Adjustable inclined plane hanging basket
By installing an adjustable rod between the connecting frame and the track frame of the suspended platform, the problems of instability and non-adjustable slope of traditional inclined suspended platforms are solved, thereby improving the stability and safety of inclined construction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2026-03-10
AI Technical Summary
Traditional inclined suspended platforms are unstable and prone to swaying during construction, and their slope cannot be adjusted, resulting in poor safety and limited applicability.
An adjustable inclined suspended platform was designed. By setting an adjusting rod between the connecting frame and the track frame, its length can be changed to adapt to different slopes and ensure stable contact between the suspended platform and the building wall.
This technology improves the stability and safety of suspended platforms during sloping construction, adapts to the needs of buildings with different slopes, and enhances construction safety and efficiency.
Smart Images

Figure CN223984235U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of suspended platform technology, and more particularly to an adjustable inclined suspended platform. Background Technology
[0002] Suspended platforms are a new type of high-altitude work equipment that can replace traditional scaffolding, reduce labor intensity, improve work efficiency, and is reusable. With the development of infrastructure construction and the construction industry, the demand for suspended platforms is increasing. The use of construction suspended platforms has gradually become a trend and is widely recognized in the exterior wall construction, insulation construction, and high-altitude operations of high-rise buildings. Suspended platforms are flexible to operate, easy to relocate, convenient, practical, safe, and reliable.
[0003] During dam construction, the upstream and downstream dam faces frequently require seepage prevention, corrosion protection, and thermal insulation treatments. Suspended platforms are commonly used construction tools for this purpose. Traditional suspended platforms are only suitable for vertical construction. In inclined construction, the working surface is unstable, making the platform prone to swaying and instability during lifting and lowering. The platform is also susceptible to friction and collision with the building walls, making lifting and lowering difficult and posing a safety hazard. Existing inclined platform suspended platforms are mostly fixed structures with no adjustable slope, limiting their applicability. Utility Model Content
[0004] The purpose of this application is to provide an adjustable inclined suspended platform to solve the above-mentioned problems.
[0005] To achieve the above objectives, the technical solution of this application is as follows:
[0006] An adjustable inclined suspended platform includes a support frame and two connecting frames, which are disposed at both ends of the support frame; a track frame is hinged to the bottom of each connecting frame; an adjusting rod is provided on each connecting frame, with one end of the adjusting rod disposed in the connecting frame and the other end rotatably connected to the track frame.
[0007] Preferably, it also includes a hoist, which is hinged to the connecting frame; the traction line of the hoist is parallel to the track frame.
[0008] Preferably, there are two adjusting rods, which are arranged at intervals along the height direction of the connecting frame.
[0009] Preferably, the adjusting rod includes a first connecting rod, an adjusting ring, and a second connecting rod. One end of the first connecting rod is connected to the connecting frame, and the other end is screwed to one end of the adjusting ring. One end of the second connecting rod is screwed to the other end of the adjusting ring, and the other end is connected to the track frame.
[0010] Preferably, the connecting frame includes an upright, the top of which is hinged to a mounting frame, the hoist is mounted on the mounting frame, a limiting rod extends from the mounting frame, the limiting rod has a first limiting groove, and a second limiting groove is provided on one of the first connecting rods located above it, with adjusting studs passing through the first limiting groove and the second limiting groove.
[0011] Preferably, the track frame is provided with a rolling groove, and a roller is rotatably provided on the second connecting rod, the roller being located in the rolling groove; a slot is provided on the groove wall of the rolling groove, and a locking bolt is provided on the end face of the roller, the locking bolt passing through the slot and located outside the rolling groove.
[0012] Preferably, it also includes a protective frame, which is located on the side of the support frame facing away from the track frame, and the two ends of the protective frame are respectively connected to two connecting frames; the connecting frame is provided with a sliding sleeve, and a sliding rod is sleeved in the sliding sleeve. The sliding sleeve is provided with a first limiting hole, and the sliding rod is provided with a second limiting hole radially. There are multiple second limiting holes, and the multiple second limiting holes are spaced apart along the axial direction of the sliding rod.
[0013] Preferably, the bottom of the connecting frame, the track frame, and the sliding rod are all provided with traveling wheels.
[0014] The adjustable inclined suspended platform disclosed in this application has an adjusting rod connected to a frame at one end and rolled to a track frame at the other end. When the length of the adjusting rod increases, the angle between the track frame and the connecting frame increases, and when the length of the adjusting rod decreases, the angle between the track frame and the connecting frame decreases, thereby adapting to different building slopes and making the contact between the entire suspended platform device and the building wall more stable. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this application;
[0016] Figure 2 for Figure 1 Enlarged view of a portion of point A in the middle;
[0017] Figure 3 for Figure 1 Enlarged view of a portion of point B in the middle;
[0018] Figure 4 for Figure 1 A magnified view of a portion of point C in the middle.
