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Study on the Properties of Transparent Bamboo Prepared by Epoxy Resin Impregnation

机译:环氧树脂浸渍法制备透明竹材的性能研究

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摘要

In this paper, Moso bamboo ( ) before and after heat treatment were used as raw materials to prepare transparent bamboo (TB). In an acidic environment, the lignin contained in the bamboo material was removed to obtain a bamboo template, and an epoxy resin similar to the cellulose refractive index was used for vacuum impregnation into the bamboo template to obtain a transparent bamboo material. The purpose of this study was to compare the physical and chemical properties of TB and original bamboo and the differences between TBs before and after heat treatment, taken from different parts of bamboo, in order to explore the performance advantages and disadvantages of TB as a new material. The Fourier transform infrared spectroscopy analysis (FTIR), scanning electron microscope testing (SEM), three elements analysis, light transmittance testing, and mechanical strength testing were used to study the molecular composition, microstructure, chemical composition, light transmittance, and tensile strength of the TB samples. The results showed that the lignin content of the delignified bamboo templates was greatly reduced. In addition, the SEM images showed that a large amount of epoxy resin (type E51 and type B210 curing agent) was covered on the cross-section surface and pores of the TB samples. The FTIR showed that the epoxy molecular groups appeared on the TB, and the delignified bamboo template and the resin had a good synergy effect. According to the light transmittance testing, the original bamboo samples hardly contained light transmittance under visible light. The transmittance of transparent inner bamboo (TIB) and transparent heat-treated inner bamboo (THIB) could reach about 11%, and the transmittance of transparent outer bamboo (TOB) and transparent heat-treated outer bamboo (THOB) was about 2%. The light transmittance had been significantly improved when compared with the original bamboo samples. The transmittances of the TB samples before and after heat treatment in different parts of bamboo were different. In the visible light irradiation range, the light transmittances of TB samples were as follows: TIB > THIB and THOB > TOB. Meanwhile, the tensile strength of TB was reduced, especially for TOB and THOB. In addition, TB has a wide range of raw materials, and the preparation process is environmentally friendly. It can be used for decorative materials in homes, buildings, etc., and has a great application potential.
机译:本文以热处理前后的毛竹()为原料制备透明竹(TB)。在酸性环境中,去除竹材料中包含的木质素以获得竹模板,并且使用与纤维素折射率相似的环氧树脂真空浸渍到竹模板中以获得透明的竹材料。这项研究的目的是比较结核病和原始竹子的理化特性,以及从竹子的不同部位获取的热处理前后结核病之间的差异,以探讨新型结核病菌的性能优缺点。材料。用傅里叶变换红外光谱分析(FTIR),扫描电子显微镜测试(SEM),三元素分析,透光率测试和机械强度测试来研究分子的组成,微观结构,化学组成,透光率和拉伸强度结核病样本。结果表明,脱木质素竹模板的木质素含量大大降低。另外,SEM图像显示大量的环氧树脂(E51型和B210型固化剂)被覆盖在TB样品的横截面和孔上。红外光谱分析表明,TB上存在环氧基分子,去木质素竹模板与树脂具有良好的协同作用。根据透光率测试,原始竹样品在可见光下几乎不包含透光率。透明内竹(TIB)和透明热处理内竹(THIB)的透光率可达到11%左右,透明外竹(TOB)和透明热处理外竹(THOB)的透光率约为2%。与原始竹样品相比,透光率有了显着提高。竹子不同部位热处理前后TB样品的透光率不同。在可见光照射范围内,TB样品的透光率如下:TIB> THIB和THOB> TOB。同时,TB的拉伸强度降低,特别是TOB和THOB。此外,结核病的原料种类繁多,制备过程对环境无害。可用于家庭,建筑物等的装饰材料,具有很大的应用潜力。

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