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    • 81. 发明授权
    • Irrigation hose and belt splice preparing tool
    • 灌溉软管和皮带拼接准备工具
    • US4056021A
    • 1977-11-01
    • US656699
    • 1976-02-09
    • Edward H. Lacey
    • Edward H. Lacey
    • B26D3/16B29D23/00B29D29/00B26D3/06B26D7/02
    • B29D23/001B26D3/16B29D29/00B29K2021/00Y10S83/947Y10S83/953Y10T83/0267Y10T83/882
    • A tool or apparatus for preparing a fabric reinforced flexible hose or fabric reinforced conveyor belt for splicing by removing or stripping the elastomeric material forming the hose or belt from the fabric cords. The tool includes a knife disposed transversely of the hose or belt and movable longitudinally thereof while engaged with and partially penetrating the hose or belt for stripping the elastomeric material from the fabric, thus leaving and exposing the longitudinal cords on the end of the hose or belt thereby enabling a splice to be made. The knife is adjustable toward and away from the hose or belt and moves in an arcuate path about a center of an arcuate supporting surface or anvil for the hose or belt. The knife is mounted on an elongated actuating handle to enable sufficient force to be exerted on the knife to strip the elastomeric material from the fabric.
    • 用于制备织物增强的柔性软管或织物增强输送带的工具或设备,用于通过从织物帘线去除或剥离形成软管或带的弹性体材料来进行拼接。 该工具包括横向于软管或皮带设置的刀,并且在与软管或皮带接合并且部分地穿透软管或皮带以便从织物上剥离弹性体材料的同时可纵向运动,从而使软管或带的端部上的纵向帘线离开和暴露 从而实现接合。 刀可以朝向和远离软管或带调节,并且围绕软管或带的弧形支撑表面或砧座的中心以弧形路径移动。 刀安装在细长的致动手柄上,以使足够的力施加在刀上以从织物上剥离弹性体材料。
    • 82. 发明授权
    • Wire splitter for round conductor flat ribbon cable
    • 圆形扁平带状电缆分线器
    • US4046045A
    • 1977-09-06
    • US752007
    • 1976-12-20
    • Charles H. Stevens
    • Charles H. Stevens
    • H01R43/00H02G1/00H02G1/12H02G1/14B26D5/10
    • H02G1/005H02G1/1295Y10S83/947Y10T83/8821Y10T83/8828Y10T83/8831Y10T83/9447
    • A device for preparing a flat multi-conductor ribbon cable, having a plurality of conductors of circular cross section, for termination into a flat cable connector. A pair of meshing cutters, at least one of which is movable, are engaged with the ribbon cable between them. The cutters shear the cable webs, joining the individual conductor insulating jackets for a predetermined lengthwise distance along the flat cable, the individual blades of the cutter being configured to shear webs between adjacent conductors or alternatively between the web separating groups of a predetermined number of conductors. Each blade of each cutter has at least one concave depression engaging the individual round conductors to stabilize them during the shearing operation. At least one of the meshing cutters has a convex curvature in a plane parallel to the lengthwise dimension of the ribbon cable to minimize the required shearing force and hazard of cable damage.
    • 一种用于制备扁平多导体带状电缆的装置,具有多个圆形横截面的导体,用于端接到扁平电缆连接器中。 其中至少一个可移动的一对啮合切割器与它们之间的带状电缆接合。 切割器剪切电缆腹板,沿着扁平电缆将各导体绝缘套接合预定的长度方向的距离,刀片的各个刀片被配置成在相邻导体之间剪切腹板,或者在预定数量的导体的腹板分离组之间 。 每个切割器的每个刀片具有至少一个与各个圆形导体接合的凹陷凹部,以在剪切操作期间稳定它们。 啮合切割器中的至少一个在平行于带状电缆的纵向尺寸的平面中具有凸曲率,以最小化所需的剪切力和电缆损坏的危险。
    • 86. 发明公开
    • Vorrichtung und Verfahren zum Bearbeiten von Kabeln
    • 用于处理电缆的设备和方法
    • EP1369971A9
    • 2004-01-28
    • EP02405457.9
    • 2002-06-06
    • KOMAX HOLDING AG
    • Mehri, UrsLustenberger, Alois
    • H02G1/12
    • H02G1/1256Y10S83/947Y10S83/951Y10T29/49117Y10T29/49174Y10T29/49181Y10T29/49185Y10T29/514Y10T29/5142Y10T29/5187Y10T29/532Y10T29/53209Y10T29/53213Y10T29/53217Y10T83/04Y10T83/178
