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Self-sensing concrete: from resistance-based sensing to capacitance-based sensing

机译:自感应混凝土:从基于电阻的感测到基于电容的感测

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Self-sensing uses the cement-based material without sensor incorporation to sense itself. This paper reviews self-sensing cement-based materials, with coverage of the well-studied resistance-based sensing as well as the less-studied capacitance-based sensing. This review is the first that covers capacitance-based self-sensing. Capacitance-based sensing is advantageous over resistance-based sensing in that no particular admixture is required, so that it is applicable to both existing and new structures. In contrast, resistance-based sensing that is comparable to capacitance-based sensing in stress/strain sensitivity requires conductive admixtures, such as carbon fiber. Resistance-based strain sensing is based on piezoresistivity, which is associated with the resistance increasing upon tension and decreasing upon compression. Capacitance-based strain sensing is based on piezopermittivity, which is associated with the permittivity decreasing upon tension and increasing upon compression. Damage causes the resistance to increase and causes the permittivity to decrease. Increase in temperature decreases the resistance but increases the permittivity. This review also covers the methodology of the electrical measurements.
机译:自我传感使用基于水泥的材料而没有传感器掺入以感受到自己。本文评论了自感的水泥基材料,覆盖了基于良好的电阻的感测以及较少研究的基于电容的感应。此评价是第一个涵盖基于电容的自我传感。基于电容的感测在基于电阻的感测中是有利的,因为不需要特别的混合物,因此它适用于现有的和新的结构。相反,基于电阻的感测,其与应力/应变敏感性的基于电容的感测相当需要导电混合物,例如碳纤维。基于电阻的应变感测基于压阻性,这与电阻随着张力的增加和压缩而减小相关联。基于电容的应变感测基于压电疏化性,这与张力下降和压缩时增加的介电常数相关。损伤导致耐抗性增加,导致介电常数降低。温度的增加降低了电阻但增加了介电常数。该评论还涵盖了电测量的方法。

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