Hanging basket for high-altitude electric power overhaul operation
By designing rotatable side support plates and drive components in the hanging basket for high-altitude power maintenance, the problem of insufficient range of movement and operation convenience of operators in the traditional hanging basket design is solved, and higher safety and space utilization are achieved, and a variety of operation scenarios are adapted to.
Patent Information
- Application Number
- CN202421798853.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-27
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-07-27
AI Technical Summary
The traditional hanging basket design limits the range of movement and operational convenience of the operators during high altitude operations, especially when side operations are required, fixed protective panels will become obstacles and affect operation efficiency.
A hanging basket for high-altitude power maintenance operations is designed, using rotatable side support plates and driving components. The side support plates can be adjusted from a flat position to an upright position. Through the driving of the driving components, the first standing section of the hanging basket body can be closed and unsealed, improving safety and space utilization.
Through the rotatable side support plate, the safety and space utilization of the hanging basket are improved, the operating range of workers is expanded, the operation convenience is improved, and a variety of operation scenarios are adapted to.
Smart Images

Figure CN222892978U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of equipment for high-altitude operations, and in particular to a hanging basket for high-altitude power maintenance operations. Background Art
[0002] With the development of the power maintenance industry, the safety and convenience of the suspended basket used for high-altitude power maintenance operations as an important auxiliary equipment have received more and more attention. The traditional suspended basket design usually only considers the basic load-bearing and protection functions, but in actual use, operators face many inconveniences and risks in high-altitude environments. Therefore, how to improve the versatility and operating efficiency of the suspended basket while ensuring the safety of operators has become an important topic in the current suspended basket design field.
[0003] In existing hanging basket designs, in order to solve the safety protection problem of high-altitude operations, a fixed protective plate structure is usually adopted. However, while this fixed protective plate provides certain protection, it also limits the range of movement and operational convenience of the operator. Especially when side operations are required, the fixed protective plate may become an obstacle and affect the operating efficiency.
[0004] Therefore, how to design a hanging basket that improves the range of activities and operating convenience of operators is an urgent problem to be solved. Utility Model Content
[0005] In order to improve the range of activities and operational convenience of operators, the present application provides a hanging basket for high-altitude power maintenance operations.
[0006] The present application provides a hanging basket for high-altitude power maintenance operations using the following technical solutions:
[0007] A hanging basket for high-altitude power maintenance work, comprising a hanging basket body, side support plates and a driving assembly;
[0008] The hanging basket body comprises a main support plate and a main protective plate, wherein the main support plate is arranged perpendicular to the first direction; the main protective plate is fixedly connected to the main support plate, and two main protective plates are spaced apart in the second direction, and the two main protective plates form a first standing area in the second direction;
[0009] One end of the side support plate is rotatably connected to the main support plate, and the side support plate is parallel to the second direction along the rotation axis of the hanging basket body;
[0010] The driving assembly is connected between the hanging basket body and the side support plate, and is used to drive the side support plate to rotate along the hanging basket body so that the side support plate is adjusted from a flat posture to an upright posture to close the port of the first standing interval in the third direction.
[0011] By adopting the above technical solution, when the hanging basket is lifted by a helicopter, the side support plates can be in an upright position; after the hanging basket is lifted to a desired height, the side support plates can be adjusted to a flat position by rotating the side support plates;
[0012] By arranging a rotatable side support plate, when it is necessary to close the first standing interval of the hanging basket body, the side support plate can be driven by the driving component to rotate to an upright posture. At this time, the side support plate can close the port of the first standing interval in the third direction to improve the safety of the hanging basket during use; when it is not necessary to close the first standing interval, the side support plate can be driven by the driving component to rotate in the opposite direction to a flat posture. At this time, the side support plate releases the closure of the first standing interval to increase the accommodating space of the hanging basket, improve the space utilization rate of the hanging basket, expand the working scope of the operating personnel, and facilitate the personnel to perform maintenance work on the equipment at the side support plate, thereby improving the convenience of operation.
