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Shock-vibration double-control three-dimensional vibration isolation support
The invention discloses a vibration double-control three-dimensional vibration isolation support, and belongs to the technical field of civil engineering damping structures. The vibration-vibration double-control three-dimensional vibration isolation support comprises a horizontal vibration isolation structure, the top of the horizontal vibration isolation structure is connected with a building structure stand column, and the horizontal vibration isolation structure is used for relieving vibration of an upper structure in the horizontal direction; the vertical vibration isolation structure comprises a support base plate and a plurality of upper connecting blocks, the upper connecting blocks are connected to the lower end of the horizontal vibration isolation structure and arranged around the axis of the horizontal vibration isolation structure, and a plurality of lower connecting blocks are arranged on the upper end face of the support base plate. The upper end face of each lower connecting block is of a wedge-shaped structure matched with the lower end face of the corresponding upper connecting block, and a high-damping rubber support is arranged between each upper connecting block and the corresponding lower connecting block. The shock-vibration double-control three-dimensional vibration isolation support disclosed by the invention not only can meet the anti-seismic requirement of a building, but also can reduce vertical vibration transmitted to an upper cover building, so that residents above can enjoy a comfortable living environment while ensuring the living safety.
本发明公开了一种震振双控的三维隔振支座,属于土木工程减震结构技术领域。该震振双控的三维隔振支座包括:水平隔震结构,顶部与建筑结构立柱连接,用于缓解上方结构在水平方向的震动;竖向隔振结构,包括支座底板和多个上连接块,所述多个上连接块连接于水平隔震结构下端,多个上连接块环绕水平隔震结构的轴心布置,支座底板的上端面设有多个下连接块,每个下连接块的上端面均为与上连接块的下端面相配合的楔形结构,每个上连接块和下连接块之间设有一个高阻尼橡胶支座。本发明的震振双控的三维隔振支座,既能满足建筑的抗震要求,又能减少竖向振动传递至上盖建筑,使上方居民在保证居住安全的同时也能享受到舒适的居住环境。
Shock-vibration double-control three-dimensional vibration isolation support
The invention discloses a vibration double-control three-dimensional vibration isolation support, and belongs to the technical field of civil engineering damping structures. The vibration-vibration double-control three-dimensional vibration isolation support comprises a horizontal vibration isolation structure, the top of the horizontal vibration isolation structure is connected with a building structure stand column, and the horizontal vibration isolation structure is used for relieving vibration of an upper structure in the horizontal direction; the vertical vibration isolation structure comprises a support base plate and a plurality of upper connecting blocks, the upper connecting blocks are connected to the lower end of the horizontal vibration isolation structure and arranged around the axis of the horizontal vibration isolation structure, and a plurality of lower connecting blocks are arranged on the upper end face of the support base plate. The upper end face of each lower connecting block is of a wedge-shaped structure matched with the lower end face of the corresponding upper connecting block, and a high-damping rubber support is arranged between each upper connecting block and the corresponding lower connecting block. The shock-vibration double-control three-dimensional vibration isolation support disclosed by the invention not only can meet the anti-seismic requirement of a building, but also can reduce vertical vibration transmitted to an upper cover building, so that residents above can enjoy a comfortable living environment while ensuring the living safety.
本发明公开了一种震振双控的三维隔振支座,属于土木工程减震结构技术领域。该震振双控的三维隔振支座包括:水平隔震结构,顶部与建筑结构立柱连接,用于缓解上方结构在水平方向的震动;竖向隔振结构,包括支座底板和多个上连接块,所述多个上连接块连接于水平隔震结构下端,多个上连接块环绕水平隔震结构的轴心布置,支座底板的上端面设有多个下连接块,每个下连接块的上端面均为与上连接块的下端面相配合的楔形结构,每个上连接块和下连接块之间设有一个高阻尼橡胶支座。本发明的震振双控的三维隔振支座,既能满足建筑的抗震要求,又能减少竖向振动传递至上盖建筑,使上方居民在保证居住安全的同时也能享受到舒适的居住环境。
Shock-vibration double-control three-dimensional vibration isolation support
一种震振双控的三维隔振支座
TANG BAIZAN (Autor:in) / DONG YUYING (Autor:in) / ZHUANG HAIYANG (Autor:in) / LUO WENJUN (Autor:in) / ZHANG JI (Autor:in) / HUANG DAWEI (Autor:in) / LIU XUCHEN (Autor:in) / XU ZIGANG (Autor:in)
23.05.2023
Patent
Elektronische Ressource
Chinesisch
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