Construction hanging basket
By introducing structures such as mounting frames, load-bearing frames, adjusting plates, and tracks into the construction hanging basket, the problem of wall damage caused by the swaying of the hanging basket was solved, and the stable lifting and lowering of the hanging basket and safe construction were achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGRAO HUACHUANG CONSTR ENG CO LTD
- Filing Date
- 2025-06-04
- Publication Date
- 2026-05-08
AI Technical Summary
The existing construction hanging basket is prone to swaying during operation, making it difficult for operators to lay the wall stably and potentially causing damage to the wall surface.
A construction formwork was designed, including installation components, hanging components, load-bearing components, adjustment components, and contact components. By setting up structures such as installation frames, load-bearing frames, adjustment plates, and tracks, the stability and buffering capacity of the formwork are enhanced, ensuring stable contact between the formwork and the external wall and smooth lifting and lowering.
This improved the stability of the construction formwork, prevented collision damage to the wall surface, and ensured the safety and efficiency of construction.
Smart Images

Figure CN224213757U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of building equipment technology, and more specifically, it relates to a construction hanging basket. Background Technology
[0002] With the continuous development and progress of society, urban construction is also increasing. In recent years, in order to maintain a stable temperature inside buildings, heat insulation protective layers are laid on the exterior walls of buildings before construction is completed to achieve the effect of heat preservation inside the buildings. This has become a necessary construction procedure for building construction.
[0003] When laying paving materials on the exterior walls of a building, due to the building's height, a construction scaffold is needed to suspend tools and workers at a high position to complete the paving. However, ordinary construction scaffolds tend to sway during operation, making it difficult for workers to lay the paving materials stably on the wall. Furthermore, the swaying scaffold can easily collide with the wall, causing unnecessary damage. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides a construction hanging basket to solve the problem that existing suspended hanging baskets sway during operation, making it difficult for operators to stably lay the basket on the wall, and the swaying basket causes unnecessary damage to the wall.
[0005] The purpose and effect of this utility model of a construction hanging basket are achieved by the following specific technical means:
[0006] A construction hanging basket includes an installation component; the outer wall of the installation component is a vertical structure, a horizontal floor slab is provided at the top of the outer wall, an installation frame is installed at the floor slab position at the top of the outer wall, a hanging component is installed on the installation frame, a load-bearing component is connected to the bottom of the hanging component, an adjustment component is added at the point where the load-bearing component is close to the outer wall, a contact component is installed on the adjustment component, and the contact component is in direct contact with the outer wall.
[0007] Furthermore, a protruding support block is provided at the top floor slab of the exterior wall, and a mounting bracket is fixed on the support block. The front end of the mounting bracket is set to extend out, and the lower end of adjacent mounting brackets is connected to a mounting rod.
[0008] Furthermore, the top of the rigid rope of the suspension component is fixed to the motor and winch on the mounting rod, the bottom of the rigid rope is connected to the connecting block, the connecting block is fixed at the edge of the bearing component, an installation sleeve is installed at the contact point between the connecting block and the rigid rope, a fixing bolt is installed at the rigid rope at the bottom of the connecting block, and a spring is installed between the fixing bolt and the installation sleeve.
[0009] Furthermore, the support frame of the support component has a grid-like structure, and a configuration box is provided at the bottom of the outer end of the support frame. The configuration box has a cavity inside, and the configuration box is connected and fixed to the support frame by a mounting buckle.
[0010] Furthermore, the adjusting plate of the adjusting component has a rectangular plate structure, with a bottom protrusion strip at the bottom and snap-fit strips on both sides of the adjusting plate. The adjusting plate is snapped onto the bearing component by the bottom protrusion strip, and the snap-fit strips are snapped onto the outside of the bearing component. A bolt is added to the top of the position where the adjusting plate is installed on the bearing component, and adjusting rods are screwed onto the upper and lower ends of the adjusting plate.
[0011] Furthermore, the contact frame of the contact component is provided with four sets of outer frame bodies. The contact frame is mounted on the adjustment plate through the outer frame bodies. A spring is installed between the outer frame body of the contact frame and the adjustment plate. A contact plate is installed on the contact frame. A track is installed at the position of the contact plate of the contact frame. The contact plate directly contacts the track.
