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Anti-pulling three-dimensional vibration isolation support
The invention discloses an anti-pulling three-dimensional vibration isolation support, and belongs to the technical field of civil engineering damping structures. The anti-pulling three-dimensional vibration isolation support comprises a top plate, a central lead core rubber support, a middle plate and a bottom plate, and further comprises a plurality of inclined support sets, the top ends of the inclined support sets are connected with the central lead core rubber support through the middle plate, the bottom ends of the inclined support sets are connected with the bottom plate, and the inclined support sets are the same in structure and each comprise a wedge body, an upper inclined lead core rubber support and an upper connecting block; the top end of the upper connecting block is connected with the middle plate. The bottom end of the upper connecting block is provided with a first slope. The upper end of the wedge body is provided with a second slope; the bottom end of the wedge body is connected with the bottom plate; the upper inclined lead core rubber support is arranged between the wedge body and the upper connecting block, and the top end of the upper inclined lead core rubber support is connected with the first inclined face. The anti-pulling three-dimensional vibration isolation support has excellent horizontal and vertical vibration isolation performance, horizontal vibration caused by ground vibration and vertical vibration generated by train operation are effectively isolated, and safety and stability of an upper building structure are guaranteed.
本发明公开了一种抗拔的三维隔振支座,属于土木工程减震结构技术领域。该抗拔的三维隔振支座包括顶板、中心铅芯橡胶支座、中间板和底板,还包括:多个斜支座组,顶端通过中间板与中心铅芯橡胶支座连接,多个斜支座组的底端与底板连接,多个斜支座组结构相同,均包括楔体、上斜铅芯橡胶支座和上连接块;上连接块顶端与中间板连接,上连接块底端设有第一斜面;楔体上端设有第二斜面,楔体底端与底板连接;上斜铅芯橡胶支座设于楔体与上连接块之间,上斜铅芯橡胶支座顶端与第一斜面连接。本发明的抗拔的三维隔振支座,具备优良的水平和竖向隔振性能,有效隔离地振带来的水平振动和列车运行产生的竖向振动,确保上部的建筑结构的安全与稳定。
Anti-pulling three-dimensional vibration isolation support
The invention discloses an anti-pulling three-dimensional vibration isolation support, and belongs to the technical field of civil engineering damping structures. The anti-pulling three-dimensional vibration isolation support comprises a top plate, a central lead core rubber support, a middle plate and a bottom plate, and further comprises a plurality of inclined support sets, the top ends of the inclined support sets are connected with the central lead core rubber support through the middle plate, the bottom ends of the inclined support sets are connected with the bottom plate, and the inclined support sets are the same in structure and each comprise a wedge body, an upper inclined lead core rubber support and an upper connecting block; the top end of the upper connecting block is connected with the middle plate. The bottom end of the upper connecting block is provided with a first slope. The upper end of the wedge body is provided with a second slope; the bottom end of the wedge body is connected with the bottom plate; the upper inclined lead core rubber support is arranged between the wedge body and the upper connecting block, and the top end of the upper inclined lead core rubber support is connected with the first inclined face. The anti-pulling three-dimensional vibration isolation support has excellent horizontal and vertical vibration isolation performance, horizontal vibration caused by ground vibration and vertical vibration generated by train operation are effectively isolated, and safety and stability of an upper building structure are guaranteed.
本发明公开了一种抗拔的三维隔振支座,属于土木工程减震结构技术领域。该抗拔的三维隔振支座包括顶板、中心铅芯橡胶支座、中间板和底板,还包括:多个斜支座组,顶端通过中间板与中心铅芯橡胶支座连接,多个斜支座组的底端与底板连接,多个斜支座组结构相同,均包括楔体、上斜铅芯橡胶支座和上连接块;上连接块顶端与中间板连接,上连接块底端设有第一斜面;楔体上端设有第二斜面,楔体底端与底板连接;上斜铅芯橡胶支座设于楔体与上连接块之间,上斜铅芯橡胶支座顶端与第一斜面连接。本发明的抗拔的三维隔振支座,具备优良的水平和竖向隔振性能,有效隔离地振带来的水平振动和列车运行产生的竖向振动,确保上部的建筑结构的安全与稳定。
Anti-pulling three-dimensional vibration isolation support
抗拔的三维隔振支座
TANG BAIZAN (Autor:in) / DONG YUYING (Autor:in) / ZHUANG HAIYANG (Autor:in) / LUO WENJUN (Autor:in) / ZHAN NINGYI (Autor:in) / ZHANG JI (Autor:in) / HUANG DAWEI (Autor:in) / XU ZIGANG (Autor:in)
13.12.2024
Patent
Elektronische Ressource
Chinesisch
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