[0013] Optionally, the driving assembly includes a first rotating shaft, a traction rope and a driving motor;
[0014] The first rotating shaft is rotatably connected to the hanging basket body along its own axis, and the driving motor is connected between the hanging basket body and the first rotating shaft to drive the first rotating shaft to rotate;
[0015] When the side branch plate is in an upright position, in a first direction, the first rotating shaft is located on a side of the side branch plate away from the main branch plate;
[0016] One end of the traction rope is fixedly connected to the first rotating shaft, and the other end is fixedly connected to the side support plate.
[0017] By adopting the above technical solution, during the forward rotation of the first rotating shaft, the traction rope is gradually wound around the first rotating shaft to rotate the side support plate from a horizontal position to an upright position; during the reverse rotation of the first rotating shaft, the traction rope is gradually peeled off from the first rotating shaft, and under the action of the gravity of the side support plate itself, the side support plate rotates from an upright position to a horizontal position; its structure is simple and the operation is relatively convenient.
[0018] Optionally, it further comprises a side baffle and an elastic member, wherein the side baffle is rotatably connected to the side branch plate so that the side baffle can be adjusted between a folded posture and an unfolded posture, and the side baffle is parallel to the second direction along the rotation axis of the side branch plate;
[0019] When the side support plate is in a flat position, the side barrier rod is in an extended position, and the side barrier rod is perpendicular to the side support plate;
[0020] When the side support plate is in an upright position, the side barrier rod is in a folded position, and the side barrier rod is parallel to the side support plate;
[0021] When the side support plate is in an upright position or a flat position, the elastic member is in a recoverable deformation state, and in the process of the side support plate rotating from the upright position to the flat position, the deformation amount of the elastic member increases.
[0022] By adopting the above technical solution, the side guard bar can protect the workers standing on the side support board; by rotating the side guard bar, multiple states are set for the side guard bar to adapt to more types of work scenarios; at the same time, an elastic part is provided to facilitate the adjustment of the side guard bar to the expanded posture.
[0023] Optionally, during the process of the side support plate rotating from a flat position to an upright position, the side baffle bar moves with the side support plate until it contacts the pushing end surface of the hanging basket body, so that the pushing end surface of the hanging basket body pushes the side baffle bar to rotate from an expanded position to a folded position.
[0024] By adopting the above technical solution, when the side baffles move with the side support plates, the side baffles are pushed to rotate by the hanging basket body, and there is no need for personnel to manually move the side baffles.
[0025] Optionally, it further comprises a limit stopper, wherein the limit stopper is fixedly connected to the side support plate;
[0026] When the side baffle is in the expanded position and the side branch plate is in the flat position, the limit stop block is located on the side of the side baffle close to the main branch plate, and the side baffle abuts against the limit stop block to prevent the side baffle from continuing to rotate toward the main branch plate.
[0027] By adopting the above technical solution, the rotation angle of the side baffle is limited by the limit block, so that the side baffle in the deployed posture can be prevented from continuing to rotate toward the side of the hanging basket body.
[0028] Optionally, a receiving groove for accommodating the side guard rod is provided on the side support plate.
[0029] By adopting the above technical solution, when the side support plate is in a flat position, under some operating conditions, if the side guard bar needs to be adjusted to a folded position, the side guard bar can be rotated into the storage groove to improve the flatness of the side support plate surface.
[0030] Optionally, one end of the side baffle rod away from the side support plate is fixedly connected to a guide block, and the guide block has an arc-shaped guide surface; when the side baffle rod is in an expanded posture, the arc-shaped guide surface is located on the side of the guide block close to the hanging basket body; the arc-shaped guide surface is used to contact the abutting end surface of the hanging basket body to guide the side baffle rod to rotate along the side support plate.
[0031] By adopting the above technical solution, the arc-shaped guiding surface can improve the smoothness of the rotation of the side baffle when the side baffle is pushed by the hanging basket body.
