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Finite element analysis of slender HSS columns strengthened with high modulus composites

机译:高模量复合材料增强细长HSS柱的有限元分析

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This paper presents results of a non-linear finite element analysis of axially loaded slender hollow structural section (HSS) columns, strengthened using high modulus carbon-fiber reinforced polymer (CFRP) longitudinal sheets. The model was developed and verified against both experimental and other analytical models. Both geometric and material nonlinearities, which are attributed to the column's initial imperfection and plasticity of steel, respectively, are accounted for. Residual stresses have also been modeled. The axial strength in the experimental study was found to be highly dependent on the column's imperfection. Consequently, no specific correlation was established experimentally between strength gain and amount of CFRP. The model predicted the ultimate loads and failure modes quite reasonably and was used to isolate the effects of CFRP strengthening from the columns' imperfections. It was then used in a parametric study to examine columns of different slenderness ratios, imperfections, number of CFRP layers, and level of residual stresses. The study demonstrated the effectiveness of high modulus CFRP in increasing stiffness and strength of slender columns. While the columns' imperfections affect their actual strengths before and after strengthening, the percentage gain in strength is highly dependent on slenderness ratio and CFRP reinforcement ratio, rather than the value of imperfection.
机译:本文介绍了使用高模量碳纤维增强聚合物(CFRP)纵向薄板加固的轴向受力细长空心结构截面(HSS)柱的非线性有限元分析结果。该模型是针对实验模型和其他分析模型开发并验证的。考虑了几何和材料的非线性,分别归因于圆柱的初始缺陷和钢的塑性。残余应力也已建模。实验研究中的轴向强度高度依赖于色谱柱的缺陷。因此,在强度增加和CFRP量之间没有实验确定具体的相关性。该模型相当合理地预测了极限载荷和破坏模式,并被用于将CFRP加固的效果与柱的缺陷隔离开。然后将其用于参数研究中,以检查不同细长比,缺陷,CFRP层数和残余应力水平的圆柱。研究表明,高模量CFRP可以提高细长柱的刚度和强度。虽然柱子的不完美会影响加固前后的实际强度,但强度的百分比增长很大程度上取决于细长比和CFRP增强比,而不是不完美的值。

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