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Interfacial stresses in reinforced concrete beams bonded with a soffit plate: a finite element study

机译:拱腹板粘结钢筋混凝土梁的界面应力:有限元研究

摘要

This paper presents a careful finite element investigation into interfacial stresses in reinforced concrete (RC) beams strengthened with a bonded soffit plate, with the aims of assessing the accuracy of existing approximate closed-form analytical solutions based on simplifying assumptions and highlighting aspects which are omitted by them. Finite element modelling issues are first discussed, with particular attention on stress singularities in such beams and appropriate finite element meshes for the accurate determination of interfacial stresses. Finite element stresses are then carefully examined and compared with the predictions from a closed-form solution recently derived by the authors. The finite element results show that stresses vary strongly across the adhesive layer, with the stresses along the adhesive-to-concrete (AC) interface being very different from those along the plate-to-adhesive (PA) interface. In particular, near the end of the plate, the interfacial normal stress is tensile along the AC interface but compressive along the PA interface, offering a plausible explanation for the fact that PA interfacial failure in tests has rarely been if at all reported. The closed-form solution, being based on the assumption of uniform stresses in the thickness direction in the adhesive layer, is incapable of predicting such complex stresses, but nevertheless provides a reasonably close prediction of stresses along the middle-thickness section of the adhesive layer, particularly when the adhesive layer is not very thin. This and other similar closed-form solutions are therefore believed to still form a useful basis on which design rules against debonding failures can be built, with appropriate tuning using experimental data. Finally, the effect of spew fillets on interfacial stresses is examined.
机译:本文对结合拱腹板加固的钢筋混凝土(RC)梁的界面应力进行了仔细的有限元研究,旨在基于简化的假设并突出显示被忽略的方面,评估现有近似封闭形式分析解决方案的准确性被他们。首先讨论有限元建模问题,尤其要注意此类梁中的应力奇异性和用于精确确定界面应力的适当有限元网格。然后仔细检查有限元应力,并将其与作者最近得出的封闭形式解决方案的预测结果进行比较。有限元结果表明,整个粘合剂层的应力变化很大,沿着粘合剂-混凝土(AC)界面的应力与沿着板-粘合剂(PA)界面的应力非常不同。特别是,在板的末端附近,界面法向应力沿着AC界面是拉伸的,而沿着PA界面是压缩的,这为以下事实提供了合理的解释:测试的PA界面失效很少被报道。封闭形式的解决方案基于粘合剂层厚度方向上的均匀应力的假设,虽然无法预测这种复杂的应力,但是仍然可以合理地预测沿粘合剂层中厚度部分的应力,特别是当粘合剂层不是很薄时。因此,该解决方案和其他类似的封闭形式解决方案仍被认为仍是一个有用的基础,通过使用实验数据进行适当的调整,可以建立防止脱胶失败的设计规则。最后,检查了倒角焊缝对界面应力的影响。

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