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首页> 外文期刊>Journal of structural engineering >Debonding Inhibiting Mechanism of Strain Localization Plating System
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Debonding Inhibiting Mechanism of Strain Localization Plating System

机译:应变局部电镀系统的防脱胶机理

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Recently, a new plating system was proposed based on a strain localization mechanism for addressing the critical debonding problem in externally bonded reinforcing systems for reinforced concrete (RC) structures. The system delays or inhibits debonding by localizing the large strain of the externally bonded reinforcement in certain areas and leaving other places in a smaller strain condition to ensure that global debonding does not occur. This debonding avoidance strategy is in line with the concept of controlling a flood by channeling water away rather than blocking it. Two techniques have been used to achieve strain localization: (1) a nanotechnology called surface mechanical attrition treatment and (2) variation in the cross-sectional area of bonded reinforcement. To better understand this newly developed system, this paper presents a numerical study of RC beams strengthened with such plating systems. This study leads to a better understanding of the mechanism for inhibiting debonding and the development of a general design strategy for the system. In particular, a critical location is identified for strain localization, which forms the basis for the design of such a system in the future.
机译:最近,基于应变局部化机制提出了一种新的电镀系统,用于解决钢筋混凝土(RC)结构的外部粘结增强系统中的严重脱粘问题。该系统通过将外部粘结的钢筋的大应变集中在某些区域,而将其他地方保持在较小的应变条件下,来延迟或抑制脱粘,以确保不会发生整体脱粘。这种防脱粘策略与通过引导水而不是阻止水来控制洪水的概念是一致的。已经使用了两种技术来实现应变局部化:(1)一种称为表面机械磨损处理的纳米技术,以及(2)粘结增强材料的横截面积变化。为了更好地理解这个新开发的系统,本文提供了用这种电镀系统加固的RC梁的数值研究。这项研究可以更好地理解抑制脱胶的机理,并开发出该系统的通用设计策略。特别是,确定了用于应变定位的关键位置,这成为将来设计此类系统的基础。

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