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造纸法再造烟叶与烟叶部分物理特性指标的对比分析
引用本文:张玉海,席年生,王岩,常纪恒,姚光明,刘朝贤,徐大勇,张彩云,邓国栋.造纸法再造烟叶与烟叶部分物理特性指标的对比分析[J].烟草科技,2015,48(8):72-75,87.
作者姓名:张玉海  席年生  王岩  常纪恒  姚光明  刘朝贤  徐大勇  张彩云  邓国栋
作者单位:中国烟草总公司郑州烟草研究院, 郑州高新技术产业开发区枫杨街2号 450001
基金项目:国家烟草专卖局中式卷烟制丝专线重大专项项目"基于造纸法再造烟叶特性的制丝工艺技术研究"[110201101012(ZS-01)];河南省烟草公司科技项目"基于河南烟叶力学特性的打叶复烤应用技术研究"(HYKJ2012m17)
摘    要:为明确造纸法再造烟叶与烟叶物理特性的差异,分析了9个不同产区、等级烟叶样品和国内5个不同企业的8个规格造纸法再造烟叶样品的拉力、剪切力、摩擦系数,比较了造纸法再造烟叶和烟叶物理特性指标的差异。结果表明:①造纸法再造烟叶纵向剪切力、拉力明显大于其横向剪切力、拉力,造纸法再造烟叶静态摩擦系数大于其动态摩擦系数;②造纸法再造烟叶剪切力、拉力明显大于烟叶剪切力、拉力,造纸法再造烟叶摩擦系数明显小于烟叶摩擦系数;③造纸法再造烟叶剪切力、拉力、摩擦系数等物理特性指标与其真密度、截面纤维形态、表面特性密切相关。 

关 键 词:烟叶    造纸法再造烟叶    拉力    剪切力    摩擦系数
收稿时间:2014-12-05

Comparison of Physical Characteristics Between Paper-making Process Reconstituted Tobacco and Tobacco Leaf
ZHANG Yuhai,XI Niansheng,WANG Yan,CHANG Jiheng,YAO Guangming,LIU Chaoxian,XU Dayong,ZHANG Caiyun,DENG Guodong.Comparison of Physical Characteristics Between Paper-making Process Reconstituted Tobacco and Tobacco Leaf[J].Tobacco Science & Technology,2015,48(8):72-75,87.
Authors:ZHANG Yuhai  XI Niansheng  WANG Yan  CHANG Jiheng  YAO Guangming  LIU Chaoxian  XU Dayong  ZHANG Caiyun  DENG Guodong
Affiliation:Zhengzhou Tobacco Research Institute of CNTC, Zhengzhou 450001, China
Abstract:The physical characteristics were compared between paper-making process reconstituted tobacco(RT) and tobacco leaf in terms of the tensile force,shearing force and friction coefficient.Nine leaf samples of different grades and eight RT samples of different specifications were tested.The results indicated that:1) The longitudinal shearing force and tensile force of RT were obviously higher than the transverse ones of RT,and the static friction coefficient of RT was higher than its dynamic friction coefficient.2) The shearing force and tensile force of RT were remarkably higher than those of tobacco leaf,while its friction coefficient was obviously smaller than that of tobacco leaf.3) The shearing force,tensile force and friction coefficient of RT closely correlated to its true density,cross-sectional fiber morphology and surface properties. 
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