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    • 2. 发明专利
    • Method for producing porous ultraviolet-curing resin composition-covered wire
    • 生产多孔超紫外线固化树脂组合物覆盖线的方法
    • JP2012172116A
    • 2012-09-10
    • JP2011037606
    • 2011-02-23
    • Hitachi Cable LtdHitachi Cable Fine Tech Ltd日立電線ファインテック株式会社日立電線株式会社
    • KATO YOSHIHISAABE TOMIYASEYA OSAMUKO TOKUTEN
    • C08J9/28H01B13/16
    • PROBLEM TO BE SOLVED: To provide a porous ultraviolet-curing resin composition-covered wire which reduces the influence of heat caused by a light source performing irradiation with ultraviolet rays and has a stable outer diameter.SOLUTION: The method for producing a porous ultraviolet-curing resin composition-covered wire includes: a stage of covering the outer circumference of a metal conductor with an ultraviolet-curing resin composition in which a moisture-containing water absorbable polymer that has been water-absorbed and swelled is dispersed; and a stage of irradiating the ultraviolet-curing resin composition covered on the outer circumference of the metal conductor with ultraviolet rays to be crosslinking-cured, and further subjecting the moisture in the moisture-containing water absorbable polymer to dehydration treatment to made porous; wherein in the first lightening of irradiating the ultraviolet-curing resin composition with ultraviolet rays, irradiation with the ultraviolet rays are performed using an LED, and thereafter, the moisture of the moisture-containing water absorbable polymer is subjected to dehydration treatment.
    • 要解决的问题:提供一种减少由紫外线照射的光源引起的热的影响并具有稳定外径的多孔紫外线固化树脂组合物包覆线。 解决方案:多孔紫外线固化树脂组合物包覆线的制造方法包括:用紫外线固化树脂组合物覆盖金属导体的外周的阶段,其中含有水分的吸水性聚合物具有 吸水膨胀分散; 以紫外线照射被金属导体的外周覆盖的紫外线固化型树脂组合物进行交联固化的阶段,进一步对含水分的吸水性聚合物中的水分进行脱水处理,制成多孔体; 其中,在用紫外线照射紫外线固化树脂组合物的第一次照明中,使用LED进行紫外线的照射,然后对含水分的吸水性聚合物的水分进行脱水处理。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Method for manufacturing wire covered with porous ultraviolet curable resin composition
    • 用多孔超紫外线固化树脂组合物制造线的方法
    • JP2012174610A
    • 2012-09-10
    • JP2011037607
    • 2011-02-23
    • Hitachi Cable LtdHitachi Cable Fine Tech Ltd日立電線ファインテック株式会社日立電線株式会社
    • KATO YOSHIHISAABE TOMIYAMIWA TAKAOWATANABE KIYOSHIKUROSAWA YOSHINORISEYA OSAMUKO TOKUTEN
    • H01B13/16C08J9/28
    • PROBLEM TO BE SOLVED: To provide a wire covered with a porous ultraviolet curable resin composition having a stable outer diameter by reducing the influence of heat from a light source radiating ultraviolet light.SOLUTION: A method for manufacturing a wire covered with a porous ultraviolet curable resin composition comprises the steps of: covering an outer periphery of a metal conductor with an ultraviolet curable resin composition, in which a hydrated water absorbent polymer that is water-absorbed and swollen is distributed therein; and irradiating the ultraviolet curable resin composition covering the outer periphery of the metal conductor with ultraviolet light to cure by crosslinking of the ultraviolet curable resin composition, and also making the composition porous by dehydrating the hydrated water absorbent polymer. At a first ultraviolet light radiating furnace that irradiates the ultraviolet curable resin composition with ultraviolet light, the ultraviolet curable resin composition is irradiated with ultraviolet light in a coolant for cooling the composition to be cured by crosslinking, and after that, the hydrated water absorbent polymer is dehydrated.
