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    • 41. 发明授权
    • Apparatus for manufacturing wire
    • 电线制造装置
    • US06869493B2
    • 2005-03-22
    • US10155064
    • 2002-05-28
    • Cheng-Lang Tsai
    • Cheng-Lang Tsai
    • H01B13/26B65H81/08H01B13/08B65H81/00
    • B65H81/08H01B13/0816
    • The present invention relates to an apparatus for manufacturing wire having an inverted cone-shaped cylinder within a spool, wherein the diameter of the top end of the cylinder is larger than the lower end thereof enabling a tape wound thereon unwound from the spool to go from a lower position to a higher position of the cylinder while the tape being wrapped on the wire due to the centrifugal force of rotation in the wrapping process. This has the benefit of preventing the subsequent turns of the tape from loosening out of the spool, and enables the tape being continuously, evenly, and securely wrapped on the wire in a high speed operation.
    • 本发明涉及一种用于制造在线轴内具有倒锥形圆柱体的线材的设备,其中圆柱体的顶端的直径大于其下端,从而能够使卷绕在卷轴上的带从卷轴脱离 当包装过程中由于离心旋转力而将带缠绕在线上时,下部位置到气缸的较高位置。 这具有防止带的后续转动从卷轴松开的优点,并且使得带能够以高速操作连续均匀地并且牢固地包裹在线上。
    • 43. 发明授权
    • Method for manufacturing coaxial cables
    • 同轴电缆制造方法
    • US5946798A
    • 1999-09-07
    • US818977
    • 1997-03-14
    • Bruno Buluschek
    • Bruno Buluschek
    • G02B6/44H01B13/016H01B13/26H01B13/20
    • H01B13/2633H01B13/0162Y10T29/49123Y10T29/53126
    • The method for manufacturing a core comprises the following steps: providing a strip made of an electrically conductive material, shaping the strip into a tube, the two edges of the strip being substantially in contact, and welding together the two edges of the tube-shaped strip, via laser welding, in order to form the core (1). The method is preferably performed continuously using a continuous strip of substantial length, in an advantageous manner, the shaped and welded tube undergoes calibration, then a surface treatment intended to promote the adhesion of the insulating material (6) so as to insulate the core with respect to the external conductor (8) of the coaxial cable.
    • 芯的制造方法包括以下步骤:提供由导电材料制成的条带,将条带成形为管,条的两个边缘基本上接触,并将管状的两个边缘焊接在一起 通过激光焊接,以形成芯部(1)。 该方法优选使用长度相当长的连续条带,以有利的方式连续地进行,成型和焊接管进行校准,然后进行表面处理,以促进绝缘材料(6)的粘附,以使芯与 相对于同轴电缆的外部导体(8)。
    • 48. 发明授权
    • Electrical shielding tape and method of making same
    • 电屏蔽胶带及其制作方法
    • US4731500A
    • 1988-03-15
    • US819619
    • 1986-01-17
    • Hiraaki Otsuka
    • Hiraaki Otsuka
    • C09J7/02H01B5/12H01B5/14H01B7/22H01B13/26H05F1/00H05K9/00H01B7/08B32B7/04
    • H01B5/14H01B5/12
    • Disclosed is flexible electrical shielding and a method of making the same for self-adherent assembly to an object to protect the object from electrical fields and static. The shielding comprises a nonconductive strip embraced by a flattened tube of conductive wire netting held in place by a layer of tacky adhesive applied to one exterior face of the netting tube and the adjacent side of the nonconductive strip. Anchorage of the tacky layer is facilitated by using a thermoplastic material and depressing portions thereinto under pressure while the strip is temporarily heat softened. A bare conductor extends along and in contact with the interior of the tube of netting and serves as a grounding conductor for the shielding. The shielding is applied to cabling or an object by spirally wrapping it about cabling, a wire harness or by applying it to the surface of an object to be shielded.
    • 公开了柔性电屏蔽以及使其相对于物体自粘合组装以保护物体免受电场和静电的影响的方法。 该屏蔽包括一个非导电条带,该导电条包含一个导电网网的平坦管,该导电网被保持在适当位置,该粘合剂层施加到网状管的一个外表面和非导电条的相邻侧。 通过使用热塑性材料并在压力下将压入部分暂时加热软化来促进粘性层的固定。 裸露的导体沿着网状物的内部延伸并与之接触,并且用作屏蔽的接地导体。 屏蔽通过螺旋地缠绕在布线,线束上或通过将其施加到待屏蔽物体的表面上来应用于布线或物体。
    • 49. 发明授权
    • Process and apparatus for fabricating optical fiber cables
    • 制造光纤电缆的工艺和装置
    • US4711388A
    • 1987-12-08
    • US736169
    • 1985-05-20
    • Joseph WinterMichael J. Pryor
    • Joseph WinterMichael J. Pryor
    • B23K1/16G02B6/44H01B13/26H04B9/00
    • B23K1/16G02B6/443G02B6/4488H01B13/2613
    • A process and apparatus for fabricating an optical fiber communication cable are described herein. The optical fiber cable has a cable core including a metal containment tube and at least one optical fiber within the tube. The containment tube preferably is formed by drawing a strip of metal through at least one forming die. In a first aspect of the present invention, smooth operation of the forming die is promoted by first passing the metal strip through a shaving die to remove any shearing burrs along the strip edges and to maintain the width of the strip within a desired tolerance.In a second aspect of the present invention, various approaches for effectively sealing the containment tube are described. In a first embodiment, the tube is sealed using a wave soldering approach wherein a flow of moving molten solder is used to substantially fill a seam in the tube. In a preferred embodiment, a mechanical separation is placed between the tube and the moving molten solder to prevent sealing until a steady state running condition has been achieved. In a second embodiment, the tube is sealed by wrapping a metal foil having a meltable coating about the tube and heating the assembly to melt the coating and effect a seal.In a third aspect of the present invention, the optical fiber cable is provided with an improved concentricity. The improved concentricity is effected by passing the sealed metal tube through a die for removing any excess material such as solder from about the outer periphery of the tube.
    • 本文描述了用于制造光纤通信电缆的工艺和设备。 光纤电缆具有包括金属容纳管和管内的至少一根光纤的电缆芯。 容纳管优选地通过至少一个成形模拉出金属条形成。 在本发明的第一方面,通过首先使金属带通过剃须刀模以除去沿着带材边缘的任何剪切毛刺并且将条带的宽度保持在所需公差内,促进成形模具的平滑操作。 在本发明的第二方面中,描述了用于有效密封容纳管的各种方法。 在第一实施例中,使用波峰焊接方法密封管,其中使用移动的熔融焊料的流动来基本上填充管中的接缝。 在优选实施例中,在管和移动的熔融焊料之间放置机械分离以防止密封直到达到稳态运行状态。 在第二实施例中,通过将具有可熔融涂层的金属箔缠绕在管周围并加热组件以熔化涂层并实现密封来密封管。 在本发明的第三方面中,光缆具有改善的同心度。 改进的同心度是通过将密封的金属管通过模具来实现的,用于从管的外周围除去诸如焊料的多余材料。