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Fully reversible reinforcement of softwood beams with unbonded composite plates

机译:无粘结复合板完全可逆地加固软木梁

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摘要

In this paper, results of flexure tests aimed at improving the structural behaviour of softwood beams reinforced with unglued composite plates and at developing an effective alternative to the use of organic resins are presented. The addition of modest ratios of GFRP (Glass Fiber Reinforced Polymer) composite strengthening can prevent tension failure in timber beams. However the application of organic matrices presents problems of reversibility, compatibility and durability with timber and poor performance at high temperatures. The increment in capacity and stiffness and the analysis of the failure modes is the central focus of this paper. The experimental campaign is dealing with a significant number of un-reinforced and reinforced beams strengthened with unbonded GFRP plates. A 3-dimensional finite element model is also presented for simulating the non-linear behaviour of GFRP-reinforced softwood beams. The ability of the numerical model to reproduce experimental results for the load-deflection curves is validated.
机译:在本文中,提出了挠曲测试的结果,旨在改善用非胶合复合板增强的软木梁的结构性能,并开发出一种替代有机树脂的有效替代方法。加入适量比例的GFRP(玻璃纤维增​​强聚合物)复合材料可以防止木梁的拉伸破坏。然而,有机基质的应用存在与木材的可逆性,相容性和耐久性以及高温下的不良性能的问题。容量和刚度的增加以及失效模式的分析是本文的重点。实验活动涉及大量未加固和加固的未粘结GFRP板的梁。还提出了一个三维有限元模型,用于模拟GFRP加固的软木梁的非线性行为。数值模型再现载荷-挠度曲线实验结果的能力得到了验证。

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