首页> 外国专利> Biregional fiber process for the production of an ignition-resistant flexible biregional fiber fiber set ignition-resistant composite material or flame blocker precursor bi-regional fiber flame-resistant and flame-barrier set floating set of open cell fibrous electrode for a secondary device for energy storage secondary device for energy storage secondary device for high performance energy storage and bipolar composite material electrode

Biregional fiber process for the production of an ignition-resistant flexible biregional fiber fiber set ignition-resistant composite material or flame blocker precursor bi-regional fiber flame-resistant and flame-barrier set floating set of open cell fibrous electrode for a secondary device for energy storage secondary device for energy storage secondary device for high performance energy storage and bipolar composite material electrode

机译:双区纤维工艺,用于生产二次能源用耐燃柔性双区纤维组耐火复合材料或阻隔剂前体双区纤维耐燃阻隔组浮动组开孔纤维电极储能二次存储装置高性能储能二次装置和双极复合材料电极

摘要

A flexible, ignition resistant, biregional fiber is disclosed, wherein the fiber is preferably derived from a single homogeneous polymeric precursor composition, said biregional fiber comprising an inner core region of a thermoplastic polymeric composition and a surrounding outer sheath region of a thermoset carbonaceous material. The biregional fiber is particularly characterized by having a ratio of the radius of the core region with respect to the total radius of the fiber (r.R) of from about 1:4 to about 1:1.05, an LOI value of greater than 40, a breaking twist angle of from 4 to 13 degrees, and a bending strain value of from greater than 0.01 to less than 50%. In a further embodiment of the invention, a biregional precursor fiber is disclosed, wherein the biregional precursor fiber is preferably derived from a single homogeneous polymeric composition, and wherein said precursor fiber comprises an inner core region of a thermoplastic polymeric composition and a surrounding outer sheath region of an oxidation stabilized, thermoplastic polymeric composition. The precursor fiber is particularly characterized by having a breaking twist angle of from 17 to 23 degrees. The invention further resides in a method of making the ignition resistant biregional fiber. Preferred end uses for the ignition resistant biregional fibers are disclosed including thermal insulation; flame resistant and fire blocking insulation; blends of the biregional fibers with other natural or polymeric fibers; coated fibers, composites of a polymeric matrix reinforced with the biregional fibers of the invention, electron conductive fibers for battery electrodes, and the like. IMAGE
机译:公开了一种挠性的,耐燃的双区域纤维,其中所述纤维优选衍生自单一的均质聚合物前体组合物,所述双区域纤维包括热塑性聚合物组合物的内芯区域和热固性碳质材料的周围外鞘区域。该双区域纤维的特征尤其在于,芯区域的半径相对于纤维的总半径的比(rR)为约1:4至约1:1.05,LOI值大于40,a断裂扭转角为4至13度,弯曲应变值大于0.01至小于50%。在本发明的另一个实施方案中,公开了一种双区域前体纤维,其中该双区域前体纤维优选衍生自单一的均质聚合物组合物,并且其中所述前体纤维包括热塑性聚合物组合物的内芯区域和周围的外皮。氧化稳定的热塑性聚合物组合物的区域。前体纤维的特征特别在于具有17至23度的断裂捻角。本发明进一步在于一种制造耐燃性双区域纤维的方法。公开了用于耐燃双区域纤维的优选的最终用途,包括隔热。阻燃和防火绝缘双区域纤维与其他天然或聚合纤维的共混物;涂覆的纤维,用本发明的双区域纤维增强的聚合物基质的复合材料,电池电极的电子导电纤维等。 <图像>

著录项

  • 公开/公告号BR9606334A

    专利类型

  • 公开/公告日1997-09-30

    原文格式PDF

  • 申请/专利权人 MCCULLOUGH FRANCIS P.;

    申请/专利号BR19969606334

  • 发明设计人 FRANCIS P. MCCULLOUGH;

    申请日1996-04-25

  • 分类号D01F8/10;D01F9/12;

  • 国家 BR

  • 入库时间 2022-08-22 03:27:41

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