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    • 6. 发明专利
    • Fall preventing implement for bolt, nut, or the like
    • 防止螺栓,螺母或类似物的执行
    • JP2011117558A
    • 2011-06-16
    • JP2009276700
    • 2009-12-04
    • Skytech Co LtdTlc:KkToden Doso Denki KkTokyo Electric Power Co Inc:The東京電力株式会社東電同窓電気株式会社株式会社Tlc株式会社スカイテック
    • MUKOUDA HIROZUMITAIRA MASAMICHIUTSUGI YASUNOBUSUZUKI YASUHIRO
    • F16B41/00E04G21/32F16B37/14H02G1/02
    • PROBLEM TO BE SOLVED: To provide a fall preventing implement for a bolt, a nut, or the like making bolt head and nut locking work extremely easy and secure with simple structure by using a magnet for attracting with powerful magnetic force. SOLUTION: The fall preventing implement includes at least two sets of implements each including a holding part 2 holding a small article formed of a magnetic body such as the bolt or nut, and a suspension-attaching part 3 connecting the holding part 2 in a suspendible manner. The holding part 2 in each set has a plate-like magnet 2a capable of supporting the bolt by attracting the head plane of the bolt and also supporting the side face of the small article such as the nut, and a frame body 2b holding the magnet 2a. Each suspension-attaching part 3 is formed of a flexible material, and one end is connected to a rotary joint 2c provided at the frame body 2b of each holding part 2. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供一种用于螺栓,螺母等的防坠落工具,通过使用磁铁吸引强大的磁力,使得螺栓头和螺母锁定工作非常容易且牢固,结构简单。 解决方案:防坠落装置包括至少两组装置,每组包括保持部件2,保持部件2保持由诸如螺栓或螺母的磁体形成的小物品,以及悬挂安装部分3,其连接保持部件2 以可阻止的方式。 每组中的保持部件2具有能够通过吸引螺栓的头部平面来支撑螺栓并且还支撑诸如螺母的小物品的侧面的板状磁体2a和保持磁体的框架体2b 2A。 每个悬挂安装部分3由柔性材料形成,一端连接到设置在每个保持部分2的框架体2b处的旋转接头2c。版权所有(C)2011,JPO&INPIT
    • 7. 发明专利
    • Repair method of direction changing machine of guide rail of steel tower or the like, and its repair tool
    • 钢塔导轨方向更换机修理方法及其维修工具
    • JP2014150839A
    • 2014-08-25
    • JP2013020711
    • 2013-02-05
    • Tokyo Electric Power Co Inc:The東京電力株式会社Tlc:Kk株式会社TlcSkytech Co Ltd株式会社スカイテック
    • KOBAYASHI KATSUYAISHIGE HIROYUKIKOMATSUZAKI TSUGIOIIJIMA YASUNOBUSUZUKI YASUHIRO
    • A62B35/00F16B5/02
    • PROBLEM TO BE SOLVED: To easily and efficiently remove a rotating shaft of a direction changing machine without the need for a time and labor of a worker, and to repair it.SOLUTION: A direction changing machine C is sandwiched by first and second rod-shaped frame bodies 1, 2, and the direction changing machine and the rod-shaped frame bodies are fixed, a core shaft which protrudes from the back face of a support frame body 50 of the direction changing machine C is inserted into a notch 2a formed at the second rod-shaped frame body, and made to protrude to the external face of the second rod-shaped frame body 2, long bolts 4, 5 supported to both ends of the first and second rod-shaped frame bodies 1, 2 are arranged, the end of a long nut 10 screwed to a tip of an extrusion bolt 8 which penetrates the center of a third rod-shaped frame body 3 is screwed to a core bolt part of the core shaft of the direction changing machine C, the long bolts 4, 5 are inserted into both ends of the third rod-shaped frame body 3 to fix the third rod-shaped frame body 3, the extrusion bolt 8 is moved and made to protrude by turning an extrusion nut 9 screwed to the external periphery of the extrusion bolt 8, and the core shaft in which the core bolt part is screwed to the long nut 10 is extruded and removed.
    • 要解决的问题:为了容易且有效地移动换向机的旋转轴而不需要劳动者的时间和劳动,并且对其进行修理。解决方案:方向改变机C被第一和第二杆 - 形状的框体1,2和方向切换机以及杆状框体固定,从方向切换机C的支撑框体50的背面突出的芯轴插入形成的切口2a 在第二杆状框架体上,突出到第二杆状框体2的外表面,支撑在第一和第二杆状框体1,2的两端的长螺栓4,5分别为 螺钉连接到贯穿第三棒状框体3的中心的挤压螺栓8的前端的长螺母10的端部旋入方向切换机C的芯轴的芯螺栓部, 长螺栓4,5插入第三个的两端 杆状框体3固定第三棒状框体3,通过旋转挤压螺栓8的外周部的挤出螺母9,使挤压螺栓8移动并突出,其中, 将螺母部分螺纹连接到长螺母10被挤压和移除。
    • 8. 发明专利
    • DEFORMATION ADJUSTABLE CROSS RAIL
    • JPS62264838A
    • 1987-11-17
    • JP10681186
    • 1986-05-12
    • MITSUBISHI HEAVY IND LTD
    • SUZUKI YASUHIRO
    • B23Q1/00B23Q1/58B23Q1/72B23Q11/00
    • PURPOSE:To enable the deformation of a scroll to be optionally adjusted during operation of a machine, by mounting plural hydraulic jacks to be interposed between a beam member and a cross rail main unit and externally providing a device which separately controls the hydraulic jacks. CONSTITUTION:A cross rail main unit 20 is supported to a beam member 21 through the push-pull action of hydraulic jacks 23 by suitably actuating the hydraulic jack 23 in a necessary place. If a cross rail 15 flexes downward, the hydraulic jack 23, located in the bottom end part of the beam member 21 in the flection position, is actuated, and the flection of the cross rail 15 is corrected by lifting the cross rail main unit 20. Similarly the cross rail 15 differently flexes when a spindle head 17 is located inside and outside a column 13, accordingly the flection is corrected by actuating the suitably necessary hydraulic jack 23. And peeling cutting is performed by twisting the cross rail 15 to tilt a saddle, spindle head 17, ram 16 and a cutter as a whole.
    • 10. 发明专利
    • FEED CONTROLLER WITH FLEXIBILITY COMPENSATION
    • JPS63318241A
    • 1988-12-27
    • JP15003187
    • 1987-06-16
    • MITSUBISHI HEAVY IND LTD
    • SUZUKI YASUHIRO
    • B23Q15/18
    • PURPOSE:To make a high precision work possible by providing a feed controller with a compensation determining part so as to make it possible to compensate displacement of a mechanical structure element by cutting force. CONSTITUTION:For control of a motor 10, a command value 18 is read, a numerical value of a moving quantity determined in a moving quantity determining part 13 added with a compensating value from a compensation determining part 14 is inputted to a shaft motion control part 12, and a controlled command value is changed into an output current by a servo amplifier 11, so the motor 10 is actuated. At this time, the output current is detected by a cutting force detecting part 15 and transmitted to a compensation determining part 14. A displacement of a mechanical structure element is selected for the transmitted output current based on relation between the preliminarily given output motor value for the motor 10 and the displacement of the mechanical structure element, and this is added to the moving quantity determined by the moving quantity determining part 13. Since the motor 10 is thus actuated by a compensated value for the command value for a cutting tool position based on the displacement of the mechanical structure element, the cutting tool 1 can be controlled to be at a position for which displacement of the mechanical structure element is compensated.