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Shock insulation support with vibration and shock double control and vertical tensile function
The invention provides a vibration isolation support with vibration double control and vertical tensile function, which comprises a transverse sliding seat, a vibration isolation component and a longitudinal sliding seat which are sequentially arranged from top to bottom, and the upper end and the lower end of the vibration isolation component are respectively connected with the transverse sliding seat and the longitudinal sliding seat in a sliding manner along the horizontal direction; the sliding direction of the shock insulation component and the transverse sliding seat is perpendicular to the sliding direction of the shock insulation component and the longitudinal sliding seat. The shock isolation component comprises an upper sliding plate and a lower sliding plate, and a shock buffering assembly is installed between the upper sliding plate and the lower sliding plate. The upper end and the lower end of the shock insulation component consume horizontal shock energy through friction movement in the horizontal direction, and limiting springback components are arranged at the bottom end of the transverse sliding seat and the top end of the longitudinal sliding seat and used for providing restoring force after the support horizontally slides. According to the shock isolation component, the cushioning assembly is installed between the upper sliding plate and the lower sliding plate, so that the vertical shock isolation capacity can be improved, and the effect of isolating vertical transmission of environment shock waves is achieved.
本发明提供了一种兼具振震双控和竖向抗拉功能的隔震支座,包括由上往下依次设置的横向滑动座、隔震构件和纵向滑动座,隔震构件的上下两端分别与横向滑动座和纵向滑动座沿水平方向滑动连接,隔震构件与横向滑动座的滑动方向垂直于隔震构件与纵向滑动座的滑动方向;隔震构件包括上滑动板和下滑动板,上滑动板和下滑动板之间安装有缓震组件。隔震构件的上下两端通过沿水平方向的摩擦运动实现消耗水平震动能量,并且横向滑动座的底端和纵向滑动座的顶端均设有限位回弹构件,用于提供支座水平滑移后的回复力;隔震构件在上滑动板和所述下滑动板之间安装缓震组件能够提高竖向隔震能力,起到隔离环境震动波竖向传递的作用。
Shock insulation support with vibration and shock double control and vertical tensile function
The invention provides a vibration isolation support with vibration double control and vertical tensile function, which comprises a transverse sliding seat, a vibration isolation component and a longitudinal sliding seat which are sequentially arranged from top to bottom, and the upper end and the lower end of the vibration isolation component are respectively connected with the transverse sliding seat and the longitudinal sliding seat in a sliding manner along the horizontal direction; the sliding direction of the shock insulation component and the transverse sliding seat is perpendicular to the sliding direction of the shock insulation component and the longitudinal sliding seat. The shock isolation component comprises an upper sliding plate and a lower sliding plate, and a shock buffering assembly is installed between the upper sliding plate and the lower sliding plate. The upper end and the lower end of the shock insulation component consume horizontal shock energy through friction movement in the horizontal direction, and limiting springback components are arranged at the bottom end of the transverse sliding seat and the top end of the longitudinal sliding seat and used for providing restoring force after the support horizontally slides. According to the shock isolation component, the cushioning assembly is installed between the upper sliding plate and the lower sliding plate, so that the vertical shock isolation capacity can be improved, and the effect of isolating vertical transmission of environment shock waves is achieved.
本发明提供了一种兼具振震双控和竖向抗拉功能的隔震支座,包括由上往下依次设置的横向滑动座、隔震构件和纵向滑动座,隔震构件的上下两端分别与横向滑动座和纵向滑动座沿水平方向滑动连接,隔震构件与横向滑动座的滑动方向垂直于隔震构件与纵向滑动座的滑动方向;隔震构件包括上滑动板和下滑动板,上滑动板和下滑动板之间安装有缓震组件。隔震构件的上下两端通过沿水平方向的摩擦运动实现消耗水平震动能量,并且横向滑动座的底端和纵向滑动座的顶端均设有限位回弹构件,用于提供支座水平滑移后的回复力;隔震构件在上滑动板和所述下滑动板之间安装缓震组件能够提高竖向隔震能力,起到隔离环境震动波竖向传递的作用。
Shock insulation support with vibration and shock double control and vertical tensile function
一种兼具振震双控和竖向抗拉功能的隔震支座
CHEN YANGYANG (Autor:in) / LIN YINGHUI (Autor:in) / YANG ZHENYU (Autor:in) / LUO JUNJIE (Autor:in) / ZHOU FULIN (Autor:in)
22.08.2023
Patent
Elektronische Ressource
Chinesisch
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