Bilateral balance type hanging basket device for construction of external facade of hoist room

By designing a double-sided balanced suspended platform device for the exterior facade of the gate control room, the horizontal and vertical movement of the suspended platform was realized, solving the problems of high difficulty and high cost in the construction of the exterior facade of the gate control room, and improving construction efficiency and safety.

CN224078643UActive Publication Date: 2026-04-03THREE GORGES JINSHAJIANG CHUANYUN HYDROPOWER DEV CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

In the existing technology, the construction of the exterior facade of the gate opening and closing machine room is difficult, costly and has high safety risks. Traditional construction methods, such as erecting full-span scaffolding or using aerial work platforms, have many limitations.

Method used

Design a double-sided balanced suspended platform device for the construction of the exterior facade of a gate control room, including a moving mechanism installed on the roof and a connecting suspended platform. The lateral and vertical movement of the suspended platform is realized through guide rails and connecting rod assemblies. Combined with a tensioning assembly, the stress at the hinge is improved to ensure stability.

Benefits of technology

This reduced construction difficulty, improved construction efficiency, lowered costs, and enhanced construction safety and stability, enabling simultaneous construction of two sets of facades.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224078643U_ABST
    Figure CN224078643U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of hoist room construction, in particular to a bilateral balance type hanging basket device for hoist room facade construction, which comprises a moving mechanism mounted on a hoist room facade and in sliding fit with the hoist room facade, and hanging baskets respectively connected with the moving mechanism and positioned on the outer sides of two groups of parallel facades of a hoist room, the moving mechanism comprises a guide rail which is installed on the roof and arranged in the transverse direction and a connecting mechanism which is installed on the guide rail and connected with the two sets of hanging baskets. According to the utility model, two groups of external facades of the hoist room can be constructed simultaneously; the construction difficulty is greatly reduced, the construction efficiency is greatly improved, and the construction cost is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of construction technology for the exterior facade of a gate control room, and more specifically, to a double-sided balanced suspended platform device for the construction of the exterior facade of a gate control room. Background Technology

[0002] Fixed winch-type gate hoists are generally used for opening and closing gates of hydropower dams; the gate hoist is equipped with a gate leg structure and a top machine room; the main beam metal structure and exterior facade of the gate hoist room need to be regularly repaired for corrosion protection. In existing technologies, construction is generally carried out by erecting full-span scaffolding or using aerial work platforms.

[0003] The roof of the gate hoisting room is usually made up of two sets of symmetrical sloping surfaces installed on the wall; however, because the gate hoisting room is located at a high position and spans the flow channel, if full-span scaffolding is erected, the workload will be large, the construction period will be long, and the safety risks will be high.

[0004] If an aerial work platform is used, it is difficult for the platform to reach the gatehouse because the area around the gatehouse is open to the air. In addition, the height and span of the gatehouse are large, and the boom arm of the platform may not be able to cover all the exterior facades, which greatly increases the difficulty of construction. Utility Model Content

[0005] The technical problem to be solved by this utility model is to provide a double-sided balanced suspended platform device for the construction of the exterior facade of the gate opening and closing machine room, which can carry out the construction of the exterior facade of the gate opening and closing machine room at the same time; it greatly reduces the construction difficulty, greatly improves the construction efficiency, and reduces the construction cost.

[0006] The solution adopted by this utility model to solve the technical problem is:

[0007] A double-sided balanced suspended platform device for the construction of the exterior facade of a gate hoist room includes a moving mechanism installed on the roof of the gate hoist room and slidably engaged, and a suspended platform connected to the moving mechanism and located on the outer side of two sets of parallel exterior facades of the gate hoist room.

[0008] The moving mechanism includes a guide rail installed on the roof and arranged laterally, and a connecting mechanism installed on the guide rail and connected to the two sets of suspended baskets respectively.

[0009] In some possible implementations, the connecting mechanism includes a connecting rod assembly arranged in parallel and connected at both ends to two sets of suspended baskets, a connecting beam for connecting the two sets of connecting rod assemblies and arranged laterally, and a wheel set mounted on the connecting rod assembly and slidingly engaged with the guide rail.

[0010] In some possible implementations, the linkage assembly includes a first suspension beam, a second suspension beam symmetrically arranged and hinged to the first suspension beam, and a connector mounted on the first and second suspension beams for connecting the first and second suspension beams.

[0011] In some possible implementations, the connector includes a vertical rod installed on the side of the suspension beam one near the suspension beam two, a diagonal brace connected to the top of the vertical rod and the suspension beam one respectively to form a triangular truss structure, and a tensioning assembly connected to the top of the vertical rod and the suspension beam two respectively.

