High slope construction hanging basket moving platform and using method

By combining lifting, moving, and guiding components with rod support and limiting, the problems of cumbersome construction and inconvenient movement of high slope construction platforms are solved, and the stable and flexible construction of the suspended platform on high slopes is achieved.

CN117248713BActive Publication Date: 2026-03-27CHINA MCC17 GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-01
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing high slope construction platforms are cumbersome to set up and are not convenient for lifting, moving, or flexible operation.

Method used

The lifting assembly raises and lowers the suspended platform to different positions on one side of the high slope. The moving and guiding assemblies drive the second mounting plate to move towards the high slope, allowing the insertion rod to be inserted into the inside of the high slope for support and limitation. The striking and transmission assemblies are combined to ensure the stability of the suspended platform.

Benefits of technology

It enables the suspended platform to move flexibly and provide stable support on high slopes, improving the flexibility and safety of construction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a high-slope construction hanging basket moving platform and a use method, and belongs to the technical field of high-slope construction platforms. The application comprises a hanging basket platform arranged at one side of a high-slope body, the upper end of the high-slope body is provided with a lifting assembly for lifting the hanging basket platform, the hanging basket platform comprises a bottom plate, the lower end of the bottom plate is provided with a supporting and limiting assembly for assisting in supporting the hanging basket platform after lifting, and the two sides of the lower end of the bottom plate are provided with sliding assemblies for facilitating lifting of the hanging basket platform. In the process of constructing the high-slope body, the hanging basket platform is lifted and moved to different positions at one side of the high-slope body through the lifting assembly at the top of the high-slope body, so that the different positions at one side of the high-slope body can be conveniently and flexibly constructed, the lifted hanging basket platform is supported and limited through the inserted inserting rods, and the hanging basket platform can be more stably used.
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Description

Technical Field

[0001] This invention relates to the field of high slope construction platform technology, and more specifically, to a mobile platform for high slope construction suspended scaffolding and its usage method. Background Technology

[0002] During the construction of high slopes, in order to ensure safety, scaffolding platforms need to be erected at the construction site. The erection of scaffolding platforms requires multiple uprights and horizontal bars to be installed and connected with limit locks. The erection process is quite complicated, and the erected scaffolding platforms are not convenient to lift, move, or operate flexibly at different locations on the high slope. Summary of the Invention

[0003] 1. The technical problem that the invention aims to solve

[0004] To address the shortcomings and deficiencies of existing technologies, this invention provides a passivation liquid level control device and method for a roller coating machine. During the construction of high slopes, this invention uses a lifting assembly at the top of the high slope to move a suspended platform to different positions on one side of the slope, facilitating flexible construction operations at different locations on the slope. After the suspended platform is moved to a designated position on the slope, a moving assembly and a guiding assembly drive a second mounting plate towards the slope. During the movement of the second mounting plate, one end of each of the insert rods on one side of the second mounting plate is inserted into the inner side of the high slope. These insert rods provide support and limit the movement of the raised and lowered suspended platform, ensuring more stable use of the platform.

[0005] 2. Technical Solution

[0006] To achieve the above objectives, the technical solution provided by the present invention is as follows:

[0007] The present invention discloses a mobile platform for high slope construction using suspended scaffolding, comprising a suspended scaffolding platform disposed on one side of a high slope, wherein a lifting assembly for traction and lifting of the suspended scaffolding platform is disposed at the upper end of the high slope, the suspended scaffolding platform includes a base plate, wherein multiple guardrails are fixed at the upper end of the base plate, and a protective baffle is installed above the suspended scaffolding platform; a support limiting assembly for auxiliary support during construction after the suspended scaffolding platform is lifted and lowered is disposed at the lower end of the base plate, and sliding assemblies for facilitating the lifting and lowering of the suspended scaffolding platform are disposed on both sides of the lower end of the base plate.

[0008] Further, the support limiting component comprises a first mounting plate arranged at the lower end of the bottom plate, the lower end of the bottom plate is provided with a moving component for moving the first mounting plate and a guiding component for guiding during the moving, the first mounting plate is connected with a second mounting plate through a connecting component, a plurality of insertion rods are arranged on one side of the second mounting plate, the front end of each insertion rod is arranged in a conical shape, and a knocking component for knocking the second mounting plate is arranged on the second mounting plate.

