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    • 4. 发明专利
    • FITTING STRUCTURE FOR VIBRATION CONTROL DEVICE IN VIBRATION CONTROL WALL
    • JPH10259676A
    • 1998-09-29
    • JP8457097
    • 1997-03-18
    • OILES INDUSTRY CO LTD
    • SHIKI KAZUAKIMOCHIMARU MASAMI
    • E04H9/02E04B1/98
    • PROBLEM TO BE SOLVED: To reduce the manufacturing cost by connecting a relay member suspended from the lower face of an upper beam member, a resistance plate butted to the lower end face of the relay member, and a splice plate stridingly kept in contact with the side faces of the relay member and the resistance plate. SOLUTION: Column members 1 with end section beam members 4 are connected upward and built up, and the end section beam members 4 are connected by an intermediate beam member 5. A relay member 20 is fixed to the upper face of a lower beam member 2B in the installation space K of a vibration control device S, and the relay member 20 is fixed to the lower face of an upper beam member 2A. A fitting plate is fixed to the lower face of the casing 10 of the vibration control device S, and a resistance plate 12 is temporarily fixed and carried into the installation space K. The relay member 20 and fitting plate are butted, a splice plate 33 is kept in contact with their side faces, and they are fastened by fastening tools to fix the lower section of the vibration control device S. The resistance plate 12 is faced to the relay member 20, a splice plate 21 is kept in contact with their side faces, and they are fastened by fastening tools to fix the upper section of the vibration control device S. The manufacturing cost can be reduced.
    • 6. 发明专利
    • BASE ISOLATION-SUPPORTING DEVICE
    • JP2000161425A
    • 2000-06-16
    • JP34061198
    • 1998-11-30
    • OILES INDUSTRY CO LTDOKUMURA CORP
    • ARAI YOSHIKAZUSHIKI KAZUAKIOTSUKA SUSUMUFUNAYAMA YUJI
    • A47F3/00E04B1/36F16F15/02
    • PROBLEM TO BE SOLVED: To release a base isolating function during exhibiting or conveying works of art or antiques in order to enhance the safety or the workability, and exert the base isolating function when the base isolating function is required at the time when an earthquake occurs and so on. SOLUTION: A base isolation stand 1 is provided with a base 5, a moving body 6 provided to be laterally movable relative to the base 5, a means 7 for preventing the lateral movability of the moving body 6 in relation to the base 5, and an earthquake sensing means for sensing an earthquake. The preventing means 7 is arranged in the base 5 so that it is immovable in the direction in which the moving body 6 is movable, and provided with a movable locking member arranged so that its one end is engaged with the moving body 6, an energizing means for energizing the locking member in the direction of releasing the engagement of one end of the locking member with the moving body 6, and an electric engaging means for engaging one end of the locking member with the moving body 6 against the energizing force of the energizing means when it is energized, and to hold the engagement. With this electric engaging means, holding of the engagement of one end of the locking member with the moving body 6 is released when it is unenergized, or by an earthquake detecting signal from the earthquake sensing means.
    • 9. 发明专利
    • BASE ISOLATION DEVICE
    • JPH1122781A
    • 1999-01-26
    • JP19192497
    • 1997-07-01
    • OKUMURA CORPOILES INDUSTRY CO LTD
    • OTSUKA SUSUMUHIRANO SUSUMUSUZUKI KIYOHARUSHIKI KAZUAKI
    • E04B1/36E04H9/02F16F15/02
    • PROBLEM TO BE SOLVED: To provide a base isolation device to provide a base isolation function in a state that the axis thereof is pointed constantly in a specified direction without the occurrence of a slip when oscillation occurs due to the occurrence of an earthquake. SOLUTION: A plurality of roller bearings 4 consisting of eccentric rollers 4a and 4b positioned vertically eccentric from an axis between upper and lower nipping members 1 and 2 are located between upper and lower nipping members 1 and 2. During the occurrence of an earthquake, oscillation of a lower nipping member 1 during the occurrence of an earthquake is absorbed by the roller bearing 4, vibration energy is damped, and at the two end parts of the roller bearing 4, pinions 10 and 11 positioned on the same central line as those of the eccentric rollers 4a and 4b are integrally arranged. One pinion 11 positioned eccentrically to the lower side is engaged with a lack 13 arranged on the under surface of an upper nipping member 2. The pinion 10 positioned eccentrically to the upper side is engaged with a rack 12 arranged on the upper surface of a lower nipping member 1, and the roller bearing 4 is rolled without a slip.
    • 10. 发明专利
    • VIBRATION DAMPER FOR BUILDING
    • JPH1082208A
    • 1998-03-31
    • JP26141996
    • 1996-09-09
    • OKUMURA CORPOILES INDUSTRY CO LTD
    • OTSUKA SUSUMUKAWAI NOBUYASUSHIMODA IKUOSHIKI KAZUAKIMOCHIMARU MASAKI
    • E04H9/02F16F15/02
    • PROBLEM TO BE SOLVED: To provide a vibration damper capable of being stably installed on the roof floor of a building and displaying supenior appearance and being matched excellently with the building while being able to effectively inhibit the vibrations of the building at the time of an earthquake and a strong wind. SOLUTION: First vibration damping mechanisms 4A, in which rollers 9 are interposed among the upper and lower holding members, in which opposed surfaces are formed in recessed arcuate surfaces 7b, are interposed among the four-corner section opposed surfaces of rectangular upper-side frame body 1 and intermediate frame body 2. Second vibration damping mechanisms 4B having the same structure as the vibration damping mechanisms 4A are interposed among the four-corner section opposed surfaces of rectangular intermediate frame body 2 and lower-side frame body 3. The upper end section of a weight 6 is fixed onto the upper-side frame body 1, and the weight 6 is incorporated under the state, in which the weight 6 is hung down in a space section 5 surrounded by internal surfaces in the four directions of the frame bodies 1-3. Accordingly, the height and center of gravity of the whole device are lowered while the weight 6 is rocked before and behind and left and right with a phase lag for a specified period at the time of the generation of an earthquake, and quakes are inhibited through the first and second vibration damping mechanisms 4A, 4B.