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Effect of service temperature on the flexural creep of vacuum infused GFRP laminates used in sandwich floor panels

机译:使用温度对夹心地板中真空灌注的GFRP层压板挠曲蠕变的影响

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摘要

This paper presents an experimental and analytical study about the effect of temperature on the flexural creep of GFRP laminates produced by vacuum infusion. Such laminates are considered for use in the faces of sandwich panels for building floor application. Flexural creep tests were carried out in a three point bending configuration for stress levels of 15%, 25% and 35% of the laminate's flexural strength, and temperatures of 20 degrees C, 24 degrees C and 28 degrees C (a range likely to be found in the envisaged application), with durations between 1000 h and 2215 h. The creep response was observed to increase both with temperature and stress level. Findley's power law was used to model the experimental results, and extended to include an Arrhenius equation for temperature dependence of the creep response. The proposed model provided a good fit to the experimental creep curves, and was used to derive a set of practical design equations for the time-temperature dependent (i) flexural modulus, (ii) creep coefficient, and (iii) flexural modulus reduction factor. Finally, the time-temperature-stress superposition principle (TTSSP) and the time-stress superposition principle (TSSP) were used to obtain "master curves" that compared well with the proposed model's predictions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提供了关于温度对真空灌注生产的GFRP层压板弯曲蠕变影响的实验和分析研究。这种层压材料被认为用于建筑地板应用的夹心板的表面。弯曲蠕变测试是在三点弯曲配置下进行的,其应力水平分别为层压板弯曲强度的15%,25%和35%,温度为20摄氏度,24摄氏度和28摄氏度(该范围可能为持续时间在1000到2215小时之间。观察到蠕变响应随温度和应力水平的增加而增加。使用Findley的幂定律对实验结果进行建模,并扩展到包括关于蠕变响应的温度依赖性的Arrhenius方程。所提出的模型与实验蠕变曲线很好地吻合,并用于导出一组与时间-温度相关的实用设计方程:(i)弯曲模量,(ii)蠕变系数和(iii)弯曲模量降低因子。最后,使用时间-温度-应力叠加原理(TTSSP)和时间-应力-叠加原理(TSSP)来获得“主曲线”,该曲线与所提出的模型的预测相比较。 (C)2016 Elsevier Ltd.保留所有权利。

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