[0009] Further, the connecting component comprises a plurality of first sleeves fixed on the first mounting plate, each first sleeve is slidably connected with a first sliding rod, one end of the first sliding rod is fixed with the second mounting plate, and the outer side of each first sleeve is sleeved with a spring, and the two ends of the spring are connected with the first mounting plate and the second mounting plate respectively.

[0010] Further, the knocking component comprises a U-shaped frame fixed on the side of the second mounting plate close to the first mounting plate, a driving disc is connected to the second mounting plate through a support component, a plurality of protrusions for pushing the side of the U-shaped frame are fixed in an annular array on the driving disc, and a rotating component for rotating the driving disc is arranged on the first mounting plate.

[0011] Further, the support component comprises a fixing frame fixed on the second mounting plate, an installation shaft is rotatably connected to the fixing frame, one end of the driving disc is fixed with the installation shaft, and the driving disc and the installation shaft are concentrically arranged.

[0012] Further, the rotating component comprises a first gear fixed at one end of the installation shaft, a first rack is fixed on the side of the first mounting plate close to the second mounting plate, and the first rack and the first gear are arranged in meshing relationship.

[0013] Further, the moving component comprises an L-shaped frame fixed on one side of the bottom plate, a threaded pipe is rotatably connected to the L-shaped frame, a threaded rod is threadedly and rotatably connected to the threaded pipe, one end of the threaded rod is fixed with the first mounting plate, and a driving motor for driving the threaded pipe is arranged on the L-shaped frame.

[0014] The guiding component comprises two second sleeves fixed on one side of the L-shaped frame, the two second sleeves are respectively located on the two sides of the threaded pipe, a second sliding rod is slidably connected to the second sleeve, and one end of the second sliding rod is fixed with the first mounting plate.

[0015] Further, the sliding component comprises two mounting frames arranged below the bottom plate, rotating wheels are rotatably connected to the two mounting frames, and the mounting frames and the first mounting plate are connected and transmitted through a transmission component.

[0016] Further, the transmission assembly comprises a second rack fixed on one side of the first mounting plate, one side of the mounting frame is fixed with a third rack, the third rack is slidingly connected to the lower end of the bottom plate, the lower end of the bottom plate is rotatably connected with a transmission shaft, the transmission shaft is fixed with a second gear, the second gear is located between the second rack and the third rack, and the second gear is in meshing connection with the second rack and the third rack.

[0017] A use method of a high slope construction hanging basket moving platform, comprising the following steps:

[0018] S1: in the process of constructing the high slope, the hanging basket platform is lifted and moved to different positions on one side of the high slope through the lifting assembly on the top of the high slope body, so as to facilitate flexible construction operation on different positions on one side of the high slope;

[0019] S2: after the hanging basket platform is lifted and moved to the specified position on one side of the high slope, the driving motor is started, the threaded pipe is driven to rotate through the driving motor, in the process of rotating the threaded pipe, the first mounting plate is driven to move through the meshing transmission between the threaded pipe and the threaded rod, in the process of the force of the first mounting plate, the first mounting plate after being stressed moves towards the high slope through the guiding action of the second sleeve and the second slide rod;

[0020] S3: in the process of the first mounting plate moving, the second mounting plate moves towards the high slope through the connecting action of each component on the connecting assembly, in the process of the second mounting plate moving, the ends of each insertion rod on one side of the second mounting plate are inserted into the inside of the high slope and are blocked by the high slope;

[0021] S4: with the continuous movement and driving of the first mounting plate, the first mounting plate moves towards the second mounting plate, in the process of the first mounting plate moving, the first rack moves synchronously, in the process of the first rack moving, the mounting shaft is driven to rotate through the meshing transmission between the first rack and the first gear, in the process of the mounting shaft rotating, the driving disc moves synchronously, in the process of the driving disc rotating, each protrusion successively abuts against the end of the U-shaped frame, the U-shaped frame and the second mounting plate are knocked, under the knocking driving action, each insertion rod on the second mounting plate can be more deeply inserted into the inside of the high slope, the stability of the construction operation of the lifted hanging basket platform is ensured through the insertion and connecting action of each insertion rod;