[0032] Optionally, a crossbar is also included;
[0033] The guide block is provided with a through hole, and when the side barrier is in an unfolded position, the through hole is parallel to the third direction;
[0034] The through hole is used for the transverse rod to pass through.
[0035] By adopting the above technical solution, the cross rod is moved from the side of the perforation away from the hanging basket body to the side close to the hanging basket body, so as to insert the cross rod into the guide block, so that the cross rod can protect the workers standing on the side support board.
[0036] Optionally, a placement groove for accommodating the cross rod is provided on one side of the two main protective plates close to each other, and a through groove is provided on the side wall of the placement groove along the third direction of the main protective plate;
[0037] The bottom wall of the placement groove is used to place the transverse rod, and the transverse rod can pass through the through groove and then be inserted into the through hole;
[0038] Different transverse rods on the same main protective plate are spaced apart in the second direction.
[0039] By adopting the above technical solution, the placement groove can be used to store the cross rod. At the same time, the cross rod can also be inserted into the through hole after passing through the placement groove and the through groove in sequence. Personnel only need to stand on the main support board to complete the work. There is no need for personnel to stand on the suspended end of the side support board to insert the cross rod, which improves the safety of the operation.
[0040] Optionally, the side baffle rod is a telescopic rod, and the heights of the placement groove and the through groove in the first direction are adapted to the movement stroke of the cross rod rising and falling synchronously with the side baffle rod. The hanging basket body is provided with a locking member for fixing the side baffle rod when it moves to the highest position as the side baffle rod moves.
[0041] By adopting the above technical solution, the height of the cross bar can be adjusted by adjusting the height of the side barrier bar to increase the protection height.
[0042] In summary, the present application includes at least one of the following beneficial technical effects:
[0043] 1. By setting a rotatable side support plate, when it is necessary to close the first standing interval of the hanging basket body, the side support plate can be driven by the driving component to rotate to an upright posture, at which time the side support plate can close the port of the first standing interval in the third direction to improve the safety of the hanging basket during use; when it is not necessary to close the first standing interval, the side support plate can be driven by the driving component to rotate in the opposite direction to a flat posture, at which time the side support plate releases the closure of the first standing interval to increase the accommodation space of the hanging basket and improve the space utilization rate of the hanging basket;
[0044] 2. By setting up side bars, the safety of people standing on the side support boards is improved;
[0045] 3. In the process of the side support plate rotating from a horizontal position to an upright position, the side baffle bar can be driven to rotate synchronously to a folded position through the push-pushing cooperation between the hanging basket body and the side baffle bar during the rotation of the side support plate; at the same time, by making the elastic part in a deformed state when the side support plate is in an upright position or a horizontal position, the side baffle bar can be automatically reset after the side baffle bar loses the external force, thereby improving the convenience of the side baffle bar during use. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] Figure 1 It is a structural schematic diagram of the side support plate in the hanging basket in the embodiment of the present application when it is in a flat position;
[0047] Figure 2 It is a structural schematic diagram of the side support plate in the hanging basket in the embodiment of the present application when it is in an upright position;
[0048] Figure 3 yes Figure 1 A magnified view of part A;
[0049] Figure 4 is a schematic diagram of the structure of the side guard bar in the embodiment of the present application when it is in an unfolded position;
[0050] Figure 5 2 is a schematic diagram of the structure of the side stopper, the fixed shaft, the elastic member and the limit stopper in the embodiment of the present application;
[0051] Figure 6 is a schematic structural diagram of a side guard bar in an embodiment of the present application when it is in a folded position;
[0052] Figure 7 is a schematic diagram of the structure of the side stopper and the guide block in an embodiment of the present application;
[0053] Figure 8 is a schematic diagram of the structure of the cross-bar and the side support plate in the embodiment of the present application, which is intended to illustrate the state when the cross-bar is passed through a plurality of guide blocks;
[0054] Fig. 9is a schematic diagram of the structure of the cross rod and the side support plate in the embodiment of the present application, which is intended to show the state when most of the cross rod is located in the placement groove;
[0055] Fig.10 yes Fig. 9 Enlarged view of part B.
