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首页> 外文期刊>Journal of Composites for Construction >Strengthening and Retrofitting Precast Concrete Buildings to Mitigate Progressive Collapse Using Externally Bonded GFRP Strips
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Strengthening and Retrofitting Precast Concrete Buildings to Mitigate Progressive Collapse Using Externally Bonded GFRP Strips

机译:使用外部粘合GFRP条加固和改造预制混凝土建筑以缓解逐步崩溃

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Compared to cast-in-situ RC buildings, precast concrete (PC) buildings may have lower redundancy and integrity depending on their construction methods and the types of beam-to-column connection. In this study, a series of multipanel PC beam-column-slab substructures were tested to evaluate the performance of a typical existing PC building with bolted connection, which is a typical dry connection in industrial buildings, subjected to the loss of a single penultimate column scenario. It was found that an existing PC substructure with bolted connections exhibited very low ductility and load-resisting capacity. The deficient connection between the PC slab and beams led to the specimen failing in a brittle manner and gaining fewer benefits from tensile membrane action. To overcome the poor performance of existing PC buildings with bolted connections, improvement in detailing and strengthening schemes relied on glass fiber-reinforced polymer (GFRP) strips were proposed. Based on the test results, the improvement could enhance the redundancy of PC substructures effectively. Moreover, the proposed strengthening scheme further enhances the flexural capacity, initial stiffness, and the postpeak behavior in large deformation stage significantly. (c) 2019 American Society of Civil Engineers.
机译:与进位RC建筑相比,预制混凝土(PC)建筑物可能具有较低的冗余和完整性,具体取决于其施工方法和梁到列连接的类型。在这项研究中,测试了一系列多壁型PC梁柱板子结构,以评估具有螺栓连接的典型现有PC建筑的性能,这是工业建筑中典型的干燥连接,损失了单个倒数二柱设想。发现具有螺栓连接的现有PC子结构表现出非常低的延展性和抗荷载能力。 PC板和光束之间的缺陷连接导致样品以脆性的方式失效,并从拉伸膜作用中获得较少的益处。为了克服具有螺栓连接的现有PC建筑的性能差,提出了玻璃纤维增​​强聚合物(GFRP)条的详细和加强方案的改进。基于测试结果,改善可以有效地提高PC子结构的冗余。此外,所提出的强化方案进一步提高了大变形阶段的抗弯能力,初始刚度和突出行为。 (c)2019年美国土木工程学会。

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