[0022] S5: in the process of driving the first mounting plate to move towards the high slope, the second rack moves synchronously, in the process of the second rack moving, the mounting frame moves towards the lower side of the hanging basket platform through the meshing transmission between the second rack and the second gear and between the second gear and the third rack, so as to avoid unnecessary interference and influence of the extension of the mounting frame on the construction;

[0023] S6: After the construction of the designated position on the high slope is completed, the hanging basket platform needs to be lifted again to different height positions on the high slope for construction, and through the cooperation of the moving assembly and the guide assembly, the first mounting plate and the second mounting plate are driven to shrink towards the lower side of the hanging basket platform, so that the plurality of insertion rods are pulled out from the high slope, and in the process of the shrinkage movement of the second mounting plate, through the transmission effect of the transmission assembly, the mounting frame is driven to move towards the high slope, and in the process of movement, the rotating wheel on the mounting frame abuts against one side of the high slope, so that the hanging basket platform can be more smoothly adjusted in the lifting movement on one side of the high slope.

[0024] 3. Beneficial effects

[0025] Compared with the prior art, the technical scheme provided by the present application has the following beneficial effects:

[0026] In the process of construction of the high slope, the hanging basket platform is lifted and moved to different positions on one side of the high slope through the lifting assembly at the top of the high slope body, so that the construction operation on different positions on one side of the high slope can be flexibly performed, and after the hanging basket platform is lifted and moved to the designated position on one side of the high slope, the second mounting plate is driven to move towards the high slope through the moving assembly and the guide assembly, and in the process of movement of the second mounting plate, one end of each insertion rod on one side of the second mounting plate is inserted into the inner side of the high slope, so that the lifted hanging basket platform is supported and limited through the inserted insertion rod, and the hanging basket platform can be more stably used. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is a schematic diagram of the overall shape structure of the present application;

[0028] Figure 2 It is a schematic diagram of the hanging basket platform structure of the present application;

[0029] Figure 3 It is a schematic diagram of the support assembly structure of the present application;

[0030] Figure 4 It is a schematic diagram of the moving assembly, guide assembly, sliding assembly and transmission assembly structure of the present application;

[0031] Figure 5 It is a schematic diagram of the connection assembly structure of the present application;

[0032] Figure 6 It is a schematic diagram of the knocking assembly, support assembly and rotating assembly structure of the present application;

[0033] Figure 7 It is Figure 5 It is an enlarged schematic diagram of position A in the present application;

[0034] Figure 8For Figure 6 Enlarged structural schematic view at B in the middle.

[0035] In the figure: 1, high slope body; 2, hanging basket platform; 201, bottom plate; 202, guardrail; 203, protective baffle; 301, first mounting plate; 302, second mounting plate; 303, insertion rod; 401, first sleeve; 402, first sliding rod; 403, spring; 501, U-shaped frame; 502, driving disc; 503, protrusion; 601, fixing frame; 602, mounting shaft; 701, first gear; 702, first rack; 801, L-shaped frame; 802, threaded pipe; 803, threaded rod; 804, driving motor; 901, second sleeve; 902, second sliding rod; 1001, mounting frame; 1002, runner; 1101, second rack; 1102, third rack; 1103, transmission shaft; 1104, second gear. DETAILED DESCRIPTION

[0036] The application will be further described below in conjunction with the accompanying drawings and examples:

[0037] Example 1

[0038] The embodiments of the present application will be described in detail below with specific examples, and the advantages and effects of the present application can be understood by the content disclosed in the specification. It should be noted that the drawings provided in the following examples are only used for illustrative description, and the representation is only a schematic diagram, not a physical diagram, and should not be understood as a limitation of the present application. In order to better illustrate the embodiments of the present application, some components in the drawings may be omitted, enlarged or reduced, and do not represent the actual size of the product; for those skilled in the art, it is understandable that some well-known structures and their descriptions in the drawings may be omitted.