    • 要解决的问题:通过减少来自辐射紫外线的光源的热量的影响,提供覆盖有具有稳定外径的多孔紫外线固化树脂组合物的线。 解决方案:一种用多孔紫外线固化树脂组合物覆盖的线材的制造方法,包括以下步骤:用紫外线固化树脂组合物覆盖金属导体的外周,其中,水溶性吸水性聚合物是水溶性聚合物, 吸收和肿胀分布在其中; 用紫外线照射覆盖金属导体的外周的紫外线固化性树脂组合物,通过紫外线硬化性树脂组合物的交联进行固化,通过使水合吸水性聚合物脱水,使组合物多孔化。 在用紫外线照射紫外线固化型树脂组合物的第一紫外线辐射炉中,将紫外线固化型树脂组合物用紫外线照射在冷却剂中以冷却通过交联固化的组合物,然后将水合吸水性聚合物 脱水 版权所有(C)2012,JPO&INPIT
    • 6. 发明专利
    • Coaxial cable and method for manufacturing the same, and multiconductor cable using the same
    • 同轴电缆及其制造方法及使用其的多芯电缆
    • JP2007169687A
    • 2007-07-05
    • JP2005366568
    • 2005-12-20
    • Hitachi Cable Ltd日立電線株式会社
    • KO TOKUTENMATSUI RYOSEYA OSAMUKURODA HIROMITSUOKIKAWA HIROSHINAKAGAWA RYUJI
    • C22C9/00C22C9/02C22F1/00C22F1/08H01B11/18H01B11/20H01B13/016
    • Y02A30/50
    • PROBLEM TO BE SOLVED: To provide a coaxial cable in which high-strength characteristics and low resistance characteristics are made compatible with each other, and the degradation in strength hardly occurs even in foam extrusion work or soldering work of a terminal part and the like, which has high thermal resistance in combination as well, and a method for manufacturing the same and a multiconductor cable using the same. SOLUTION: A foamed insulator 5 is coated on an outer periphery of a copper alloy twisted wire (internal conductor) 3 formed by intertwining seven lines copper alloy wires 1 and a plurality of lines conductor wires 7 are spirally wound around the outer periphery of a skin layer 6 formed on the outer side thereof along the longitudinal direction of the copper alloy twisted wire (internal conductor) 3 to form an external conductor 8, on the surface of which a jacket layer 9 is coated to provide the coaxial cable 10. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供使高强度特性和低电阻特性彼此相容的同轴电缆,即使在端子部分的泡沫挤压加工或焊接加工中也难以发生强度的降低, 同时具有高耐热性,以及其制造方法和使用该热电阻的多导体电缆。 解决方案:将发泡绝缘体5涂覆在铜合金绞合线(内部导体)3的外周上,该铜合金绞合线(内部导体)3通过缠绕七条铜合金线1而形成,并且多条线导体线7螺旋地卷绕在外周 沿着铜合金绞合线(内部导体)3的长度方向形成在其外侧的表层6,以形成外部导体8,其表面上涂覆护套层9以提供同轴电缆10 。版权所有(C)2007,JPO&INPIT
    • 7. 发明专利
    • Extra-fine copper alloy wire, extra-fine copper alloy stranded wire, and their manufacturing method
    • 超细铜合金线,超细铜合金线及其制造方法
    • JP2007169686A
    • 2007-07-05
    • JP2005366566
    • 2005-12-20
    • Hitachi Cable Ltd日立電線株式会社
    • KURODA HIROMITSUOKADA RYOHEIMASUI SHINICHISEYA OSAMUKO TOKUTEN
    • C22C9/00C22F1/00C22F1/08H01B5/02H01B5/08H01B11/18H01B13/00H01B13/02
    • Y02A30/50
    • PROBLEM TO BE SOLVED: To provide an extra-fine copper alloy wire which is an extra-fine wire of ≤0.025 mm final wire diameter, combines high strength characteristics with low resistivity characteristics (high electric conductivity), hardly causes strength reduction even under thermal load, and has high heat resistance, to provide an extra-fine copper alloy stranded wire, and also to provide their manufacturing methods. SOLUTION: Silver in an amount of 1 to 3 wt.% is added to pure copper to form a copper alloy, and wire drawing is carried out to prepare an extra-fine copper alloy wire of 0.010 to 0.025 mm wire diameter. Subsequently, heat treatment is applied at 300 to 500°C for 0.2 to 5 sec. By this procedure, a tensile strength of ≥850 MPa, an electric conductivity of ≥85% IACS and an elongation of 0.5 to 3.0% can be produced. Moreover, in heating treatment at ≤350°C for ≤5 sec, the lowering ratio of tensile strength (σ h1 ) after the heating treatment to tensile strength (σ h0 ) before the heating treatment, [(1-σ h1 /σ h0 )×100%], is made to ≤2%. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供超细铜线,其是最终线直径≤0.025mm的超细线,结合了高强度特性和低电阻率特性(高导电性),几乎不引起强度降低 即使在热负荷下,也具有高耐热性,能够提供超细铜合金绞线,并提供其制造方法。 解决方案:将1至3重量%的银添加到纯铜中以形成铜合金,并且进行拉丝以制备0.010至0.025mm线径的超细铜合金线。 随后,在300〜500℃下进行0.2〜5秒的热处理。 通过该程序,可以制造≥850MPa的拉伸强度,≥85%IACS的电导率和0.5〜3.0%的伸长率。 此外,在≤350℃加热处理≤5秒时,加热处理后的拉伸强度(σ h1 )与拉伸强度的降低率(σ h0 ) 在加热处理之前,将[(1-σ h1 h0 )×100%]设为≤2%。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Extra fine insulated wire, coaxial cable, its manufacturing method, and multiconductor cable using it
    • 超细绝缘线,同轴电缆及其制造方法和使用其的多芯电缆
