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首页> 外文期刊>International Journal of Solids and Structures >Creep response of intermediate flexural cracking behavior of reinforced concrete beam strengthened with an externally bonded FRP plate
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Creep response of intermediate flexural cracking behavior of reinforced concrete beam strengthened with an externally bonded FRP plate

机译:FRP加固钢筋混凝土梁的中间弯曲开裂蠕变响应。

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In this study, a creep response model for the long-term behavior of interfacial shear stresses induced by intermediate flexural crack of FRP-plated RC beams is developed. A theoretical model based on the bi-linear cohesive zone model for intermediate crack-induced debonding is established, with the unique feature of unifying debonding initiation and growth with time increments. The creep behavior of the RC beam, adhesive layer and FRP plate have been included by considering the time-dependent mechanical properties. The time-dependent stress-deformation relationship caused by creep is referred to as bond slip law. Consequently, a new interfacial law which combines time-dependent mechanical properties of all retrofitted beam constituents is proposed by considering constant the total energy during the creep response with intermediate crack. Obtained results are in good agreement with those given in literature. A parametric study is carried out to demonstrate the effect of the mechanical properties and thickness variations of FRP, concrete and adhesive on interface debonding. Indeed, the creep behavior, activates the debonding process in long term. Size of the softening zone is reached quickly and the bearing capacity of the retrofitted beam will be relatively affected by the time increase. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,建立了由FRP镀RC梁的中间弯曲裂纹引起的界面剪应力长期行为的蠕变响应模型。建立了基于双线性内聚区模型的中间裂纹诱导脱胶的理论模型,其独特的特征是使脱胶的起始和增长随时间的增长而统一。考虑到时间相关的机械性能,已包括了RC梁,粘合剂层和FRP板的蠕变行为。由蠕变引起的随时间变化的应力-变形关系称为粘结滑移定律。因此,通过考虑在具有中间裂纹的蠕变响应过程中考虑总能量的恒定,提出了一种新的界面定律,该定律结合了所有翻新梁构件的时变机械特性。获得的结果与文献中给出的结果非常吻合。进行了参数研究,以证明FRP,混凝土和粘合剂的机械性能和厚度变化对界面剥离的影响。实际上,蠕变行为会长期激活脱胶过程。快速达到软化区的大小,时间的增加会相对影响改装梁的承载能力。 (C)2016 Elsevier Ltd.保留所有权利。

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