[0012] Compared with the prior art, the present invention has the following beneficial effects:
[0013] In this invention, a mounting frame is first installed on the top of the exterior wall. A hanging component is connected to the mounting rod at the mounting frame. The bottom of the hanging component is connected to the load-bearing component. At this time, a configuration box is installed at the bottom of the load-bearing component, so that the configuration box can add a certain counterweight to the load-bearing component, making the load-bearing component close to the exterior wall. An adjustment component is installed between the load-bearing component and the exterior wall. The contact component on the adjustment component is in close contact with the exterior wall, so that the contact component helps to stabilize the load-bearing component more during lifting and lowering, and avoids damage to the exterior wall caused by the load-bearing component.
[0014] Since the rigid rope is fitted inside the connecting block during use, wear can occur between the rigid rope and the connecting block when the load-bearing component shakes. The installation sleeve installed between the connecting block and the rigid rope prevents wear between the rigid rope and the connecting block. A spring is installed between the fixing bolt and the installation sleeve to provide a certain buffer between the rigid rope and the load-bearing component when the load-bearing component is being hoisted, so that the load-bearing component has a certain balance and is more stable.
[0015] The configuration box with a cavity allows items to be added inside according to different situations, thereby providing auxiliary counterweight to the load-bearing components, making the load-bearing components stable and close to the external wall, and increasing the stability of the load-bearing components.
[0016] After the adjusting plate is installed, the locking strip is positioned externally, which limits the position of the adjusting plate and increases its stability. The top fixing bolt at the position where the adjusting plate is installed on the load-bearing component is tightened, and the adjusting plate, in conjunction with the bottom protrusion, completes the stable fixing of the adjusting plate. The adjusting rod screwed onto the adjusting plate allows for position adjustment of the contact component after the adjusting rod is rotated.
[0017] The contact frame is equipped with four sets of outer frame bodies, which are then mounted on the adjusting plate. Springs are added to the outer frame bodies of the contact frame, allowing the adjusting rod of the adjusting plate to push out the contact component, thus adjusting the position of the contact component. Tracks are installed at the contact plate positions on the contact frame, allowing the tracks to approach the outer wall under the action of the contact plate. This enables the load-bearing component to contact the mounting component through the contact components on the adjusting component, allowing the load-bearing component to move up and down along the mounting component. The tracks stabilize the load-bearing component, thus increasing its stability. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0019] Figure 2 This is a schematic diagram of the load-bearing component structure of this utility model.
[0020] Figure 3 This is a schematic diagram of the adjustment and contact components of this utility model.
[0021] Figure 4 This is the utility model Figure 2 A magnified schematic diagram of the structure at point A in the middle.
[0022] Figure 5 This is the utility model Figure 2 A magnified schematic diagram of the structure at point B in the middle.
[0023] In the diagram, the correspondence between component names and drawing numbers is as follows:
[0024] 1. Installation components; 101. Exterior wall; 102. Bearing block; 103. Mounting frame; 104. Mounting rod; 2. Hanging components; 201. Rigid rope; 202. Connecting block; 203. Mounting sleeve; 204. Fixing bolt; 3. Bearing components; 301. Bearing frame; 302. Configuration box; 303. Mounting buckle; 4. Adjusting components; 401. Adjusting plate; 402. Clip strip; 403. Bottom protrusion strip; 404. Adjusting rod; 5. Contact components; 501. Contact frame; 502. Contact plate; 503. Track. Detailed Implementation
[0025] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.
[0026] Example:
[0027] As attached Figure 1 To be continued Figure 5 As shown:
[0028] This utility model provides a construction hanging basket, including an installation component 1; the outer wall 101 of the installation component 1 is a vertical structure, and a horizontal floor slab is provided at the top of the outer wall 101. An installation frame 103 is installed at the floor slab position at the top of the outer wall 101. A hanging component 2 is installed on the installation frame 103. A bearing component 3 is connected to the bottom of the hanging component 2. An adjustment component 4 is added to the bearing component 3 near the outer wall 101. A contact component 5 is installed on the adjustment component 4. The contact component 5 directly contacts the outer wall 101.
[0029] The exterior wall 101 has a raised support block 102 at the top floor slab. A mounting bracket 103 is fixed on the support block 102. The exterior wall 101 is generally designed to be higher than the floor slab. In order to make the mounting bracket 103 more stable, the support block 102 is set at the top of the floor slab to increase the installation height of the mounting bracket 103 and achieve the stable installation of the mounting bracket 103. The front end of the mounting bracket 103 is set to extend. The lower end of the adjacent mounting brackets 103 is connected to the mounting rod 104. The mounting rod 104 between the mounting brackets 103 is used to install components such as motors and winches, so that the components installed at the mounting rod 104 can be connected to the hanging component 2.
