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首页> 外文期刊>Case Studies in Thermal Engineering >Effect of surface modification on morphological, mechanical and thermal conductivity of hemp fiber: Characterization of the interface of hemp –Polyurethane composite
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Effect of surface modification on morphological, mechanical and thermal conductivity of hemp fiber: Characterization of the interface of hemp –Polyurethane composite

机译:表面改性对大麻纤维的形态,机械和导热性的影响:大麻-聚氨酯复合材料界面的表征

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摘要

The study focuses on the effect of alkaline and silane treatment of hemp fibers on mechanical and thermal conductivity. Hemp fibers were treated with sodium hydroxide solutions at different concentration, and then analysed by infrared Fourier transform spectroscopy, the X-ray diffraction, mechanical tensile test; and a scanning electron microscope. The alkali fibers were subsequently treated with silane solutions and then analysed by the same techniques. Analysis results showed that the most changes caused by this treatment are, the elimination of a certain amount of lignin, wax and oils spanning the cell wall of the fibers and the transformation of some quantity of alpha to beta cellulose. These changes are at the origin of improvement on tensile strength and young's modulus of about 39% and 23% respectively when the concentration of treatment reaches 8%. This modification revealed a strong increase in the Interfacial adhesion of the fibers-polyurethane composite from 1.26MPa for untreated fibers up to 3.18 for the alkali fibers and 5.16 for silane fibers. Moreover, the measurement of the thermal conductivity has proved that the chemical treatment increase the fibers thermal conductivity from 42.22mW/m°K for untreated fibers to 47, 92mW/m°K for the alkali fiber at 8%.
机译:该研究集中于碱和硅烷处理大麻纤维对机械和热导率的影响。大麻纤维用不同浓度的氢氧化钠溶液处理,然后通过红外傅里叶变换光谱,X射线衍射,机械拉伸试验进行分析。和扫描电子显微镜。碱纤维随后用硅烷溶液处理,然后通过相同的技术进行分析。分析结果表明,这种处理引起的最大变化是,消除了横跨纤维细胞壁的一定量的木质素,蜡和油,以及一定量的α-β纤维素的转化。当治疗浓度达到8%时,这些变化最初是抗拉强度和杨氏模量分别提高约39%和23%的起点。这种改性表明,纤维-聚氨酯复合材料的界面粘合力从未经处理的纤维的1.26MPa显着提高到碱性纤维的3.18和硅烷纤维的5.16。此外,热导率的测量已经证明,化学处理将纤维的热导率从未处理的纤维的42.22mW / m°K提高到8%(对于碱纤维的92.92mW / m°K),为8%。

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