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Piezoresistive behaviours of cement-based sensor with carbon black subjected to various temperature and water content

机译:碳黑水泥基传感器在不同温度和含水量下的压阻特性

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摘要

Cement-based sensor possesses unique properties for structural health monitoring (SHM) applications, such as low cost, high durability, adaptability and excellent sensitivity. The piezoresistivity of cement-based sensor possesses is often affected by working environments, which may limit its real potentials. In this study, the piezoresistive sensitivity and repeatability of cement-based sensors with carbon black (CB) under various environmental conditions were investigated. Under various temperatures ranging from -20 degrees C to 100 degrees C, the piezoresistive sensitivity and repeatability were almost unchanged when eliminating the effects by thermal exchanges. The water content of cementitious composites caused significant fluctuations on the resistivity and piezoresistivity, and the optimal water content for cement-based sensor possesses was found to be approximately 8%. Subjected to freeze-thaw cycles, dry CB/cementitious composites slightly reduced the piezoresistive sensitivity. However, the saturated composites presented dramatic piezoresistivity reduction by 30.7%, due to the microstructural damages caused by the volume expansion and shrinkage of pore solution. The related outcomes provide scientific framework for the adoption of CB/cementitious composites sensors for the SHM of concrete infrastructures under various environmental conditions.
机译:水泥基传感器具有用于结构健康监测(SHM)应用的独特属性,例如低成本,高耐用性,适应性和出色的灵敏度。水泥基传感器拥有的压阻常受工作环境的影响,这可能会限制其实际潜力。在这项研究中,研究了在各种环境条件下具有炭黑(CB)的水泥基传感器的压阻灵敏度和可重复性。在从-20摄氏度到100摄氏度的各种温度下,消除热交换的影响时,压阻灵敏度和可重复性几乎没有变化。水泥基复合材料的含水量引起电阻率和压阻率的显着波动,发现水泥基传感器拥有的最佳含水量约为8%。经受冻融循环后,干燥的CB /胶结复合材料会稍微降低压阻敏感性。然而,由于孔溶液的体积膨胀和收缩引起的微观结构破坏,饱和复合材料的压阻降低了30.7%。相关结果为在各种环境条件下混凝土基础设施的SHM采用CB /水泥复合材料传感器提供了科学框架。

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