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    • 2. 发明专利
    • Base-isolating device
    • 基座隔离装置
    • JP2005048837A
    • 2005-02-24
    • JP2003204868
    • 2003-07-31
    • Kenichi KawaguchiOkabe Co Ltd岡部株式会社健一 川口
    • KAWAGUCHI KENICHIMATSUMOTO KENSHOERA YOSHIYUKIABE KEIICHIABE JUNICHIROTAGUCHI TOMOYASUOKUBO SUNAO
    • F16F15/02
    • PROBLEM TO BE SOLVED: To provide a base-isolating device in which a rolling means is suitably guided along a guiding direction of a guiding member, and a smooth relative movement of the rolling means with the guiding member is not obstructed even corresponding to a rapid seismic action in the different direction from the guiding direction.
      SOLUTION: The device is provided with guide rails 68, 69 equipped with guide supporting edges 70, 71 formed to gradually enlarge an interval between mutual outside edges arranged mutually spaced from the center to both the outer edges, and tapered rolling parts 129, 131 rolling in contact therewith from the outside for the guide supporting edges 70, 71, and consisting of circular cross-sections taperingly formed inward. The restoring function is imparted with the displacement in the height direction occurred when the tapered rolling parts 129, 131 move from the center into the outer end side along the guide supporting edges 70, 71. The guide supporting edge formed to gradually lessen the interval between the mutual inside edges of the guide rail from the center into both the outer edges can be also used.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种基体隔离装置,其中滚动装置沿着引导构件的引导方向被适当地引导,并且滚动装置与引导构件的平滑的相对运动也不被阻碍,甚至对应于 在与引导方向不同的方向上进行快速的地震作用。 解决方案:该装置设置有导轨68,69,其具有导向支撑边缘70,71,导向支撑边缘70,71形成为逐渐扩大彼此相对于中心布置成两个外边缘的相互外边缘之间的间隔,以及锥形滚动部件129 131从导向支撑边缘70,71的外部滚动接触,并且由向内锥形地形成的圆形横截面构成。 当锥形滚动部件129,131沿着导向支撑边缘70,71从中心移动到外端侧时,恢复功能被赋予高度方向上的位移。引导支撑边缘形成为逐渐减小 也可以使用导轨从中心到两个外边缘的相互内边缘。 版权所有(C)2005,JPO&NCIPI
    • 3. 发明专利
    • Structure and method for reinforcing planar structure
    • 用于加固平面结构的结构和方法
    • JP2013177795A
    • 2013-09-09
    • JP2012236647
    • 2012-10-26
    • Okuju Co Ltd株式会社オクジューKenichi Kawaguchi健一 川口
    • KAWAGUCHI KENICHI
    • E04G23/02E04B9/06
    • PROBLEM TO BE SOLVED: To provide a structure for reinforcing a planar structure, which has excellent workability while having a simple structure and which can increase strength against earthquakes, self-weight and the like, and a method for reinforcing the planar structure.SOLUTION: A planar structure 4, which is provided via a structural skeleton 6 and inside which a space is formed, is reinforced. A string-like member 5 having an end connected to the structural skeleton 6, and a holding member 10 for holding the string-like member 5 on the space-side surface 4a of the planar structure 4 are provided. The string-like member 5 is arranged in a nonlinear shape on the surface 4a via the holding member 10, and the holding member 10 makes the string-like member 5 held in such a manner as to be slidable in the axial direction of the string-like member 5.
    • 要解决的问题:提供一种加强平面结构的结构,其具有优异的可加工性,同时具有简单的结构,并且可以增加抗地震,自重等的强度,以及增强平面结构的方法。解决方案: 经由结构骨架6提供并且形成有空间的平面结构4被加强。 具有连接到结构骨架6的端部的线状构件5和用于将线状构件5保持在平面结构4的空间侧表面4a上的保持构件10。 线状构件5经由保持构件10以非线形的形状配置在表面4a上,并且保持构件10使得线状构件5保持为能够在弦的轴向上滑动 像会员5。
    • 4. 发明专利
    • Damping device of structure
    • 阻尼结构装置
    • JP2005083401A
    • 2005-03-31
    • JP2003312704
    • 2003-09-04
    • Kajima CorpKenichi Kawaguchi健一 川口鹿島建設株式会社
    • YOSHINAKA SUSUMUKAWAGUCHI KENICHI
    • E04H9/02F16F15/02
    • PROBLEM TO BE SOLVED: To provide a damping device of a structure having high damping effect even in a part deviated from a resonance point of the structure and a chained mass damper when the chained mass damper is provided in the structure.
      SOLUTION: This damping device 1 provided in the building structure M has a TMD 2 provided with a weight 11 and a spring 12. A lock mechanism 3 is attached to the weight 11 in the TMD 2, and a vibration sensor 4 for detecting vibration of the building structure M is provided in the building structure M. The lock mechanism 3 and the vibration sensor 4 are connected with a controller 5, which turns on the lock mechanism 3 when vibration of the building structure M detected by the vibration sensor 4 is deviated from a region of main vibration system inherent vibration number to suppress moving of the weight 11.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种在结构中设置链式质量阻尼器时,即使在偏离结构的共振点的部分中具有高阻尼效果的结构的阻尼装置和链式质量阻尼器。 解决方案:设置在建筑结构M中的该阻尼装置1具有设置有重物11和弹簧12的TMD 2。锁定机构3安装在TMD 2中的重物11上,以及振动传感器4,用于 在建筑结构M中设置检测建筑结构M的振动。锁定机构3和振动传感器4与控制器5连接,当由振动传感器检测到的建筑结构M的振动时,控制器5接通锁定机构3 4偏离主振动系统固有振动次数的区域,以抑制重量的移动11.版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Base isolation device
    • JP2004084313A
    • 2004-03-18
    • JP2002247021
    • 2002-08-27
    • Kenichi KawaguchiOkabe Co Ltd岡部株式会社川口 健一
    • KAWAGUCHI KENICHIMATSUMOTO KENSHOERA YOSHIYUKIABE KEIICHIABE JUNICHIROFURUKAWA TORUTAGUCHI TOMOYASU
    • E04H9/02F16F15/02
    • PROBLEM TO BE SOLVED: To provide a base isolation device capable of taking a large range of operation for the size of the device, having an insulating function against the largeness of amplitude, adding a revertive function or a trigger function in addition to the insulating function and enlarging the control of a range of operation as compared with the scale of device.
      SOLUTION: The base isolation device includes an upper supporting shaft 7 supported on a universal supporting section 6 of a skeleton side 2 in a rotatable manner and an intermediate supporting body 10 having a disc-like section 11 movably provided along the axis of an upper supporting shaft 9 supported on a swivel supporting section 8 of the ground side 4 in a rotatable manner, an upper supporting body 12 placed between the disc-like section 11 of the intermediate supporting body 10 and the skeleton side 2 and a lower supporting body 13 placed between the disc-like section 11 of the intermediate supporting body 10 and the ground side 4, and at least one of the upper supporting body 12 and the lower supporting body 13 is made to come into contact with supporting surfaces 14 and 15 formed in the disc-like section 11 of the intermediate supporting body 10 to enable it to make relative displacement. The supporting surfaces can be formed on the upper supporting side 12 or the lower supporting body side 13. The supporting shafts 7 and 9 can be formed into one.
      COPYRIGHT: (C)2004,JPO