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Correlation between the mechanical behavior and the ultrasonic velocity of fiber-reinforced concrete

机译:纤维混凝土的力学性能与超声速度之间的相关性

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摘要

Ultrasonic velocity technique is one of the most popular non-destructive techniques Used in the assessment of concrete properties. The objectives of this study are (1) to test the use of ultrasonic velocities in the non-destructive evaluation of the curing degree of fiber-reinforced concrete and (2) to find a correlation between the compressive strength, flexural strength, modulus of elasticity, and the ultrasonic velocity. This latter is measured by sensors of 50 mm diameter and 54 kHz frequency, and calculated from the phase slope. The ultrasonic velocity measurements were determined with direct, semi-direct and indirect transmission mode. This methodology is based on European standard EN 12504-4. Samples (prismatic: 10 x 10 x 40 cm and cylindrical: 16 x 32 cm) are made with different percentages (varying from 0% to 2.5%) of steel fiber.
机译:超声波速度技术是用于评估混凝土性能的最流行的非破坏性技术之一。这项研究的目的是(1)测试超声速度在纤维混凝土固化程度的无损评估中的应用;以及(2)找出抗压强度,抗弯强度,弹性模量之间的相关性,以及超声波速度。后者由直径为50 mm且频率为54 kHz的传感器测量,并根据相位斜率计算得出。超声速度测量是通过直接,半直接和间接传输模式确定的。该方法基于欧洲标准EN 12504-4。用不同百分比(从0%到2.5%不等)的钢纤维制作样品(棱柱形:10 x 10 x 40 cm和圆柱状:16 x 32 cm)。

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