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    • 11. 发明专利
    • Steel tower raising device
    • 钢塔升降装置
    • JP2006052530A
    • 2006-02-23
    • JP2004232693
    • 2004-08-09
    • Nasu Denki Tekko Co LtdYurtec Corp株式会社ユアテック那須電機鉄工株式会社
    • SHIROKURA YUJINAGASAWA CHUKICHISHIZUKUISHI MINORUSAITO HIROSHISAKUMA KATSUSHIARAIWA YOSHIAKI
    • E04H12/10
    • PROBLEM TO BE SOLVED: To provide a steel tower raising device facilitating installing work with less limitations in use.
      SOLUTION: The steel tower raising device comprises a pedestal 3 on which a transmission steel tower 17 is installed to be raised and which is installed on the ground, a columnar body 5 extending upward from the pedestal 3 in a space between supporting columns 17a of the transmission steel tower 17, a frame body 7 vertically movable being guided by the columnar body 5 while surrounding the columnar body 5, a plurality of arms 9 overhanging from the upper and lower ends of the frame body 7 toward the supporting columns 17a of the transmission steel tower 17, grippers 33 provided at the tip ends of the arms 9 for gripping the supporting columns 17a of the transmission steel tower 17, a drive mechanism for vertically moving the frame body 7 with a plurality of chains 13 connected to the frame body 7 and a plurality of drive units 11 corresponding to the plurality of chains 13, detecting means 41, 43 for detecting information corresponding to the inclination of the transmission steel tower 17, and a control part 15 for individually controlling the operation of the plurality of drive units 11 in accordance with the information detected by the detecting means 41, 43.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种便于安装作业的钢塔升降装置,其使用限制较少。 解决方案:钢塔提升装置包括:基座3,传动钢塔架17安装在该基座3上,并安装在地面上;柱形主体5,其从支座3向上延伸,支撑柱 传输钢塔17的17a,可由柱状体5在柱状体5周围引导而垂直移动的框架体7,从框架体7的上端和下端向支撑柱17a突出的多个臂9 传动钢塔17的夹持器33,设置在用于夹持传动钢塔17的支撑柱17a的臂9的前端的夹持器33,用于使框架体7垂直移动的驱动机构,多个链条13连接到 框架体7和对应于多个链条13的多个驱动单元11,用于检测与传动钢丝束的倾斜相对应的信息的检测装置41,43 呃17,以及控制部分15,用于根据由检测装置41,43检测到的信息分别控制多个驱动单元11的操作。(C)2006年,JPO和NCIPI
    • 13. 发明专利
    • Method and apparatus for batteryless control on wind turbine generator
    • 风力发电机无电气控制方法与装置
    • JP2008104286A
    • 2008-05-01
    • JP2006284455
    • 2006-10-19
    • Nasu Denki Tekko Co Ltd那須電機鉄工株式会社
    • TOKUYAMA EIKINAKAMURA HIDEAKIKOKAJI TAKAYUKI
    • H02P9/00F03D9/00
    • Y02E10/72
    • PROBLEM TO BE SOLVED: To provide a method and an apparatus for batteryless control on a wind turbine generator wherein power can be supplied to CPU without fail even at the time of short-circuiting and a short-circuiting brake and the like can be appropriately controlled without use of a battery or an external power supply. SOLUTION: In normal times, power generated by a wind turbine generator is directly supplied to a control CPU. At the time of short-circuiting braking, a regenerative current arising from short-circuiting is utilized to supply power to the control CPU. Thus, the wind turbine generator can be controlled completely independently of a battery or an external power supply. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供一种在风力发电机上进行无电池控制的方法和装置,其中即使在短路时也可以向CPU提供电力,并且短路制动等可以 在不使用电池或外部电源的情况下进行适当的控制。 解决方案:通常情况下,风力发电机产生的电力直接提供给控制CPU。 在短路制动时,利用短路产生的再生电流向控制CPU供电。 因此,可以完全独立于电池或外部电源来控制风力涡轮发电机。 版权所有(C)2008,JPO&INPIT
    • 14. 发明专利
    • Ball mill device, method for producing hydrogen storage alloy powder using the device and hydrogen storage alloy powder
    • 球磨装置,使用装置和氢储存合金粉生产氢储存合金粉的方法
    • JP2006111909A
    • 2006-04-27
    • JP2004299008
    • 2004-10-13
    • Nasu Denki Tekko Co Ltd那須電機鉄工株式会社
    • ABE MASATAKETOKUYAMA EIKIOKAZAKI DAISUKEKOKAJI TAKAYUKI
    • B22F1/00B02C17/04
    • PROBLEM TO BE SOLVED: To provide a high energy ball mill device capable of producing high performance hydrogen storage alloy powder which can be made large and also can be industrialized, to provide a method for producing hydrogen storage alloy powders using the device, and to provide hydrogen storage alloy powders.