[0039] The same or similar reference numerals in the drawings of the embodiments of the present application correspond to the same or similar components, and in the description of the present application, it should be understood that the orientation or position relationship indicated by the terms "upper", "lower", "left", "right", "front", "back" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore the terms used to describe the position relationship in the drawings are only used for illustrative description, and cannot be understood as a limitation of the present application, and for those skilled in the art, the specific meaning of the above terms can be understood according to the specific situation.

[0040] From Figures 1-8It can be seen that the high slope construction basket moving platform of the embodiment comprises a basket platform 2 arranged on one side of a high slope body 1, and the upper end of the high slope body 1 is provided with a lifting assembly for lifting the basket platform 2. The basket platform 2 comprises a bottom plate 201, the upper end of the bottom plate 201 is fixed with a plurality of guardrails 202, and the upper side of the basket platform 2 is provided with a protective baffle 203. The lower end of the bottom plate 201 is provided with a support limiting assembly for assisting in supporting the basket platform 2 during construction after lifting, and the two sides of the lower end of the bottom plate 201 are provided with sliding assemblies for facilitating lifting of the basket platform 2.

[0041] During the construction of the high slope, the basket platform 2 is lifted and moved to different positions on one side of the high slope through the lifting assembly at the top of the high slope body 1, which facilitates flexible construction operation on different positions on one side of the high slope. After the basket platform 2 is lifted and moved to a designated position on one side of the high slope, the second mounting plate 302 is driven to move towards the high slope through the moving assembly and the guiding assembly. During the movement of the second mounting plate 302, one end of each of the insertion rods 303 on one side of the second mounting plate 302 is inserted into the inner side of the high slope. The inserted insertion rods 303 support and limit the lifted basket platform 2, which facilitates more stable use of the basket platform 2.

[0042] The support limiting assembly comprises a first mounting plate 301 arranged at the lower end of the bottom plate 201, a moving assembly for moving the first mounting plate 301 and a guiding assembly for guiding during movement are arranged at the lower end of the bottom plate 201, the first mounting plate 301 is connected with a second mounting plate 302 through a connecting assembly, a plurality of insertion rods 303 are arranged on one side of the second mounting plate 302, the front end of each of the insertion rods 303 is arranged in a tapered shape, and a knocking assembly for knocking the second mounting plate 302 is arranged on the second mounting plate 302.

[0043] After the basket platform 2 is lifted and moved to a designated position on one side of the high slope, the second mounting plate 302 is driven to move towards the high slope through the moving assembly and the guiding assembly. During the movement of the second mounting plate 302, one end of each of the insertion rods 303 on one side of the second mounting plate 302 is inserted into the inner side of the high slope. The inserted insertion rods 303 support and limit the lifted basket platform 2, which facilitates more stable use of the basket platform 2.

[0044] The connecting assembly comprises a plurality of first sleeves 401 fixed on the first mounting plate 301, a first sliding rod 402 is slidably connected to each of the first sleeves 401, one end of the first sliding rod 402 is fixed to the second mounting plate 302, a spring 403 is sleeved outside each of the first sleeves 401, and the two ends of the spring 403 are connected to the first mounting plate 301 and the second mounting plate 302, respectively.

[0045] The first mounting plate 301 and the second mounting plate 302 are connected through the first sleeve 401 and the first slide rod 402, and the first mounting plate 301 and the second mounting plate 302 are reset after relative movement through the springs 403.

[0046] The knocking assembly comprises a U-shaped frame 501 fixed on the side of the second mounting plate 302 close to the first mounting plate 301, the second mounting plate 302 is connected with a driving disc 502 through a supporting assembly, a plurality of protrusions 503 for pushing the side of the U-shaped frame 501 are fixed on the driving disc 502 in an annular array, and the first mounting plate 301 is provided with a rotating assembly for rotating the driving disc 502.

