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A PVDF-Based Sensor for Internal Stress Monitoring of a Concrete-Filled Steel Tubular (CFST) Column Subject to Impact Loads

机译:基于PVDF的传感器,用于混凝土钢管(CFST)柱的内应力监测,受冲压载荷

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摘要

Impact loads can have major adverse effects on the safety of civil engineering structures, such as concrete-filled steel tubular (CFST) columns. The study of mechanical behavior and stress analysis of CFST columns under impact loads is very important to ensure their safety against such loads. At present, the internal stress monitoring of the concrete cores CFST columns under impact loads is still a very challenging subject. In this paper, a PVDF (Polyvinylidene Fluoride) piezoelectric smart sensor was developed and successfully applied to the monitoring of the internal stress of the concrete core of a CFST column under impact loads. The smart sensor consists of a PVDF piezoelectric film sandwiched between two thin steel plates through epoxy. The protection not only prevents the PVDF film from impact damages but also ensures insulation and waterproofing. The smart sensors were embedded into the circular concrete-filled steel tube specimen during concrete pouring. The specimen was tested against impact loads, and testing data were collected. The time history of the stress obtained from the PVDF smart sensor revealed the evolution of core concrete internal stress under impact loads when compared with the impact force–time curve of the hammer. Nonlinear finite element simulations of the impact process were also carried out. The results of FEM simulations had good agreement with the test results. The results showed that the proposed PVDF piezoelectric smart sensors can effectively monitor the internal stress of concrete-filled steel tubular columns under impact loads.
机译:冲击载荷可能对土木工程结构的安全产生重大不利影响,例如混凝土钢管(CFST)柱。在冲击载荷下CFST柱的力学行为和应力分析的研究非常重要,无法确保其对此负荷的安全性。目前,冲击载荷下的混凝土核心CFST柱的内应力监测仍然是一个非常具有挑战性的主体。本文开发了一种PVDF(聚偏二氟乙烯)压电型传感器,并成功地应用于冲击载荷下CFST柱的混凝土芯的内应力的监测。智能传感器包括通过环氧树脂夹在两个薄钢板之间的PVDF压电膜。保护不仅可以防止PVDF薄膜免受影响损坏,而且确保了绝缘和防水。在混凝土浇注过程中,智能传感器嵌入圆形混凝土填充的钢管样品中。试样针对冲击载荷进行测试,并收集测试数据。与PVDF智能传感器获得的应力的时间历史揭示了与锤的冲击力 - 时间曲线相比的冲击载荷下的芯混凝土内应力的演变。还进行了影响过程的非线性有限元模拟。有组织模拟的结果与测试结果吻合良好。结果表明,所提出的PVDF压电智能传感器可以有效地监测冲击载荷下混凝土钢管柱的内应力。

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