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Utilization of vegetable fibers for production of reinforced cementitious materials

机译:利用植物纤维生产加固胶凝材料

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摘要

Vegetable fibers produced from agroindustrial resources in the macro, micro and nanometric scales have been used as reinforcement in cementitious materials. The cellulosic pulp, besides being used as the reinforcing element, is also the processing fiber that is responsible for the filtration system in the Hatcheck method. On the other hand, the nanofibrillated cellulose has the advantage of having good mechanical performance and high specific surface, which contributes to improve the adhesion between fiber and matrix. In the hybrid reinforcement, with micro and nanofibers, the cellulose performs bonding elements with the matrix and acts as stress transfer bridges in the micro and nano-cracking network with the corresponding strengthening and toughening of the cementitious composite. Some strategies are studied to mitigate the degradation of the vegetable fibers used in cost-effective and non-conventional fiber cement, as well as to reach a sustainable fiber cement production. As a practical example, the accelerated carbonation curing at early age is a developing technology to increase the durability of composite materials: it decreases porosity, promotes a higher density in the interface generating a good fiber–matrix adhesion and a better mechanical behavior. Thus, the vegetable fibers are potentially applicable to produce high mechanical performance and sustainable cementitious materials for use in the Civil Construction.
机译:从宏观,微型和纳米尺度的农业工业资源生产的植物纤维已被用作胶凝材料中的增强。除了用作增强元件之外,纤维素纸浆也是处理纤维,其负责在阴影方法中负责过滤系统。另一方面,纳米法纤维素具有具有良好机械性能和高比表面的优点,这有助于改善纤维和基质之间的粘附性。在杂交增强件中,用微纤维和纳米纤维,纤维素与基质进行粘合元件,并用作微型和纳米开裂网络中的应力传递桥,其具有胶质复合材料的相应强化和增韧。研究了一些策略,以减轻成本效益和非常规纤维水泥中使用的植物纤维的降解,以及达到可持续纤维水泥生产。作为一个实际的例子,在休假期间的加速碳酸化固化是增加复合材料耐久性的显影技术:它降低了孔隙率,促进界面中的更高密度,产生良好的纤维 - 基质粘附和更好的机械行为。因此,植物纤维可能适用于生产用于民用建筑的高机械性能和可持续的水泥材料。

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