A mobile platform device for high slope construction

CN224705443UActive Publication Date: 2026-09-01YUNNAN YUNLING EXPRESSWAY BRIDGE ENG CO LTD
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Patent Information

Application Number
CN202522072510.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-09-01
Estimated Expiration
2035-09-26

AI Technical Summary

Technical Problem

现有技术中,工作人员通常都是使用升降式高空作业平台来对高边坡进行修护工工作,工作人员搭乘到升降式高空作业平台上的支撑架中,然后通过升降夹将支撑架升高,让工作人员对高边坡进行修护,但现有的升降式高空作业平台在使用时,工作人员在平台升高后能够对高边坡的修护范围很小,在完成一定范围内的修护工作后,需要移动平台,才能对下一范围内的高边坡进行修护,需要先将升降架降低,工作人员从支撑架中下来,然后将升降架移动一定距离后,工作人员重新爬山支撑架,再将升降架升高,继续对高边坡进行修护,十分的麻烦,严重影响修护的效率

Benefits of technology

能够方便工作人员更大范围的对高边坡进行修护工作,提高工作人员的施工效率,通过第一气缸带动第二支撑杆相对第一支撑杆转动,第二气缸带动第四支撑杆相对第三支撑杆转动,第一连杆和第二连杆分别让第三支撑杆和第五支撑杆始终呈竖直状态,从而将第二支撑台升高,对一定范围内的高边坡修护完后,转动支撑壳,带动工作人员随着第二支撑台转动对更大角度内的高边坡进行修护,转动后,通过转动第二锥齿轮能够带动第一锥齿轮转动,从而带动第二支撑台转动,方便工作人员调整角度,方便对高边坡修护,通过转动调节螺纹杆带动限位杆滑动,限位轴在限位槽中转动且滑动,从而通过第一推杆和第二推杆带动第二支撑台相对第一支撑台滑动,能够在带动工作人员转动后,拉近工作人员与高边坡距离,方便对高边坡记性修护。

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Abstract

This utility model discloses a movable platform device for high slope construction, including a base, a support shell rotatably connected to the upper end of the base, a first support rod disposed at the upper end of the support shell, a second support rod rotatably connected to the free end of the first support rod, a third support rod rotatably connected to the free end of the second support rod, a fourth support rod rotatably connected to the free end of the third support rod, a fifth support rod rotatably connected to the free end of the first support rod, and a first support platform rotatably connected to the free end of the fifth support rod. A second support platform is slidably connected inside the first support platform, and an adjusting threaded rod is rotatably connected inside the second support platform. A first push rod is rotatably connected to one end of the first support platform, and a limit shaft is rotatably connected to the free end of the first push rod. A second push rod is rotatably connected to the outer side of the limit shaft. This utility model can facilitate workers to carry out repair work on high slopes over a wider area, improving the construction efficiency of workers.
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Description

Technical Field

[0001] This utility model relates to the field of construction platform technology, and in particular to a mobile platform device for high slope construction. Background Technology

[0002] Natural disasters not only cause significant losses to people's lives and property, but also severely damage the protective structures of high slopes, leading to geological hazards such as landslides and collapses. These geological disasters seriously impact human safety, necessitating frequent repairs of high slopes to prevent weathering and collapse. High slope repair work typically involves working at heights, usually requiring the construction of platforms to facilitate the repair process. In existing technologies, workers typically use aerial work platforms to repair high slopes. Workers board the support frame of the aerial work platform, which is then raised using lifting clamps to allow them to repair the slope. However, existing aerial work platforms have a limited range of slope repair capabilities after the platform is raised. After completing repairs within a certain area, the platform needs to be moved to repair the next area. This requires lowering the platform, getting off the support frame, moving the platform a certain distance, climbing back up the support frame, raising the platform again, and continuing the repair work. This process is extremely cumbersome and significantly reduces repair efficiency. Utility Model Content

[0003] The purpose of this invention is to provide a mobile platform device for high slope construction, which can facilitate workers to carry out repair work on high slopes over a wider area and improve the workers' construction efficiency.

