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木质素含量对木材单根纤维拉伸性能的影响
引用本文:张双燕,费本华,余雁,程海涛,王传贵.木质素含量对木材单根纤维拉伸性能的影响[J].北京林业大学学报,2012,34(1):131-134.
作者姓名:张双燕  费本华  余雁  程海涛  王传贵
作者单位:安徽农业大学
基金项目:国家自然科学基金重点项目
摘    要:以杉木木材单根纤维为研究对象,采用3种化学方法不同程度地脱除木质素,在细胞水平上,探讨木质素对木材单根纤维拉伸力学性能的影响。结果表明:在干燥状态下,单根纤维的弹性模量随着木质素含量的减少而降低,但整体降低的程度不大,木质素几乎完全脱除时,单根纤维的弹性模量降低约7%;木质素对单根纤维的拉伸强度和断裂伸长率影响显著,都...

关 键 词:单根纤维  木质素  弹性模量  拉伸强度  断裂伸长率
收稿时间:1900-01-01

Influence of lignin content on tensile properties of single wood fiber.
ZHANG Shuang-yan,FEI Ben-hua ,YU Yan ,CHENG Hai-tao ,WANG Chuan-gui.Influence of lignin content on tensile properties of single wood fiber.[J].Journal of Beijing Forestry University,2012,34(1):131-134.
Authors:ZHANG Shuang-yan  FEI Ben-hua  YU Yan  CHENG Hai-tao  WANG Chuan-gui
Institution:1 School of Forestry and Lardscape Architecture, Anhui Agrucultural University, Hefei, 230036, P. R. China; 2 State Forestry Administration Key Laboratory on Bamboo and Ratten Science and Technology, Beijing, 100102, P. R. China; 3 International Center for Bamboo and Ratten, Beijing, 100102, P. R. China.
Abstract:Chemical components are main factors affecting the mechanical properties of wood fibers.Lignin is one of the main components of wood cell wall and has a critical effect on the mechanical properties of paper pulp,wood fiber based composites.In the study,we carried out tensile tests on single mature latewood tracheids of Chinese Fir(Cunninghamia lancolata(Lamb.) Hook),and three different de-lignified treatment methods were used to obtain different content of lignin.We applied single-fiber-test to study the effect of lignin content on tensile mechanical properties of single wood fibers at the cellular lever.Results showed that in the dry state,elastic modulus of single fibers decreased with the reduction of lignin content,even the absolute values were not high.The lignin content affected the tensile strength and elongation of single fibers significantly.The tensile strength and elongation of single fibers increased with the reduction of lignin content.
Keywords:single fiber  lignin  modulus of elasticity  tensile strength  elongation
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