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    • 3. 发明专利
    • Displacement transfer device
    • 位移传送装置
    • JP2006250804A
    • 2006-09-21
    • JP2005069606
    • 2005-03-11
    • Makome Kenkyusho:KkUniv Nagoya国立大学法人名古屋大学株式会社マコメ研究所
    • SHIMIZU SHIGEJIROUYAMAUCHI TSUNEO
    • G01B5/30G01D5/12G01D21/00
    • PROBLEM TO BE SOLVED: To provide a displacement transfer device suitable for building in a case to be inserted in a boring hole.
      SOLUTION: The displacement transfer device comprises a first shaft for displacement transfer arranged in the axial direction of the case, and a first input section that is mounted to the first shaft and rotates with the first shaft. A radial displacement of the case is inputted into a first input action point of the first input section, and the distance between the rotation center of the first shaft and the first input action point is set at L1. The displacement transfer device also comprises a first output section that is mounted to the first shaft and rotates with the first shaft. The displacement of a first output action point of the first output section is detected directly or indirectly detected by the displacement sensor, and the distance between the rotation center of the first shaft and the first output action point is set at L2. The distance L2 between the rotation center of the first shaft and the first output action point is made longer than the distance L1 between the rotation center of the first shaft and the first input action point.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种适用于在插入钻孔中的壳体中建造的位移传递装置。 解决方案:位移传递装置包括沿壳体的轴向布置的用于位移传递的第一轴和安装到第一轴并与第一轴一起旋转的第一输入部。 壳体的径向位移被输入到第一输入部的第一输入作用点,并且第一轴的旋转中心与第一输入作用点之间的距离被设定为L1。 位移传递装置还包括安装到第一轴并与第一轴一起旋转的第一输出部。 由位移传感器直接或间接地检测第一输出部的第一输出作用点的位移,将第一轴的旋转中心与第一输出作用点之间的距离设定为L2。 使第一轴的旋转中心与第一输出作用点之间的距离L2比第一轴的旋转中心与第一输入动作点之间的距离L1长。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Cylinder containing scale therewithin
    • 包含尺寸的气缸
    • JPS58225205A
    • 1983-12-27
    • JP10868782
    • 1982-06-24
    • Makome Kenkyusho:Kk
    • KAMEWAKA SHINICHISHIMIZU SHIGEJIROUHEGI NOBUHIRO
    • F15B15/28
    • F15B15/2815
    • PURPOSE:To prevent the cylinder from becoming larger and the arrangement from becoming intricate by a structure wherein a hole is provided in a piston rod and a scale and the like are assembled within the hole in a device, in which the cylinder is controlled by measuring the feed of the piston with the scale. CONSTITUTION:A hole 3' is formed in the rod 3 of a piston 2, which is axially shiftable in a cylinder 1, and a magnetic scale 9 is fixed within the hole 3'. A reading head supporting pipe 11, in which the signal wire 10' of a reading head 10 is past, is fixed to a head cover 7. When the piston 2 is moved right or left, the magnetic scale 9 is moved together with the piston, resulting in causing the relative movement between the magnetic scale 9 and the reading head 10 by the amount same as the displacement amount of the rod 3. Consequently, the reading head 10 reads out the displacement amount of the piston 2 so that said read-out amount is fed-back to a cylinder drive section in order to control the cylinder 1.
    • 目的:为了防止气缸变大,并且通过在活塞杆和标尺等上设置孔的结构变得复杂的装置组装在装置中的孔内,其中通过测量来控制气缸 活塞与秤的进料。 构成:在活塞2的杆3上形成孔3',该活塞2在气缸1中可轴向移动,并且磁标9固定在孔3'内。 读头10的信号线10'过去的读头支撑管11固定在头盖7上。当活塞2向右或向左移动时,磁标9与活塞一起移动 导致磁标尺9与读取头10之间的相对移动量与杆3的位移量相同。因此,读取头10读出活塞2的位移量, 输出量反馈到气缸驱动部分,以便控制气缸1。
    • 7. 发明专利
    • Noncontact type frequency measuring method and stress change measuring device
    • 非连接式频率测量方法和应变变化测量装置
    • JP2003294546A
    • 2003-10-15
    • JP2002102978
    • 2002-04-04
    • Makome Kenkyusho:KkTsuneo Yamauchi常生 山内株式会社マコメ研究所
    • YAMAUCHI TSUNEOSHIMIZU SHIGEJIROU
    • G01L1/10
    • PROBLEM TO BE SOLVED: To provide a frequency measuring method for exciting elastic vibration in a vibrator from the outside by a noncontact means, and measuring the frequency of the excited elastic vibration by a noncontact means, and a stress change measuring device utilizing the frequency change.
      SOLUTION: The elastic vibration is excited by the noncontact means to the vibrator 3, and the excited elastic vibration is detected by the noncontact means to the vibrator 3. Simultaneously, a force is applied to the vibrator 3 synchronously with the vibration to continue the elastic vibration, and the frequency of the elastic vibration is determined. The magnitude of an external force working on the vibrator 3 is determined from the frequency change of the vibrator 3.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种频率测量方法,用于通过非接触装置从外部激发振动器中的弹性振动,并通过非接触装置测量激发的弹性振动的频率,以及利用应力变化测量装置 频率变化。 解决方案:弹性振动被非接触装置激励到振动器3,并且激发的弹性振动通过非接触装置被检测到振动器3.同时,与振动器3同步地施加力到振动器 继续弹性振动,确定弹性振动的频率。 根据振动器3的频率变化确定作用在振动器3上的外力的大小。(C)2004,JPO
    • 8. 发明专利
    • Over-hoisting preventive device of hoist traction machine
    • 手套牵引机的预制装置
    • JP2003276994A
    • 2003-10-02
    • JP2002086839
    • 2002-03-26
    • Kito CorpMakome Kenkyusho:Kk株式会社キトー株式会社マコメ研究所
    • KAMIYUSE HIROSHIWATANABE HISATSUGUSHIMIZU SHIGEJIROU
    • B66D3/20
    • PROBLEM TO BE SOLVED: To provide an over-hoisting preventive device free of generation of failure using a simple facility as improvement of a conventional over-hoisting preventing means involving such problems as easily broken, requiring a mounting space, and complicated in the mechanism.
      SOLUTION: The over-hoisting preventive device applies to a hoist traction machine equipped with a load sheave 2, a chain 3 wound round the sheave 2 and having a hook 7a at the end, and an over-hoisting prevention sensor 6 for the chain, wherein the arrangement consists of a magnetic sensor 6 installed on the body of the hoist traction machine and magnetizing means 4a and 4b which are installed on the hook side and no-load side of the chain 3 and whose lines of magnetic force are directed vertically.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:为了提供一种使用简单的设备来提供不产生故障的提升预防装置,作为涉及容易断裂,需要安装空间的问题的常规的提升防止装置的改进,并且复杂化 的机制。 解决方案:提升预防装置适用于配备有负载滑轮2,链轮3缠绕在滑轮2上并且在其末端具有钩7a的起重牵引机,以及用于 链条,其中,该装置由安装在起重牵引机的主体上的磁传感器6和安装在链条3的钩侧和空载侧的磁化装置4a和4b,其磁力线为 垂直指向 版权所有(C)2004,JPO