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Smart self-sensory carbon-based textile reinforced concrete structures for structural health monitoring

机译:智能自我感应碳纺织钢筋混凝土结构,用于结构健康监测

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The goal of this study is to develop a structural health monitoring methodology for smart self-sensory carbon-based textile reinforced concrete elements. The self-sensory concept is based on measuring the electrical resistance change in the carbon roving reinforcement and by means of an engineering gage factor, correlating the relative electrical resistance change to an integral value of strain along the location of the roving. The concept of the nonlinear engineering gage factor that captures the unique micro-structural mechanism of the roving within the concrete matrix is demonstrated and validated. The estimated value of strain is compared to a theoretical value calculated by assuming a healthy state. The amount of discrepancy between the two strain values makes it possible to indicate and distinguish between the structural states. The study experimentally demonstrates the engineering gage factor concept and the structural health monitoring procedure by mechanically loading two textile reinforced concrete beams, one by a monotonic loading procedure and the other by a cyclic loading procedure. It is presented that the proposed structural health monitoring procedure succeeded in estimating the strain and in clearly distinguishing between the structural states.
机译:本研究的目标是为智能自我感官碳纺织钢筋混凝土元件开发结构健康监测方法。自我感官概念基于测量碳粗钢筋中的电阻变化和通过工程量具因子,将相对电阻变化与沿粗纱的位置相关联的相对电阻变化。展示并验证了捕获混凝土基质内粗糙的独特微结构机制的非线性工程仪表的概念。将估计的应变值与通过假设健康状态计算的理论值进行比较。两个应变值之间的差异量使得可以指示并区分结构状态。该研究通过机械加载两个纺织钢筋混凝土梁,通过单调加载程序,通过单调加载程序,通过单调加载程序,通过单调加载程序来证明工程钢筋概念和结构健康监测程序。提出了所提出的结构健康监测程序成功估算了应变,在结构状态之间明确区分。

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