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    • 33. 发明申请
    • COAXIAL ELECTRIC WIRE AND METHOD FOR MANUFACTURING THE SAME
    • 同轴电线及其制造方法
    • US20140374135A1
    • 2014-12-25
    • US14481009
    • 2014-09-09
    • Yazaki Corporation
    • Mitsuharu Nagahashi
    • H01B13/016H01B7/04H01B11/18
    • H01B13/0162H01B7/04H01B9/04H01B11/1834H01B13/016H01B13/0165H01B13/062Y10T29/49123
    • A coaxial electric wire is provided with an inner conductor, an inner insulating layer covering a periphery of the inner conductor, an outer conductor covering a periphery of the inner insulating layer, and an outer insulating layer covering a periphery of the outer conductor. The inner insulating layer is made of a first insulating tube having an elongated cylindrical shape and an insulation performance. The outer insulating layer is made of a second insulating tube having an elongated cylindrical shape and an insulation performance. The outer conductor is made of a conductive tube having an elongated cylindrical shape and conductivity. The coaxial electric wire is manufactured by inserting the inner conductor into the first insulating tube, inserting the first insulating tube into the conductive tube, and inserting the conductive tube into the second insulating tube.
    • 同轴电线设置有内导体,覆盖内导体周围的内绝缘层,覆盖内绝缘层周围的外导体和覆盖外导体周围的外绝缘层。 内绝缘层由具有细长圆筒形状和绝缘性能的第一绝缘管制成。 外绝缘层由具有细长圆筒形状和绝缘性能的第二绝缘管制成。 外导体由具有细长圆筒形状和导电性的导电管制成。 通过将内导体插入第一绝缘管,将第一绝缘管插入导电管,并将导电管插入第二绝缘管中来制造同轴电线。
    • 35. 发明授权
    • Coaxial cable
    • 同轴电缆
    • US08247052B2
    • 2012-08-21
    • US12408248
    • 2009-03-20
    • Wendy LoyensManfred StadlbauerHans Eklind
    • Wendy LoyensManfred StadlbauerHans Eklind
    • B29C47/00B29D22/00
    • H01B3/441H01B11/1834Y10T428/1352Y10T428/1355Y10T428/139
    • Certain embodiments of the present technology provide a cable comprising a conductor and a cable layer. The cable layer comprises a polypropylene material. The cable layer and/or the polypropylene material comprise a crystalline fraction crystallizing in the temperature range of 200 to 105° C. determined by stepwise isothermal segregation technique. The crystalline fraction comprises a part, wherein, during subsequent melting at a melting rate of 10° C./min, the part melts at or below 130° C. and the part represents at least 20 percent by weight of the crystalline fraction. In certain embodiments, the part melts at or below the temperature T=Tm−3° C., wherein Tm is the melting temperature of the cable layer and/or the polypropylene material, and the part represents at least 45 percent by weight of the crystalline fraction. Certain embodiments provide methods and processes for manufacturing the cable described above and herein.
    • 本技术的某些实施例提供了包括导体和电缆层的电缆。 电缆层包括聚丙烯材料。 电缆层和/或聚丙烯材料包括在200至105℃的温度范围内结晶的结晶部分,通过逐步等温偏析技术测定。 结晶部分包括一部分,其中在随后以10℃/分钟的熔融速率熔化时,该部分在130℃或低于130℃熔化,该部分表示至少20重量%的结晶部分。 在某些实施方案中,部件在等于或低于T = Tm-3℃的温度下熔化,其中Tm是电缆层和/或聚丙烯材料的熔融温度,并且该部分表示至少45重量% 结晶部分。 某些实施例提供了用于制造上述和本文中的电缆的方法和过程。
    • 36. 发明申请
    • COAXIAL CABLE AND METHOD OF MAKING THE SAME
    • 同轴电缆及其制造方法
    • US20100212933A1
    • 2010-08-26
    • US12699555
    • 2010-02-03
    • Tatsunori HAYASHISHITAHirokazu TAKAHASHI
    • Tatsunori HAYASHISHITAHirokazu TAKAHASHI
    • H01B11/02H01B13/20
    • H01B11/1808H01B1/026H01B3/445H01B7/0009H01B11/1813H01B11/1834H01B11/1895Y10T29/49123
    • The present invention provides a small-diameter coaxial cable in which the same electrical and mechanical characteristics as in the prior art can be maintained and costs do not increase. The coaxial cable comprises a central conductor including three twisted wires and having a cross-sectional area of 0.005 mm2 or less, a fluororesin insulation for covering the central conductor, an outer conductor disposed on the external periphery of the insulation, and a jacket for covering the outer conductor. The adhesive force between the central conductor and the insulation is one third or less the tensile strength of the central conductor. The method for manufacturing the coaxial cable comprises twisting three wires together to form a central conductor having a cross-sectional area of 0.005 mm2 or less, extruding a fluororesin and forming an insulation on the central conductor so that adhesive force with the central conductor is one third or less the tensile strength of the central conductor, and providing the insulation with an outer conductor and a jacket.
