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Three-dimensional friction pendulum shock insulation support with tensile function
The invention discloses a three-dimensional friction pendulum shock insulation support with a tensile function, and relates to the technical field of friction pendulum shock insulation supports, the three-dimensional friction pendulum shock insulation support comprises an upper support plate, an upper sliding part, a vertical shock insulation unit, a lower sliding part and a lower support plate, the upper sliding part is arranged at the lower end of the upper support plate, the vertical shock insulation unit is arranged at the lower end of the upper sliding part, and the vertical shock insulation unit is arranged at the lower end of the lower sliding part. A lower sliding part is arranged at the lower end of the vertical seismic isolation unit, a lower support plate is arranged at the lower end of the lower sliding part, and the upper support plate directly faces the lower support plate; a first mounting hole is formed in the first support body, a first gap is formed between an upward-protruding arc arranged on the inner wall of the upper side of the first groove and the first arc-shaped face, and an upper sliding part is arranged in the first gap in a sliding mode. The anti-drawing performance is ensured; mutual coupling of the horizontal mechanical property and the vertical mechanical property of the support is avoided; a torsion effect can be provided under the tension and compression conditions of the support; the support can horizontally isolate shock and can also vertically isolate shock, namely, the support can achieve three-dimensional shock isolation.
本发明公开了一种具有抗拉功能的三维摩擦摆隔震支座,涉及到摩擦摆隔震支座的技术领域,包括:上支座板、上滑动部、竖向隔震单元、下滑动部及下支座板,上支座板的下端设有上滑动部,上滑动部的下端设有竖向隔震单元,竖向隔震单元的下端设有下滑动部,下滑动部的下端设有下支座板,上支座板与下支座板相正对;第一支座本体上开设有第一安装孔,第一凹槽上侧内壁设置的向上凸起的圆弧与第一弧形面之间形成第一间隙,第一间隙内可滑动地设有上滑动部。保证其抗拉拔性能;避免支座水平力学性能与竖向力学性能相互耦合;支座受拉和受压条件下均能够提供扭转效果;支座能够水平隔震,还能竖向隔震,即支座可以实现三维隔震。
Three-dimensional friction pendulum shock insulation support with tensile function
The invention discloses a three-dimensional friction pendulum shock insulation support with a tensile function, and relates to the technical field of friction pendulum shock insulation supports, the three-dimensional friction pendulum shock insulation support comprises an upper support plate, an upper sliding part, a vertical shock insulation unit, a lower sliding part and a lower support plate, the upper sliding part is arranged at the lower end of the upper support plate, the vertical shock insulation unit is arranged at the lower end of the upper sliding part, and the vertical shock insulation unit is arranged at the lower end of the lower sliding part. A lower sliding part is arranged at the lower end of the vertical seismic isolation unit, a lower support plate is arranged at the lower end of the lower sliding part, and the upper support plate directly faces the lower support plate; a first mounting hole is formed in the first support body, a first gap is formed between an upward-protruding arc arranged on the inner wall of the upper side of the first groove and the first arc-shaped face, and an upper sliding part is arranged in the first gap in a sliding mode. The anti-drawing performance is ensured; mutual coupling of the horizontal mechanical property and the vertical mechanical property of the support is avoided; a torsion effect can be provided under the tension and compression conditions of the support; the support can horizontally isolate shock and can also vertically isolate shock, namely, the support can achieve three-dimensional shock isolation.
本发明公开了一种具有抗拉功能的三维摩擦摆隔震支座,涉及到摩擦摆隔震支座的技术领域,包括:上支座板、上滑动部、竖向隔震单元、下滑动部及下支座板,上支座板的下端设有上滑动部,上滑动部的下端设有竖向隔震单元,竖向隔震单元的下端设有下滑动部,下滑动部的下端设有下支座板,上支座板与下支座板相正对;第一支座本体上开设有第一安装孔,第一凹槽上侧内壁设置的向上凸起的圆弧与第一弧形面之间形成第一间隙,第一间隙内可滑动地设有上滑动部。保证其抗拉拔性能;避免支座水平力学性能与竖向力学性能相互耦合;支座受拉和受压条件下均能够提供扭转效果;支座能够水平隔震,还能竖向隔震,即支座可以实现三维隔震。
Three-dimensional friction pendulum shock insulation support with tensile function
一种具有抗拉功能的三维摩擦摆隔震支座
PIAN CHAO (Autor:in) / LI YIZHE (Autor:in) / CHEN LIAN (Autor:in) / SI RUIJUAN (Autor:in) / XIAO FEI (Autor:in) / ZHANG GANG (Autor:in) / LI HONGQIANG (Autor:in) / QI SHUAI (Autor:in) / GE LINLIN (Autor:in)
29.04.2022
Patent
Elektronische Ressource
Chinesisch
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