[0047] The driving disc 502 is driven to move synchronously through the cooperation of the rotating assembly and the supporting assembly, and in the process of rotating the driving disc 502, the ends of the U-shaped frame 501 are sequentially pushed by the protrusions 503, so that the U-shaped frame 501 and the second mounting plate 302 are knocked, and under the knocking driving action, the insertion rods 303 on the second mounting plate 302 can be more deeply inserted into the inner side of the high slope, and the stability of the construction operation of the hoist basket platform 2 after lifting is ensured through the insertion and connection of the insertion rods 303.

[0048] The supporting assembly comprises a fixed frame 601 fixed on the second mounting plate 302, the fixed frame 601 is rotatably connected with a mounting shaft 602, the driving disc 502 is fixed to one end of the mounting shaft 602, and the driving disc 502 and the mounting shaft 602 are concentrically arranged.

[0049] The fixed frame 601 and the mounting shaft 602 are used for supporting the driving disc 502 to rotate.

[0050] The rotating assembly comprises a first gear 701 fixed to one end of the mounting shaft 602, the first mounting plate 301 is fixed with a first rack 702 on the side close to the second mounting plate 302, and the first rack 702 and the first gear 701 are arranged in meshing relationship.

[0051] With the continuous movement of the first mounting plate 301, the first mounting plate 301 moves towards the second mounting plate 302, in the process of movement of the first mounting plate 301, the first rack 702 moves synchronously, in the process of movement of the first rack 702, the mounting shaft 602 is driven to rotate through the meshing transmission between the first rack 702 and the first gear 701, and in the process of rotation of the mounting shaft 602, the driving disc 502 moves synchronously;

[0052] The moving assembly comprises an L-shaped frame 801 fixed on one side of the bottom plate 201, an L-shaped frame 801, a threaded pipe 802 rotatably connected to the L-shaped frame 801, a threaded rod 803 threadedly engaged with the threaded pipe 802, one end of the threaded rod 803 fixed to the first mounting plate 301, and a drive motor 804 mounted on the L-shaped frame 801 for driving the threaded pipe 802.

[0053] The guide assembly comprises two second sleeve pipes 901 fixed on one side of the L-shaped frame 801, the two second sleeve pipes 901 being located on both sides of the threaded pipe 802, a second sliding rod 902 slidingly connected to the second sleeve pipe 901, and one end of the second sliding rod 902 fixed to the first mounting plate 301.

[0054] The drive motor 804 is started, the threaded pipe 802 is driven to rotate by the drive motor 804, in the process of rotation of the threaded pipe 802, the first mounting plate 301 is driven to move by the mutual engagement transmission between the threaded pipe 802 and the threaded rod 803, in the process of force of the first mounting plate 301, the first mounting plate 301 after being stressed is moved by the guiding action of the second sleeve pipe 901 and the second sliding rod 902.

[0055] The sliding assembly comprises two mounting frames 1001 arranged below the bottom plate 201, two rotating wheels 1002 rotatably connected to the two mounting frames 1001, and the mounting frames 1001 and the first mounting plate 301 connected and transmitted by the transmission assembly.

[0056] In the process of driving the first mounting plate 301 to move towards the high slope, the second rack 1101 is synchronously moved, in the process of movement of the second rack 1101, the mounting frame 1001 is moved to contract towards the lower side of the hanging basket platform 2 under the mutual engagement transmission action of the second rack 1101, the second gear 1104 and the third rack 1102, so as to avoid unnecessary interference of the extension of the mounting frame 1001 to the construction, after the construction of the specified position on the high slope is completed, the hanging basket platform 2 needs to be lifted to different height positions on the high slope for construction, the first mounting plate 301 and the second mounting plate 302 are driven to contract towards the lower side of the hanging basket platform 2 by the mutual cooperation of the moving assembly and the guide assembly, so that each inserting rod 303 is pulled out from the high slope, and in the process of contraction movement of the second mounting plate 302, the mounting frame 1001 is driven to move towards the high slope by the transmission of the transmission assembly, in the process of movement, the rotating wheel 1002 on the mounting frame 1001 is abutted with one side of the high slope, and the abutting action of the rotating wheel 1002 facilitates the smooth lifting movement adjustment of the hanging basket platform 2 on one side of the high slope.