    • 本发明提供一种小直径同轴电缆,其中可以保持与现有技术相同的电气和机械特性,并且成本不增加。 同轴电缆包括中心导体,其包括三条绞合线,横截面积为0.005mm 2或更小,用于覆盖中心导体的氟树脂绝缘体,设置在绝缘体外周上的外导体,以及用于覆盖 外导体。 中心导体和绝缘体之间的粘合力是中心导体的拉伸强度的三分之一或更小。 制造同轴电缆的方法包括将三根线绞合在一起形成截面积为0.005mm 2或更小的中心导体,挤出氟树脂并在中心导体上形成绝缘体,使得与中心导体的粘合力为一 三分之一或更小的中心导体的拉伸强度,并提供绝缘与外部导体和外套。
    • 37. 发明申请
    • Coring tool for coaxial cable
    • 同轴电缆取芯工具
    • US20050115074A1
    • 2005-06-02
    • US10995016
    • 2004-11-22
    • Michael GialeniosDonald McDaniel
    • Michael GialeniosDonald McDaniel
    • H01B11/18H01B13/016H01R9/05H02G1/12
    • H01B13/016H01B11/1834H02G1/1226
    • A coring tool is provided for preparing the end of a coaxial cable having an inner conductor, a precoat layer adhered to the inner conductor, a dielectric material adhered to the precoat layer, and a surrounding tubular metallic outer conductor. The coring tool comprises a housing having an open end adapted for receiving the coaxial cable and a cutting tool mounted to the housing and extending coaxially toward said opening. The cutting tool includes a cylindrical coring portion having an outside diameter sized to be received within the outer conductor of the coaxial cable, an axially extending bore for receiving the inner conductor, and at least one cutting edge at the end of the coring portion which is configured for creating a tearing component on the dielectric material and precoat layer, rather than slicing the dielectric material and precoat.
    • 提供了一种取芯工具,用于制备具有内部导体,粘附到内部导体的预涂层,附着到预涂层的电介质材料和周围的管状金属外部导体的同轴电缆的端部。 取芯工具包括具有开口端的壳体,该开口端适于容纳同轴电缆;以及切割工具,其安装到壳体并同轴地朝向所述开口延伸。 切割工具包括圆柱形取心部分,其外径尺寸被设计成容纳在同轴电缆的外部导体内,用于容纳内部导体的轴向延伸的孔以及在取芯部分末端的至少一个切割刃 被配置为在电介质材料和预涂层上产生撕裂成分,而不是切割电介质材料和预涂层。
    • 38. 发明申请
    • Coaxial cable with strippable center conductor precoat
    • 同轴电缆,带有可剥离的中心导体预涂层
    • US20050056453A1
    • 2005-03-17
    • US10931398
    • 2004-09-01
    • Michael GialeniosRandy MintonDonald McDaniel
    • Michael GialeniosRandy MintonDonald McDaniel
    • H01B11/18H01B13/016H01B7/18
    • H01B13/016H01B11/1834Y10T29/49117Y10T29/49123
    • A coaxial cable is provided with a specially prepared precoat layer that facilitates removal of the precoat layer when the end of the cable is cored in preparation for receiving a connector. The cable includes an inner conductor; a foam polyolefin dielectric layer surrounding the inner conductor; an outer conductor surrounding said dielectric layer; and a precoat layer disposed between the inner conductor and the dielectric layer. The precoat layer forms a first bond interface with the inner conductor and a second bond interface with the dielectric layer, wherein the ratio of the axial shear adhesion force of the first (“A”) bond to the axial shear adhesive force of the second (“B”) bond is less than 1, and wherein the ratio of the axial shear adhesion force of the “A” bond formed by the precoat layer between the inner conductor to the dielectric layer to the rotational shear adhesion force of the bond is 5 or greater.
    • 同轴电缆设置有专门准备的预涂层,当电缆的端部被接合以准备接收连接器时,便于去除预涂层。 电缆包括内导体; 围绕内部导体的泡沫聚烯烃介电层; 围绕所述介电层的外导体; 以及设置在内部导体和介电层之间的预涂层。 预涂层与内部导体形成第一键合界面和与电介质层的第二键合界面,其中第一(“A”)键的轴向剪切粘合力与第二(“ “B”)键小于1,并且其中由内导体与电介质层之间的预涂层形成的“A”键的轴向剪切粘合力与键的旋转剪切粘合力的比率为5 或更大。