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In-plane behavior of seismically damaged masonry walls repaired with external BFRP

机译:外部BFRP修复的受地震破坏的砌体墙的面内行为

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This paper investigates the in-plane seismic behavior of eight unreinforced masonry (URM) walls before and after being retrofitted by basalt fiber reinforced polymer (BFRP). Among these eight specimens, one served as the reference specimen, without any strengthening scheme; three were directly strengthened with BFRP after construction; four were cyclically tested to the pre-defined damage level, and then repaired with BFRP. The mixed strengthening configuration was designed for the retrofitted URM walls. All these walls were tested to failure under a same loading strategy. Different parameters, including layer number, strip width, and vertical compression level, were considered in the laboratory tests. The experimental study shows that the failure modes between the reference specimen and retrofitted walls are different. Testing results are discussed in terms of lateral strength, ultimate drift, stiffness degradation, energy dissipation, and FRP strain. Finally, an improved design model is proposed for strength consideration of FRP retrofitted masonry walls.
机译:本文研究了玄武岩纤维增强聚合物(BFRP)改造之前和之后的八个非增强砌体(URM)墙的面内地震行为。在这八种样品中,有一个作为参考样品,没有任何强化方案。施工后直接用BFRP加固了三层;四个被定期测试到预定的损坏水平,然后用BFRP修复。混合加固配置设计用于翻新的URM墙。在相同的加载策略下对所有这些墙进行了测试,以检验其是否失效。在实验室测试中考虑了不同的参数,包括层数,带钢宽度和垂直压缩水平。实验研究表明,参考样本与翻新墙之间的破坏模式是不同的。测试结果从侧向强度,极限位移,刚度下降,能量耗散和玻璃钢应变方面进行了讨论。最后,提出了一种改进的设计模型,以考虑FRP加固砌体墙的强度。

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