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A Stochastic Damage Model for Bond Stress-Slip Relationship of Rebar-Concrete Interface under Monotonic Loading

机译:单调荷载作用下钢筋混凝土界面粘结滑移关系的随机损伤模型

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摘要

The stochastic bond stress-slip behavior is an essential topic for the rebar-concrete interface. However, few theoretical models incorporating stochastic behavior in current literature can be traced. In this paper, a stochastic damage model based on micro-mechanical approach for bond stress-slip relationship of the interface under monotonic loading was proposed. In order to describe the mechanical behaviors of the rebar-concrete interface, a microscopic damage model was proposed. By introducing a micro-element consists of parallel spring element, friction element and a switch element, the model is formulated. In order to reflect the randomness of the bond stress-slip behavior contributed by the micro-fracture in the interface, a series of paralleled micro-elements are adopted with the failure threshold of individual spring element is set as a random variable. The expression of both mean and variance for the bond stress-slip relationship was derived based on statistical damage mechanics. Furthermore, by utilizing a search heuristic global optimization algorithm (i.e., a genetic algorithm), parameters of the proposed model are able to be identified from experimental results, which a lognormal distribution has adopted. The prediction was verified against experimental results, and it reveals that the proposed model is capable of capturing the random nature of the micro-structure and characterizing the stochastic behavior.
机译:随机键应力-滑移行为是钢筋混凝土界面的基本主题。但是,在当前文献中很少能找到结合随机行为的理论模型。提出了一种基于微机械方法的单调载荷作用下界面粘结应力-滑动关系的随机损伤模型。为了描述钢筋混凝土界面的力学行为,提出了微观损伤模型。通过引入由平行弹簧元件,摩擦元件和开关元件组成的微元件,模型得以建立。为了反映界面中微裂纹所引起的结合应力-滑移行为的随机性,采用了一系列平行的微元件,并将各个弹簧元件的破坏阈值设置为随机变量。基于统计损伤机理,推导了粘结应力-滑动关系的均值和方差表达式。此外,通过使用搜索启发式全局最优化算法(即,遗传算法),能够从实验结果中识别所提出模型的参数,采用对数正态分布。该预测与实验结果进行了验证,结果表明所提出的模型能够捕获微观结构的随机性质并表征随机行为。

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