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双层膨体聚四氟乙烯薄膜焊接机理

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    发表于 2012-12-31 07:00:10 | 显示全部楼层 |阅读模式
    双层膨体聚四氟乙烯薄膜焊接机理
    Joining mechanism of double- layer PTFE membrane
    作  者:王永军[1] 郭玉海[1] 张建春[2] 郝新敏[2] 陈建勇[1] 任钟旗[3]

    WANG Yongjun, GUO Yuhai, HAO Xinmin , CHEN Jianyong, REN Zhongqi (1. The Key Lab of Advanced Textile Material and Processing Technology, Zhejiang Sci- Tech University, Hangzhou, Zhejiang 310018, China; 2. The Research Center of China-hemp Materials, the Quartermaster Research Institute of the General Logistic Department of CPLA, Beijing 100088, China;  3. College of Chemical Engineering, Beijing University of Chemical Technology, Beijing 100029, China)

    机构地区:[1]浙江理工大学先进纺织材料与制备技术教育部重点实验室,杭州310018 [2]总后军需装备研究所军用汉麻材料研究中心,北京100088 [3]北京化工大学化工学院,北京100029

    出  处:《膜科学与技术》 CAS CSCD 2008年第28卷第2期 14-17页,共4页

    Membrane Science and Technology

    基  金:浙江省自然科学基金(Y405459);2004年北京市自然科学基金(2052016)

    摘  要:针对传统方法通过调整制膜参数控制PTFE微孔薄膜孔径的局限性,采用双层PTFF基带共拉伸的方法制备薄膜.在一定温度和拉力下,通过双层未脱脂基带同时脱脂、横向扩幅和固化的方法,研制出小孔径PTFE薄膜.系统研究了脱脂拉力和温度对基带和薄膜焊接牢度的影响,并从材料结晶结构和机械嵌合的角度揭示焊接机理.结果表明,PTFF晶粒的部分熔融和机械嵌合导致原纤纠缠和结点融合是形成薄膜焊接的原因.

    Co-stretching processing technique was adopted to overcome the limitations of the traditional technique, which adjust PTFE membrane pore size through changing processing parameter. The PTFE micropore membrane with small diameters could be prepared by means of a series of mechanical operation: co- stretching of double- layer sheet in longitudinal direction (the process of lubricant removal), stretching in transverse direction and then thermosetting. The effect of stretching stress and temperature on the joining strength of the double- layer sheet and PTFE was studied, and the joining mechanism of double - layer PTFE was analyzed. The results show that the reasons for jointing of PTFE layers are fibrils intertangling and nodes interblending owing to part crystal melting and mechanical adhesion under heat and stretching stress.

    关 键 词:膨体聚四氟乙烯薄膜 共拉伸 焊接
    expanded polytetrafluoroethylene (PTFE) co - stretching jointing
    分 类 号: TQ028.8 [工业技术 > 化学工业 > 一般性问题 > 化工过程(物理过程及物理化学过程) > 分离过程]

    参考文献作者在撰写文献时引用的其他文献,反映本文的背景或依据。 (12篇)[1]肖容绪.袋式除尘器与环境保护[J].过滤与分离,:.
    [2]Harley Jar Daniel J. Waterproof, breathable fabric for out&or athletic appard[P]. US Pat: 5415924. 1995-05-16.
    [3]Von Bluecher Hubert, De Ruiter. Waterproof and moisture- conducting fabric coated with hydrophilic polymer [P]. US Pat:4454191. 1984-06- 12.
    [4]郝新敏 张建春 周国泰 郭玉海.可重复使用透湿型SARS防护服材料的研究[J].西安工程科技学院学报,:.
    [5]Huang J Z, Zhang J C, Hao X M, et al. Study of a new novel process for preparing and co- stretching PTFE membrane and its properties[J]. Eur Polym J, 2004, 40: 667 - 671.
    [6]郝新敏 张建春 郭玉海 等.拉伸工艺对膨体PTFE薄膜微孔结构的影响[J].膜科学与技术,2005,25(4):26-29.
    [7]郭玉海 张华鹏 张建春 等.一种空气除菌用聚四氟乙烯薄膜材料的制备方法[P].CN Pat:200510061828.9.2005-10-06.
    [8]Guo Y H, Chen J Y, Hao X M, et al. A novel process for preparing PTFE micro- porous membrane through PTFE/PTFE co - stretching technique [ J ]. J Mat Sci, 2007,42(6) :2081 - 2085.
    [9]王小群.[D].黑龙江:哈尔滨工业大学,1998.
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    [11]Kitamura T, Kurumada K, Masataka T, et al. Formation mechanism of porous structure in polytetrafluoroethylene (PTFE) porous membrane through mechanical operations [J]. Polym Eng Sci, 1999,39( 11 ) : 2256 - 2263.
    [12]Kitamura T, Okabe S, Masataka T, et al. Morphology change in polytetrafluoroethylene (PTFE) porous membrane caused by heat treatment[J]. Polym Eng Sci, 2000,40(3) :809 -817.

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