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Controlled failure warning and mitigation of prematurely failing beam through adhesive

机译:可控的故障警告和通过胶粘剂防止过早损坏的光束

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In plated beam, an adhesive is used primarily to adhere the external plate to the concrete beam to achieve a composite action. Even though some work has been found to indicate that the choice of softer adhesive increased the capacity of beam (MacDonald & Calder, 1982), relatively stiffer adhesives have been largely assumed to provide better strengthening. Largely, due to the fact that adhesive has been widely considered as an insignificant structural component towards the capacity of a composite beam; material capabilities (if not structural) of adhesive have also been ignored for further research towards studying its effects on premature failures (particularly debonding). Under mixed-mode loading, the adoption through discretisation of Cohesive Zone Model as a bulk material (indicative of adhesive component) and to simulate interfacial cracks is shown here to achieve the objectives. The outcomes of the research indicate the critical material properties of adhesive in all directions, such as stiffness, strength and crack energy, play crucial role in controlling the behaviour of modes of failure. Further, based on this study, recommendations have been proposed on the choice of adhesive type at different locations of plated beam so as to capture a failure warning and avoid catastrophic failure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在电镀梁中,主要使用粘合剂将外板粘合到混凝土梁上以实现复合作用。即使发现一些工作表明选择较软的胶粘剂会增加梁的承载能力(MacDonald&Calder,1982),但相对较硬的胶粘剂仍被认为可以提供更好的强度。很大程度上,由于胶粘剂已被广泛认为对提高复合梁的承载能力无关紧要;胶粘剂的材料性能(如果不是结构性的)在研究其对过早失效(特别是脱胶)的影响时也被忽略了。在混合模式载荷下,此处展示了通过离散化内聚区模型作为散装材料(表示胶粘剂成分)并模拟界面裂缝来实现目标的方法。研究结果表明,胶粘剂在各个方向上的关键材料性能(例如刚度,强度和裂纹能量)在控制破坏模式的行为中起着至关重要的作用。此外,基于该研究,已经提出了关于在镀覆梁的不同位置处选择粘合剂类型的建议,以便捕获故障警告并避免灾难性故障。 (C)2016 Elsevier Ltd.保留所有权利。

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