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    • 7. 发明授权
    • Optical fiber coating compositions and coated optical fibers
    • 光纤涂层组合物和涂覆光纤
    • US06584263B2
    • 2003-06-24
    • US10024271
    • 2001-12-17
    • Edward J. FewkesInna I. KouzminaHuan-Hung Sheng
    • Edward J. FewkesInna I. KouzminaHuan-Hung Sheng
    • G02B602
    • C03C25/106G02B6/02014G02B6/02285G02B6/02395G02B6/4403
    • One aspect of the present invention relates to an optical fiber coating compositions having, when cured, a Young's modulus of greater than about 950 MPa and a film to film coefficient of friction of less than about 0.44. Another aspect of the present invention relates to an coated optical fiber having a coating having a modulus of greater than about 950 MPa and a fiber to fiber coefficient of friction of less than about 0.74 measured at a speed of about 0.423 cm/sec and with a weight of about 100 grams. The coatings may include additives such as surfactants, surface agents, slip additives, waxes, and micronized polytetrafluoroethylene. The coated optical fibers of the present invention can be freely and smoothly wound on a spool without the formation of fiber loops, crossovers, or other defects.
    • 本发明的一个方面涉及一种光纤涂层组合物,其在固化时具有大于约950MPa的杨氏模量和小于约0.44的膜与膜摩擦系数。 本发明的另一方面涉及具有大于约950MPa的模量的涂层和约0.423cm /秒的速度测量的纤维与纤维摩擦系数小于约0.74的涂覆光纤,并且具有 重量约100克。 涂层可以包括添加剂,例如表面活性剂,表面剂,滑爽添加剂,蜡和微粉化的聚四氟乙烯。 本发明的涂覆光纤可以自由而平滑地卷绕在卷轴上,而不会形成纤维环,交叉或其他缺陷。
    • 9. 发明授权
    • Co-extrusion method of fabricating an electrode structure in a honeycomb substrate
    • 在蜂窝状基材中制造电极结构的共挤出方法
    • US08591600B2
    • 2013-11-26
    • US12571647
    • 2009-10-01
    • William James MillerHuan-Hung Sheng
    • William James MillerHuan-Hung Sheng
    • H01G9/00
    • H01G9/155H01G9/016H01G11/26H01G11/28H01G11/38H01G11/70H01G11/86Y02E60/13Y02T10/7022
    • A method for fabricating electrode structures within a honeycomb substrate having a plurality of elongated channels is provided that is particularly adaptable for producing an ultracapacitor. In this method, the nozzle of a co-extrusion device simultaneously feeds a current collector along a central axis of one of the channels while simultaneously injecting a paste containing an electrode material so that the interior of the channel becomes completely filled with electrode paste at the same rate that the current collector is fed. Such co-extrusion as performed simultaneously at both sides of the ceramic substrate to rapidly form electrode structures within substantially all the channels of the substrate. The resulting ultracapacitor is capable of storing large amounts of electrical energy per unit volume in a structure which is relatively quick and easy to manufacture.
    • 提供了一种在具有多个细长通道的蜂窝状基材内制造电极结构的方法,其特别适用于制造超级电容器。 在该方法中,共挤出装置的喷嘴同时沿着其中一个通道的中心轴馈送集电器,同时注入含有电极材料的浆料,使得通道内部完全充满电极浆料 与集电器供电相同的速率。 在陶瓷衬底的两侧同时执行的共挤出,以在衬底的基本上所有通道内快速形成电极结构。 所得的超级电容器能够在相对快速且容易制造的结构中每单位体积存储大量的电能。