Long chain branched fluoropolymer membranes

    公开(公告)号:US11065587B2

    公开(公告)日:2021-07-20

    申请号:US14770125

    申请日:2014-02-27

    Applicant: Arkema Inc.

    Abstract: The invention relates to membranes formed from long chain branched fluoropolymers, and especially long chain branched homopolymers and copolymers of polyvinylidene fluoride such as KYNAR resins. The novel membranes retain all the advantages of a fluoropolymer membrane (excellent chemical resistance especially to strong acids and oxidizing agents, and good mechanical strength), and additionally offer improved permeability, improved strain hardening, and even better resistance to caustic attacks. The improvements are believed to be related to an improvement to the microstructure of the membranes, producing a more open structure due to the long chain branched fluoropolymers. Further improvements in the mechanical properties of the membranes can be induced by strain hardening.

    LONG CHAIN BRANCHED FLUOROPOLYMER MEMBRANES
    6.
    发明申请
    LONG CHAIN BRANCHED FLUOROPOLYMER MEMBRANES 审中-公开
    长链分支荧光膜

    公开(公告)号:US20160008772A1

    公开(公告)日:2016-01-14

    申请号:US14770125

    申请日:2014-02-27

    Applicant: ARKEMA INC.

    Abstract: The invention relates to membranes formed from long chain branched fluoropolymers, and especially long chain branched homopolymers and copolymers of polyvinylidene fluoride such as KYNAR resins. The novel membranes retain all the advantages of a fluoropolymer membrane (excellent chemical resistance especially to strong acids and oxidizing agents, and good mechanical strength), and additionally offer improved permeability, improved strain hardening, and even better resistance to caustic attacks. The improvements are believed to be related to an improvement to the microstructure of the membranes, producing a more open structure due to the long chain branched fluoropolymers. Further improvements in the mechanical properties of the membranes can be induced by strain hardening.

    Abstract translation: 本发明涉及由长支链含氟聚合物形成的膜,特别是聚偏二氟乙烯如KYNAR树脂的长链支化均聚物和共聚物。 新型膜保留了氟聚合物膜的所有优点(特别是对强酸和氧化剂具有优异的耐化学腐蚀性和良好的机械强度),并且还提供改善的渗透性,改善的应变硬化,甚至更好的耐苛性攻击性。 认为这些改进与膜的微观结构的改进有关,由于长链支化的含氟聚合物而产生更开放的结构。 可以通过应变硬化来诱导膜的机械性能的进一步改善。

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