会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Apparatus for accelerating response time of active mass damper
earthquake attenuator
    • 用于加速有源质量阻尼器地震衰减器响应时间的装置
    • US5022201A
    • 1991-06-11
    • US343085
    • 1989-04-25
    • Takuji KoboriMitsuo SakamotoToshikazu YamadaIsao NishimuraKoji IshiiJun Tagami
    • Takuji KoboriMitsuo SakamotoToshikazu YamadaIsao NishimuraKoji IshiiJun Tagami
    • E04B1/98
    • E04B1/985
    • A positive vibration suppression apparatus is disclosed, which suppresses vibrations of a building caused by earthquakes or winds by applying a control force to the building. The apparatus comprises a weight provided on the top of the building in a suspended form to reduce friction and an actuator provided between the weight and the building. The vibration suppression apparatus is controlled through sensing of the vibrations of the building and weight by a sensor, whereas for excessive vibrations of the building the vibrations of the weight are made close to the vibrations of the building to protect the apparatus, because the capacity of the vibration suppression apparatus is limited. Further, in an oil hydraulic system for obtaining a great control force, small and large size oil hydraulic pumps connected to respective small and large size electric motors and an accumulator are provided in parallel, so that the apparatus is warmed up at all time for oil hydraulic control with low power consumption. Two or more vibration suppression apparatuses are controlled at the same time according to the shape of the building to cope with torsional and secondary vibration components.
    • 公开了一种正振动抑制装置,其通过向建筑物施加控制力来抑制由地震或风引起的建筑物的振动。 设备包括以悬挂形式设置在建筑物的顶部以减轻摩擦的重物和设置在重物和建筑物之间的致动器。 振动抑制装置通过传感器感测建筑物的振动和重量来控制,而对于建筑物的过度振动,重量的振动被制成接近建筑物的振动以保护装置,因为能力 振动抑制装置受到限制。 此外,在用于获得大的控制力的油压系统中,并联设置连接到各个小型和大型电动机和蓄能器的小型和大型油压泵,使得装置始终加热油 液压控制功耗低。 根据建筑物的形状同时控制两个以上的振动抑制装置,以应付扭转和二次振动分量。
    • 5. 发明授权
    • High damping structure
    • 高阻尼结构
    • US5491938A
    • 1996-02-20
    • US272032
    • 1994-07-08
    • Naoki NiwaTakuji KoboriMotoichi TakahashiNarito KurataTakayuki MizunoMasatoshi IshidaTomohiko Hatada
    • Naoki NiwaTakuji KoboriMotoichi TakahashiNarito KurataTakayuki MizunoMasatoshi IshidaTomohiko Hatada
    • E04H9/02
    • E04H9/02E04H9/028
    • A high damping device combined with the frame of a building to protect the building from seismic shock. For seismic vibration up to a predetermined level corresponding to the permissible strength of the high damping device, a damping coefficient c of the high damping device is set so as to be c.sub.3 =c=c.sub.1 with respect to a damping coefficient c.sub.3 for giving the maximum value of a damping factor h.sub.3 corresponding to a tertiary mode of vibration of the structure and a damping coefficient c.sub.1 for giving the maximum value of a damping factor h.sub.1 corresponding to a primary mode of vibration. The maximum load on the high damping device is predetermined and means are provided to prevent the high damping device from being damaged in the event that the predetermined maximum load is exceeded. The inventive combination permits the stiffness factor of the building to be reduced from a factor of 1.0 down to a factor as low as 0.3, with a proportionate reduction in steel frame mass.
