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Fabricated steel-concrete composite beam adopting anti-lifting shearing force connecting piece
The invention relates to the technical field of structural engineering, in particular to a fabricated steel-concrete composite beam adopting an anti-lifting shear connecting piece. The fabricated steel-concrete composite beam adopting the anti-lifting shear connecting piece comprises a concrete plate, a steel beam and the anti-lifting shear connecting piece, wherein the concrete plate is arranged on the steel beam and is fixedly connected with the steel beam through the anti-lifting shear connecting piece, the anti-lifting shear connecting piece comprises a transverse high-strength screw and vertical high-strength screws fixed to the two ends of the transverse high-strength screw, the upper ends of the vertical high-strength screws are fixed to the transverse high-strength screw, and the lower ends of the vertical high-strength screws sequentially penetrate through the concrete plate and the steel beam and are fixed through fixing assemblies. The concrete plate is arranged on the steel beam and fixedly connected with the steel beam through the anti-lifting shear connecting piece, cooperative work of the concrete plate and the steel beam is guaranteed, slippage between the steel beam and the concrete plate can be restrained through the anti-lifting shear connecting piece, lifting damage to the concrete plate is restrained, the anti-lifting shear connecting piece can be detached, and the damaged lifting shear connecting piece can be replaced, so that recycling of resources is realized.
本发明涉及结构工程技术领域,特指一种采用抗掀起剪力连接件的装配式钢混组合梁,包括混凝土板、钢梁与抗掀起剪力连接件,混凝土板置于钢梁上,并通过抗掀起剪力连接件固定连接,抗掀起剪力连接件包括横向高强螺杆以及固定于横向高强螺杆两端的竖向高强螺杆,竖向高强螺杆的上端固定于横向高强螺杆上,竖向高强螺杆的下端依次穿过混凝土板与钢梁,并通过固定组件固定。将混凝土板置于钢梁上,并通过抗掀起剪力连接件固定连接,保证了混凝土板与钢梁的协同工作,通过抗掀起剪力连接件可约束钢梁与混凝土板之间的滑移,抑制混凝土板掀起破坏,并且抗掀起剪力连接件可以拆卸,对损坏的掀起剪力连接件可以更换,实现了资源的回收重复利用。
Fabricated steel-concrete composite beam adopting anti-lifting shearing force connecting piece
The invention relates to the technical field of structural engineering, in particular to a fabricated steel-concrete composite beam adopting an anti-lifting shear connecting piece. The fabricated steel-concrete composite beam adopting the anti-lifting shear connecting piece comprises a concrete plate, a steel beam and the anti-lifting shear connecting piece, wherein the concrete plate is arranged on the steel beam and is fixedly connected with the steel beam through the anti-lifting shear connecting piece, the anti-lifting shear connecting piece comprises a transverse high-strength screw and vertical high-strength screws fixed to the two ends of the transverse high-strength screw, the upper ends of the vertical high-strength screws are fixed to the transverse high-strength screw, and the lower ends of the vertical high-strength screws sequentially penetrate through the concrete plate and the steel beam and are fixed through fixing assemblies. The concrete plate is arranged on the steel beam and fixedly connected with the steel beam through the anti-lifting shear connecting piece, cooperative work of the concrete plate and the steel beam is guaranteed, slippage between the steel beam and the concrete plate can be restrained through the anti-lifting shear connecting piece, lifting damage to the concrete plate is restrained, the anti-lifting shear connecting piece can be detached, and the damaged lifting shear connecting piece can be replaced, so that recycling of resources is realized.
本发明涉及结构工程技术领域,特指一种采用抗掀起剪力连接件的装配式钢混组合梁,包括混凝土板、钢梁与抗掀起剪力连接件,混凝土板置于钢梁上,并通过抗掀起剪力连接件固定连接,抗掀起剪力连接件包括横向高强螺杆以及固定于横向高强螺杆两端的竖向高强螺杆,竖向高强螺杆的上端固定于横向高强螺杆上,竖向高强螺杆的下端依次穿过混凝土板与钢梁,并通过固定组件固定。将混凝土板置于钢梁上,并通过抗掀起剪力连接件固定连接,保证了混凝土板与钢梁的协同工作,通过抗掀起剪力连接件可约束钢梁与混凝土板之间的滑移,抑制混凝土板掀起破坏,并且抗掀起剪力连接件可以拆卸,对损坏的掀起剪力连接件可以更换,实现了资源的回收重复利用。
Fabricated steel-concrete composite beam adopting anti-lifting shearing force connecting piece
一种采用抗掀起剪力连接件的装配式钢混组合梁
ZHANG XIEDONG (Autor:in) / ZHU HAOJIE (Autor:in) / WANG WEI (Autor:in) / PAN JINGBO (Autor:in) / LI ZHIFENG (Autor:in) / LIAO YONGHUA (Autor:in) / MENG XIANCONG (Autor:in) / HU JINGCHUN (Autor:in) / HUANG JING (Autor:in) / SUI JIALE (Autor:in)
23.07.2021
Patent
Elektronische Ressource
Chinesisch
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