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A new solution of measuring thermal response of prestressed concrete bridge girders for structural health monitoring

机译:采用结构健康监测预应力混凝土桥梁梁测量热响应的新解

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This study develops a novel buckling-based mechanism to measure the thermal response of prestressed concrete bridge girders under continuous temperature changes for structural health monitoring. The measuring device consists of a bilaterally constrained beam and a piezoelectric polyvinylidene fluoride transducer that is attached to the beam. Under thermally induced displacement, the slender beam is buckled. The post-buckling events are deployed to convert the low-rate and low-frequency excitations into localized high-rate motions and, therefore, the attached piezoelectric transducer is triggered to generate electrical signals. Attaching the measuring device to concrete bridge girders, the electrical signals are used to detect the thermal response of concrete bridges. Finite element simulations are conducted to obtain the displacement of prestressed concrete girders under thermal loads. Using the thermal-induced displacement as input, experiments are carried out on a 3D printed measuring device to investigate the buckling response and corresponding electrical signals. A theoretical model is developed based on the nonlinear Euler-Bernoulli beam theory and large deformation assumptions to predict the buckling mode transitions of the beam. Based on the presented theoretical model, the geometry properties of the measuring device can be designed such that its buckling response is effectively controlled. Consequently, the thermally induced displacement can be designed as limit states to detect excessive thermal loads on concrete bridge girders. The proposed solution sufficiently measures the thermal response of concrete bridges.
机译:本研究开发了一种基于新型屈曲的机制,以测量预应力混凝土桥梁梁在连续温度变化下进行预应力混凝土桥梁的热响应,以进行结构健康监测。测量装置包括双侧约束的光束和附接到梁的压电聚偏二氟乙烯换能器。在热诱导的位移下,细长梁弯曲。部署后屈曲事件以将低速和低频激发转换为局部的高速运动,因此,触发连接的压电换能器以产生电信号。将测量装置连接到混凝土桥梁梁上,电信号用于检测混凝土桥的热响应。进行有限元模拟以在热负荷下获得预应力混凝土梁的位移。使用热感应的位移作为输入,在3D印刷测量装置上进行实验,以研究屈曲响应和相应的电信号。基于非线性Euler-Bernoulli光束理论和大的变形假设来开发理论模型,以预测光束的屈曲模式过渡。基于所提出的理论模型,可以设计测量装置的几何特性,使得其屈曲响​​应得到有效地控制。因此,热诱导的位移可以设计为限制状态,以检测混凝土桥梁上的过度热负荷。所提出的解决方案充分测量混凝土桥的热响应。

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