[0019] In the picture:
[0020] 1. Connecting frame; 10. Upright pole; 11. Hoist; 12. Mounting frame; 120. Limiting rod; 121. First limiting groove; 2. Support frame; 3. Track frame; 30. Rolling groove; 31. Narrow groove; 310. Locking bolt; 40. First connecting rod; 400. Second limiting groove; 401. Adjusting stud; 41. Adjusting ring; 42. Second connecting rod; 43. Roller; 5. Protective frame; 50. Sliding sleeve; 500. First limiting hole; 51. Sliding rod; 510. Second limiting hole; 6. Traveling wheel. Detailed Implementation
[0021] The present application will now be described in further detail with reference to the accompanying drawings. The drawings are simplified schematic diagrams, illustrating only the basic structure of the present application, and therefore only show the components relevant to the present application.
[0022] like Figure 1-4 As shown, an adjustable inclined suspended basket includes a support frame 2 and two connecting frames 1, which are disposed at both ends of the support frame 2; a track frame 3 is hinged to the bottom of the connecting frame 1; an adjusting rod is provided on the connecting frame 1, one end of which is disposed in the connecting frame 1, and the other end is rotatably connected to the track frame 3.
[0023] The support frame 2 is used to support the staff. Two connecting frames 1 are respectively set at both ends of the support frame 2. Specifically, the bottom of the connecting frame 1 is connected to the support frame 2.
[0024] The track frame 3 has a certain length, and its bottom is hinged at the front end of the connecting frame 1, that is, at the end of the hinged frame near the dam slope.
[0025] One end of the adjusting rod is connected to the connecting frame 1, and the other end is slidably connected to the track frame 3. When the length of the adjusting rod increases, the angle between the track frame 3 and the connecting frame 1 increases, and when the length of the adjusting rod decreases, the angle between the track frame 3 and the connecting frame 1 decreases, thereby adapting to different building slopes and making the contact between the entire suspended platform and the building wall more stable.
[0026] In some further embodiments, a hoist 11 is also included, which is hinged to the connecting frame 1; the traction line of the hoist 11 is parallel to the track frame 3.
[0027] The hoist 11 is hinged on the connecting frame 1. The hoist 11 is mainly used to pull the entire suspended basket to move along the exterior wall of the building.
[0028] The traction line of the hoist 11 is parallel to the track frame 3 to ensure stability during the traction process.
[0029] In some further embodiments, there are two adjusting rods, which are spaced apart along the height direction of the connecting frame 1.
[0030] In this embodiment, there are two adjusting rods, one of which is located at the top and the other at the bottom. Setting two adjusting rods can strengthen the connection strength of the track frame 3 and ensure the structural stability of the connecting frame 1, the adjusting rod and the track frame 3.
[0031] In some further embodiments, the adjusting rod includes a first connecting rod 40, an adjusting ring 41, and a second connecting rod 42. One end of the first connecting rod 40 is connected to the connecting frame 1, and the other end is screwed to one end of the adjusting ring 41. One end of the second connecting rod 42 is screwed to the other end of the adjusting ring 41, and the other end is connected to the track frame 3.
[0032] Specifically, the screwing direction of the first link 40 and the adjusting ring 41 is exactly opposite to that of the second link 42 and the adjusting ring 41, so that when the adjusting ring 41 is rotated in different directions, the distance between the first link 40 and the second link 42 can be brought closer or further apart.
[0033] In some further embodiments, the connecting frame 1 includes a vertical pole 10, the top of which is hinged to a mounting frame 12. The hoist 11 is mounted on the mounting frame 12. A limiting rod 120 extends from the mounting frame 12. The limiting rod 120 is provided with a first limiting groove 121. A second limiting groove 400 is provided on a first connecting rod 40 located above it. An adjusting stud 401 passes through the first limiting groove 121 and the second limiting groove 400.
[0034] The hoist 11 is specifically mounted on the mounting frame 12. The bottom of the mounting frame 12 is hinged to the top of the upright 10. The top of the mounting frame 12 slides with the first connecting rod 40 through the first limiting slide groove 121, the second limiting slide groove 400 and the adjusting stud 401. When the adjusting stud 401 is locked, the angle of the mounting frame 12 cannot be adjusted. When the adjusting stud 401 is in the unlocked state, the angle of the mounting frame 12 can be adjusted to match the building's exterior wall.
[0035] In some further embodiments, the track frame 3 is provided with a rolling groove 30, and a roller 43 is rotatably provided on the second connecting rod 42. The roller 43 is located in the rolling groove 30. A slot 31 is provided on the groove wall of the rolling groove 30, and a locking bolt 310 is provided on the end face of the roller 43. The locking bolt 310 passes through the slot 31 and is located outside the rolling groove 30.
