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NDT measurements for the prediction of 28-day compressive strength

机译:NDT测量用于预测28天抗压强度

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A procedure is proposed for the prediction of the compressive strength of concrete based on the use of NDT measurements. Prior to formwork removal, electrical resistivity can be assessed and based on an electrical resistivity versus compressive strength correlation curve, the strength of concrete can be estimated. This procedure ensures, for example, that the formwork is only removed when the concrete reaches a predefined compressive strength, dispensing with the calculation of concrete maturity. On the other hand, the whole surface of the concrete structure can be systematically measured so as to estimate 28-day compressive strengths and detect areas that could potentially not conform to the specified requirements. In this manner, a realistic overview of the in situ compressive strength of the whole structure can be obtained.rnThe procedure proposed predicts the 28-day strength of concrete based on two models. The first model is based on an empirical equation used for the maturity assessment of concrete. The second model is based on a theoretical equation for the nucleation process of cement hydration. The effect of temperature and different curing conditions (concrete maturity) can be effectively taken into account by the conversion of all electrical resistivity measurement to the same referential. The models are used to estimate 28-day compressive strength based on the 7-day electrical resistivity measurements. The results show that the errors in estimation of the 28-day compressive strength are less than 22% and 10% for these models, respectively. If 28-day electrical resistivity measurements are used then the error in estimation is lower, circa 9% and 5% for these models, respectively.
机译:提出了一种使用无损检测技术来预测混凝土抗压强度的方法。在移除模板之前,可以评估电阻率,并基于电阻率与抗压强度的相关曲线,可以估算出混凝土的强度。例如,此过程可确保仅在混凝土达到预定的抗压强度时才移除模板,而无需计算混凝土的成熟度。另一方面,可以对混凝土结构的整个表面进行系统测量,以估算28天的抗压强度,并检测可能不符合指定要求的区域。这样,可以获得整个结构的现场抗压强度的真实概述。建议的程序基于两个模型来预测混凝土的28天强度。第一个模型基于用于混凝土成熟度评估的经验公式。第二个模型基于水泥水化成核过程的理论方程式。通过将所有电阻率测量值转换为相同的参考值,可以有效地考虑温度和不同固化条件(混凝土成熟度)的影响。这些模型用于根据7天的电阻率测量值估算28天的抗压强度。结果表明,这些模型在28天抗压强度估算中的误差分别小于22%和10%。如果使用28天电阻率测量,则这些模型的估计误差较低,分别约为9%和5%。

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