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Application of Natural Plant Fibers in Cement-Based Composites and the Influence on Mechanical Properties and Mass Transport

机译:天然植物纤维在水泥基复合材料中的应用及对机械性能的影响和大规模运输

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摘要

Recently, there is ongoing interest in the use of natural plant fibers as alternatives for conventional reinforcements in cementitious composites. The use of natural plant fibers makes engineering work more sustainable, since they are renewable, biodegradable, energy-efficient, and non-toxic raw materials. In this contribution, a comprehensive experimental program was undertaken to determine the influence of pineapple leaf fiber and ramie fiber on the mechanical properties and mass transport of cement-based composites. The compressive strength, tensile strength, modulus of elasticity, modulus of rupture, fracture energy, flexural toughness, coefficient of capillary water absorption, and chloride diffusion were measured. Natural plant fiber-reinforced cement-based composites (NPFRCCs) containing pineapple leaf fiber and ramie fiber, as compared to the plain control, exhibited a slight reduction in compressive strength and a considerable improvement in tensile strength, modulus of elasticity, modulus of rupture, and flexural toughness; the enhancement was remarkable with a higher fiber content. The coefficient of capillary absorption and chloride diffusion of NPFRCCs were significantly larger than the plain control, and the difference was evident with the increase in fiber content. The present study suggests that the specimen with 2% pineapple leaf fiber content can be used in normal environments due to its superior mechanical properties. However, one should be careful when using the material in marine environments.
机译:最近,对使用天然植物纤维的持续兴趣作为水泥复合材料中常规增强剂的替代品。自然植物纤维的使用使工程工作更具可持续性,因为它们是可再生的,可生物降解,节能和无毒的原料。在这一贡献中,进行了全面的实验计划,以确定菠萝叶片纤维和苎麻纤维对水泥基复合材料的机械性能和大规模运输的影响。测定了抗压强度,拉伸强度,弹性模量,破裂模量,裂缝能量,抗弯韧性,系数的毛细管吸水和氯化物扩散。与滑动控制相比,天然植物纤维增强水泥基复合材料(NPFRCC)含有菠萝叶片纤维和苎麻纤维,缩小抗压强度略有降低,拉伸强度,弹性模量,破裂模量,和弯曲韧性;纤维含量较高,增强显着。 NPFRCCs的毛细管吸收和氯化物的变化显着大于滑动控制,随着纤维含量的增加,差异是显而易见的。本研究表明,由于其优越的机械性能,具有2%菠萝叶纤维含量的样品可用于正常环境。但是,在海洋环境中使用材料时,应该小心。

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