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    • 3. 发明专利
    • Base isolated table and device for exhibition
    • 基座隔离台和展示装置
    • JP2003336685A
    • 2003-11-28
    • JP2002148468
    • 2002-05-23
    • Oiles Ind Co LtdOkumura Corpオイレス工業株式会社株式会社奥村組
    • HAYAKAWA KUNIOYASUI KENJITAKAHASHI MICHIHIROYAMADA TAKAYUKIARAI YOSHIKAZUSATO SHINJI
    • A47F3/00F16F15/02
    • PROBLEM TO BE SOLVED: To provide a base isolated table for exhibition, which can be handled easily by making it unnecessary to adjust a friction damping function in accordance with the weight of an exhibit to be placed on the table by providing a support function, restoration function and damping function in a lump. SOLUTION: In this base isolated table for exhibition, at least three base isolated devices 4 comprising a pair of supporting bases 6A and 6B and rollers 7, which are arranged between the supporting bases 6A and 6B, are interposed between a pivotable base table and a pedestal, on which an exhibit is placed. In addition, the supporting bases 6A and 6B of the base isolated devices 4 comprise groove shaped rails 10, which are formed by two inclined faces 9, which are arranged intersected each other in the rolling direction equipped on at least one side and the groove width of the groove shaped rails 10 formed narrower toward both end sections from the center section keeping their inclination angle constant, and the rollers 7 comprising at least one inclined face 15, which is made to abut on the inclined faces 9 of the groove shaped rails 10, is arranged keeping a clearance between the rollers 7 and the groove bottoms 14 of the rails 10 constant. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供用于展览的基座隔离台,其可以容易地处理,使得不需要根据要放置在桌子上的展览的重量来调节摩擦阻尼功能,通过提供支撑 功能,恢复功能和阻尼功能。 解决方案:在用于展览的基座隔离台中,包括一对支撑基座6A和6B以及布置在支撑基座6A和6B之间的辊7的至少三个基座隔离装置4插入在可枢转的底座 桌子和一个基座,放置展览。 此外,基部隔离装置4的支撑基座6A和6B包括槽形轨道10,其由两个倾斜面9形成,倾斜面9在至少一侧配置的轧制方向彼此相交并且槽宽度 槽状轨道10从中心部分的两端部形成得更窄,保持其倾斜角恒定,并且辊7包括至少一个倾斜面15,该倾斜面15与槽形轨道10的倾斜面9抵接 布置在辊子7和轨道10的槽底部14之间保持一定的间隙。 版权所有(C)2004,JPO
    • 4. 发明专利
    • Aseismatic wall and its construction method
    • ASEISMATIC WALL及其施工方法
    • JP2007197937A
    • 2007-08-09
    • JP2006015332
    • 2006-01-24
    • Okumura Corp株式会社奥村組
    • HIRAMATSU KAZUOHATTORI KOZOHAYAKAWA KUNIOHIRANO SUSUMUKISHIMOTO TAKESHISHIMIZU HIROYUKIYAMADA TAKAYUKI
    • E04B2/56E04G23/02
    • PROBLEM TO BE SOLVED: To provide an aseismatic wall and its construction method, capable of in situ construction, for rationally securing natural lighting and ventilation, while securing aseismatic strength as the aseismatic wall.
      SOLUTION: This aseismatic wall 1 is constructed in an opening part 4 partitioned by columns 2 and beams 3, and is composed of a grating body 6 forming a plurality of hole parts H in an annular frame body, by being connected to the octagonal annular frame body 5 and an oblique line (w) of the annular frame body. The mutual oblique lines of the annular frame body are arranged and mutually joined in the vertical-horizontal direction in and to the opening part in mutually opposed arrangement, and an opening S is formed by being surrounded by the vertical side (y) and the horizontal side (x) of the annular frame body. The columns and the beams are provided with precast concrete octagonal blocks 7 joined with the vertical side and the horizontal side of the annular frame body, and precast concrete equal leg trapezoidal blocks 8 arranged in a clearance between the oblique lines, the columns and the beams of the annular frame body of the octagonal blocks for sealing this clearance and joined to these blocks.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种无阻碍的墙体及其施工方法,能够在现场施工,合理确保自然采光和通风,同时确保抗震强度为抗震墙。 解决方案:该防震壁1构造在由柱2和梁3分隔开的开口部分4中,并且由在环形框体中形成多个孔部H的光栅体6构成,通过连接到 八角环形框体5和环形框体的斜线(w)。 环形框架体的相互斜线以相互相对的排列方式在开口部分中以垂直方向布置和相互连接,并且开口S由垂直侧(y)和水平面 (x)。 柱和梁设置有与环形框体的垂直侧和水平侧连接的预制混凝土八边形块7,以及布置在斜线,柱和梁之间的间隙中的预制混凝土等腿梯形块8 用于密封该间隙并连接到这些块。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Inspection support method and inspection support system for building struck by earthquake