[0057] The transmission assembly comprises a second rack 1101 fixed on one side of the first mounting plate 301, a third rack 1102 fixed on one side of the mounting frame 1001, the third rack 1102 being slidingly connected to the lower end of the bottom plate 201, the lower end of the bottom plate 201 being rotatably connected to a transmission shaft 1103, the transmission shaft 1103 being fixed with a second gear 1104, the second gear 1104 being located between the second rack 1101 and the third rack 1102, and the second gear 1104 being in meshing connection with the second rack 1101 and the third rack 1102;

[0058] In the process of driving the first mounting plate 301 to move, the second rack 1101 is driven to move synchronously, and in the process of moving the second rack 1101, the mounting frame 1001 and the rotating wheel 1002 move in the opposite direction of the first mounting plate 301 through the meshing transmission between the second rack 1101, the second gear 1104 and the third rack 1102.

[0059] A use method of a high-slope construction hanging basket moving platform, comprising the following steps:

[0060] S1: In the process of constructing the high slope, the hanging basket platform 2 is lifted and moved to different positions on one side of the high slope through the lifting assembly on the top of the high slope body 1, so as to facilitate the construction operation on different positions on one side of the high slope;

[0061] S2: After the hanging basket platform 2 is lifted and moved to the specified position on one side of the high slope, the driving motor 804 is started, the threaded pipe 802 is driven to rotate through the driving motor 804, the first mounting plate 301 is driven to move under stress through the meshing transmission between the threaded pipe 802 and the threaded rod 803 in the process of rotating the threaded pipe 802, and the first mounting plate 301 after stress is moved towards the high slope through the guiding action of the second sleeve 901 and the second slide rod 902;

[0062] S3: In the process of moving the first mounting plate 301, the second mounting plate 302 is driven to move towards the high slope through the connection of the components on the connecting assembly, and in the process of moving the second mounting plate 302, one end of each of the insertion rods 303 on one side of the second mounting plate 302 is inserted into the inside of the high slope and is blocked and limited by the high slope;

[0063] S4: With the continuous movement of the first mounting plate 301, the first mounting plate 301 is driven to move towards the second mounting plate 302, in the process of movement of the first mounting plate 301, the first rack 702 is driven to move synchronously, in the process of movement of the first rack 702, the mounting shaft 602 is driven to rotate through the mutual meshing transmission between the first rack 702 and the first gear 701, in the process of rotation of the mounting shaft 602, the driving disc 502 is driven to move synchronously, in the process of rotation of the driving disc 502, the protrusions 503 are in turn abutted with the end of the U-shaped frame 501, the U-shaped frame 501 and the second mounting plate 302 are knocked, under the knocking driving action, each insertion rod 303 on the second mounting plate 302 can be more deeply inserted into the inner side of the high slope, through the insertion connection action of each insertion rod 303, the stability of the construction operation of the lifted hanging basket platform 2 is ensured.

[0064] S5: In the process of driving the first mounting plate 301 to move towards the high slope, the second rack 1101 is driven to move synchronously, in the process of movement of the second rack 1101, the mounting frame 1001 is driven to move towards the lower side of the hanging basket platform 2 through the mutual meshing transmission action of the second rack 1101 and the second gear 1104 and the second gear 1104 and the third rack 1102, avoiding unnecessary interference influence of the extension of the mounting frame 1001 on construction.

[0065] S6: After the construction of the specified position on the high slope is completed, before the hanging basket platform 2 is lifted to the different height positions on the high slope for construction, through the mutual cooperation of the moving assembly and the guiding assembly, the first mounting plate 301 and the second mounting plate 302 are driven to move towards the lower side of the hanging basket platform 2, the insertion rods 303 are pulled out from the high slope, and in the process of contraction movement of the second mounting plate 302, the mounting frame 1001 is driven to move towards the high slope through the transmission action of the transmission assembly, in the process of movement, the rotating wheel 1002 on the mounting frame 1001 abuts with one side of the high slope, through the abutting action of the rotating wheel 1002, the hanging basket platform 2 can be more smoothly lifted and moved on one side of the high slope.