      SOLUTION: In the ball mill device 1, a vessel 10 chargeable with raw material powders and balls 20 and rotatably driven is provided, a rotary body 30 fitted with a plurality of blades 31 are arranged at the inside 10a of the vessel, and the vessel 10 and the rotary body 30 are rotated to the opposite directions. Since the device 1 can be made large and can be industrialized in spite of its high energy, by subjecting raw material powders to mechanical alloying using the ball mill device 1, the high performance hydrogen storage alloy powders can be produced on an industrial level.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决的问题:为了提供能够制造可以制造大型并且可以工业化的高性能储氢合金粉末的高能球磨装置,以提供使用该装置制造储氢合金粉末的方法, 并提供储氢合金粉末。 解决方案:在球磨机装置1中,设置有能够以原料粉末和球20充电并且可旋转地驱动的容器10,在容器的内部10a设置有装配有多个叶片31的旋转体30, 容器10和旋转体30向相反的方向转动。 由于能够使装置1大而且能够高效率地工业化,所以通过使用球磨装置1对原料粉末进行机械合金化,可以在工业上制造高性能的储氢合金粉末。 版权所有(C)2006,JPO&NCIPI
    • 19. 发明专利
    • Anchor structure for inter-pole branching of overhead wire
    • 用于横梁分支的锚固结构
    • JP2000078731A
    • 2000-03-14
    • JP25465998
    • 1998-08-26
    • Nasu Denki Tekko Co Ltd那須電機鉄工株式会社
    • YOKOYAMA HIDEHIROHASEGAWA MASAYUKI
    • H02G7/02
    • PROBLEM TO BE SOLVED: To simplify the branching of an overhead wire between poles much more, to execute branching at any place between the poles, and to easily execute branching work. SOLUTION: In a part where the trunk of an overhead wire suspended between poles at the part, a trunk 3 is inserted into a shaft hole from an opening groove 2 in a drum-like anchor tool 1 whose cross section is almost a C-type and the trunk 3 is covered by the anchor tool 1. A restraint wire 5a at one end of an anchor clamp 5 grasping one end of a branch line 4 is wound to the outer periphery of the anchor tool 1. The branch line 4 and the trunk 3 electrically connect both ends of a branch auxiliary line 7 through wire connection tools 8 and 9. The center part of a binding line 6 whose two sides are wound to the trunk 3 by prescribed length is put in the notch grooves of respective flanges 1a installed in the two ends at the outer periphery of the anchor tool 1. The binding line 6 is stretched on the restraint wire 5a of the anchor clamp 5.
    • 要解决的问题:为了简化极点之间的架空线的分支,在极点之间的任何位置执行分支,并且容易地执行分支工作。 解决方案:在架空电线悬挂在部件两极之间的部分,主体3从滚筒式锚具1的开口槽2插入轴孔,横截面几乎为C型 并且主体3被锚固工具1覆盖。抓住支线4的一端的锚固夹具5的一端处的约束线5a被缠绕到锚固工具1的外周。分支线4和 主干3通过线连接工具8和9将分支辅助线7的两端电连接。将两侧以规定长度缠绕在主干3上的捆扎线6的中心部分放置在相应凸缘1a的切口槽中 安装在锚固工具1的外周的两端。捆扎线6在锚固夹5的约束线5a上拉伸。