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    • 5. 发明授权
    • Furcation apparatus for optical fibers
    • 光纤分路装置
    • US06389214B1
    • 2002-05-14
    • US09860014
    • 2001-05-17
    • Duane T. SmithChing-Long TsaiRobert T. SmithKirk A. Halliburton
    • Duane T. SmithChing-Long TsaiRobert T. SmithKirk A. Halliburton
    • G02B600
    • G02B6/3878G02B6/4472
    • A furcation apparatus for a multi-conductor cable of the type having reinforcing fibers for longitudinal strength. The furcation apparatus includes a furcation spacer having a plurality of passages extending through an interior of the furcation spacer from a first end to a second end. Each passage is of a size sufficient to receive a furcation tube having reinforcing fibers, and each furcation tube is of a size sufficient to receive one of the plurality of conductors of the cable. The furcation tube reinforcing fibers approach the furcation spacer from the second end and are anchored adjacent the first end, and the cable reinforcing fibers approach the furcation spacer from the first end and are anchored adjacent the second end, such that tensioning the furcation tube reinforcing fibers and cable reinforcing fibers places the furcation spacer under compressive stress.
    • 一种用于纵向强度的具有增强纤维的多导体电缆的分叉装置。 分叉装置包括分叉间隔件,其具有从第一端延伸穿过分叉间隔物的内部到第二端的多个通道。 每个通道具有足以容纳具有增强纤维的分叉管的尺寸,并且每个分叉管的尺寸足以容纳电缆的多个导体中的一个。 分叉管增强纤维从第二端接近分叉间隔件并且在第一端附近锚固,并且电缆增强纤维从第一端接近分叉间隔件并且邻近第二端锚固,使得分叉管增强纤维 电缆增强纤维将分叉垫片放置在压应力下。
    • 9. 发明授权
    • Electromagnetic radiation susceptor material employing ferromagnetic
amorphous alloy particles
    • 采用铁磁性非晶态合金颗粒的电磁辐射感受体材料
    • US5278377A
    • 1994-01-11
    • US800632
    • 1991-11-27
    • Ching-Long Tsai
    • Ching-Long Tsai
    • C22C45/02C22C45/04H01F1/153H05K9/00H05B6/64
    • H05K9/0083H01F1/15366H01F1/15375Y10T428/256
    • An electromagnetic radiation susceptor material comprises at least one species of particle dispersed in a dielectric binder material. Any dispersed species of particle comprises a ferromagnetic amorphous alloy having the composition F.sub.100-y-x M.sub.y TM.sub.x, where M is one or more magnetic elements selected from the group consisting of Fe, Co, and Ni; M is one or more metalloids selected from the group consisting of B, C, Al, Si, P and Ge; TM is one or more transition metal selected from the group consisting of columns IIIB (including the rare earths) to VIIB of the periodic table, and especially Ti, V, Cr, Mn, Zr, Nb, and Ta; 0.ltoreq.x.ltoreq.20; and 10.ltoreq.y.ltoreq.30. The transition metal controls the Curie temperature of the alloy to provide temperature self-regulation. Many types dielectric binder are suitable. The susceptor material may be applied to substrate, such as an electrically conductive material.
    • 电磁辐射感受器材料包括分散在介电粘合剂材料中的至少一种颗粒。 任何分散的颗粒物质包含具有组成F100-y-xMyTMx的铁磁非晶合金,其中M是选自Fe,Co和Ni中的一种或多种磁性元素; M是选自B,C,Al,Si,P和Ge中的一种或多种准金属; TM是选自元素周期表中的IIIB(包括稀土)至VIIB的一种或多种过渡金属,特别是Ti,V,Cr,Mn,Zr,Nb和Ta; 0 <= x <= 20; 和10 <= y <= 30。 过渡金属控制合金的居里温度以提供温度自调节。 许多类型的介电粘合剂是合适的 感受体材料可以施加到诸如导电材料的基底上。