    • Es wird eine Vorrichtung zum Bearbeiten von kabelförmigen Leitern, insbesondere von mehradrigen Kabeln, mit zumindest einem Transportmittel (126) mit einem Antriebsmittel (132) zur Transportzuführung und zum Längstransport von kabelförmigem Leitermaterial (200), einem Trennmittel (170) zum Durchtrennen kabelförmigem Leitermaterials, zumindest einem ersten Mittel (170) zum Bearbeiten des durchtrennten, kabelförmigen Leitermaterials, zumindest einem Führungsmittel (130) zur Längsführung des kabelförmigen Leitermaterials, wobei das Führungsmittel (130) so ausgebildet ist, dass das freie Ende des kabelförmigen Leitermaterials aus seiner Längsrichtung herausgeschwenkt werden kann und einer im wesentlichen senkrecht zur Kabelrichtung ausgebildeten Platte (110), auf der zumindest einzelne der Mittel (126, 128, 130) der Vorrichtung auf einer Seite angeordnet sind. Die Platte (110) weist zumindest einen ersten schwenkbaren Plattenteil (114) auf, der um eine zur Plattenebene im wesentlichen parallelen Achse zwischen zwei Endlagen mit einem ersten Schwenkwinkel schwenkbar angeordnet ist, wobei sich auf dem Plattenteil (114) zumindest eines der genannten Transportmittel (126) sowie ein Führungsmittel (130) befinden. Es ist zumindest ein zweites Mittel (172) zum Bearbeiten des kabelförmigem Leitermaterials vorgesehen, das in einem aus der Ebene der Platte herausgeschwenkten Zustand des ersten schwenkbaren Plattenteiles (114) angeordnet ist oder auswechselbar angeordnet werden kann.
    • 它是用于处理电缆状导体,特别是多芯电缆的设备,其中至少一个传输装置(126),其具有驱动装置(132)输送进料和电缆状导体材料(200)的纵向传输中,分离装置(170),用于通过电缆状导体材料切割, 至少在切断时,电缆状导体材料的处理的第一装置(170),至少一个导向装置(130),用于在电缆状导体材料的纵向引导,其中,在形成所述导向装置(130),使得电缆状导体材料的自由端部可以枢转出其纵向方向上的 和基本上垂直于电缆方向形成的板(110),装置的至少一些装置(126,128,130)布置在一侧上。 所述板(110)具有被布置成与第一枢转角度,两个端部位置之间,以绕于板平面大致平行的轴线的至少一个第一枢转板部(114),其中所述板构件(114),所述运输装置的至少一个(上 126)和引导装置(130)。 它是至少(172),用于处理所述电缆状导体材料设置的第二装置,其被布置在枢转离开所述第一可枢转的板部(114)的盘状态的平面的,或者可以替换地布置。
    • 88. 发明公开
    • ORBITING BLADE COAXIAL CABLE CUTTER/STRIPPER
    • DURCHSCHNEID-和同轴球耦合SWORD剥离装置
    • EP1312147A2
    • 2003-05-21
    • EP01962174.7
    • 2001-08-15
    • Orbital Technologies, Inc.
    • PALMOWSKI, David, J.
    • H02G1/12
    • H02G1/127H02G1/1265Y10S83/924Y10S83/947Y10T83/04Y10T83/8772Y10T83/8796
    • Apparatus for supporting a coaxial cable, or the like, and effecting cutting and stripping operations to remove a portion of one or more layers which concentrically cover a central conductor. A single blade, having a circular cutting edge, is moved in an orbital path about the cable with rotary motion of a motor translated to orbital motion of the blade through a plurality of plates relatively movable on crossed, linear, roller bearings and a shaft eccentrically affixed to the motor with the shaft and motor axes at an acute angle to one another. The shaft extends through a spherical bearing mounted in one of the plates, thereby translating nutational motion of the shaft to orbiting motion of the plate which is directly attached to the blade. A unique clamping assembly includes a pair of jaws having respective gear racks engaging a single pinion gear on a motor output shaft for linear movement of the jaws by equal distances in opposite directional. A microprocessor controls the level of current to the motor, thereby adjusting the clamping force applied to the cable, and increases this force during the stripping operation, when maximum axial force is applied to the cable. A guide bushing establishes the radial position of the cable axis and is stationary during blade movement, thereby permitting the opening in the bushing to closely approximate the cable diameter. The position of the bushing is adjustable to align the central axis of the bushing opening with that of the blade cutting edge. The bushing is also movable to an inoperative position to permit unobstructed access to the blade for replacement thereof. A pair of gripping members are movable to engage the severed portion of the covering layer to assist in the stripping operation, and a unique combination of hardware and software is provided for calibrating the position of the gripping members at equal distances from the axis of the cable.