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    • 1. 发明授权
    • Conduit for a control cable
    • 管道用于控制电缆
    • US6151983A
    • 2000-11-28
    • US289383
    • 1999-04-12
    • Yoshio MisakiMasahiro YasuiHideki Imai
    • Yoshio MisakiMasahiro YasuiHideki Imai
    • F16C1/26F16G9/04
    • F16C1/26Y10T74/20456
    • In a conduit for a control cable, it is possible to ensure a good rigidity of a stranded portion 3A having a plurality of strand line elements 3 which are wound to an outer surface of the liner 2 without increasing a diameter (8.0 mm or less) of a conduit 1. In order to secure a greater polar moment of inertia of area, a combinatorial relationship between the number (N) of the strand line elements 3 and a diameter (.phi.) of the strand line element 3 is selected from the following group A, B and C. Where A:=.phi.=1.1.about.1.2 mm and N=13, B: .phi.=1.2.about.1.35 mm and N=12, C: .phi.=0.95.about.1.1 mm and N=14.
    • 在用于控制电缆的导管中,可以确保具有多个绞合线元件3的绞合部分3A的良好的刚度,该绞合线部件3在不增加直径(8.0mm或更小)的情况下缠绕在衬垫2的外表面上, 为了确保更大的极大的面积惯性矩,股线系元件3的数量(N)和股线元件3的直径(phi)之间的组合关系从以下选择 组A,B和C.其中A:= phi = 1.1差异1.2mm,N = 13,B:phi = 1.2差异1.35mm,N = 12,C:phi = 0.95差异1.1mm,N = 14。
    • 3. 发明授权
    • Methods and apparatus for calculating routing arrangements for control cables
    • 用于计算控制电缆的布线布置的方法和装置
    • US07013236B2
    • 2006-03-14
    • US10450115
    • 2001-12-12
    • Kazuyoshi NonoYoshikatsu TsugeTakayuki AshikawaYoshio MisakiMasami Wakita
    • Kazuyoshi NonoYoshikatsu TsugeTakayuki AshikawaYoshio MisakiMasami Wakita
    • G01R31/02
    • G06F17/5095G06F17/5018G06F2217/36
    • The present invention provides a method for predicting a routing arrangement for control cable without preparing experimental control cables. In the method according to the present invention, characteristics of a control cable to be laid are obtained (S1, S2, and S3). The characteristics of the control cable can be obtained by subjecting a test piece of control cable to a known test (tensile test). Next, a length of the control cable and a condition for connecting the control cable are provided as conditions for a computation (S4 and S5). Then, the given length of the cable, the given condition for connecting the cable, and the obtained characteristic of the control cable are used for a computation model, which was formed by dividing the control cable into a plurality of elements, in order to perform a finite element method, and, thus, a routing arrangement is calculated (S7).
    • 本发明提供了一种用于在不准备实验控制电缆的情况下预测控制电缆的布线布置的方法。 在根据本发明的方法中,获得要铺设的控制电缆的特性(S 1,S 2和S 3)。 控制电缆的特性可以通过将控制电缆的测试片进行已知的测试(拉伸试验)来获得。 接下来,提供控制电缆的长度和用于连接控制电缆的条件作为计算的条件(S 4和S 5)。 然后,将电缆的给定长度,用于连接电缆的给定条件和所获得的控制电缆的特性用于通过将控制电缆分成多个元件而形成的计算模型,以便执行 有限元法,计算出路由布置(S 7)。
    • 5. 发明授权
    • Mechanism for automatically setting push-pull control cable device in standby/cancel mode
    • 自动设置推挽控制电缆设备处于待机/取消模式的机制
    • US06349613B1
    • 2002-02-26
    • US08728829
    • 1996-10-10
    • Yoshikatsu TsugeYoshio Misaki
    • Yoshikatsu TsugeYoshio Misaki
    • F16C110
    • F16C1/22F16C1/16Y10T74/20408Y10T74/20462
    • A push-pull control cable device for automatically setting same in standby or a cancel mode. The device has an outer casing tube on which a tubular cap has an end fixed stationary relative thereto. An inner cable extends longitudinally guided through the tubular cap and into the device's outer casing tube for transmission of a desired control force. A member slidable axially in the tubular casing is disposed adjacent an opposite end thereof and has a reduced diameter tubular portion extending axially from the tubular cap. Inner cable extends through an opening in the slidable member and has terminal end extending into the tubular portion. A terminal block fixed to the terminal end is slidable in the tubular portion. An intermediate block slidable in the tubular cap is fixed to the inner cable spaced axially from the slidable member. A coil spring between intermediate block and the slidable member applies in an extended state a biasing force effectively causing the terminal block to bear against the slidable member in the absence of a force in the device restraining the inner cable from travel longitudinally toward the device so that the device assumes an operational standby mode for application of a push-pull control force by the depression of the slidable element or pulling it in a direction away from the device.
    • 一种推挽控制电缆设备,用于在待机或取消模式下自动设置相同。 该装置具有一外管套管,一管状帽具有相对于其固定固定的端部。 内缆线沿纵向引导穿过管状盖并进入装置的外壳管中以传递所需的控制力。 在管状壳体中可轴向滑动的构件邻近其相对端设置并且具有从管状帽轴向延伸的直径减小的管状部分。 内部电缆穿过可滑动构件中的开口并且具有延伸到管状部分中的终端。 固定到终端的端子块可在管状部分中滑动。 可在管状帽中滑动的中间块固定到与可滑动构件轴向间隔开的内部电缆。 中间块和可滑动构件之间的螺旋弹簧以伸展状态施加偏压力,有效地使端子块在设备中不受力的情况下承受抵靠滑动构件,从而限制内部电缆纵向移动到装置,使得 设备采取操作待机模式,以通过按压可滑动元件或将其沿远离设备的方向拉动来施加推挽控制力。
    • 6. 发明授权
    • Cable joint structure
    • 电缆接头结构
    • US6121550A
    • 2000-09-19
    • US140755
    • 1998-08-25
    • Yoshio Misaki
    • Yoshio Misaki
    • H01R13/20H01R11/11H01R13/506H01R13/639H02G15/117H01R4/00
    • H01R11/11H01R13/506H01R13/639H02G15/117
    • In a cable joint structure, a first casing has a first rail member. A first end portion has a lug portion directed opposite to the first rail, and connected to one end of a first cable so that the first end portion moves along the first rail member. A second casing has a second rail member. A second end portion has a recess portion into which the lug portion interfits, and connected to one end of a second cable so that the second end portion moves along the second rail member. A rotation lock member has a groove provided on the first casing and a protrusion provided on the second casing to interfit the protrusion into the groove so as to unite the first casing and the second casing. An engagement member has an elastic engagement tip provided on the first casing and an engagement opening provided on the second casing to interfit the engagement tip into the engagement opening so as to detachably unite the first casing and the second casing.
    • 在电缆接头结构中,第一壳体具有第一轨道构件。 第一端部具有与第一轨道相对的突出部,并且连接到第一电缆的一端,使得第一端部沿着第一轨道部件移动。 第二壳体具有第二轨道构件。 第二端部具有凹部,凸耳部分相互连接在其中,并且连接到第二电缆的一端,使得第二端部沿着第二导轨构件移动。 旋转锁定构件具有设置在第一壳体上的槽和设置在第二壳体上的突起,以将突起插入槽中,以使第一壳体和第二壳体相结合。 接合构件具有设置在第一壳体上的弹性接合端头和设置在第二壳体上的接合开口,用于将接合尖端互连到接合开口中,以便可拆卸地组合第一壳体和第二壳体。