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首页> 外文期刊>Cement & concrete composites >Impact of content and length of curaua fibers on mechanical behavior of extruded cementitious composites: Analysis of variance
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Impact of content and length of curaua fibers on mechanical behavior of extruded cementitious composites: Analysis of variance

机译:Curaua纤维含量和长度对挤压水泥复合材料力学行为的影响:方差分析

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摘要

The use of composite materials in construction has grown considerably in recent years, such as cementitious matrices and concrete reinforced with fibers. The vegetable fibers have become an alternative due to its abundance, low cost and low energy consumption for its production, and appropriate properties mechanical. Curaua fiber is a plant native from Amazonas harvested manually in commercial farming and it is used in the manufacture of ropes and baskets or as reinforcement in composite with organic matrix of components for cars, buses and trucks. On the other hand, the extrusion process can produce composites with high-density matrix with fibers, low permeability and good interface between fiber and matrix. This process is also compatible with the use of vegetable fibers as raw materials in the production of cost-effective construction elements such as ceiling panels and drywalls. The objective of this research was use the analysis of variance (ANOVA) for evaluating with rigor mathematical the influence of content and length of curaua fibers on the mechanical behavior of the extruded cementitious composites. Composites without fibers and reinforced with 1% and 2% by mass of fibers as well as 6 mm and 10 mm of length these curaua fibers were evaluated. The composites with fibers of 10 mm have showed better mechanical results. Besides, the composites with fibers curaua after 200 accelerated aging cycles were better than one non-aging.
机译:近年来,在施工中使用复合材料的使用,如纤维增强的水泥基质和混凝土。植物纤维由于其生产的丰富,低成本和低能耗而成为替代方案,以及适当的机械性能。 Curaua纤维是一种来自商业养殖手动收获的亚马逊的植物,它用于制造绳索和篮子或作为汽车,公共汽车和卡车的有机组件的复合材料中的加固。另一方面,挤出过程可以产生具有高密度基质的复合材料,具有纤维,低渗透性和纤维和基质之间的良好界面。该方法还与使用植物纤维作为原料的使用,在生产经济高效的建筑元件,如天花板面板和干墙。该研究的目的是利用对Rudor数学的差异(ANOVA)的分析来评估Curaua纤维的含量和长度对挤出水泥复合材料的力学行为的影响。没有纤维的复合材料,并加强1%和2质量%的纤维以及6mm和10mm的长度,这些CORaua纤维的长度均得到。具有10mm的纤维的复合材料显示出更好的机械效果。此外,200次加速老化循环后的具有纤维Curaua的复合材料优于一个非老化。

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