[0066] In the process of construction of the high slope, the hanging basket platform is lifted and moved to different positions on one side of the high slope through the lifting assembly on the top of the high slope body, the construction operation of different positions on one side of the high slope is facilitated, and after the hanging basket platform is lifted and moved to the specified position on one side of the high slope, the second mounting plate is driven to move towards the high slope through the moving assembly and the guiding assembly, one end of each insertion rod on one side of the second mounting plate is inserted into the inner side of the high slope in the process of movement of the second mounting plate, the lifted hanging basket platform is supported and limited through the inserted insertion rod, and the hanging basket platform is more stably used.

[0067] The above describes the present application and its embodiments in a schematic manner, and the description is not restrictive, and the embodiments shown in the drawings are only one of the embodiments of the present application, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by the above, without departing from the spirit of the present application, similar structural modes and embodiments can be designed without creativity, and all of them shall belong to the protection scope of the present application.

Claims

1. A mobile platform for high slope construction using suspended scaffolding, comprising a suspended scaffolding platform (2) disposed on one side of a high slope body (1), wherein the upper end of the high slope body (1) is provided with a lifting assembly for traction and lifting of the suspended scaffolding platform (2), the suspended scaffolding platform (2) includes a base plate (201), the upper end of the base plate (201) is fixed with a plurality of guardrails (202), and a protective baffle (203) is installed above the suspended scaffolding platform (2); characterized in that: The lower end of the base plate (201) is provided with a support limiting component for auxiliary support during construction after the suspended platform (2) is raised and lowered. The two sides of the lower end of the base plate (201) are provided with sliding components to facilitate the raising and lowering of the suspended platform (2). The support limiting component includes a first mounting plate (301) disposed at the lower end of the base plate (201). The lower end of the base plate (201) is provided with a moving component for moving the first mounting plate (301) and a guiding component for guiding during the movement. A second mounting plate (302) is connected to the first mounting plate (301) through a connecting component. A plurality of insert rods (303) are arranged and fixed on one side of the second mounting plate (302). The front end of each insert rod (303) is tapered. A striking component for striking the second mounting plate (302) is provided on the second mounting plate (302). The connecting assembly includes a plurality of first sleeves (401) fixed on a first mounting plate (301), each first sleeve (401) having a first slide rod (402) slidably connected thereto, one end of the first slide rod (402) being fixed to a second mounting plate (302), and a spring (403) being sleeved on the outside of each first sleeve (401), the two ends of the spring (403) being connected to the first mounting plate (301) and the second mounting plate (302) respectively; The striking assembly includes a U-shaped frame (501) fixed on the side of the second mounting plate (302) facing the first mounting plate (301). A drive disk (502) is connected to the second mounting plate (302) via a support assembly. The drive disk (502) has a plurality of protrusions (503) fixed in a circular array for pushing against one side of the U-shaped frame (501). The first mounting plate (301) is provided with a rotating assembly for rotating the drive disk (502). The support assembly includes a mounting bracket (601) fixed on a second mounting plate (302), a mounting shaft (602) rotatably connected to the mounting bracket (601), a drive disk (502) fixed to one end of the mounting shaft (602), and the drive disk (502) and the mounting shaft (602) are concentrically arranged. The rotating assembly includes a first gear (701) fixed to one end of the mounting shaft (602), and a first rack (702) fixed to the side of the first mounting plate (301) facing the second mounting plate (302). The first rack (702) and the first gear (701) are meshed with each other.

2. The mobile platform for high slope construction suspended scaffolding according to claim 1, characterized in that: The movable component includes an L-shaped frame (801) fixed to one side of the base plate (201), a threaded tube (802) rotatably connected to the L-shaped frame (801), a threaded rod (803) threadedly engaged with the threaded tube (802), one end of the threaded rod (803) being fixed to the first mounting plate (301), and a drive motor (804) for driving the threaded tube (802) mounted on the L-shaped frame (801). The guide assembly includes two second sleeves (901) fixed on one side of the L-shaped frame (801). The two second sleeves (901) are located on both sides of the threaded tube (802). A second slide rod (902) is slidably connected to the second sleeve (901). One end of the second slide rod (902) is fixed to the first mounting plate (301).