[0004] The above-mentioned technical objective of this utility model is achieved through the following technical solution: A mobile platform device for high slope construction includes a base, a support shell rotatably connected to the upper end of the base, a first support rod vertically arranged at the upper end of the support shell, a second support rod rotatably connected to the free end of the first support rod, a third support rod rotatably connected to the free end of the second support rod, a fourth support rod rotatably connected to the free end of the third support rod, a fifth support rod rotatably connected to the free end of the first support rod, a first connecting rod rotatably connected to the third support rod, a second connecting rod rotatably connected to the free end of the third support rod, a first cylinder rotatably connected to the second support rod at one end of the first support rod, and a second cylinder rotatably connected to the fourth support rod at one end of the third support rod. The free end of the fifth support rod is rotatably connected to a first support platform. The fifth support rod contains a first driving device for driving the first support platform to rotate. The first support platform is slidably connected to a second support platform. The second support platform contains a horizontally arranged adjusting threaded rod. The outer side of the adjusting threaded rod is threadedly connected to a horizontally arranged limiting rod that is slidably connected to the second support platform. The upper end of the limiting rod has a limiting groove. The left and right sides of the first support platform, away from the second support platform, are rotatably connected to first push rods. The free end of each first push rod is rotatably connected to a limiting shaft that is movably connected to the limiting groove. The outer side of each limiting shaft is rotatably connected to a second push rod that is rotatably connected to the corresponding first push rod and to the second support platform. The second support platform contains a second driving device for driving the threaded rod to rotate.

[0005] By adopting the above technical solution, during construction, the experimental novel is stably placed on the ground using the base. Workers step onto the second support platform, and then the first cylinder is activated. The first cylinder drives the second support rod to rotate relative to the first support rod. The first support, through the first connecting rod, drives the third support rod to rotate relative to the second support rod. The second support rod then moves the third support rod upwards. Activating the second cylinder drives the fourth support rod to rotate relative to the third support rod. The fourth support rod then moves the fifth support rod upwards, causing the second connecting rod to rotate relative to the third support rod. This allows the fifth support rod to move up and down until it remains vertical. The fifth support rod then moves the first support platform upwards, and the second support platform, along with the worker, moves upwards along with the first support platform. The system is designed to lift and complete construction work. When workers need to work on a wider area, rotating the support shell causes the second support platform to rotate as well. The second support platform rotates to a new position, increasing the distance between the workers and the construction surface, making it impossible to complete the work. The first drive device rotates the first support platform so that it faces the construction surface. Then, the second drive device rotates the threaded rod, which in turn drives the limit rod to slide. The limit rod drives the limit shaft to rotate and slide in the limit groove. The limit shaft drives the first push rod and the second push rod to rotate, causing the second support platform to slide relative to the first support platform. This allows the workers to move closer to the construction surface and work on the new surface, thus facilitating construction on a wider area.

[0006] A further feature of this invention is that: a fixed shaft is vertically arranged at the upper end of the base; the support shell is rotatably connected to the upper end of the fixed shaft; a first bevel gear is arranged on the outer side of the fixed shaft; a second bevel gear meshing with the first gear is rotatably connected inside the support shell; and a first motor for driving the second gear to rotate is installed at the upper end of the support shell.

[0007] A further feature of this invention is that the first driving device includes a first bevel gear rotatably connected to one end of the first support rod near the first support platform, a rotating shaft rotatably connected to the first support platform at one end of the first bevel gear near the second support platform, a second bevel gear rotatably connected to the fifth support rod and meshing with the first bevel gear, and a second motor for driving the fourth gear to rotate is provided inside the fifth support rod.

[0008] A further feature of this invention is that a protective frame is provided around the edge of the upper end of the second support platform, and the second driving device includes a third bevel gear provided on the outside of the adjusting threaded rod, a fourth bevel gear rotatably connected and meshing with the third bevel gear inside the first support platform and close to it, a driving rod rotatably connected to the second support platform and the protective frame and vertically provided on the upper end of the fourth bevel gear, and a first throttle provided on the upper end of the driving rod.

[0009] A further feature of this invention is that: a control console is provided at one end of the protective frame, a plurality of control buttons are provided at equal intervals on the upper end of the control console, and a storage battery for providing power is provided on the base.

[0010] A further feature of this invention is that: a second throttle is provided at the upper end of the base; multiple universal wheels are provided at equal intervals at the lower end of the base; horizontally arranged fixed rods are rotatably connected to the front and rear sides of both the left and right ends of the base; a fixed threaded rod is threaded to the free end of each fixed rod; a second throttle is provided at the upper end of each fixed threaded rod; a support is rotatably connected to the lower end of each fixed threaded rod; a latch is provided at the upper end of the base near each fixed rod; and a buckle is rotatably connected to the upper end of each fixed rod near each latch.

