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Multi-scale characterization of moisture and thermal cycle effects on composite-to-timber strengthening

机译:水分和热循环对复合材料对木材强度的多尺度表征

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The paper examines the influence of moisture and temperature cycles on timber elements reinforced with a wet lay-up system composed of various fibrous materials (carbon, flax) and matrices (epoxy resin, vinyl glue). A multi-scale experimental approach was adopted, including: (i) mechanical characterization of the composite reinforcement systems; (ii) investigation of behavior at the composite-to-timber interface by mechanical bond tests and microstructural analyses; (iii) four-point bending tests on strengthened timber beams. The results highlighted the good performance of natural-fiber composites compared with synthetic ones, and the marked influence of wood moisture content and temperature on bonding. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文研究了湿气和温度循环对用湿式上铺系统加固的木材元素的影响,该系统由各种纤维材料(碳,亚麻)和基体(环氧树脂,乙烯基胶)组成。采用了多尺度的实验方法,包括:(i)复合增强系统的机械特性; (ii)通过机械结合试验和微观结构分析研究复合材料与木材界面的行为; (iii)加固木梁的四点弯曲试验。结果突出了天然纤维复合材料与合成纤维相比的良好性能,以及木材含水量和温度对粘结的显着影响。 (C)2015 Elsevier Ltd.保留所有权利。

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