[0012] In some possible implementations, the tensioning assembly includes two sets of wire ropes and a turnbuckle for connecting the two sets of wire ropes and located between the two sets of wire ropes; one set of wire ropes is connected to the vertical rod at the end away from the turnbuckle, and the other set of wire ropes is connected to the suspension beam at the end away from the turnbuckle.

[0013] In some possible implementations, the connection point between the tensioning assembly and the second suspension beam is located at the middle of the second suspension beam.

[0014] In some possible implementations, the guide rail includes a guide rail one located at the ridge of the roof of the hoist house, a guide rail two located above the eaves of the roof of the hoist house and below the suspension beam one, and a guide rail three located above the eaves of the roof of the hoist house and below the suspension beam two; the wheel set includes a wheel set one located on the suspension beam one and used in conjunction with the guide rail one, a wheel set two located on the suspension beam one and used in conjunction with the guide rail two, a wheel set three located on the suspension beam two and used in conjunction with the guide rail one, and a wheel set four located on the suspension beam two and used in conjunction with the guide rail three.

[0015] In some possible implementations, U-shaped grooves are provided on the second and third guide rails, respectively.

[0016] In some possible implementations, limit blocks are installed at both ends of the guide rail one, guide rail two, and guide rail three respectively.

[0017] In some possible implementations, the included angle formed by the first suspension beam and the second suspension beam is A; the roof of the hoist house includes two sets of interconnected inclined surfaces, and the hinge formed by the two sets of inclined surfaces is B, where A = B.

[0018] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0019] This invention enables the construction of exterior facades by allowing the suspended platform to move vertically and horizontally; compared with existing technologies, it will greatly reduce construction costs and can simultaneously construct two opposing sets of exterior facades, thus greatly improving construction efficiency.

[0020] This utility model effectively avoids excessive stress at the hinge joint between suspension beam one and suspension beam two by setting a connecting piece, which greatly improves the stability of the entire device.

[0021] This utility model has a simple structure, is highly practical, and can be reused. Attached Figure Description

[0022] Figure 1 This is a front elevation view of the present invention;

[0023] Figure 2 This is a top view of the present invention;

[0024] Figure 3 This is a side view of the present invention;

[0025] Figure 4 for Figure 1 Enlarged view of point A in the middle;

[0026] The components are as follows: 1. Moving mechanism; 11. Guide rail; 111. Guide rail one; 112. Guide rail two; 113. Guide rail three; 12. Connecting mechanism; 121. Linkage assembly; 1211. Suspension beam one; 1212. Suspension beam two; 1213. Vertical rod; 1214. Diagonal brace; 122. Connecting beam; 131. Wheel set one; 132. Wheel set two; 133. Wheel set three; 134. Wheel set four; 14. Tensioning assembly; 141. Wire rope; 142. Turnbuckle nut; 2. Suspended platform; 100. Roof; 1001. Sloping surface. Detailed Implementation

[0027] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. The terms "first," "second," and similar terms used in this application do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Similarly, "a" or "one," etc., do not indicate a quantity limitation, but rather indicate the existence of at least one. In the implementation of this application, "and / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. In the description of the embodiments of this application, unless otherwise stated, "multiple" means two or more. For example, multiple positioning posts refer to two or more positioning posts. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0028] The present invention will now be described in detail.

[0029] like Figures 1-4 As shown:

[0030] A double-sided balanced suspended platform 2 device for the construction of the exterior facade of a gate hoist room includes a moving mechanism 1 installed on the roof 100 of the gate hoist room and slidably engaged, and a suspended platform 2 connected to the moving mechanism 1 and located on the outer side of two sets of parallel exterior facades of the gate hoist room.

[0031] The moving mechanism 1 includes a guide rail 11 installed on the roof 100 and arranged laterally, and a connecting mechanism 12 installed on the guide rail 11 and connected to the two sets of suspended baskets 2 respectively.

[0032] It should be noted that the suspended basket 2 in this utility model is an existing product that can be directly purchased and assembled; each set of suspended baskets 2 can be connected to the connecting mechanism 12 through two sets of suspension ropes.

[0033] In some possible implementations, the connecting mechanism 12 includes a connecting rod assembly 121 arranged in parallel and connected to two sets of suspended baskets 2 at both ends, a connecting beam 122 for connecting the two sets of connecting rod assemblies 121 and arranged in the transverse direction, and a wheel set installed at the bottom of the connecting rod assembly 121 and slidingly engaged with the guide rail 11 in the transverse direction.

