锚固CFRP复合材料对部分损伤PC梁加固的影响

Hayder Qays Abbas, A. H. Al-Zuhairi
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引用次数: 2

摘要

本文研究了锚固CFRP包覆板、螺栓和层压联锁对提高后张梁抗弯加固效率的影响,采用CFRP复合材料技术在预应力混凝土梁的部分损坏损失约14.3%的纵向层压,以及对恢复PC梁原有抗弯能力的影响。减轻水平层压板(CFRP)的软肋分层。层压板和锚固体的织构影响层压板碳纤维的应力、裂纹扩展模式和破坏模式,因此,本文研究了层压板碳纤维梁的姿态。实验结果表明,CFRP层合板的使用显著影响链应变,特别是当锚固包裹时。层压板CFRP-EB的抗弯能力提高了约13%的原始强度,相当于13%的链损伤增加。尽管使用锚固包裹、机械螺栓和层压板联锁分别增加了20%、22%和29%的抗弯能力。已经提出使用准实验方程来预测未灌浆股的实际应力,仅考虑CFRP层压和包裹锚固板技术的影响。试验结果表明,锚固CFRP对承载力和开裂荷载的影响可达29%,并可延迟粘结破坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Anchored CFRP Composites on the Strengthening of Partially Damaged PC Girders
This manuscript investigated the effect of anchorage CFRP wrapping sheets, bolts, and laminate interlock on increasing the efficiency of flexural strengthening for the post-tension girder using CFRP composites techniques longitudinal laminates at the soffit for partially damaged loss of about 14.3% from its area of prestressed concrete beams, and the impact on restoring the original flexural capacity of PC girder. Mitigating delamination of the soffit of horizontal laminates (CFRP). The texture of the laminate and anchorages influenced the stress of the laminate carbon fiber, the mode of crack propagation and failure, and consequently, the beam's attitude has been investigated in this manuscript. The experimental findings demonstrated that using CFRP laminates significantly affects strand strain, especially when anchorage wrapping is applied. The laminates CFRP-EB enhanced the flexural capacity by around 13% of the original strength, which equates to a 13% increase in strand damage. Despite an increase in flexural capacity of 20%, 22%, and 29% when using anchorage wrapping, mechanical bolts, and laminate interlock, respectively. It has been proposed to use quasi-experimental equations to predicate the actual stress of un-grouted strands, considering the influence of CFRP laminate and wrapping anchorage sheets techniques only. The experiment outcomes demonstrated that using Anchored CFRP significantly affects load-carrying capacity and cracking load by up to 29% and delays the bonding failure.
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