首页> 外文期刊>Canadian Journal of Civil Engineering >Repair of steel structures by bonded carbon fibre reinforced polymer patching: experimental and numerical study of carbon fibre reinforced polymer--steel double-lap joints under tensile loading
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Repair of steel structures by bonded carbon fibre reinforced polymer patching: experimental and numerical study of carbon fibre reinforced polymer--steel double-lap joints under tensile loading

机译:粘结碳纤维增强聚合物修补修复钢结构:碳纤维增强聚合物-钢双搭接接头在拉伸载荷下的实验和数值研究

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摘要

The behavior of carbon fibre reinforced polymer (CFRP) composite bonded to a steel plate double-lap joint was investigated experimentally. A total of 19 specimens were tested with the major test parameters being the bonded lap length, L_L, and the axial adherend stiffness ratio, ETR. Five of the 19 specimens were prepared using CFRP sheets, and the rest using CFRP plates. Two CFRP plate specimens were prepared with a tapered lap joint, and their results were compared with those of counterpart specimens prepared without tapered lap joints. In general, the behavior of specimens made from either CFRP sheets or CFRP plates were similar. The joint's axial load carrying capacity increased with increasing L_L up to a certain limit, when the joint's load carrying capacity could no longer be increased by increasing L_L. However, experimental results showed that a larger failure deformation could be achieved by increasing L_L past this limit. Specimens that had the same inner adherend thickness but higher axial adherend stiffness ratios showed higher axial load carrying capacities. Test results also showed that the strengths of tapered lap joints were almost the same as those of nontapered lap joints with the same L_L. Nonlinear finite element analysis was carried out to study the stress-strain behavior of the adherend and the adhesive of the double-lap joint. Using finite element analysis results in an analytical solution obtained from the literature, predictions of the joint's maximum axial strength and minimum required L_L were made. This analytical solution provided good predictions when compared with test results, producing test to predicted ratios from 0.88 to 1.14.
机译:实验研究了碳纤维增强聚合物(CFRP)复合材料粘结到钢板双搭接接头上的行为。总共测试了19个样品,主要测试参数为粘合搭接长度L_L和轴向被粘物刚度比ETR。使用CFRP板制备了19个样品中的五个,其余使用CFRP板制备。准备了两个带有锥形搭接缝的CFRP板样品,并将其结果与没有带锥形搭接缝的相应样品进行了比较。通常,由CFRP板或CFRP板制成的样品的行为相似。当L_L不能再通过增加L_L来增加关节的轴向承载能力时,其轴向承载能力会随着L_L的增加而增加。然而,实验结果表明,通过增加L_L超过此极限可以实现更大的破坏变形。具有相同内部被粘物厚度但轴向被粘物刚度比较高的样品显示出较高的轴向承载能力。测试结果还显示,锥形搭接的强度与具有相同L_L的非锥形搭接的强度几乎相同。进行了非线性有限元分析,以研究双搭接接头的被粘物和胶粘剂的应力-应变行为。使用从文献中获得的分析解决方案中的有限元分析结果,可以预测接头的最大轴向强度和最小所需的L_L。与测试结果相比,该分析解决方案可提供良好的预测,从而使测试与预测的比率从0.88到1.14。

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