[0034] Two sets of parallel connecting rod assemblies 121 are connected by a connecting beam 122. The same side of the two sets of connecting rod assemblies 121 is connected to the same set of suspended baskets 2 by a suspension rope. The wheel set is installed at the bottom of the connecting rod assembly 121 and slides in cooperation with the guide rail 11 to control the horizontal movement of the connecting rod assembly 121, the connecting beam 122, and the suspended basket 2 connected to the connecting rod assembly 121; thus realizing the construction of the facade. Specifically, since the suspended basket 2 itself can realize vertical lifting and lowering, its cooperation with the connecting assembly on the horizontal movement of the slide rail enables the construction of the entire facade.

[0035] When only one side of the facade is being constructed, the construction workers are located in the suspended platform 2 corresponding to that side of the facade, while a counterweight of the same weight as the construction workers will be placed in the suspended platform 2 on the other side to maintain balance.

[0036] When both suspended platforms 2 are used simultaneously, the weight in the two sets of suspended platforms 2 must be kept balanced. This balance can be achieved by adding a matching element to one set of suspended platforms 2.

[0037] In some possible implementations, the linkage assembly 121 includes a first suspension beam 1211, a second suspension beam 1212 that is symmetrically arranged with and hinged to the first suspension beam 1211, and a connector mounted on the first suspension beam 1211 and the second suspension beam 1212 for connecting the first suspension beam 1211 and the second suspension beam 1212.

[0038] Suspension beam 1211 and suspension beam 2 1212 have the same structure and dimensions; their longitudinal length will be greater than that of inclined plane 1001, so that there is a certain gap between the suspended platform and the exterior facade after it is lifted, thus avoiding collision with the exterior facade.

[0039] The suspension beam 1211 and the suspension beam 2 1212 are hinged together by a hinge. The wheel set will be set at the bottom of the suspension beam 1211 and the suspension beam 2 1212 respectively. The hinge point of the two is located directly above the ridge. The setting of the connecting parts will effectively improve the stress at the hinge point, avoid excessive stress at the hinge point, and ensure the stability of the two sets of suspended baskets 2.

[0040] In some possible implementations, to mitigate excessive stress at the hinge point using a connector, the connector includes a vertical rod 1213 installed on the side of suspension beam 1211 near suspension beam 2 1212, a diagonal brace 1214 connected to the top of the vertical rod 1213 and suspension beam 1211 respectively, forming a triangular truss structure, and a tensioning assembly 14 closedly connected to the top of the vertical rod 1213 and suspension beam 2 1212; the vertical rod 1213 is vertically arranged; the tensioning assembly 14 includes... It includes two sets of steel wire ropes 141 and a turnbuckle 142 for connecting the two sets of steel wire ropes 141 and located between the two sets of steel wire ropes 141; one end of one set of steel wire ropes 141 away from the turnbuckle 142 is connected to the vertical rod 1213, and the other end of the other set of steel wire ropes 141 away from the turnbuckle 142 is connected to the second suspension beam 1212; after the suspended platform 2 is installed in place, the two sets of steel wire ropes 141 are tensioned by turning the turnbuckle 142, which changes the force at the hinge point and avoids excessive force at the hinge point.

[0041] In some possible implementations, the connection point between the tensioning assembly 14 and the second suspension beam 1212 is located at the middle of the second suspension beam 1212.

[0042] In some possible implementations, to enable the connecting mechanism 12 to slide on the guide rail 11, the guide rail 11 includes a first guide rail 111 located at the ridge of the roof of the hoist house 100, a second guide rail 112 located above the eaves of the hoist house 100 and below the first suspension beam 1211, and a third guide rail 113 located above the eaves of the hoist house 100 and below the second suspension beam 1212; the wheel set includes a first wheel set 131 located at the bottom of the first suspension beam 1211 and used in conjunction with the first guide rail 111, a second wheel set 132 located at the bottom of the first suspension beam 1211 and used in conjunction with the second guide rail 112, a third wheel set 133 located at the second suspension beam 1212 and used in conjunction with the first guide rail 111, and a fourth wheel set 134 located on the second suspension beam 1212 and used in conjunction with the third guide rail 113.

[0043] Specifically, wheel set 131, wheel set 2 132, wheel set 3 133, and wheel set 4 134 are all casters with a stop function;

[0044] In some possible implementations, U-shaped grooves are provided on the second guide rail 112 and the third guide rail 113 respectively; the grooves effectively prevent the entire connecting mechanism 12 from moving longitudinally.

[0045] In some possible implementations, limit blocks are installed at both ends of the first guide rail 111, the second guide rail 112, and the third guide rail 113 respectively; the setting of the limit blocks will effectively prevent the connecting mechanism 12 from sliding out of the end of the groove.

[0046] In some possible implementations, the included angle formed by the first suspension beam 1211 and the second suspension beam 1212 is A; the roof 100 of the hoist house includes two sets of interconnected inclined surfaces 1001, and the hinge formed by the two sets of inclined surfaces 1001 is B, A = B; that is: the plane where the first suspension beam 1211 is located is parallel to the inclined surface below it; the plane where the second suspension beam 1212 is located is parallel to the inclined surface below it.