[0011] Compared with the prior art, the present invention has the following beneficial effects: This system allows workers to perform slope repairs over a wider area, improving their efficiency. A first cylinder drives a second support rod to rotate relative to the first, and the second cylinder drives a fourth support rod to rotate relative to the third. A first and second connecting rod keep the third and fifth support rods vertical, raising the second support platform. After repairing a certain area of ​​the slope, rotating the support shell allows workers to repair slopes at larger angles. Rotating the second bevel gear drives the first bevel gear, which in turn rotates the second support platform, facilitating angle adjustments and slope repair. Rotating the adjusting threaded rod causes a limiting rod to slide, and the limiting shaft rotates and slides within the limiting groove. This, in turn, drives the second support platform to slide relative to the first support platform via the first and second push rods. This allows workers to move closer to the slope after rotation, facilitating thorough slope repair. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a partial sectional view of the present invention; Figure 3 This is a partial cross-sectional view showing the fifth support rod of this utility model; Figure 4 This is a partial sectional view showing the first support platform and the second support platform of this utility model.

[0013] In the diagram: 1. Base; 2. Fixed shaft; 3. First gear; 4. Support shell; 5. Second gear; 6. First motor; 7. First support rod; 8. Second support rod; 9. Third support rod; 10. Fourth support rod; 11. Fifth support rod; 12. First cylinder; 13. Second cylinder; 14. First connecting rod; 15. Second connecting rod; 16. First bevel gear; 17. Rotating shaft; 18. Second bevel gear; 19. Second motor; 20. First support platform; 21. Second support platform 22. Adjusting threaded rod; 23. Limiting rod; 24. Limiting groove; 25. Limiting shaft; 26. First push rod; 27. Second push rod; 28. Third bevel gear; 29. ​​Fourth bevel gear; 30. Drive rod; 31. First throttle; 32. Caster wheel; 33. Fixing rod; 34. Fixing threaded rod; 35. Support; 36. Second throttle; 37. Bayonet; 38. Buckle; 39. Protective frame; 40. Control console; 41. Control button; 42. Battery; 43. Push handle. Detailed Implementation

[0014] The present invention will be further described in detail below with reference to the accompanying drawings.

[0015] In the description of this utility model, it should be understood that the terms "upper", "lower", "left", "right", "front", "rear", "inner", "outer", etc., indicate the range or positional relationship based on the range or positional relationship shown in the drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific range, or be constructed and operated in a specific range. Therefore, they should not be construed as limitations on this utility model.

[0016] Furthermore, terms such as "horizontal" and "vertical" do not imply that components must be absolutely horizontal or suspended, but rather that they can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal than "vertical," and does not mean that the structure must be completely horizontal, but can be slightly tilted.

[0017] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set up," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection, a direct connection, or an indirect connection through an intermediate medium; or they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0018] Example, refer to Figure 1-4 A mobile platform device for high slope construction includes a base 1. A fixed shaft 2 is vertically arranged in the middle of the rear side of the upper end of the base 1. A support shell 4 is rotatably connected to the upper end of the fixed shaft 2. A first gear 3 is arranged on the outer side of the fixed shaft 2. A second gear 5 is rotatably connected to the upper end of the support shell 4 and meshes with it. A first motor 6 for driving the second gear 5 to rotate is installed on the upper end of the support shell 4, which can conveniently control the rotation of the support shell 4.

[0019] A first support rod 7 is vertically arranged at the upper end of the support shell 4. A second support rod 8 is rotatably connected to the upper end of the first support rod 7. A third support rod 9 is rotatably connected to the end of the second support rod 8 away from the first support rod. A fourth support rod 10 is rotatably connected to the end of the third support rod 9 away from the second support rod 8. A fifth support rod 11 is rotatably connected to the end of the fourth support rod 10 away from the third support rod 9. A first support platform 20 is rotatably connected to the upper left side of the first support rod 7. A first connecting rod 14 is rotatably connected to the second support rod 8. A second connecting rod 15 is rotatably connected to the end of the third support rod 9 away from the first connecting rod 14. This allows for easy lifting and lowering of the first support platform 20 to adjust its height.

[0020] The fifth support rod 11 is equipped with a first driving device for driving the first support platform 20 to rotate. The device includes a first bevel gear 16 rotatably connected to the upper end of the fifth support rod 11, and a second bevel gear 18 rotatably connected to the first bevel gear 16 and meshing with it. The upper end of the first bevel gear 16 is provided with a rotating shaft 17 rotatably connected to the fifth support rod 11. The upper end of the rotating shaft 17 is connected to the first support platform 20, which can easily drive the rotation of the first support platform 20, thereby facilitating the construction work of the workers.

