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New method for continuous monitoring of concrete E-modulus since casting

机译:浇筑后连续监测混凝土E模量的新方法

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摘要

A new methodology that allows the continuous measurement of concrete E- modulus since casting is presented in this paper. This methodology is a variant to the classical resonant frequency methods, which have the downside of requiring concrete to be de-mouldable and withstand mechanical impact to start testing. The proposed experimental setup comprises a simply supported beam made-up with an acrylic tube, filled with the concrete to be tested, whose mid-span vertical accelerations induced just by ambient vibrations are continuously monitored by an accelerometer. The numerical treatment of the monitored accelerations allows identification of the 1st resonant frequency of the composite beam, which is evolving as concrete hardens. The E-modulus of concrete can thus be directly obtained from the monitored frequency. Besides the description of the overall setup, the results obtained in an experiment in which the concrete E-modulus was quantified also through static tests on the beam and via compressive tests in cylinders are presented and discussed. © 2010 Taylor & Francis Group, London.
机译:本文介绍了一种自铸造以来可以连续测量混凝土E模量的新方法。这种方法是经典共振频率方法的一种变体,传统共振频率方法的缺点是要求混凝土必须可脱模并承受机械冲击才能开始测试。拟议的实验装置包括一个由丙烯酸管组成的简单支撑梁,该梁填充有待测试的混凝土,其加速度传感器可连续监测仅由环境振动引起的中跨垂直加速度。对所监测加速度的数值处理可以识别复合梁的第一共振频率,该共振频率随着混凝土的硬化而发展。因此,可以从所监测的频率直接获得混凝土的E模量。除了总体设置的描述外,还介绍并讨论了在实验中获得的结果,在该实验中,还通过对梁进行静力测试以及通过圆柱体中的压缩测试来量化混凝土的E模量。 ©2010泰勒和弗朗西斯集团,伦敦。

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