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首页> 外文期刊>ACI Materials Journal >Monitoring Compressive Strength of Concrete by Nuclear Magnetic Resonance, Ultrasound, and Rebound Hammer
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Monitoring Compressive Strength of Concrete by Nuclear Magnetic Resonance, Ultrasound, and Rebound Hammer

机译:通过核磁共振,超声和回弹锤监测混凝土的抗压强度

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摘要

The relationship between T_1 and T_2 nuclear magnetic resonance relaxation times and compressive strength of concrete is determined and compared with those obtained using ultrasonic pulse velocity and rebound hammer. Concrete cylinders measuring 150 mm (6 in.) in diameter and 300 mm (12 in.) in length were cast from three concrete mixtures produced by a local precast company and tested to obtain T_1 and T_2 relaxation times, ultrasonic pulse velocity, rebound number, moisture content, and compressive strength at 1, 3, 7, 14, 28, and 56 days of age. Estimation of the compressive strength from T_1 and T_2 relaxation times has the same reliability as those produced by the rebound number and the ultrasonic pulse velocity, respectively. The relaxation times measurements in concrete, particularly T_2, are an alternative way to obtain information that can be related not only to compressive strength, but also to the pore size distribution and crack width.
机译:确定了T_1和T_2核磁共振弛豫时间与混凝土抗压强度之间的关系,并将其与使用超声脉冲速度和回弹锤获得的关系进行了比较。用当地预制公司生产的三种混凝土混合物浇铸直径150毫米(6英寸),长300毫米(12英寸)的混凝土圆柱体,并进行测试,以获得T_1和T_2弛豫时间,超声脉冲速度,回弹数,1、3、7、14、28和56天龄时的水分含量和抗压强度。从T_1和T_2弛豫时间估算抗压强度与分别由回弹数和超声脉冲速度产生的抗压强度具有相同的可靠性。在混凝土中的松弛时间测量,特别是T_2,是获得信息的一种替代方法,该信息不仅与抗压强度有关,而且还与孔径分布和裂缝宽度有关。

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