glass fibre reinforced polymer (GFRP) thin-walled panels and square hollow sections (SHS) in between through adhesive bonding or mechanical bolting. Experiments in compression were conducted in order to understand the failure modes including global and local buckling, load-bearing capacities, load-displacement curves and load-strain responses. Accordingly the effects of different connection methods and different spacing values between the SHS sections were clarified. Sudden debonding failure between GFRP panels and inner SHS columns was found on adhesively bonded specimens; while mechanically bolted specimens showed evident lateral deformation and progressive failure until the ultimate junction separation failure on the GFRP SHS columns. Local buckling was found on GFRP thin-walled panels of specimens with a larger spacing between the two SHS sections. Finite element analysis and analytical modelling were performed to estimate the load-displacement curves and the critical stress for the local buckling on GFRP thin-walled panels, where consistent agreements with experimental results were received.
机译:三明治结构由两块玻璃纤维增​​强聚合物(GFRP)薄壁面板和方形中空截面(SHS)之间通过粘合剂粘结或机械螺栓固定而成。为了理解破坏模式,进行了压缩实验,包括整体和局部屈曲,承重能力,荷载位移曲线和荷载应变响应。因此,阐明了不同连接方法和SHS部分之间不同间距值的影响。在粘合样品上发现了GFRP板和内部SHS柱之间突然的脱胶失败;而用机械螺栓固定的样品则表现出明显的横向变形和渐进破坏,直到GFRP SHS柱最终出现结分离失败为止。在GFRP薄壁样品板上发现局部屈曲,两个SHS部分之间的间距较大。进行了有限元分析和分析建模,以估计GFRP薄壁板上局部屈曲的载荷-位移曲线和临界应力,并获得与实验结果一致的结果。

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