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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A novel approach to modelling the bond characteristics between CFRP fabrics and steel plate joints under quasi-static tensile loads
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A novel approach to modelling the bond characteristics between CFRP fabrics and steel plate joints under quasi-static tensile loads

机译:一种拟静态拉伸载荷作用下CFRP织物与钢板接头粘结特性建模的新方法

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摘要

Carbon fiber-reinforced polymer (CFRP) materials have been effectively used as externally bonded sheets to repair damaged steel structures such as airplanes and ships. In this study, a series of double strap joints with different bonding lengths are considered and examined to experimentally and theoretically assess the effective bond length. Various models exist in the literature which are used to predict the strength of steel and CFRP joints under various loading conditions. Non-linear Lagrange stress method (NLS) which is a novel stress-based method for predicting the failure load values is presented for the first time. This approach is based on 2D and 3D linear elastic finite element analysis. Relying only on two experimental tests, the new approach proposed here can quickly and easily predict the failure load in steel/CFRP samples. In this methodology, it is assumed that the adhesive joint will fail as the normal stress along the adhesive mid-line reaches a predetermined value at a critical distance. In addition, experimental data on steel/CFRP joints gathered from the literature are compared to predictions using the NLS method. It was found that results from the theoretical predictions (NLS) were in good agreement with experimental tests conducted on double strap joints. It was also revealed that the average accuracy of the NLS method is superior to other methods such as cohesive zone model and Hart-Smith. The results revealed that under the best conditions, the NLS model is 5 times more accurate than existing models.
机译:碳纤维增强聚合物 (CFRP) 材料已被有效地用作外部粘合板,以修复飞机和轮船等受损的钢结构。本研究对一系列具有不同粘结长度的双捆扎接头进行了研究,从实验和理论上评估了有效粘结长度。文献中存在各种模型,用于预测钢和CFRP接头在各种载荷条件下的强度。首次提出了一种基于应力的破坏载荷值预测方法——非线性拉格朗日应力法(NLS)。该方法基于二维和三维线弹性有限元分析。仅依靠两个实验测试,这里提出的新方法就可以快速轻松地预测钢/CFRP样品中的失效载荷。在这种方法中,假设粘合剂接头将失效,因为沿粘合剂中线的法向应力在临界距离处达到预定值。此外,还将从文献中收集的钢/CFRP接头的实验数据与使用NLS方法的预测进行了比较。结果表明,理论预测结果(NLS)与双带接头的实验试验结果吻合较好。结果表明,NLS方法的平均精度优于其他方法,如内聚区模型和Hart-Smith模型。结果表明,在最佳条件下,NLS模型的准确率是现有模型的5倍。

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