[0047] It should be noted that when the moving mechanism 1 moves laterally on the roof 100, it can be manually pushed. When the moving mechanism 1 moves, the suspended platform 2 can be placed on the ground or lifted and moved synchronously. When the suspended platform 2 moves synchronously, no one should be inside the suspended platform 2. After moving to the designated position, the wheel set is locked. Then the suspended platform 2 is adjusted to the designated height. Then the turnbuckle 142 is tightened to tension the wire rope 141, which improves the stress condition of the hinge used to connect the first suspension beam 1211 and the second suspension beam 1212, and ensures the working stability of the two sets of suspended platforms 2.

[0048] This invention is not limited to the specific embodiments described above. This invention extends to any new feature or combination disclosed in this specification, as well as any new method or process step or combination disclosed herein.

Claims

1. A double-sided balanced suspended platform device for the construction of the exterior facade of a gate operating room, characterized in that, It includes a sliding mechanism installed on the roof of the hoist house and in sliding cooperation, and a suspended basket connected to the sliding mechanism and located on the outer side of two sets of parallel facades of the hoist house; The moving mechanism includes a guide rail installed on the roof and arranged laterally, and a connecting mechanism installed on the guide rail and connected to the two sets of suspended baskets respectively.

2. The double-sided balanced suspended platform device for the construction of the exterior facade of a gate operating room according to claim 1, characterized in that, The connecting mechanism includes a connecting rod assembly arranged in parallel and connected to two sets of suspended baskets at both ends, a connecting beam for connecting the two sets of connecting rod assemblies along the longitudinal direction, and a wheel set installed on the connecting rod assembly and slidingly engaged with the guide rail.

3. A double-sided balanced suspended platform device for the exterior facade construction of a gate operating room according to claim 2, characterized in that, The linkage assembly includes a first suspension beam, a second suspension beam that is symmetrically arranged with the first suspension beam and hinged to it, and a connector installed on the first suspension beam and the second suspension beam for connecting the first suspension beam and the second suspension beam.

4. A double-sided balanced suspended platform device for the construction of the exterior facade of a gate operating room according to claim 3, characterized in that, The connector includes a vertical rod installed on the side of the suspension beam one near the suspension beam two, a diagonal brace connected to the top of the vertical rod and the suspension beam one respectively to form a triangular truss structure, and a tensioning assembly connected to the top of the vertical rod and the suspension beam two respectively.

5. A double-sided balanced suspended platform device for the exterior facade construction of a gate operating room according to claim 4, characterized in that, The tensioning assembly includes two sets of steel wire ropes and a turnbuckle for connecting the two sets of steel wire ropes and located between the two sets of steel wire ropes; one set of steel wire ropes is connected to the vertical rod at the end away from the turnbuckle, and the other set of steel wire ropes is connected to the suspension beam at the end away from the turnbuckle.

6. A double-sided balanced suspended platform device for the exterior facade construction of a gate operating room according to claim 4, characterized in that, The connection point between the tensioning assembly and the second suspension beam is located in the middle of the second suspension beam.

7. A double-sided balanced suspended platform device for the construction of the exterior facade of a gate operating room according to any one of claims 3-6, characterized in that, The guide rails include a guide rail 1 installed at the ridge of the roof of the hoist house, a guide rail 2 installed above the eaves of the roof of the hoist house and below the suspension beam 1, and a guide rail 3 installed above the eaves of the roof of the hoist house and below the suspension beam 2; the wheel set includes a wheel set 1 installed on the suspension beam 1 and used in conjunction with the guide rail 1, a wheel set 2 installed on the suspension beam 1 and used in conjunction with the guide rail 2, a wheel set 3 installed on the suspension beam 2 and used in conjunction with the guide rail 1, and a wheel set 4 installed on the suspension beam 2 and used in conjunction with the guide rail 3.

8. A double-sided balanced suspended platform device for the construction of the exterior facade of a gate operating room according to claim 7, characterized in that, U-shaped grooves are provided on guide rails two and three respectively.

9. A double-sided balanced suspended platform device for the construction of the exterior facade of a gate operating room according to claim 7, characterized in that, Limiting blocks are installed at both ends of guide rail one, guide rail two, and guide rail three respectively.

10. A double-sided balanced suspended platform device for the construction of the exterior facade of a gate operating room according to any one of claims 3-6, characterized in that, The included angle between the first suspension beam and the second suspension beam is A; the roof of the hoist house includes two sets of interconnected inclined planes, and the hinge formed by the two sets of inclined planes is B, where A=B.