Measurement of Acoustoelastic Coefficients in Concrete Using Thermal Modulation of Ultrasonic Waves

Bi Zhong, Jinying Zhu
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Abstract

This study develops a new method to determine the acoustoelastic coefficient in concrete using thermally-induced ultrasonic bulk wave velocity changes. This paper presents the equations of wave velocity changes caused by homogeneous temperature variation and uniaxial strain in an isotropic medium. The acoustoelastic coefficient of a concrete sample was calculated using the third-order elastic constants (l, m and n) which were determined in the thermal modulation test. The acoustoelastic coefficient of the same sample was then experimentally verified in a four-point bending test. The results showed that relative wave velocity change predicted by the third-order elastic constants from the thermal modulation test agreed well with the experimental value from the bending test.
用超声波热调制法测量混凝土的声弹性系数
本文提出了一种利用热致超声体波速度变化确定混凝土声弹性系数的新方法。本文提出了各向同性介质中均匀温度变化和单轴应变引起的波速变化方程。采用热调制试验中确定的三阶弹性常数(l、m和n)计算混凝土试件的声弹性系数。然后用四点弯曲试验验证了同一试样的声弹性系数。结果表明,热调制试验的三阶弹性常数预测的相对波速变化与弯曲试验的实验值吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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