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A study on the bond behavior of different FRCM systems

机译:不同FRCM体系的键合行为研究

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Fabric-reinforced cementitous matrix (FRCM) composites are usually applied on the concrete surface for the purpose of strengthening reinforced concrete structures. However, the efficiency of FRCM strengthening is notably affected by the bond between the FRCM system and concrete substrate. In view of that, the current paper presents the results of a preliminary experimental study carried out to investigate the bond characteristics between FRCM composites and concrete. Six number of specimens, each consisted of a 150-mm concrete cube with a double-shear connection to an FRCM system, were subjected to direct-shear loading test. The parameters investigated include (a) FRCM material (carbon, polyparaphenylene benzobisoxazole (PBO), and glass); and (b) Bond length (75 mm or 100 mm). The FRCM systems typically included a single layer of fabric with the associated mortar, and the bond width was uniformly taken as 100 mm. The test results revealed that the bond capacity is enhanced with an increase in the FRCM bonded length. The PBO-FRCM showed the highest bond capacity between FRCM composite and concrete substrate among the three systems. The modes of failure observed in carbon-, PBO-, and glass-FRCM bond tests are fabric delamination, FRCM mortar/concrete debonding, and fabric rapture, respectively. The PBOand glass-FRCM bond tests thus exhibited a more brittle behavior at failure than that of the carbon-FRCM counterpart.
机译:织物增强水泥基复合材料通常用于混凝土表面,以增强钢筋混凝土结构。但是,FRCM加固的效率显着受FRCM系统和混凝土基材之间的粘结力的影响。有鉴于此,本文提出了初步实验研究的结果,以研究FRCM复合材料与混凝土之间的粘结特性。对六个样本(每个样本由150毫米混凝土立方体组成,与FRCM系统进行双剪切连接)进行了直接剪切载荷测试。研究的参数包括:(a)FRCM材料(碳,聚对亚苯基苯并双恶唑(PBO)和玻璃); (b)粘结长度(75毫米或100毫米)。 FRCM系统通常包括带有相关灰浆的单层织物,粘结宽度统一取为100 mm。测试结果表明,随着FRCM粘结长度的增加,粘结能力增强。在三个体系中,PBO-FRCM显示出FRCM复合材料与混凝土基材之间的最高粘结能力。在碳纤维,PBO-和玻璃纤维-FRCM粘结测试中观察到的破坏模式分别是织物分层,FRCM灰浆/混凝土粘结和织物破裂。因此,与碳-FRCM相比,PBO和玻璃-FRCM粘结测试在失效时表现出更脆的行为。

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