3. The mobile platform for high slope construction suspended scaffolding according to claim 2, characterized in that: The sliding assembly includes two mounting brackets (1001) disposed below the base plate (201), and two rotating wheels (1002) are rotatably connected to the two mounting brackets (1001). The mounting brackets (1001) are connected to the first mounting plate (301) via a transmission assembly.

4. The mobile platform for high slope construction suspended scaffolding according to claim 3, characterized in that: The transmission assembly includes a second rack (1101) fixed to one side of the first mounting plate (301), a third rack (1102) fixed to one side of the mounting bracket (1001), the third rack (1102) being slidably connected to the lower end of the base plate (201), a transmission shaft (1103) being rotatably connected to the lower end of the base plate (201), a second gear (1104) being fixed on the transmission shaft (1103), the second gear (1104) being located between the second rack (1101) and the third rack (1102), and the second gear (1104) being meshed with the second rack (1101) and the third rack (1102).

5. The method of using a mobile platform for high slope construction suspended scaffolding according to claim 4, characterized in that, Includes the following steps: S1: During the construction of the high slope, the suspended platform (2) is lifted and moved to different positions on one side of the high slope by the lifting assembly at the top of the high slope body (1), so as to facilitate flexible construction operations at different positions on one side of the high slope. S2: After the suspended platform (2) is lifted and moved to the designated position on one side of the high slope, the drive motor (804) is started. The drive motor (804) drives the threaded tube (802) to rotate. During the rotation of the threaded tube (802), the first mounting plate (301) is driven to move under force through the mutual meshing transmission between the threaded tube (802) and the threaded rod (803). During the process of the first mounting plate (301) being under force, the first mounting plate (301) moves towards the high slope through the guiding effect of the second sleeve (901) and the second slide rod (902). S3: During the movement of the first mounting plate (301), the second mounting plate (302) is driven to move towards the high slope through the connection of the various parts on the connecting assembly. During the movement of the second mounting plate (302), one end of each of the insert rods (303) on one side of the second mounting plate (302) is inserted into the inner side of the high slope and blocked and limited by the high slope. S4: As the first mounting plate (301) continues to move, it moves towards the second mounting plate (302). During the movement of the first mounting plate (301), it drives the first rack (702) to move synchronously. During the movement of the first rack (702), through the meshing transmission between the first rack (702) and the first gear (701), it drives the mounting shaft (602) to rotate. During the rotation of the mounting shaft (602), it drives the drive... The drive plate (502) moves synchronously. During the rotation of the drive plate (502), each protrusion (503) abuts against the end of the U-shaped frame (501) in sequence, striking the U-shaped frame (501) and the second mounting plate (302). Under the action of the striking, it is easier for each insert rod (303) on the second mounting plate (302) to be inserted deeper into the inner side of the high slope. Through the insertion and connection of each insert rod (303), the stability of the construction operation of the suspended platform (2) after lifting is guaranteed. S5: During the process of driving the first mounting plate (301) to move towards the high slope, the second rack (1101) is driven to move synchronously. During the movement of the second rack (1101), through the mutual meshing transmission between the second rack (1101) and the second gear (1104) and the second gear (1104) and the third rack (1102), the mounting frame (1001) moves towards the bottom of the suspended platform (2) to avoid unnecessary interference to the construction caused by the extension of the mounting frame (1001). S6: After the construction at the designated location on the high slope is completed, before the suspended platform (2) is raised and lowered to different heights on the high slope for construction, the first mounting plate (301) and the second mounting plate (302) are driven to retract towards the lower part of the suspended platform (2) through the cooperation of the moving component and the guiding component, so that each plug rod (303) is pulled out from the high slope. During the retraction movement of the second mounting plate (302), the installation frame (1001) is driven to move towards the high slope through the transmission action of the transmission component. During the movement, the rotating wheel (1002) on the installation frame (1001) abuts against one side of the high slope. Through the abutting action of the rotating wheel (1002), the suspended platform (2) can move and adjust more smoothly on one side of the high slope.

Citation Information

Patent Citations

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