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Spring-laminated rubber composite three-dimensional shock insulation support
The invention discloses a spring-laminated rubber composite three-dimensional shock insulation support, and relates to the technical field of shock absorption supports, the spring-laminated rubber composite three-dimensional shock insulation support comprises a connecting assembly, a vertical shock insulation assembly and a horizontal shock insulation assembly; the connecting assembly comprises an upper connecting plate, a lower connecting plate, a first fixing sleeve, a second fixing sleeve and a sliding piece. The vertical shock insulation assembly comprises a lead core supporting column, laminated rubber, a laminated steel plate and a first vertical buffering piece. The horizontal shock isolation assembly comprises a supporting column, a sliding sleeve, a second vertical buffering piece, a first transverse buffering piece, a second transverse buffering piece and a linkage piece. When the upper connecting plate deforms due to acting force, the acting force is transmitted to the position between the laminated rubber and the laminated steel plate, the first vertical buffering piece, the second vertical buffering piece, the first transverse buffering piece and the second transverse buffering piece are extruded, large energy dissipation damping is provided for vibration, vibration energy is absorbed and filtered, and meanwhile after the vibration disappears, the upper connecting plate deforms. And the whole shock insulation support recovers to the initial state, so that the function of the shock insulation support can be normally exerted.
本发明公开了一种弹簧‑叠层橡胶复合的三维隔震支座,涉及减震支座技术领域,包括连接组件、竖直隔震组件、水平隔震组件;连接组件包括上连接板、下连接板、第一固定套、第二固定套、滑移件;竖直隔震组件包括铅芯支柱、积层橡胶、积层钢板、第一竖直缓冲件;水平隔震组件包括支撑柱、滑动套、第二竖直缓冲件、第一横向缓冲件、第二横向缓冲件、联动件;在上连接板受到作用力发生形变时,作用力传递至积层橡胶、积层钢板之间,第一竖直缓冲件、第二竖直缓冲件、第一横向缓冲件、第二横向缓冲件受到挤压,对震动提供较大的耗能阻尼,吸收、过滤震动能量,同时在震动消失后,整个隔震支座恢复到初始状态,保证隔震支座功能的正常发挥。
Spring-laminated rubber composite three-dimensional shock insulation support
The invention discloses a spring-laminated rubber composite three-dimensional shock insulation support, and relates to the technical field of shock absorption supports, the spring-laminated rubber composite three-dimensional shock insulation support comprises a connecting assembly, a vertical shock insulation assembly and a horizontal shock insulation assembly; the connecting assembly comprises an upper connecting plate, a lower connecting plate, a first fixing sleeve, a second fixing sleeve and a sliding piece. The vertical shock insulation assembly comprises a lead core supporting column, laminated rubber, a laminated steel plate and a first vertical buffering piece. The horizontal shock isolation assembly comprises a supporting column, a sliding sleeve, a second vertical buffering piece, a first transverse buffering piece, a second transverse buffering piece and a linkage piece. When the upper connecting plate deforms due to acting force, the acting force is transmitted to the position between the laminated rubber and the laminated steel plate, the first vertical buffering piece, the second vertical buffering piece, the first transverse buffering piece and the second transverse buffering piece are extruded, large energy dissipation damping is provided for vibration, vibration energy is absorbed and filtered, and meanwhile after the vibration disappears, the upper connecting plate deforms. And the whole shock insulation support recovers to the initial state, so that the function of the shock insulation support can be normally exerted.
本发明公开了一种弹簧‑叠层橡胶复合的三维隔震支座,涉及减震支座技术领域,包括连接组件、竖直隔震组件、水平隔震组件;连接组件包括上连接板、下连接板、第一固定套、第二固定套、滑移件;竖直隔震组件包括铅芯支柱、积层橡胶、积层钢板、第一竖直缓冲件;水平隔震组件包括支撑柱、滑动套、第二竖直缓冲件、第一横向缓冲件、第二横向缓冲件、联动件;在上连接板受到作用力发生形变时,作用力传递至积层橡胶、积层钢板之间,第一竖直缓冲件、第二竖直缓冲件、第一横向缓冲件、第二横向缓冲件受到挤压,对震动提供较大的耗能阻尼,吸收、过滤震动能量,同时在震动消失后,整个隔震支座恢复到初始状态,保证隔震支座功能的正常发挥。
Spring-laminated rubber composite three-dimensional shock insulation support
一种弹簧-叠层橡胶复合的三维隔震支座
LIU XINGYAO (Autor:in) / GUO RONGXIN (Autor:in) / QI RONGQING (Autor:in) / DAI BIHUI (Autor:in) / LIU DEWEN (Autor:in) / LIAO WENYUAN (Autor:in)
04.06.2024
Patent
Elektronische Ressource
Chinesisch
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