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Monitoring of Freeze-Thaw Cycles in Concrete Using Embedded Sensors and Ultrasonic Imaging

机译:使用嵌入式传感器和超声成像监测混凝土的冻融循环

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摘要

This paper deals with the study of damage produced during freeze-thaw (F-T) cycles using two non-destructive measurement approaches—the first approach devoted to continuous monitoring using embedded sensors during the cycles, and the second one, performing ultrasonic imaging before and after the cycles. Both methodologies have been tested in two different types of concrete specimens, with and without air-entraining agents. Using the first measurement approach, the size and distribution of pores were estimated using a thermoporometrical model and continuous measurements of temperature and ultrasonic velocity along cycles. These estimates have been compared with the results obtained using mercury porosimetry testing. In the second approach, the damage due to F-T cycles has been evaluated by automated ultrasonic transmission and pulse-echo inspections made before and after the cycles. With these inspections the variations in the dimensions, velocity and attenuation caused by the accelerated F-T cycles were determined.
机译:本文使用两种非破坏性测量方法研究冻融(FT)周期中产生的损坏-第一种方法致力于在周期内使用嵌入式传感器进行连续监视,第二种方法在前后进行超声成像周期。两种方法都在两种不同类型的混凝土样品中进行了测试,有或没有加气剂。使用第一种测量方法,使用热孔模型和连续测量温度和超声波速度的方法来估算孔的大小和分布。将这些估计值与使用水银孔率测试获得的结果进行了比较。在第二种方法中,通过F-T循环造成的损坏已经通过在循环之前和之后进行自动超声传输和脉冲回波检查进行了评估。通过这些检查,确定了由加速的F-T循环引起的尺寸,速度和衰减的变化。

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