[0056] Explanation of the reference numerals in the accompanying drawings: 1. Basket body; 11. Main support plate; 12. Main protective plate; 121. Weight-reducing hole; 122. Placement groove; 1221. Overlap inner wall; 123. Through groove; 13. First standing area; 14. Shed roof; 141. Support leg; 2. Side support plate; 21. Fixed axis; 22. Storage groove; 3. Drive assembly; 31. Mounting seat; 32. First rotating shaft; 33. Drive motor; 34. Traction rope; 35. Retaining ring; 4. Side stop rod; 41. Rotating end; 42. Elastic member; 43. Limit block; 44. Guide block; 441. Arc guide surface; 442. Perforation; 5. Cross rod; 6. Locking member. DETAILED DESCRIPTION
[0057] The following is combined with Figure 1-10 The present application is further described in detail. For ease of description, the present application introduces directional words such as a first direction, a second direction, and a third direction to form a three-dimensional reference direction. The directional words used, such as "a first direction, a second direction, and a third direction", can be specifically shown with reference to the figure, where X represents the first direction X, Y represents the second direction Y, and Z represents the third direction Z. The first direction X, the second direction Y, and the third direction Z are perpendicular to each other.
[0058] The present application embodiment discloses a hanging basket for high-altitude power maintenance operations. Figure 1 and Figure 2 The hanging basket for high-altitude power maintenance work includes a hanging basket body 1, a side support plate 2 and a driving assembly 3 for driving the side support plate 2 to move.
[0059] Reference Figure 1 and Figure 2 The hanging basket body 1 includes a main support plate 11 and two main protective plates 12, and the main support plate 11 is arranged perpendicular to the first direction;
[0060] The main protective plate 12 is fixedly connected to the main support plate 11, and the main protective plate 12 is arranged perpendicular to the second direction. In the second direction, two main protective plates 12 are arranged; the two main protective plates 12 form a first standing area 13 in the second direction, so that the two main protective plates 12 play a protective role for the workers standing in the first standing area 13;
[0061] In order to protect the top of the first standing area 13 , in some embodiments of the present application, the hanging basket body 1 also includes a shed roof 14 having support legs 141 , and the support legs 141 of the shed roof 14 are fixedly connected to the main protective plate 12 .
[0062] Reference Figure 1 In order to reduce the dead weight of the hanging basket body 1 , in some embodiments of the present application, a plurality of weight-reducing holes 121 are opened through the main protective plate 12 along the second direction to reduce the weight of the main protective plate 12 .
[0063] Reference Figure 1 and Figure 2 , two side support plates 2 are provided, and the two side support plates 2 are spaced apart in the third direction, one end of the side support plate 2 is a suspended end, and the other end is hinged to the hanging basket body 1, so that the side support plate 2 can be transformed between a flat posture and an upright posture. In the present disclosure, the side support plate 2 is rotatably connected to the main support plate 11 through a hinge shaft, and the side support plate 2 is parallel to the second direction along the rotation axis of the main support plate 11;
[0064] In the horizontal position: the side support board 2 is parallel to the main support board 11, and the operator can walk back and forth between the side support board 2 and the main support board 11;
[0065] In the upright posture: the side support plates 2 are arranged perpendicular to the third direction, so that the side support plates 2 close the two ports of the first standing section 13 in the third direction, so that the two main protection plates 12 and the two side support plates 2 surround the first standing section 13;
[0066] It should be understood that the aforementioned "side branch plate 2 is parallel to the main branch plate 11, and the side branch plate 2 is arranged perpendicular to the third direction" is not completely parallel and perpendicular, and the existence of an angle deviation is also within the reasonable protection scope of this application.