[0036] The ball bearings are slidably disposed in the rolling groove 30. The width of the groove 30 is smaller than the width of the roller 43 to prevent the roller 43 from detaching from the rolling groove 30.
[0037] The side wall of the rolling groove 30 is provided with a slot 31, and a locking bolt 310 is provided on the end face of the ball. When the locking bolt 310 is tightened, the roller 43 is locked in the rolling groove 30. When the track frame 3 needs to be adjusted, the locking bolt 310 can be loosened.
[0038] In some further embodiments, a protective frame 5 is also included. The protective frame 5 is located on the side of the support frame 2 facing away from the track frame 3. The two ends of the protective frame 5 are respectively connected to two connecting frames 1. The connecting frame 1 is provided with a sliding sleeve 50, and a sliding rod 51 is sleeved in the sliding sleeve 50. The sliding sleeve 50 is provided with a first limiting hole 500, and the sliding rod 51 is provided with a second limiting hole 510 radially. There are multiple second limiting holes 510, and the multiple second limiting holes 510 are spaced apart along the axial direction of the sliding rod 51.
[0039] The protective frame 5 is located between the two connecting frames 1, and a sliding rod 51 is slidably mounted on it via a sliding sleeve 50. The first limiting hole 500 and the second limiting hole 510 are used for the insertion of a pin shaft to limit the mutual sliding between the sliding rod 51 and the sliding sleeve 50, thereby limiting the position of the rod. In actual operation, the bottom of the sliding rod 51 always abuts against the wall of the building to provide auxiliary support for the support frame 2.
[0040] In some further embodiments, the bottom of the connecting frame 1, the track frame 3, and the sliding rod 51 are all provided with traveling wheels 6.
[0041] The driving wheel 6 is used to facilitate movement, and the driving wheel 6 can be a self-locking driving wheel 6.
[0042] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the scope of protection of this application.
Claims
1. An adjustable bevelled scaffold basket characterised in that, The utility model provides a kind of lifting device, including support frame (2) and two connecting frames (1), two described connecting frames (1) are arranged at the both ends of described support frame (2);The bottom of described connecting frame (1) is hingedly equipped with track frame (3);Adjusting rod is equipped on described connecting frame (1), one end of described adjusting rod is arranged in described connecting frame (1), and the other end is rolled with described track frame (3) connection.
2. The adjustable cantilevered scaffold of claim 1, wherein, Further comprising hoist (11), described hoist (11) is hingedly arranged on described connecting frame (1);The traction line of described hoist (11) is mutually parallel with described track frame (3).
3. The adjustable cantilevered scaffold of claim 2, wherein, The number of described adjusting rod is two, two described adjusting rods are arranged along the height direction of described connecting frame (1) interval.
4. The adjustable cantilevered scaffold of claim 3, wherein, Described adjusting rod includes first connecting rod (40), adjusting ring (41) and second connecting rod (42), one end of described first connecting rod (40) is connected with described connecting frame (1), and the other end is screwed with one end of described adjusting ring (41), one end of described second connecting rod (42) is screwed with the other end of described adjusting ring (41), and the other end is connected with described track frame (3).
5. The adjustable cantilevered scaffold of claim 4, wherein, Described connecting frame (1) includes vertical rod (10), the top of described vertical rod (10) is hingedly equipped with mounting frame (12), described hoist (11) is arranged on described mounting frame (12), limit rod (120) is extendedly equipped on described mounting frame (12), first limit sliding slot (121) is equipped on described limit rod (120), second limit sliding slot (400) is equipped on one of described first connecting rod (40) located above, and adjusting stud (401) is penetrated in described first limit sliding slot (121) and described second limit sliding slot (400).
6. The adjustable cantilevered scaffold of claim 5, wherein, Described track frame (3) is equipped with rolling groove (30), and rolling cylinder (43) is rotatably equipped on described second connecting rod (42), and described rolling cylinder (43) is located in described rolling groove (30);Slot (31) is opened on the groove wall of described rolling groove (30), locking bolt (310) is equipped on the end face of described rolling cylinder (43), and described locking bolt (310) is located outside described rolling groove (30) by penetrating described slot (31).
7. The adjustable cantilevered scaffold of claim 6, wherein, Further comprising protective frame (5), described protective frame (5) is located on the side of described support frame (2) away from described track frame (3), and the both ends of described protective frame (5) are connected with two described connecting frames (1) respectively;Sliding sleeve (50) is equipped on described connecting frame (1), sliding rod (51) is sleeved in described sliding sleeve (50), first limit hole (500) is equipped on described sliding sleeve (50), and second limit hole (510) is radially equipped on described sliding rod (51), and the number of described second limit hole (510) is multiple, and multiple described second limit hole (510) is arranged along the axial direction of described sliding rod (51) interval.
8. The adjustable cantilevered scaffold of claim 7, wherein, The bottom of described connecting frame (1), described track frame (3) and described sliding rod (51) is equipped with running wheel (6).