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Axial Compression Behaviours of Pultruded GFRP–Wood Composite Columns

机译:拉挤玻璃纤维增​​强木塑复合柱的轴向压缩行为

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摘要

An innovative pultruded fiber reinforced polymer (FRP)–wood composite (PFWC) column with a lightweight southern pine wood core confined by outer FRP sheets was manufactured using an improved pultrusion process. Axial compression tests with both ends pinned as boundary conditions were employed to investigate the mechanical performance of such PFWC columns under concentric load. Through experimental investigations, the effects of the slenderness ratio on the failure modes and the axial load bearing capacities of the PFWC columns were evaluated. The failure modes showed that the specimens with a slenderness ratio less than 43.2 failed through compressive failure at junctions on FRP sheets, while those with slenderness ratios larger than 57.6 showed global buckling. Strain responses on specimens with different slenderness ratios are consistent with the observed failure modes. Finite element analysis was carried out to validate the experimental results, and satisfactory agreement was found between the failure modes and load–displacement curves. An empirical equation was developed with a new factor taking 0.65 into account to predict the load bearing capacities of the PFWC columns, and good agreement was found.
机译:使用改进的拉挤成型工艺制造了一种创新的拉挤纤维增强聚合物(FRP)-木复合材料(PFWC)柱,该柱具有由外部FRP板约束的轻质南方松木芯。采用两端钉扎为边界条件的轴向压缩试验来研究这种PFWC柱在同心载荷下的力学性能。通过实验研究,评估了细长比对PFWC柱的破坏模式和轴向承载能力的影响。破坏模式表明,细长比小于43.2的试样通过FRP板交界处的压缩破坏而失效,而细长比大于57.6的试样则呈现整体屈曲。不同长细比的试样的应变响应与观察到的破坏模式一致。进行了有限元分析以验证实验结果,并在破坏模式与载荷-位移曲线之间找到了令人满意的一致性。建立了一个具有0.65的新因子的经验方程,以预测PFWC柱的承载能力,并且发现了很好的一致性。

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