天然纤维增强石膏石膏复合材料的热学和力学评价

IF 0.7 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
T. Mutuk, Kerem Arpacioğlu, S. Alisir, Gökhan Demir
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引用次数: 0

摘要

许多问题,如世界人口的增加,全球干旱和温室气体已经导致工业中使用的材料被重新考虑。这就是绿色复合材料概念的由来。从可持续性的角度来看,使用天然纤维来获得这些材料是很重要的。本研究旨在将大麻纤维和香蕉纤维作为天然纤维添加剂添加到石膏复合材料中,制备绿色生物复合材料。天然纤维用5%的NaOH溶液进行化学改性。通过这种方式,提供了良好的纤维/基体界面相互作用。添加5 wt% HB纤维试样的复合硬度测试结果为50.4。与对照石膏试样试验结果53.6相比,略有下降。然而,观察到纤维将结构保持在一起并减缓裂纹扩展。随着纤维的加入,多孔结构的增加导致复合材料导热系数的降低。将5 wt% HB纤维增强石膏复合材料(0.131 W⸳mK-1)与纯石膏(0.237 W⸳mK-1)的导热系数进行比较,得出了作为保温材料的良好结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal and mechanical evaluation of natural fibers reinforced gypsum plaster composite
Many problems such as the increase in the world population, global drought, and greenhouse gases have caused materials used in industries to be reconsidered. This is how the concept of green composite material emerged. Using natural fibers to obtain such materials is important in terms of sustainability. This study is aimed to use hemp fiber and banana fiber as natural fiber additives in the gypsum composite to produce green bio-composite. Natural fibers are chemically modified with 5% NaOH solution. In this way, a good fiber/matrix interface interaction is provided. The composite hardness test result of 5 wt% HB fiber added sample is obtained as 50.4. Compared to the control plaster sample test result, which is 53.6, a slight decrease can be seen. However, it is observed that the fibers held the structure together and sopped the crack propagation. The increase in the porous structure with fiber addition caused a decrease in the thermal conductivity of the composite. Comparing thermal conductivity result of 5 wt% HB fiber reinforced gypsum composite (0.131 W⸳mK-1) with respect to pure gypsum result (0.237 W⸳mK-1), it gave a promising result as an insulation material.
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来源期刊
Journal of metals, materials and minerals
Journal of metals, materials and minerals MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
1.40
自引率
11.10%
发文量
0
期刊介绍: Journal of Metals, Materials and Minerals (JMMM) is a double-blind peer-reviewed international journal published 4 issues per year (starting from 2019), in March, June, September, and December, aims at disseminating advanced knowledge in the fields to academia, professionals and industrialists. JMMM publishes original research articles as well as review articles related to research and development in science, technology and engineering of metals, materials and minerals, including composite & hybrid materials, concrete and cement-based systems, ceramics, glass, refractory, semiconductors, polymeric & polymer-based materials, conventional & technical textiles, nanomaterials, thin films, biomaterials, and functional materials.
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