TENSILE PROPERTIES OF SURFACE MODIFIED BAMBOO SLICES COATED WITH EPOXY RESIN CONSIDERING THE CORROSION OF ACID AND ALKALI ENVIRONMENT

Q. Ma, Zhao Liu, Heng-lin Xiao, Zhi Chen
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引用次数: 2

Abstract

This paper presents an anticorrosive method to protect bamboo from the corrosion induced by coating a layer of epoxy resin on the surface of bamboo slices. Four surface modifications including heat treatment, alkali treatment, coupling treatment and acetylation treatment are applied to bamboo slices. The results indicate that the ultimate tension of bamboo slices decreases when corroded in solutions with different pH for different time, while epoxy resin protects the bamboo slices from corrosion to maintain the tensile properties by coated on its surface. The surface morphology indicates that four modifications have different degrees of influence on the surface and material of bamboo slices, which can reduce the ultimate tension of bamboo slices, but improve the interfacial combination between the surface of bamboo slices and epoxy resin. Acetylation treatment was the most effective modification analysed by Fourier-transform infrared spectroscopy (FT-IR) among them.
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考虑酸碱环境腐蚀的环氧树脂表面改性竹片的拉伸性能
本文提出了在竹片表面涂一层环氧树脂,防止竹片腐蚀的防腐方法。对竹片进行热处理、碱处理、偶联处理和乙酰化处理四种表面改性。结果表明:竹片在不同pH值的溶液中腐蚀不同时间,其极限张力降低,而环氧树脂通过在竹片表面涂覆保护竹片免受腐蚀,保持竹片的抗拉性能。表面形貌表明,4种改性对竹片表面和材料有不同程度的影响,可以降低竹片的极限张力,但改善竹片表面与环氧树脂的界面结合。傅里叶变换红外光谱(FT-IR)分析了乙酰化处理是其中最有效的改性。
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