    • 用地震建筑结构检查支援方法和检查支援系统
    • JP2006064483A
    • 2006-03-09
    • JP2004246012
    • 2004-08-25
    • Okumura Corp株式会社奥村組
    • TSURUYA MASAYUKIHAYAKAWA KUNIOWAKABAYASHI YASUHIROKAWAI NOBUYASU
    • G01M99/00E04B1/00G01M7/00G01V1/00G06Q50/00G06Q50/16
    • PROBLEM TO BE SOLVED: To provide an inspection support method and an inspection support system for buildings struck by an earthquake capable of rationally specifying an inspection work requiring part of a building struck by the earthquake. SOLUTION: By using an arithmetic unit, a vibrational response analytic model for a monitoring object building is formed based on structural data of the monitoring object building and ground data of the monitoring object building, and a seismograph which observes an earthquake acting on the monitoring object building and outputs an observed value to the arithmetic unit, is provided. Then, the arithmetic unit compares and detects whether the observed value inputted from the seismograph is not lower than a preset set value, which is presumed to require inspection work. Then, the arithmetic unit performs a vibrational response analytic of the monitoring object building, with respect to the vibration response analytic model for the monitoring object building by the use of the observed value, when the observed value is not lower than the set value. After that, the arithmetic unit specifies a part which is presumed to be relatively heavily damaged as an inspection requiring part, out of each part of the monitoring object building, from the vibration response analytic result. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够合理指定需要部分被地震袭击的建筑物的检查工作的地震的建筑物的检查支援方法和检查支援系统。 解决方案:通过使用算术单元,基于监测对象建筑物的结构数据和监测对象建筑物的地面数据形成监测对象建筑物的振动响应分析模型,以及观测地震作用的地震仪 提供监视对象构建并向算术单元输出观测值。 然后,算术单元比较和检测从地震仪输入的观测值是否不低于被认为需要检查工作的预设设定值。 然后,当观测值不低于设定值时,运算单元通过使用观测值,对于监视对象建筑物的振动响应分析模型,执行监视对象建筑物的振动响应分析。 之后,运算单元根据振动响应分析结果,将监测对象建筑物的每个部分中的被检查要求部分推定为相对严重损坏的部分。 版权所有(C)2006,JPO&NCIPI
    • 9. 发明专利
    • Insepction support method and insepction support system of building suffered from earthquake
    • 地震支援方法和建筑支援系统
    • JP2006063593A
    • 2006-03-09
    • JP2004246011
    • 2004-08-25
    • Okumura Corp株式会社奥村組
    • TSURUYA MASAYUKIHAYAKAWA KUNIOWAKABAYASHI YASUHIROKAWAI NOBUYASU
    • E04H9/02
    • PROBLEM TO BE SOLVED: To provide an inspection support method and an inspection support system of a building suffered from an earthquake, capable of reducing both facility cost and inspection work cost, by simplifying inspection work to a part requiring such an inspection by rationally specifying an inspection requiring part in advance when the building is suffered from an earthquake. SOLUTION: A monitoring object building vibration response analytical model is made on the basis of structural data and ground data on a monitoring object building. A vibration response analysis is performed by using a reference earthquake observation value to the model. A part estimated that relatively large damage is caused, is specified as the inspection requiring part among respective parts of the monitoring object building from an analytical result. An inspection facility is arranged in the inspection requiring part. A seismograph is arranged for outputting an actual earthquake observation value. When the actual earthquake observation value is a preset value or more estimated as requiring the inspection work, the inspection work is performed for determining whether or not repairing is required for the monitoring object building by using the inspection facility. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供遭受地震的建筑物的检查支持方法和检查支持系统,能够降低设备成本和检查工作成本,通过简化对需要这种检查的部件的检查工作 在建筑物遭受地震时,合理地规定需要事先提前的检查。 解决方案:建立监测对象的振动响应分析模型是在监测对象建筑物的结构数据和地面数据的基础上进行的。 通过使用模型的参考地震观测值进行振动响应分析。 从分析结果估计,造成相对较大的损坏的部件被指定为监视对象建筑物的各部分中的检查要求部分。 检验设备安排在检查要求部分。 布置地震仪用于输出实际的地震观测值。 当实际地震观测值为要求检查工作的预设值或更多值时,执行检查工作,以通过使用检查设备来确定监视对象建筑物是否需要修理。 版权所有(C)2006,JPO&NCIPI