    • PCT No.PCT / JP91 / 01426 Sec。 371日期:1992年6月17日 102(e)日期1992年6月17日PCT 1991年10月18日PCT PCT。 第WO92 / 83333号公报 日期:1992年5月14日。一个高阻尼装置与建筑物的框架相结合,以保护建筑物免遭地震震动。 对于与高阻尼装置的允许强度相对应的预定水平的地震振动,高阻尼装置的阻尼系数c相对于阻尼系数c3被设定为c3 = c = c1,以给出最大值 对应于结构的三次振动模式的阻尼系数h3的值和用于给出对应于主要振动模式的阻尼系数h1的最大值的阻尼系数c1。 高阻尼装置上的最大负载是预定的,并且提供装置以防止在超过预定的最大负载的情况下高阻尼装置被损坏。 本发明的组合允许建筑物的刚度因子从1.0降低到低至0.3的因子,钢框架质量的比例降低。
    • 7. 发明授权
    • Ultra-high multi-story buildings and construction thereof
    • 超高层多层建筑及其建筑
    • US5377465A
    • 1995-01-03
    • US820887
    • 1992-03-18
    • Takuji KoboriShigeru BanToshihiko KubotaOsamu NohiraNorihide KoshikaKoji KondoSadaaki MasudaYoshinori KitamuraHideo TanakaHiroomi SatoA. Scott Howe
    • Takuji KoboriShigeru BanToshihiko KubotaOsamu NohiraNorihide KoshikaKoji KondoSadaaki MasudaYoshinori KitamuraHideo TanakaHiroomi SatoA. Scott Howe
    • E04B1/34E04H1/00
    • E04B1/3404
    • An extra super multi-story building having one piece of extra super multi-story of about 200 story construction, two pieces of extra super multi-stories of about 150 story construction and one piece of extra super multi-story of about 100 story construction. Each extra super multi-story includes two through four pieces of tower-like super multi-stories of about 50 story construction and of about 50 m in diameter (floor area: about 200 m.sup.2 /story). A sky lobby is provided about every 50 stories connecting the extra super multi-stories. Four shuttle elevators lead from the ground to the sky lobbies, and a sightseeing tower and high-rise garden (sky dome) are provided at the rooftop of the extra super multi-story building. Main facilities such as offices, hotels and residences are arranged in each extra multi-story. In addition, in order to be able to construct the extra super multi-story building, the individual extra super multi-story buildings are monolithically connected with one another by girders every several ten stories, and a space truss is constructed on the outside of each extra super multi-story building.
    • PCT No.PCT / JP91 / 00341 Sec。 371日期:1992年3月18日 102(e)1992年3月18日PCT 1991年3月13日PCT公布。 WO91 / 18161 PCT出版物 日期:1991年11月28日。超级多层建筑有超过200层的超级多层建筑,超过150层的超级多层次的超级多层建筑, 大概100层建筑故事。 每个额外的超级多层楼包括大约50层建筑和直径约50米(占地面积:约200平方米/层)的两层至四层塔式超级多层楼。 每隔50层提供一个天空大厅,连接超级多层次的超级故事。 四座穿梭电梯从地面到天空大堂,另外还有超级多层建筑的屋顶设有观光塔和高层花园(天空圆顶)。 主要设施如办公室,酒店和住宅都安排在每个额外的多层次。 另外,为了能够构建超级多层建筑,个别的超级多层建筑每隔十层就通过大梁相互整体连接起来,并在每个楼层的外面建造一个空间桁架 超级多层建筑。
    • 9. 发明授权
    • Device and method for protecting a building against earthquake tremors
    • 用于保护建筑物免受地震震颤的装置和方法
    • US4922667A
    • 1990-05-08
    • US400691
    • 1989-08-30
    • Takuji KoboriShunichi YamadaShuichi Kamagata
    • Takuji KoboriShunichi YamadaShuichi Kamagata
    • E02D27/34E04H9/02
    • E02D27/34E04H9/02E04H9/028
    • A rigidity control device is provided to change the natural resonance of an entire building by varying the rigidity of selected structural members such as pillars, beams, braces or floor and pillar, wall and pillar or beam connection members, joints, and the like. The rigidity of a structural member is controlled by restraining or releasing a member from restraint or by applying a controlled force to the member. These processes are selectively combined so that the rigidity of the whole building and each section thereof is controlled by a computer according to earthquake forecast analysis. Thus, the proper rigidity of a building is determined and provided responsive to earthquake detection to prevent the building from destructive resonance caused by earthquake tremors.
    • 提供一种刚性控制装置,通过改变诸如柱,梁,支架或地板和支柱,墙壁和支柱或梁连接构件,接头等的所选结构构件的刚性来改变整个建筑物的自然共振。 结构构件的刚度通过限制或释放构件免受约束或通过对构件施加受控的力来控制。 这些过程被选择性地组合,使得整个建筑物及其每个部分的刚度由计算机根据地震预报分析来控制。 因此,建筑物的适当刚性被确定并且响应于地震检测而提供,以防止建筑物由地震震颤引起的破坏性共振。