    • JP2007172928A
    • 2007-07-05
    • JP2005366567
    • 2005-12-20
    • Hitachi Cable Ltd日立電線株式会社
    • KO TOKUTENMATSUI RYOSEYA OSAMUKURODA HIROMITSUOKIKAWA HIROSHINAKAGAWA RYUJI
    • H01B7/04B21C1/00C22C9/00H01B7/08H01B7/22H01B11/18H01B11/20H01B13/00H01B13/016
    • Y02A30/50
    • PROBLEM TO BE SOLVED: To provide an extra fine insulated wire and a coaxial cable having high strength characteristics and low resistance characteristics (high conductivity) compatible with each other, not easily causing the lowering of strength under a thermal load applied in manufacturing by extrusion and soldering work for a terminal, and also having high heat resistance, a manufacturing method for it, and a multiconductor cable using it. SOLUTION: An internal conductor is formed of a copper alloy strand 3 obtained by stranding seven copper alloy wires 1, and a solid insulator 5 is coated on the periphery of the internal conductor to form an extra fine insulated wire 10. In addition, an external conductor 15 is formed by spirally winding a plurality of conductor wires 13 around the periphery of the extra fine insulated wire 10 along the longitudinal direction of the extra fine insulated wire 10, and a jacket layer 17 is coated on the surface of the external conductor 15 to make the coaxial cable 20. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供具有相互兼容的高强度特性和低电阻特性(高导电性)的超细绝缘电线和同轴电缆,不容易导致在制造中施加的热负荷下的强度降低 通过用于端子的挤压和焊接工作,并且还具有高耐热性,其制造方法和使用它的多导体电缆。 解决方案:内部导体由通过绞合七根铜合金线1而获得的铜合金线3形成,并且固体绝缘体5涂覆在内部导体的周边上以形成额外的精细绝缘线10.此外 通过沿着超细绝缘电线10的长度方向螺旋地缠绕多根导线13绕着超细绝缘电线10的周边而形成外部导体15,并且在该表面上涂敷护套层17 外部导体15以制造同轴电缆20.版权所有(C)2007,JPO&INPIT
    • 9. 发明专利
    • Probe cable
    • 探头线
    • JP2002367444A
    • 2002-12-20
    • JP2001172468
    • 2001-06-07
    • Hitachi Cable Ltd日立電線株式会社
    • TANAKA KANDAISEYA OSAMU
    • A61B1/00A61B8/00H01B7/17
    • PROBLEM TO BE SOLVED: To provide a probe cable at a low cost which satisfies the requirements of medical functions and is moreover superior in the flexibility.
      SOLUTION: The probe cable 1, used in the wirings for any medical apparatus, is structured so that a plurality of coaxial wire units 3a-3b are covered with a sheath 6, which is formed in a double layer structure consisting of an inner layer 7 and an outer layer 8, where the inner layer 7 is made of a vinyl material having flexibility higher than that of the outer layer 8, while the outer layer 8 is made of another vinyl material which allows touching on a human skin or inside the physical body.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供满足医疗功能要求的低成本的探针电缆,并且具有优异的灵活性。 解决方案:用于任何医疗设备的配线中的探针电缆1被构造成使得多个同轴线单元3a-3b被形成为由内层7组成的双层结构的护套6覆盖 和外层8,其中内层7由具有高于外层8的柔软性的乙烯基材料制成,而外层8由另一种能够接触人体皮肤或物理内部的乙烯基材料制成 身体。
    • 10. 发明专利
    • Cu-Ag ALLOY WIRE, AND Cu-Ag ALLOY WIRE FOR COAXIAL CABLE
    • Cu-Ag合金线和Cu-Ag合金线用于同轴电缆
    • JP2007077505A
    • 2007-03-29
    • JP2006285729
    • 2006-10-20
    • Hitachi Cable Ltd日立電線株式会社
    • MATSUI RYOICHIKAWA TAKAOAOYAMA MASAYOSHIOKADA RYOHEISEYA OSAMU
    • C22C9/00H01B1/02H01B11/00
    • PROBLEM TO BE SOLVED: To provide a Cu-Ag alloy wire having excellent tensile strength, wire drawability and flexibility, and to provide a Cu-Ag alloy wire for a coaxial cable.
      SOLUTION: The Cu-Ag alloy wire has a wire diameter of ≤0.08 mm, and is composed of a copper alloy obtained by admixing high purity Cu in which the total of inevitable impurities is ≤1 mass ppm with Ag having a purity of ≥99.99 mass% by 1.0 to 5.0 mass%. The Cu-Ag alloy wire has excellent wire drawability and flexibility since foreign matters causing disconnection in the base material are suppressed to the minimum, and has excellent tensile strength since Ag is comprised as an additional element.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供具有优异的拉伸强度,拉丝性和柔韧性的Cu-Ag合金丝,并提供用于同轴电缆的Cu-Ag合金线。 解决方案:Cu-Ag合金丝的线径≤0.08mm,由将不可避免的杂质总量≤1质量ppm的高纯度Cu与纯度为Ag的Ag相混合而成的铜合金构成 ≥99.99质量%,为1.0〜5.0质量%。 Cu-Ag合金丝具有优异的拉丝性和柔软性,因为在基材中引起断裂的异物被抑制到最小,并且由于Ag作为附加元素而具有优异的拉伸强度。 版权所有(C)2007,JPO&INPIT