机械锚栓对纤维织物-钢接头粘接性能的影响

IF 4 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Journal of Constructional Steel Research Pub Date : 2024-09-30 DOI:10.1016/j.jcsr.2024.109057
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引用次数: 0

摘要

本研究提出了锚固加固的实验模型,并进行了单轴静态拉伸试验。研究揭示了锚固加固对试样破坏模式的影响。其中包括锚固加固下的粘结长度、层数和纤维织物类型对极限承载力和粘结滑移曲线的影响。结果表明,锚杆能有效提高试样的极限承载力。锚固件在自由端和连接端附近的粘结滑移行为存在差异。靠近连接端的应力更大。使用锚固加固可以显著提高多层碳纤维试样的承载能力。增加锚固件的数量和减小锚固件与连接端的距离可以进一步提高试样的刚度。使用 ANSYS 建立的有限元模型与实验结果十分吻合,参数化分析结果表明,随着锚栓预紧力的增加,承载能力和刚度呈线性增长,在 11kN 时增长了 84.42%。增加预紧力会增强碳纤维与钢材界面的摩擦力,从而减少变形。同样,将锚栓宽度从 9 毫米扩大到 39 毫米可将承载能力提高 54.28%,更大的锚栓可显著提高刚度和粘结性能,可用于预测锚栓加固的纤维织物-钢的机械性能。
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Influence of mechanical anchors on bond performance of fiber fabric-steel joints
This study proposes an experimental model for anchor reinforcement and conducts uniaxial static tensile tests. The influence of anchor reinforcement on the failure mode of specimens is revealed. This includes the effects of bond length, number of layers, and types of fiber fabric under anchor reinforcement on the ultimate bearing capacity and bond-slip curve. The results demonstrate that anchors can effectively increase the ultimate bearing capacity of the test specimens. There are differences in bond-slip behavior between the anchors near the free end and the joint end. Higher stresses are experienced near the joint end. The use of anchor reinforcement can significantly enhance the load-bearing capacity of multi-layer carbon fiber specimens. Increasing the number of anchors and reducing the distance between the anchor and the joint end can further improve the stiffness of the specimens. A finite element model is established using ANSYS, which agrees well with the experimental results and parameterized analysis results reveal a linear increase in load-bearing capacity and stiffness with higher anchor bolt preload, achieving an 84.42 % increase at 11kN. Increased preload enhances friction at the carbon fiber-steel interface, reducing deformation. Similarly, expanding anchor width from 9 mm to 39 mm improves load-bearing capacity by 54.28 %, with larger anchors significantly boosting stiffness and bonding performance, which can be used to predict the mechanical properties of fiber fabric-steel reinforced by anchors.
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来源期刊
Journal of Constructional Steel Research
Journal of Constructional Steel Research 工程技术-工程:土木
CiteScore
7.90
自引率
19.50%
发文量
550
审稿时长
46 days
期刊介绍: The Journal of Constructional Steel Research provides an international forum for the presentation and discussion of the latest developments in structural steel research and their applications. It is aimed not only at researchers but also at those likely to be most affected by research results, i.e. designers and fabricators. Original papers of a high standard dealing with all aspects of steel research including theoretical and experimental research on elements, assemblages, connection and material properties are considered for publication.
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