[0030] In this design, the top of the rigid rope 201 of the suspension component 2 is fixed to the motor and winch on the mounting rod 104, and the bottom of the rigid rope 201 is connected to the connecting block 202. The connecting block 202 is fixed at the edge of the bearing component 3. An installation sleeve 203 is installed at the contact point between the connecting block 202 and the rigid rope 201. Since the rigid rope 201 is fitted inside the connecting block 202 during use, wear may occur between the rigid rope 201 and the connecting block 202 when the bearing component 3 shakes. Therefore, the installation sleeve 203 is installed between the connecting block 202 and the rigid rope 201. The mounting sleeve 203 is used to prevent wear between the rigid rope 201 and the connecting block 202. A fixing bolt 204 is installed at the bottom of the connecting block 202 at the rigid rope 201. A spring is installed between the fixing bolt 204 and the mounting sleeve 203. The spring between the fixing bolt 204 and the mounting sleeve 203 provides a certain buffer between the rigid rope 201 and the load-bearing component 3 when hoisting the load-bearing component 3, so that the load-bearing component 3 has a certain balance and is more stable.
[0031] The support frame 301 of the support component 3 has a grid-like structure. A configuration box 302 is provided at the bottom of the outer end of the support frame 301. The configuration box 302 has a cavity inside. The configuration box 302 with the cavity allows items to be added inside the configuration box 302 according to different situations, so as to achieve the auxiliary counterweight effect of the support component 3, so that the support component 3 can be stably close to the outer wall 101, increasing the stability of the support component 3. The configuration box 302 and the support frame 301 are connected and fixed by the mounting buckle 303. The mounting buckle 303 connects the support frame 301 and the configuration box 302 to be stably fixed by the mounting buckle 303 after carrying the specified configuration items.
[0032] The adjusting plate 401 of the adjusting component 4 has a rectangular plate structure. A bottom protrusion 403 is provided at the bottom of the adjusting plate 401, and snap-fit strips 402 are provided on both sides of the adjusting plate 401. The adjusting plate 401 is snapped onto the supporting component 3 via the bottom protrusion 403, and the snap-fit strips 402 are snapped onto the outside of the supporting component 3. After the adjusting plate 401 is installed, the snap-fit strips 402 are positioned externally, thus limiting the position of the adjusting plate 401 after installation and increasing the stability of the adjusting plate 401. A bolt is installed on the top of the position where the adjusting plate 401 is installed at the bearing component 3. After the bolt is tightened, the adjusting plate 401 cooperates with the bottom protrusion 403 to complete the stable fixing of the adjusting plate 401. An adjusting rod 404 is screwed on the upper and lower ends of the adjusting plate 401. The adjusting rod 404 screwed on the adjusting plate 401 can adjust the position of the contact component 5 after the adjusting rod 404 is rotated.
[0033] The contact component 5 has four sets of outer frames on its contact frame 501. The contact frame 501 is mounted on the adjusting plate 401 via these outer frames. A spring is installed between the outer frames of the contact frame 501 and the adjusting plate 401. By setting four sets of outer frames on the contact frame 501 and mounting it on the adjusting plate 401 via these four sets of outer frames, and by adding springs to the outer frames of the contact frame 501, the adjusting rod 404 of the adjusting plate 401 can be rotated to push out the contact component 5, thereby adjusting the position of the contact component 5. A contact plate 502 is installed on the 01, and a track 503 is installed at the position of the contact plate 502 on the contact frame 501. The contact plate 502 directly contacts the track 503. The track 503 is installed at the position of the contact plate 502 on the contact frame 501, so that the track 503 is close to the outer wall 101 under the action of the contact plate 502. This allows the load-bearing component 3 to contact the mounting component 1 through the contact component 5 on the adjusting component 4, so that the load-bearing component 3 can move up and down along the mounting component 1, and the track 503 can stably increase the stability of the load-bearing component 3.
