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首页> 外文期刊>Canadian Journal of Civil Engineering >Connection development and in-plane response of glass fiber reinforced polymer sandwich panels with reinforced cores
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Connection development and in-plane response of glass fiber reinforced polymer sandwich panels with reinforced cores

机译:具有增强芯的玻璃纤维增​​强聚合物夹芯板的连接开发和面内响应

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摘要

This paper presents the findings of an experimental research project that was conducted in two phases to study the behavior of glass fiber reinforced polymer (GFRP) sandwich panels with reinforced cores under in-plane loading conditions. The tested panels consisted of two GFRP face skins separated by a polymeric foam core. The foam core was reinforced with different configurations of through-thickness fiber insertions and through-thickness GFRP web skins. In the first phase the performance of three different types of structural connections was tested — namely, bolted, bonded, and so-called enhanced bolted connections. The findings indicate that bolted connections to thinner and more flexible panels exhibited lower strength and a higher degree of nonlinear behavior compared with the bonded connections to the same panels. In contrast, the bolted connections to thicker and stiffer panels were generally stronger and stiffer than their bonded counterparts. The findings further indicate that the ultimate strength of the connections can be increased by up to 26% by bonding a steel reinforcing plate to the face skins of the panel prior to bolting. In the second phase three full-scale sandwich panels (1400 mm × 1400 mm) with different panel configurations were tested under proportional, biaxial, in-plane loading. The applied loads were selected to simulate the in-plane loading conditions in sandwich panels that are subjected primarily to in-plane loads, such as webs of deep beams and shear walls in lightweight structures. The full-field strains and displacements of the panels were measured using a digital image correlation-based (DIC) non-contact measurement system. The findings indicate that the through-thickness core reinforcements effectively prevented localized buckling, debonding, and separation of the panels' face skins. The findings also demonstrated that slender panels exhibit shear-compression buckling failures, whereas less slender panels exhibit shear-tension rupture failures.
机译:本文介绍了一个实验研究项目的发现,该项目分两个阶段进行,以研究在平面载荷条件下具有增强芯的玻璃纤维增​​强聚合物(GFRP)夹芯板的性能。所测试的面板由被聚合物泡沫芯隔开的两个GFRP蒙皮组成。泡沫芯通过增厚的纤维插入物和增厚的GFRP纤维网蒙皮的不同配置进行了加固。在第一阶段,测试了三种不同类型的结构连接的性能,即螺栓连接,粘结连接和所谓的增强螺栓连接。研究结果表明,与连接到相同面板的螺栓连接相比,螺栓连接到更薄,更柔韧的面板时,强度较低,非线性行为程度更高。相反,与较厚和较硬的面板的螺栓连接通常比其结合的对应物更坚固。研究结果进一步表明,在螺栓连接之前,通过将钢加强板粘结到面板的面板上,可以将连接的极限强度提高多达26%。在第二阶段中,在比例,双轴,面内载荷下测试了三种具有不同面板配置的全尺寸夹心面板(1400 mm×1400 mm)。选择施加的载荷来模拟夹芯板的平面内载荷条件,该夹芯板主要承受平面载荷,例如深梁腹板和轻型结构中的剪力墙。使用基于数字图像相关性(DIC)的非接触式测量系统测量面板的全场应变和位移。研究结果表明,贯穿厚度的芯增强材料有效地防止了面板面部皮肤的局部屈曲,脱粘和分离。研究结果还表明,细长板表现出剪切压缩屈曲破坏,而细长板表现出剪切张力断裂破坏。

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