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Dynamic Response of Masonry Walls Strengthened with Engineered Cementitious Composites under Simulated Debris Flow

机译:模拟泥石流下工程水泥基复合材料加固砌体墙体的动力响应

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摘要

Abstract Unreinforced masonry buildings are prone to catastrophic damage when subjected to debris-flow impact. Engineered cementitious composite (ECC) layers were utilized to strengthen unreinforced masonry walls belonging to a 1/2 scaled timber-masonry building to mitigate the risk of collapse, and rolling steel balls of various masses were used to impact the strengthened walls to investigate the effects of the ECC layer strengthening. The typical characteristics of ECC, i.e.,?multiple cracking and high damage tolerance, were clearly exhibited during impacting, which helped to transfer the failure mode of the masonry walls from brittle to a much more ductile one. This article introduces strain response, displacement response, acceleration response, and dynamic property of the strengthened walls under impact. The test results demonstrated that ECC layer strengthening can significantly enhance impact resistance, including stiffness, energy dissipation, etc. For simplified assessment, the residual displacement ratio is recommended as the indicator to characterize the damage level of masonry walls strengthened with the ECC layers.
机译:摘要 未加固的砌体建筑在泥石流冲击下容易发生灾难性破坏。采用工程水泥基复合(ECC)层对1/2比例木砌体建筑的未加筋砌体墙进行加固,以降低倒塌风险,并采用不同质量的钢球对加固墙体进行冲击,研究ECC层加固的效果。ECC的典型特征,即多次开裂和高损伤容限,在冲击过程中明显表现出来,有助于将砌体墙体的破坏模式由脆性转变为更具延性的破坏模式。本文介绍了加筋墙体在冲击作用下的应变响应、位移响应、加速度响应和动力特性。试验结果表明,ECC层加固可以显著增强抗冲击性,包括刚度、耗能等。为简化评估,建议将残余位移比作为表征ECC层加固砌体墙体损伤程度的指标。

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