[0021] A second support platform 21 is slidably connected inside the first support platform 20. A limiting rod 23 is slidably connected between the lower sides of the left and right ends inside the second support platform 21. An adjusting threaded rod 22, which is horizontally set and threadedly connected to the limiting rod 23, is rotatably connected to the lower side of the front end inside the second support platform 21. A limiting groove 24 is opened at the upper end of the limiting rod 23. Two limiting shafts 25, which are set at equal intervals, are slidably connected inside the limiting groove 24. Both the left and right sides of the rear side of the lower end inside the first support platform 20 can rotate. A first push rod 26 is connected to the limiting shaft 25. A second push rod 27 is rotatably connected to the left and right sides of the front side of the upper end of the second support platform 21, which is rotatably connected to the limiting shaft 25. This allows the second support platform 21 to slide relative to the first support platform 20, thus facilitating the repair of the high slope. A protective frame 39 is set around the edge of the upper end of the second support platform 21. A control console 40 is set at the left end of the bracket. Four control buttons 41 are evenly spaced on the upper end of the control console 40.

[0022] The second support platform 21 is equipped with a second driving device for driving the adjustment threaded rod 22 to rotate. The device includes a third bevel gear 28 located at the outer rear end of the adjustment threaded rod 22. A fourth bevel gear 29 that meshes with the third bevel gear 28 is rotatably connected to the upper end of the second support platform 21. A drive rod 30 that is rotatably connected to the second support platform 21 and the protective frame 39 is vertically arranged at the upper end of the fourth bevel gear 29. A first throttle 31 is provided at the upper end of the drive rod 30. A battery 42 for providing power is provided on the left side of the upper end of the base. A push handle 43 is provided on the rear side of the upper end of the base. Four universal wheels 32 are evenly spaced at the lower end of the base. A fixing rod 33 is rotatably connected to the front and rear sides of both the left and right ends of the base. A fixing threaded rod 34 is threaded to the end of each fixing rod 33 away from the base. A support 35 is rotatably connected to the lower end of each fixing threaded rod 34. A second handle 36 is horizontally provided at the upper end of each fixing threaded rod 34 to facilitate the stability of the base during construction. Two locking slots 37 are provided at the left and right ends of the upper end of the base. A buckle 38 that slides and connects to the corresponding fixing slot is rotatably connected to the upper end of each fixing rod 33 to facilitate the storage of the fixing rod 33.

[0023] Usage: During construction, push the base with the second handle 36 to rotate the caster wheel 32, moving the experimental novel to the required construction position. Then, release the buckle 38 from the latch 37, pull the fixing rod 33 to rotate relative to the base, and then turn the second handle 36 to rotate the fixing threaded rod relative to the fixing rod 33, causing the support 35 to touch the ground. Adjust the fixing threaded rod to make the base stable. The worker climbs into the protective frame 39, stands on the second support platform 21, and controls the first cylinder 12 to start via the control button 41 on the control console 40. The first cylinder 12 drives the second support rod 8 relative to the first support platform 21. The strut 7 rotates, providing the first support. Through the first connecting rod 14, the third support rod 9 rotates relative to the second support rod 8. The second support rod 8 then moves the third support rod 9 upwards, activating the second cylinder 13. The second cylinder 13 then rotates the fourth support rod 10 relative to the third support rod 9. The fourth support rod 10 then raises the fifth support rod 11, causing the second connecting rod 15 to rotate relative to the third support rod 9. This allows the fifth support rod 11 to move up and down until it remains vertical. The fifth support rod 11 then raises the first support platform 20. The second support platform 21, along with the workers, rises with the first support platform 20, completing the construction work.

[0024] When workers need to work on a wider area, battery 42 provides power, and control button 41 starts the first motor 6, which drives the second gear 5 to rotate. The second gear 5 rotates around the first gear 3, causing the support shell 4 to rotate relative to the fixed shaft 2. This causes the second support platform 21 to rotate as well. The worker moves the second support platform 21 to a new position. At this point, the distance between the worker and the work surface increases, making it impossible to complete the work. By starting the second motor 19, the second bevel gear 18 rotates, which in turn drives the first bevel gear 16 to rotate. The first bevel gear 16 drives the first support platform 20 through shaft 17. Rotate the first support platform 20 so that it faces the construction surface. Then, rotate the first throttle 31 to drive the drive rod 30 to rotate. The drive rod 30 drives the fourth bevel gear 29 to rotate. The fourth bevel gear 29 drives the third bevel gear 28 to rotate, which in turn drives the threaded rod to rotate. The threaded rod drives the limit rod 23 to slide. The limit rod 23 drives the rotating shaft 17 to rotate and slide in the limit groove 24. The limit shaft 25 drives the first push rod 26 and the second push rod 27 to rotate, thereby causing the second support platform 21 to slide relative to the first support platform 20. This allows the construction personnel to move towards the construction surface and carry out construction on the new construction surface, thus facilitating construction over a wider area.

