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    • 5. 发明公开
    • ELONGATED, ULTRA HIGH CONDUCTIVITY ELECTRICAL CONDUCTORS FOR ELECTRONIC COMPONENTS AND VEHICLES, AND METHODS FOR PRODUCING THE SAME
    • 用于电子元件和车辆的伸长,超高导电性导电体及其制造方法
    • EP3252778A1
    • 2017-12-06
    • EP17161457.1
    • 2017-03-16
    • The Boeing Company
    • BRALEY, Daniel J.BELK, John H.HASAN, Zeaid F.TANIELIAN, Minas H.
    • H01B1/02C22C9/00H05K1/09C22C47/00C22C49/00
    • H05K1/09B22F3/20C22C9/00C22C26/00C22C30/02C22C32/0084C22C49/14C22C2026/002H01B1/026H01B13/0036H01B13/14
    • Elongated, ultra-high conductivity electrical conductors (100) for use in advanced electronic components and vehicles, and methods for producing the same, are disclosed herein. The elongated electrical conductors (100) include a conductor body (110) that defines a longitudinal axis (102). The conductor body (110) includes an isotropically conductive matrix material (120) and a plurality of anisotropically conductive particles (130) interspersed within the isotropically conductive matrix material (120). Each anisotropically conductive particle (130) defines a respective axis (170) of enhanced electrical conductivity that is aligned with the longitudinal axis (102) of the conductor body (110). The methods include providing a bulk matrix-particle composite (98) that includes the isotropically conductive matrix material (120) and the plurality of anisotropically conductive particles (130). The methods further include forming the bulk matrix-particle composite (98) into an elongated electrical conductor (100) and aligning the plurality of anisotropically conductive particles (130) such that the respective axis (170) of enhanced electrical conductivity thereof is at least substantially aligned with the longitudinal axis (102) of the elongated electrical conductor (100).
    • 本文公开了用于先进电子部件和车辆的细长超高电导率电导体(100)及其制造方法。 细长电导体(100)包括限定纵向轴线(102)的导体主体(110)。 导体本体(110)包括散布在各向同性导电基体材料(120)内的各向同性导电基体材料(120)和多个各向异性导电颗粒(130)。 各向异性导电颗粒(130)限定与导体主体(110)的纵向轴线(102)对齐的增强的导电性的相应轴(170)。 该方法包括提供包含各向同性导电基体材料(120)和多个各向异性导电颗粒(130)的块状基体 - 颗粒复合物(98)。 该方法进一步包括将块状基体 - 颗粒复合物(98)形成为细长电导体(100)并且对准多个各向异性导电颗粒(130),使得其增强的导电率的相应轴线(170)至少基本上 与细长电导体(100)的纵向轴线(102)对齐。