[0034] The specific usage and function of this embodiment are as follows:
[0035] In this invention, since the rigid rope 201 is sleeved inside the connecting block 202 during use, wear can occur between the rigid rope 201 and the connecting block 202 when the bearing component 3 shakes. Therefore, an installation sleeve 203 is added between the connecting block 202 and the rigid rope 201 to prevent wear. A spring is added between the fixing bolt 204 and the installation sleeve 203 to provide cushioning between the rigid rope 201 and the bearing component 3 during hoisting, ensuring the bearing component 3 maintains balance and stability. The cavity-filled configuration box 302 allows for the addition of items to the configuration box as needed, providing auxiliary counterweight to the bearing component 3 and ensuring its stable proximity to the outer wall 101, thus increasing its stability. After the adjusting plate 401 is installed, the locking strip 402 is positioned externally, achieving the locking... The connecting bar 402 limits the position of the adjusting plate 401 after installation, increasing the stability of the adjusting plate 401. The adjusting rod 404 screwed onto the adjusting plate 401 can adjust the position of the contact component 5 after the adjusting rod 404 rotates. The contact frame 501 is equipped with four sets of outer frames, and the contact frame 501 is installed on the adjusting plate 401 through the four sets of outer frames. Springs are added to the outer frames of the contact frame 501, so that the adjusting rod 404 of the adjusting plate 401 can push out the contact component 5 after rotation, thereby adjusting the position of the contact component 5. The track 503 is installed at the position of the contact plate 502 on the contact frame 501, so that the track 503 is close to the outer wall 101 under the action of the contact plate 502, so that the bearing component 3 can contact the mounting component 1 through the contact component 5 on the adjusting component 4, allowing the bearing component 3 to move up and down along the mounting component 1, so that the track 503 can stably increase the stability of the bearing component 3.
Claims
1. A construction formwork, characterized in that: The installation includes an installation component (1); the outer wall (101) of the installation component (1) is a vertical structure, and a horizontal floor slab is provided at the top of the outer wall (101). An installation frame (103) is installed at the floor slab position at the top of the outer wall (101). A hanging component (2) is installed on the installation frame (103). A bearing component (3) is connected to the bottom of the hanging component (2). An adjustment component (4) is installed near the outer wall (101) where the bearing component (3) is attached. A contact component (5) is installed on the adjustment component (4). The contact component (5) is in direct contact with the outer wall (101).
2. The construction formwork as described in claim 1, characterized in that: A protruding support block (102) is provided at the floor slab at the top of the outer wall (101). An installation frame (103) is fixed on the support block (102). The front end of the installation frame (103) is set to extend. An installation rod (104) is connected to the lower end of the adjacent installation frames (103).
3. The construction formwork as described in claim 2, characterized in that: The top of the rigid rope (201) of the hanging component (2) is fixed to the motor and winch on the mounting rod (104), the bottom of the rigid rope (201) is connected to the connecting block (202), the connecting block (202) is fixed at the edge of the bearing component (3), the connecting block (202) and the rigid rope (201) are fitted with an installation sleeve (203), a fixing bolt (204) is installed at the bottom of the connecting block (202) and the rigid rope (201), and a spring is installed between the fixing bolt (204) and the installation sleeve (203).
4. The construction formwork as described in claim 1, characterized in that: The support frame (301) of the support component (3) has a grid-like structure. A configuration box (302) is provided at the bottom of the outer end of the support frame (301). The configuration box (302) has a cavity inside. The configuration box (302) and the support frame (301) are connected and fixed by a mounting buckle (303).
5. A construction formwork as described in claim 1, characterized in that: The adjusting plate (401) of the adjusting component (4) has a rectangular plate structure. The bottom of the adjusting plate (401) is provided with a bottom protrusion (403). The two sides of the adjusting plate (401) are provided with snap-fit strips (402). The adjusting plate (401) is snapped onto the bearing component (3) by the bottom protrusion (403). The snap-fit strips (402) are snapped onto the outside of the bearing component (3). A bolt is added to the top of the position where the adjusting plate (401) is installed on the bearing component (3). Adjusting rods (404) are screwed onto the upper and lower ends of the adjusting plate (401).
6. The construction formwork as described in claim 5, characterized in that: The contact component (5) has four sets of outer frames on its contact frame (501). The contact frame (501) is mounted on the adjustment plate (401) through the outer frames. A spring is installed between the outer frame of the contact frame (501) and the adjustment plate (401). A contact plate (502) is installed on the contact frame (501). A track (503) is installed at the position of the contact plate (502) of the contact frame (501). The contact plate (502) is in direct contact with the track (503).