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Temporary connecting system for verticality adjustment of latticed column and construction method of temporary connecting system
The invention relates to a temporary connection system for verticality adjustment of a latticed column and a construction method of the temporary connection system, the temporary connection system comprises the latticed column, a tool section and a built-in connection device, four corners of the latticed column are respectively provided with angle steel, each angle steel is provided with a plurality of bearing bottom plates with abdicating holes, and the outer sides of the bearing bottom plates are provided with limiting welding plates; at least two limiting plates are arranged at the bottom of the tool section, a first limiting hole is formed in the lowest limiting plate, and second limiting holes are formed in the other limiting plates; a counter-force plate is arranged at the top of the tool section; the built-in connecting device comprises a porous steel pipe and a ball built-in element, the ball built-in element comprises a pull rod and a plurality of conical bases, and each conical base is provided with a plurality of balls; the porous steel pipe sequentially penetrates through the receding holes and the first limiting holes in the bearing bottom plate. The pull rod sequentially penetrates out of the porous steel pipe and the second limiting hole and is detachably connected with the counter-force plate. When the balls protrude out of the round holes of the porous steel pipe, the balls make close contact with the limiting welding plate. The device is reliable in connection, convenient to disassemble and low in cost.
本发明涉及一种用于格构柱调垂的临时连接体系及其施工方法,包括格构柱、工具节及嵌固连接装置,格构柱的四角处分别设有角钢,每个角钢上设置有若干带有让位孔的承载底板,承载底板的外侧设有限位焊板;工具节的底部设有至少两个限位板,最下方的限位板上设有第一限位孔,其余限位板上设有第二限位孔;工具节的顶部设有反力板;嵌固连接装置包括多孔钢管和滚珠嵌固元件,滚珠嵌固元件包括拉杆和若干锥形底座,每个锥形底座上设有多个滚珠;多孔钢管依次穿过承载底板上的让位孔及第一限位孔;拉杆依次穿出多孔钢管及第二限位孔,并与反力板可拆卸式连接;当滚珠从多孔钢管的圆孔内凸出时,与限位焊板紧密接触。本发明连接可靠、拆除便捷,成本低。
Temporary connecting system for verticality adjustment of latticed column and construction method of temporary connecting system
The invention relates to a temporary connection system for verticality adjustment of a latticed column and a construction method of the temporary connection system, the temporary connection system comprises the latticed column, a tool section and a built-in connection device, four corners of the latticed column are respectively provided with angle steel, each angle steel is provided with a plurality of bearing bottom plates with abdicating holes, and the outer sides of the bearing bottom plates are provided with limiting welding plates; at least two limiting plates are arranged at the bottom of the tool section, a first limiting hole is formed in the lowest limiting plate, and second limiting holes are formed in the other limiting plates; a counter-force plate is arranged at the top of the tool section; the built-in connecting device comprises a porous steel pipe and a ball built-in element, the ball built-in element comprises a pull rod and a plurality of conical bases, and each conical base is provided with a plurality of balls; the porous steel pipe sequentially penetrates through the receding holes and the first limiting holes in the bearing bottom plate. The pull rod sequentially penetrates out of the porous steel pipe and the second limiting hole and is detachably connected with the counter-force plate. When the balls protrude out of the round holes of the porous steel pipe, the balls make close contact with the limiting welding plate. The device is reliable in connection, convenient to disassemble and low in cost.
本发明涉及一种用于格构柱调垂的临时连接体系及其施工方法,包括格构柱、工具节及嵌固连接装置,格构柱的四角处分别设有角钢,每个角钢上设置有若干带有让位孔的承载底板,承载底板的外侧设有限位焊板;工具节的底部设有至少两个限位板,最下方的限位板上设有第一限位孔,其余限位板上设有第二限位孔;工具节的顶部设有反力板;嵌固连接装置包括多孔钢管和滚珠嵌固元件,滚珠嵌固元件包括拉杆和若干锥形底座,每个锥形底座上设有多个滚珠;多孔钢管依次穿过承载底板上的让位孔及第一限位孔;拉杆依次穿出多孔钢管及第二限位孔,并与反力板可拆卸式连接;当滚珠从多孔钢管的圆孔内凸出时,与限位焊板紧密接触。本发明连接可靠、拆除便捷,成本低。
Temporary connecting system for verticality adjustment of latticed column and construction method of temporary connecting system
一种用于格构柱调垂的临时连接体系及其施工方法
RAO FENGRUI (Autor:in) / MA YUEQIANG (Autor:in) / HUANG RENBO (Autor:in) / CAO HENGHENG (Autor:in)
02.06.2023
Patent
Elektronische Ressource
Chinesisch
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