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红麻结构与物理性质的研究
引用本文:刘忠辉.红麻结构与物理性质的研究[J].福建林学院学报,2010,30(3).
作者姓名:刘忠辉
作者单位:福建省林业勘察设计院,福建,福州,350001
基金项目:福建省林业厅科学基金资助项目 
摘    要:对红麻的宏观、微观结构和物理性质进行观察测定。结果表明,红麻秆的管孔排列与阔叶树散孔材相近,射线细胞等薄壁细胞较多,纤维细胞壁较薄。分析红麻秆高度对物理性能的影响。结果表明,密度从基部到梢部逐渐增大;含水率从基部到梢部逐渐减小;气干、全干干缩率的大小为弦向>径向>纵向,中部差异干缩最大,径向气干湿胀率最大,弦向全湿胀率最大,纵向干缩率和湿胀率均为负数,纵向没有参与干缩湿胀。在浸泡前期(<50h),吸水性的大小为中部>基部>梢部,50h后,吸水性的大小为基部>中部>梢部。

关 键 词:红麻  宏观结构  显微结构  物理性质

Study on structure and physical properties of kenaf
LIU Zhong-hui.Study on structure and physical properties of kenaf[J].Journal of Fujian College of Forestry,2010,30(3).
Authors:LIU Zhong-hui
Abstract:Macroexamination and microexamination observations of the structure and physical properties of kenaf indicated that the pore arrangement of kenaf and the diffuseporous wood of hard wood was familiar,much more parenchyma cell such as ray cell and the cell wall was thin. Based on the analysis of the relationship between physical property and kenaf′s height or spot. The following conclusions were reached: kenaf density increased gradually from base to tip; kenaf moisture rate reduced gradually from base to tip; air drying and white drying rate was tangential part>radial part>portrait part; shrinkage in the middle part was the biggest one. The swelling rate reached the maximum in radial; bulking factor in tangential was the smallest. Shrinkage and swelling in portrait part was minus, so the portrait part did′t shrink or swell. In the first 50 h of soaking, the hydroscopicity was middle part>base part>tip part. After 50 h, base part>middle part>tip part.
Keywords:kenaf  macro structure  micro structure  physical properties
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