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Friction pendulum shock insulation support with anti-drawing function and construction method of friction pendulum shock insulation support
The invention discloses a friction pendulum shock insulation support with an anti-drawing function and a construction method thereof.The shock insulation support comprises two sets of sliding bases, the two sets of sliding bases are oppositely arranged and connected through a connecting assembly, the connecting assembly comprises a rotating base in the middle and sliding block plates on the top side and the bottom side, and the sliding block plates are arc plates protruding outwards; a connecting lug plate is fixedly arranged on the plate face, close to one side of the rotating base, of each sliding block plate, the connecting lug plates are hinged to the rotating base through pin shafts, plane projections of the two pin shafts located on the two sides of the top and the bottom of the rotating base are arranged in a crossed mode, and the two sliding block plates are slidably embedded in the sliding bases at the corresponding positions respectively. The sliding paths of the sliding block plates are in a circular arc shape protruding towards the outer side of the rotating base, and plane projections of the sliding paths of the two sliding block plates are perpendicular to each other. The shock insulation support is simple in structure, exquisite in design, easy to machine and assemble, convenient to install and maintain and high in drawing resistance, damage of a connecting assembly to the sliding base is avoided, and the durability and safety of the shock insulation support are enhanced.
本发明公开了一种具备抗拉拔功能的摩擦摆隔震支座及其施工方法,隔震支座包括两组滑动底座,两组滑动底座相对设置并通过连接组件相连,连接组件包括中部的转动座和顶底两侧的滑块板,滑块板为外凸的圆弧板,其靠近转动座一侧的板面上固定设置有连接耳板,连接耳板通过销轴与转动座铰接相连,且位于转动座顶底两侧的两根销轴的平面投影呈十字状交叉设置,两滑块板分别滑动嵌固在对应位置的滑动底座内,滑块板的滑动路径为向转动座外侧凸出的圆弧形,且两滑块板的滑动路径的平面投影相互垂直。本发明结构简单,设计精巧,易于加工组装,安装维修方便,具有较强的抗拉拔能力,避免了连接组件对滑动底座造成的损伤,增强了隔震支座的耐久性和安全性。
Friction pendulum shock insulation support with anti-drawing function and construction method of friction pendulum shock insulation support
The invention discloses a friction pendulum shock insulation support with an anti-drawing function and a construction method thereof.The shock insulation support comprises two sets of sliding bases, the two sets of sliding bases are oppositely arranged and connected through a connecting assembly, the connecting assembly comprises a rotating base in the middle and sliding block plates on the top side and the bottom side, and the sliding block plates are arc plates protruding outwards; a connecting lug plate is fixedly arranged on the plate face, close to one side of the rotating base, of each sliding block plate, the connecting lug plates are hinged to the rotating base through pin shafts, plane projections of the two pin shafts located on the two sides of the top and the bottom of the rotating base are arranged in a crossed mode, and the two sliding block plates are slidably embedded in the sliding bases at the corresponding positions respectively. The sliding paths of the sliding block plates are in a circular arc shape protruding towards the outer side of the rotating base, and plane projections of the sliding paths of the two sliding block plates are perpendicular to each other. The shock insulation support is simple in structure, exquisite in design, easy to machine and assemble, convenient to install and maintain and high in drawing resistance, damage of a connecting assembly to the sliding base is avoided, and the durability and safety of the shock insulation support are enhanced.
本发明公开了一种具备抗拉拔功能的摩擦摆隔震支座及其施工方法,隔震支座包括两组滑动底座,两组滑动底座相对设置并通过连接组件相连,连接组件包括中部的转动座和顶底两侧的滑块板,滑块板为外凸的圆弧板,其靠近转动座一侧的板面上固定设置有连接耳板,连接耳板通过销轴与转动座铰接相连,且位于转动座顶底两侧的两根销轴的平面投影呈十字状交叉设置,两滑块板分别滑动嵌固在对应位置的滑动底座内,滑块板的滑动路径为向转动座外侧凸出的圆弧形,且两滑块板的滑动路径的平面投影相互垂直。本发明结构简单,设计精巧,易于加工组装,安装维修方便,具有较强的抗拉拔能力,避免了连接组件对滑动底座造成的损伤,增强了隔震支座的耐久性和安全性。
Friction pendulum shock insulation support with anti-drawing function and construction method of friction pendulum shock insulation support
一种具备抗拉拔功能的摩擦摆隔震支座及其施工方法
LEI YUANDE (Autor:in) / ZHAO YUANZHENG (Autor:in) / YU YINQUAN (Autor:in) / DENG XUAN (Autor:in) / LI QIQI (Autor:in) / YUE HONGYUAN (Autor:in) / WEN AOHAN (Autor:in)
29.12.2023
Patent
Elektronische Ressource
Chinesisch
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