Ferrara Giuseppe, Pepe Marco, Toledo Filho Romildo Dias, Martinelli Enzo
Department of Civil Engineering, University of Salerno, Via Giovanni Paolo II n.132, 84084 Fisciano, SA, Italy.
TESIS srl, Via Giovanni Paolo II n.132, 84084 Fisciano, SA, Italy.
Polymers (Basel). 2021 Feb 26;13(5):715. doi: 10.3390/polym13050715.
In recent years, the use of plant fibres in Textile-Reinforced Mortar (TRM) composites emerged as a valuable solution to increase their sustainability. Several studies carried out to mechanically characterize the so-called Natural TRMs, although showing promising results, also emphasised some drawbacks due to a severe deformability of the system and to durability issues. This study aims at improving the mechanical behaviour of Natural TRMs including impregnated flax textile (Flax TRMs) by the addition of short curauá fibres within the matrix. Flax TRM specimens were tested in tension to assess the influence of the fibre-reinforced mortar on the composite response. The crack pattern developed during the test was investigated via Digital Image Correlation analysis and by means of an analytical simplified model proposed by the authors. The addition of curauá fibres resulted in a denser crack pattern and in a significant decrease of the mean crack width (around 20%). The overall tensile response of Flax TRMs including curauá fibres resulted closer to the ideal three-linear behaviour of strain-hardening TRM composites with respect to the conventional Flax TRMs by also presenting an increase of dissipated energy of around 45%. This study paves the way for further analysis aimed at enhancing the mechanical performance of Natural TRMs adopting sustainable improvement techniques.
近年来,在纺织增强砂浆(TRM)复合材料中使用植物纤维成为提高其可持续性的一种有价值的解决方案。为对所谓的天然TRM进行力学表征开展了多项研究,这些研究虽显示出了有前景的结果,但也强调了由于该系统严重的可变形性和耐久性问题而存在的一些缺点。本研究旨在通过在基体中添加短库阿索纤维来改善包括浸渍亚麻织物(亚麻TRM)在内的天然TRM的力学性能。对亚麻TRM试件进行拉伸试验,以评估纤维增强砂浆对复合材料响应的影响。通过数字图像相关分析以及作者提出的解析简化模型,对试验过程中形成的裂纹模式进行了研究。添加库阿索纤维导致裂纹模式更密集,平均裂纹宽度显著减小(约20%)。与传统亚麻TRM相比,包含库阿索纤维的亚麻TRM的整体拉伸响应更接近应变硬化TRM复合材料的理想三线行为,耗散能量也增加了约45%。本研究为采用可持续改进技术进一步分析以提高天然TRM的力学性能铺平了道路。