A walking and lifting structure for hanging basket construction
By designing a walking lifting structure and adjusting the position of the inner formwork support components using the inner formwork lifting components, the problem of traditional hanging basket structures being unable to move when the bridge body has transverse diaphragms was laid out was solved, realizing the overall movement of the hanging basket and improving construction efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SICHUAN ROAD & BRIDGE CONSTRUCTION GROUP CO LTD
- Filing Date
- 2025-07-30
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional hanging basket structures cannot be moved when diaphragms are installed on the bridge body, resulting in low construction efficiency.
The system employs a walking and lifting structure, which includes a walking component, a bottom mold support component, an inner mold support component, and an inner mold lifting component. The inner mold lifting component adjusts the position of the inner mold support component, causing it to move away from the transverse partition area. Then, the walking component drives the bottom mold support component to move, thus achieving overall walking.
This effectively solves the problem of traditional hanging basket structures being unable to move around when cross diaphragms are installed on the bridge body, thus improving construction efficiency and safety.
Smart Images

Figure CN224514079U_ABST
Abstract
Claims
1. A traveling and lifting structure for hanging basket construction, characterized in that, include: Two walking components are symmetrically arranged on both sides of the bridge body that has been poured. The walking components are used to move as a whole along the construction direction of the bridge body. A bottom formwork support assembly, one end of which is connected to the bridge body that has been poured, and the other end of which is located at the bridge body that is to be poured. The bottom formwork support assembly is used to provide support formwork for the bridge body that is to be poured. Two traveling frames are arranged on both sides of the bottom formwork support assembly and are located on both sides of the bridge body that has been poured. The traveling frames are C-shaped, with the bottom inner side of the traveling frame connected to the bottom formwork support assembly and the top inner side of the traveling frame slidably connected to the traveling assembly. The traveling frames slide on both sides of the bridge body that has been poured through the traveling assembly. An inner mold support assembly is disposed on the bottom mold support assembly and is used to provide template support for the transverse diaphragm area of the bridge body. An inner mold lifting assembly is disposed on the bottom mold support assembly and connected to the inner mold support assembly. The inner mold lifting assembly is used to adjust the support position height of the inner mold support assembly.
2. The walking and lifting structure for hanging basket construction according to claim 1, wherein The bottom mold support assembly includes: A bottom support frame is provided at the bottom of the bridge body. The two sides of the bottom support frame are connected to the traveling frame. The bottom support frame is slidably connected to the bridge body that has been poured through the traveling frame. A bottom load-bearing frame is located in the middle of the bottom support frame; Two side frames are provided on the bottom support frame and are symmetrically arranged on both sides of the bottom support frame.
3. The walking and lifting structure for hanging basket construction according to claim 2, wherein The inner mold lifting component includes: Multiple lifting cables are installed on the bottom load-bearing frame. One end of each lifting cable is anchored to the bottom load-bearing frame, and the other end of each lifting cable passes through the inner formwork support assembly and is anchored to the bridge body that has been poured.
4. The walking and lifting structure for hanging basket construction according to claim 3, wherein The inner mold support assembly includes: An inner support frame is provided on the bottom load-bearing frame, and the inner support frame is square. An inner top template is provided on the inner support frame and is used to provide template support on the inner support frame and the top of the diaphragm construction area. Multiple first side plates are arranged in parallel on the inner support frame. The first side plates are used to provide formwork support for one side of the diaphragm construction area on the inner support frame. Two second side plates are symmetrically arranged on both sides of the inner support frame. The two second side plates are used to provide formwork support for the remaining side of the diaphragm construction area on the inner support frame.
5. The walking and lifting structure for hanging basket construction according to claim 4, wherein The internal mold support assembly also includes: Multiple deflection power components are vertically arranged on the side of the inner support frame, and the first side plate and the second side plate are connected to the inner support frame through the multiple deflection power components. The deflection power component connected to the first side plate and the deflection power component connected to the second side plate have perpendicular extension and retraction directions.
6. The walking and lifting structure for hanging basket construction according to claim 2, wherein The walking component includes: The walking track is set on both sides of the bridge body that has been poured. The walking track is set along the construction direction of the bridge body and has multiple walking holes. A traveling support is provided on the traveling track and is slidably connected to the traveling track. The traveling support is dynamically engaged with multiple traveling holes on the traveling track. A traveling support plate is slidably connected to the traveling track, the traveling support plate is located on one side of the traveling support, and the traveling support plate is connected to the traveling frame. A traveling power component is disposed between the traveling support and the traveling plate, with one end of the traveling power component connected to the traveling support and the other end of the traveling power component connected to the traveling plate.