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损伤前对PBO-FRCM约束的混凝土轴心受压和偏心受压圆柱体性能的影响

Effect of Pre-Damage on the Behavior of Axially and Eccentrically Compressed Concrete Cylinders Confined with PBO-FRCM.

作者信息

Pazdan Maciej, Trapko Tomasz, Musiał Michał

机构信息

Department of Building Structures, Faculty of Civil Engineering, Wrocław University of Science and Technology, 27 Wybrzeże Stanisława Wyspiańskiego st., 50-370 Wrocław, Poland.

出版信息

Materials (Basel). 2025 Jun 18;18(12):2881. doi: 10.3390/ma18122881.

Abstract

In the case of strengthening building structures, the process usually involves elements that have a certain loading history and are typically subjected to loading during the strengthening process. In scientific research, on the other hand, strengthening is usually applied to elements that are not representative of real structures. This article presents a study of the effect of pre-damage on the behavior of eccentrically compressed concrete cylinders confined with PBO-FRCM (fabric-reinforced cementitious matrix with PBO fibers) composite. Concrete confinement introduces a favorable triaxial stress state, which leads to an increase in the compressive strength of concrete. FRCM systems are an alternative to FRP (fiber-reinforced polymer) composites. Replacing the polymer matrix with a mineral matrix primarily improves the fire resistance of the strengthening system. The elements were made of concrete with a compressive strength of about 40 MPa, which is typical for current reinforced concrete columns. Pre-damage was induced by loading the test elements to 80% of the average compressive strength and then fully unloading. The elements were then strengthened with three layers of PBO-FRCM composite and subjected to axial or eccentric compression with force applied at two different eccentricities. In addition to electric strain gauges, a digital image correlation system was used for measurements, to identify the initiation of PBO mesh overlap delamination. This study analyzed the elements in terms of load-bearing capacity, deformability, ductility, and failure mechanisms. In general, there was no negative effect of pre-damage on the behavior of the tested elements.

摘要

在建筑结构加固的情况下,该过程通常涉及具有一定加载历史且在加固过程中通常会承受荷载的构件。另一方面,在科学研究中,加固通常应用于不代表实际结构的构件。本文介绍了预损伤对采用PBO-FRCM(含PBO纤维的织物增强水泥基复合材料)复合材料约束的偏心受压混凝土圆柱体性能影响的研究。混凝土约束会引入有利的三轴应力状态,从而导致混凝土抗压强度提高。FRCM系统是FRP(纤维增强聚合物)复合材料的一种替代方案。用矿物基体替代聚合物基体主要提高了加固系统的耐火性。这些构件由抗压强度约为40MPa的混凝土制成,这是当前钢筋混凝土柱的典型强度。通过将试验构件加载至平均抗压强度的80%然后完全卸载来引入预损伤。然后用三层PBO-FRCM复合材料对这些构件进行加固,并在两个不同偏心距下对其施加轴向或偏心压力。除了电应变片外,还使用了数字图像相关系统进行测量,以识别PBO网格重叠分层的起始情况。本研究从承载能力、变形能力、延性和破坏机制方面对这些构件进行了分析。总体而言,预损伤对试验构件的性能没有负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fd2/12194829/8ba1adf69da6/materials-18-02881-g001.jpg

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