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Multimodal analysis of GRC ageing process using nonlinear impact resonance acoustic spectroscopy

机译:非线性冲击共振声谱法对GRC老化过程进行多峰分析

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Glass fibre Reinforced Cement (GRC) is a composite material composed of Portland cement mortar with low w/c (water/cement) ratio and high proportion of glass fibres. This material suffers from the ageing process by losing its strength with time because of its exposure to severe weather conditions. Ageing process damages the fibre surface and decreases the mechanical properties of the structural components made of this material. It reduces the elastic modulus and toughness of GRC. Fracture toughness is traditionally measured by four point bending tests. In a previous study by the authors it was observed that ageing related deterioration or damage of GRC could be monitored by Non Destructive Testing (NDT) techniques such as Non-linear Impact Resonance Acoustic Spectroscopy (NIRAS) and other ultrasonic techniques. The scope of this paper is to corroborate previous investigations and offer early damage detection capability by generating more experimental data points by optimizing location of the point of strike and thus generating more resonance vibration modes in NIRAS tests. (C) 2015 Elsevier Ltd. All rights reserved.
机译:玻璃纤维增​​强水泥(GRC)是由w / c(水/水泥)比低,玻璃纤维比例高的波特兰水泥砂浆组成的复合材料。由于暴露在恶劣的天气条件下,这种材料会随着时间的流逝而失去强度,从而遭受老化过程的困扰。老化过程会损坏纤维表面并降低由这种材料制成的结构部件的机械性能。它降低了GRC的弹性模量和韧性。传统上,断裂韧性是通过四点弯曲试验来测量的。作者在先前的研究中观察到,可以通过非破坏性测试(NDT)技术(例如非线性冲击共振声波光谱(NIRAS)和其他超声技术)来监控与老化相关的GRC劣化或损坏。本文的范围是要证实先前的研究,并通过优化打击点的位置来生成更多的实验数据点,从而在NIRAS测试中生成更多的共振振动模式,从而提供早期的损坏检测能力。 (C)2015 Elsevier Ltd.保留所有权利。

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