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The mechano-sorptive creep behaviour of basalt FRP reinforced timber elements in a variable climate

机译:变气候下玄武岩玻璃钢增强木材元件的力学吸收蠕变行为

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摘要

The use of Fibre Reinforced Polymer (FRP) reinforcement has been shown to improve the short-term flexural behaviour of timber elements. This is particularly important when reinforced elements are subjected to a variable climate condition, which is known to accelerate long-term or creep behaviour. In this paper, both unreinforced and Basalt FRP reinforced beams are subjected to creep tests at a common maximum compressive stress of 8 MPa over a 75-week period. Results demonstrated a significant reduction in total creep deflection due to the FRP reinforcement. Using matched groups, experimentally measured total strain behaviour is decomposed into the elastic, viscoelastic, mechano-sorptive and swelling/shrinkage strain components. Analysis has shown that the mechano-sorptive component is similar in unreinforced and reinforced beams. The reduction in creep behaviour of the reinforced members was primarily due to the restrained swelling/shrinkage response of the reinforced beams and was independent of the mechano-sorptive effect. This finding demonstrates the positive influence of FRP reinforcement on the long-term behaviour of timber elements and indicates a potential to describe the long-term deflection performance of FRP reinforced elements from short-term swelling/shrinkage tests.
机译:已显示出使用纤维增强聚合物(FRP)增强材料可以改善木材元素的短期弯曲性能。当增强元件经受可变的气候条件时,这一点尤其重要,已知气候条件会加速长期或蠕变行为。在本文中,未加固和玄武岩FRP加固梁都在75周的共同最大压缩应力8 MPa下进行蠕变测试。结果表明,由于FRP增强,总蠕变挠度大大降低。使用匹配的组,将实验测量的总应变行为分解为弹性,粘弹性,机械吸附和溶胀/收缩应变分量。分析表明,在无筋梁和加筋梁中,力学吸收分量相似。增强构件蠕变行为的降低主要是由于增强梁的膨胀/收缩响应受到限制,并且与机械吸收效应无关。这一发现证明了FRP增强对木材元件长期性能的积极影响,并表明有可能通过短期溶胀/收缩测试来描述FRP增强元件的长期挠曲性能。

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