[0025] This specific embodiment is merely an explanation of the present utility model and is not intended to limit the present utility model. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but as long as they are within the scope of the claims of the present utility model, they are protected by patent law.

Claims

1. A mobile platform device for high slope construction, comprising a base (1), characterized in that: The upper end of the base (1) is rotatably connected to a support shell (4). The upper end of the support shell (4) is vertically provided with a first support rod (7). The free end of the first support rod (7) is rotatably connected to a second support rod (8). The free end of the second support rod (8) is rotatably connected to a third support rod (9). The free end of the third support rod (9) is rotatably connected to a fourth support rod (10). The free end of the first support rod (7) is rotatably connected to a fifth support rod (11). The free end of the first support rod (7) is rotatably connected to a first connecting rod (14) rotatably connected to the third support rod (9). The free end of the third support rod (9) is rotatably connected to a second connecting rod (15) rotatably connected to the fifth support rod (11). One end of the first support rod (7) is rotatably connected to a first cylinder (12) rotatably connected to the second support rod (8). One end of the third support rod (9) is rotatably connected to a second cylinder (13) rotatably connected to the fourth support rod (10). The free end of the fifth support rod (11) is rotatably connected to a first support platform (20). The fifth support rod (11) is internally equipped with a first driving device for driving the first support platform (20) to rotate. The first support platform (20) is internally slidably connected to a second support platform (21). The second support platform (21) is internally rotatably connected to a horizontally arranged adjusting threaded rod (22). The outer side of the adjusting threaded rod (22) is threadedly connected to a horizontally arranged limiting rod (23) that is slidably connected to the second support platform (21). The upper part of the limiting rod (23)... A limiting groove (24) is provided at the end of the first support platform (20). The left and right sides of the end of the first support platform (20) away from the second support platform (21) are rotatably connected to the first push rod (26). The free end of each first push rod (26) is rotatably connected to the limiting shaft (25) movably connected to the limiting groove (24). The outer side of each limiting shaft (25) is rotatably connected to the corresponding first push rod (26) and rotatably connected to the second support platform (21). The second support platform (21) is provided with a second driving device for driving the threaded rod to rotate.

2. The mobile platform device for high slope construction according to claim 1, characterized in that: The upper end of the base (1) is vertically provided with a fixed shaft (2), the support shell (4) is rotatably connected to the upper end of the fixed shaft (2), a first gear (3) is provided on the outside of the fixed shaft (2), a second gear (5) that meshes with the first gear (3) is rotatably connected inside the support shell (4), and a first motor (6) for driving the second gear (5) to rotate is installed on the upper end of the support shell (4).

3. The mobile platform device for high slope construction according to claim 2, characterized in that: The first driving device includes a first bevel gear (16) rotatably connected to one end of the first support rod (7) near the first support platform (20), a rotating shaft (17) rotatably connected to the first support platform (20) at one end of the first bevel gear (16) near the second support platform (21), a second bevel gear (18) rotatably connected to the fifth support rod (11) and meshing with the first bevel gear (16), and a second motor (19) for driving the second gear (5) to rotate is provided inside the fifth support rod (11).

4. The mobile platform device for high slope construction according to claim 1, characterized in that: The upper end of the second support platform (21) is provided with a protective frame (39) around its edge. The second driving device includes a third bevel gear (28) provided on the outside of the adjusting threaded rod (22), a fourth bevel gear (29) rotatably connected to and meshing with the third bevel gear (28) inside the first support platform (20), a driving rod (30) rotatably connected to the second support platform (21) and the protective frame (39) and vertically provided on the upper end of the fourth bevel gear (29), and a first throttle (31) provided on the upper end of the driving rod (30).

5. The mobile platform device for high slope construction according to claim 4, characterized in that: One end of the protective frame (39) is provided with a control console (40), and multiple control buttons (41) are provided at equal intervals on the upper end of the control console (40). A storage battery (42) for providing power is provided on the base (1).

6. The mobile platform device for high slope construction according to claim 1, characterized in that: The upper end of the base (1) is provided with a push handle (43), and the lower end of the base (1) is provided with multiple universal wheels (32) at equal intervals. The left and right ends of the base (1) are rotatably connected to the front and rear sides with horizontally arranged fixed rods (33). The free end of each fixed rod (33) is threadedly connected to a fixed thread rod (34). The upper end of each fixed thread rod (34) is provided with a second turn handle (36). The lower end of each fixed thread rod (34) is rotatably connected to a support (35). The upper end of the base (1) near each fixed rod (33) is provided with a slot (37), and the upper end of each fixed rod (33) near each slot (37) is rotatably connected to a buckle (38).