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    • 1. 发明授权
    • Manufacturing method of a highly conductive polytetrafluoroethylene sheet
    • 高导电性聚四氟乙烯片的制造方法
    • US06270707B1
    • 2001-08-07
    • US09145284
    • 1998-09-02
    • Yoshinori HoriToshinori KadowakiHiroyuki YoshimotoKyohiro Kang
    • Yoshinori HoriToshinori KadowakiHiroyuki YoshimotoKyohiro Kang
    • B29C4710
    • C08J5/18B29C47/0004B29C47/0016B29C47/0021B29C47/54B29C55/005B29C55/18B29K2027/18B29K2105/16B29K2995/0005C08J2327/18
    • This invention concerns a method of manufacturing a highly conductive polytetrafluoroethylene sheet; a method of manufacturing a highly conductive unsintered polytetrafluoroethylene sheet: and a method of manufacturing a highly conductive sintered sheet. In the first method, a paste of polytetrafluoroethylene powder admixed with conductive substance and extrusion lubricant is extruded to preform an unsintered tube-like material, and at least one place on the circumference of this extruded material, the material is cut open longitudinally and the resulting sheet is calendered if necessary. The second method includes a sintering process for the sheet. This invention also concerns a highly conductive polytetrafluoroethylene sheet having a wide-width and long-length, which is obtained by the above-mentioned method. This sheet is not less than 170 mm in width and has variance of volume resistivity (conductivity) in the longitudinal direction, 10% or less, preferably 7% or less in the cross direction. This invention can provide a highly conductive wide-type PTFE sheet whose conductivity in the longitudinal direction is nearly uniform in the cross direction.
    • 本发明涉及一种制造高导电性聚四氟乙烯片材的方法; 高导电性未烧结聚四氟乙烯片的制造方法以及高导电性烧结片的制造方法。 在第一种方法中,挤出与导电物质和挤出润滑剂混合的聚四氟乙烯粉末的糊料,以预成型未烧结的管状材料,并且在该挤出材料的圆周上至少有一个位置,将材料纵向切开, 如果需要,片材被压延。 第二种方法包括用于片材的烧结过程。 本发明还涉及通过上述方法获得的具有宽宽度和长度的高导电性聚四氟乙烯片。 该片材的宽度不小于170mm,并且在纵向方向上的体积电阻率(电导率)的差异为10%以下,优选为横向的7%以下。 本发明可以提供一种导电性宽的PTFE片,其纵向的导电性在横向上几乎均匀。
    • 2. 发明申请
    • Process for producing fluoropolymer
    • US20050250922A1
    • 2005-11-10
    • US10521807
    • 2003-07-23
    • Masaki IrieSatoshi TokunoSadashige IrieYosuke NishimuraYoshinori HoriMitsuru Kishine
    • Masaki IrieSatoshi TokunoSadashige IrieYosuke NishimuraYoshinori HoriMitsuru Kishine
    • C08F2/00C08F14/18C08F214/18C08F214/22
    • C08F2/00C08F214/18C08F214/22
    • The present invention provides a process for preparing a fluorine-containing polymer having few branched chains and little weight change in high temperatures, which is a new process wherein composition distribution substantially does not occur. The fluorine-containing polymer is prepared by a batch copolymerization process conducted under conditions of reduced temperature of at least 0.95 and reduced pressure of at least 0.80 of the critical constant calculated from critical temperature, critical pressure and composition ratio of each monomer in the gaseous phase of the reaction vessel using the Peng-Robinson formula; wherein when the number of monomer components in the target polymer is represented as n (n is an integer of 2 or larger), the name of each monomer component is represented as A1, A2, . . . An, the weight percentage of each monomer component A1, A2, . . . An of the target polymer composition is represented as a1, a2, . . . an (%) (a satisfies ∑ n ⁢ a n = 100 ) , the weight percentage of each monomer component of the initial monomer composition is represented as a′1, a′2 . . . a′n (%) (a′ satisfies ∑ n ⁢ a n ′ = 100 and a′1, a′2, . . . a′n is determined in a constant manner depending on predetermined polymerization conditions) and specific gravity of the gaseous phase monomers when polymerizing/specific gravity of the target polymer is represented as B, the composition weight ratio of additional monomers is calculated for each monomer from the formula (a1−a′1×B):(a2−a′2×B) . . . (an−a′n×B) in the order of components A1, A2, . . . An, and additional monomers containing additional monomers in the composition weight ratio of additional monomers are added.