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Fabricated single tensile support suitable for shock insulation building adopting rubber shock insulation pad
The invention relates to the technical field of building shock insulation, in particular to an assembly type single tensile support suitable for a shock insulation building adopting a rubber shock insulation pad, which comprises an upper sliding rail, a lower sliding rail and an integrated connecting sliding block, the upper sliding rail is connected with an upper structure through an anchor bolt, an upper sliding groove is formed in the bottom surface of the upper sliding rail, and the lower sliding rail is connected with a lower structure through an anchor bolt. A lower sliding groove is formed in the top face of the tensile support, the upper sliding rail and the lower sliding rail are arranged in a crossed mode in the space horizontal direction, a gap is reserved in the vertical direction, the integrated connecting sliding block is installed between the upper sliding rail and the lower sliding rail, when sliding occurs, the tensile support moves along with the upper sliding rail and the lower sliding rail, and the tensile flange of the integrated connecting sliding block is matched with the tensile groove of the upper sliding rail and the lower sliding rail. The assembly type single tensile support suitable for the shock insulation building adopting the rubber shock insulation pad provides tensile resistance and translates along with translation of the building, and failure of the shock insulation buttress or overturning of the building caused by overlarge tensile force are avoided.
本发明涉及建筑隔震技术领域,尤其为一种装配式并适用于采用橡胶隔震垫的隔震建筑的单抗拉支座,包括上滑轨、下滑轨和一体式连接滑块,上滑轨与上部结构通过锚栓连接,其底面开设上滑槽,下滑轨与下部结构通过锚栓连接,其顶面开设下滑槽,上滑轨和下滑轨在空间水平方向上呈十字交叉设置,在竖直方向上预留间隙,一体式连接滑块安装于上滑轨和下滑轨之间,滑动发生时,抗拉支座跟随运动,一体式连接滑块抗拉翼缘和上滑轨,下滑轨抗拉槽相互配合,从而形成强大的抗拉能力该装配式并适用于采用橡胶隔震垫的隔震建筑的单抗拉支座,该装置提供抗拉力,并跟随建筑平动而平动,避免因拉力过大造成隔震支墩失效或造成建筑物倾覆。
Fabricated single tensile support suitable for shock insulation building adopting rubber shock insulation pad
The invention relates to the technical field of building shock insulation, in particular to an assembly type single tensile support suitable for a shock insulation building adopting a rubber shock insulation pad, which comprises an upper sliding rail, a lower sliding rail and an integrated connecting sliding block, the upper sliding rail is connected with an upper structure through an anchor bolt, an upper sliding groove is formed in the bottom surface of the upper sliding rail, and the lower sliding rail is connected with a lower structure through an anchor bolt. A lower sliding groove is formed in the top face of the tensile support, the upper sliding rail and the lower sliding rail are arranged in a crossed mode in the space horizontal direction, a gap is reserved in the vertical direction, the integrated connecting sliding block is installed between the upper sliding rail and the lower sliding rail, when sliding occurs, the tensile support moves along with the upper sliding rail and the lower sliding rail, and the tensile flange of the integrated connecting sliding block is matched with the tensile groove of the upper sliding rail and the lower sliding rail. The assembly type single tensile support suitable for the shock insulation building adopting the rubber shock insulation pad provides tensile resistance and translates along with translation of the building, and failure of the shock insulation buttress or overturning of the building caused by overlarge tensile force are avoided.
本发明涉及建筑隔震技术领域,尤其为一种装配式并适用于采用橡胶隔震垫的隔震建筑的单抗拉支座,包括上滑轨、下滑轨和一体式连接滑块,上滑轨与上部结构通过锚栓连接,其底面开设上滑槽,下滑轨与下部结构通过锚栓连接,其顶面开设下滑槽,上滑轨和下滑轨在空间水平方向上呈十字交叉设置,在竖直方向上预留间隙,一体式连接滑块安装于上滑轨和下滑轨之间,滑动发生时,抗拉支座跟随运动,一体式连接滑块抗拉翼缘和上滑轨,下滑轨抗拉槽相互配合,从而形成强大的抗拉能力该装配式并适用于采用橡胶隔震垫的隔震建筑的单抗拉支座,该装置提供抗拉力,并跟随建筑平动而平动,避免因拉力过大造成隔震支墩失效或造成建筑物倾覆。
Fabricated single tensile support suitable for shock insulation building adopting rubber shock insulation pad
装配式并适用于采用橡胶隔震垫的隔震建筑的单抗拉支座
SUN BAIFENG (author) / ZHANG ZHERUI (author) / WANG HONGWEI (author) / ZHANG RAN (author) / TAO-LEI YIMING (author) / TU MOYUN (author) / CAO YU (author) / MI JUNCHENG (author) / LI XINGQING (author) / HU WEIWEN (author)
2024-05-10
Patent
Electronic Resource
Chinese
European Patent Office | 2024
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