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利用热补偿 Coda 波干涉测量法研究直接拉力作用下混凝土中应力引起的速度变化和损伤程度监测。

Study of stress-induced velocity variation in concrete under direct tensile force and monitoring of the damage level by using thermally-compensated Coda Wave Interferometry.

机构信息

LUNAM Université, IFSTTAR, MACS, CS4, F-44344 Bouguenais Cedex, France.

出版信息

Ultrasonics. 2012 Dec;52(8):1038-45. doi: 10.1016/j.ultras.2012.08.011. Epub 2012 Aug 27.

Abstract

In this paper, we describe an experimental study of concrete behavior under a uniaxial tensile load by use of the thermally-compensated Coda Wave Interferometry (CWI) analysis. Under laboratory conditions, uniaxial tensile load cycles are imposed on a cylindrical concrete specimen, with continuous ultrasonic measurements being recorded within the scope of bias control protocols. A thermally-compensated CWI analysis of multiple scattering waves is performed in order to evaluate the stress-induced velocity variation. Concrete behavior under a tensile load can then be studied, along with CWI results from both its elastic performance (acoustoelasticity) and plastic performance (microcracking corresponding to the Kaiser effect). This work program includes a creep test with a sustained, high tensile load; the acoustoelastic coefficients are estimated before and after conducting the creep test and then used to demonstrate the effect of creep load.

摘要

本文通过热补偿余辉波干涉分析(CWI)实验研究了单轴拉伸荷载下混凝土的性能。在实验室条件下,对圆柱形混凝土试件施加单轴拉伸荷载循环,并在偏置控制协议范围内连续记录超声波测量结果。通过对多次散射波进行热补偿 CWI 分析,评估了应力引起的速度变化。然后可以研究拉伸荷载下的混凝土性能,以及 CWI 结果的弹性性能(声弹性)和塑性性能(对应凯泽效应的微裂纹)。该工作计划包括带有持续高拉伸荷载的蠕变试验;在进行蠕变试验之前和之后估计声弹性系数,并用于演示蠕变荷载的影响。

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