[0067] Reference Figure 2 and Figure 3 The driving assembly 3 is used to drive the posture of the side support plate 2 to change, and each driving assembly 3 drives one side support plate 2; the driving assembly 3 includes a mounting seat 31, a first rotating shaft 32, a driving motor 33 and a traction rope 34, the mounting seat 31 is fixedly connected to the hanging basket body 1, and in the present disclosure, the mounting seat 31 is fixedly connected to the shed roof 14. In the second direction, the mounting seat 31 is configured with two, the first rotating shaft 32 is penetrated through the mounting seat 31 along the second direction, and the first rotating shaft 32 is rotatably connected to the mounting seat 31 through a bearing; the driving motor 33 is a servo motor, and the housing of the driving motor 33 is fixedly connected to one of the mounting seats 31, and the output shaft of the driving motor 33 is coaxially fixedly connected to the first rotating shaft 32, so that the driving motor 33 drives the first rotating shaft 32 to rotate along the mounting seat 31;
[0068] When the side support plate 2 is in an upright position, in the first direction, the first rotating shaft 32 is located at a side of the suspended end of the side support plate 2 away from the side support plate 2 along the rotating axis of the hanging basket body 1;
[0069] One end of the traction rope 34 is fixedly connected to the first rotating shaft 32, and the other end is fixedly connected to the suspended end of the side support plate 2;
[0070] Preferably, each driving assembly 3 in the present disclosure is provided with two traction ropes 34, and each of the front and rear ends of the side support plate 2 in the second direction is provided with a traction rope 34;
[0071] During the forward rotation of the first rotating shaft 32, the traction rope 34 is gradually wound around the first rotating shaft 32, and the side support plate 2 is rotated from a horizontal position to an upright position;
[0072] During the reverse rotation of the first rotating shaft 32, the traction rope 34 is gradually peeled off from the first rotating shaft 32, and the side support plate 2 rotates from an upright posture to a horizontal posture;
[0073] It should be understood that the aforementioned forward and reverse rotation of the first rotating shaft 32 does not refer to specific directions such as clockwise and counterclockwise, and is mainly to reflect two opposite rotation directions;
[0074] In the second direction, in order to limit the winding width of the traction rope 34, in some embodiments of the present application, a retaining ring 35 is coaxially fixedly connected to the first rotating shaft 32, and each traction rope is correspondingly configured with two retaining rings 35. The traction rope 34 is clamped between the two retaining rings 35 in the second direction.
[0075] Reference Figure 4 , Figure 5 and Figure 6 When the side support board 2 is in a flat position, in order to improve the safety of personnel standing on the side support board 2, in some embodiments of the present application, a plurality of side blocking bars 4 with rotating ends 41 are further included; a row of side blocking bars 4 are respectively arranged on both sides of the side support board 2 in the third direction, and each row is arranged with a plurality of side blocking bars 4. When the operator stands on the side support board 2, the two rows of side support boards 2 can protect the operator;
[0076] In order to rotate the side baffle 4, a fixed shaft 21 arranged parallel to the second direction is fixedly connected to the side support plate 2, and the rotating end 41 of the side baffle 4 is sleeved on the fixed shaft 21 and can rotate along the fixed shaft 21. By rotating the side support plate 2, the side baffle 4 can be transformed between the folded posture and the unfolded posture:
[0077] When the side baffle 4 is in the deployed position, the side baffle 4 is arranged perpendicular to the side support plate 2;
[0078] When the side baffle 4 is in the folded position, the side baffle 4 is arranged parallel to the side support plate 2;
[0079] In order to accommodate the side guard bar 4 in the folded position, a storage groove 22 adapted to the side guard bar 4 in the folded position is provided on the side support plate 2;
[0080] The rotation direction of the side baffle 4 from the unfolded posture to the folded posture is: from the end where the side support plate 2 and the main support plate 11 are hinged to the suspended end of the side support plate 2;
[0081] The rotation direction of the side baffle 4 from the folded posture to the unfolded posture is: from the suspended end of the side branch plate 2 to the end of the side branch plate 2 hinged to the main branch plate 11.
[0082] Reference Figure 5 and Figure 6 In order to drive the side baffle 4 to rotate from the folded posture to the unfolded posture, in some embodiments of the present application, an elastic member 42 is further included, one end of the elastic member 42 is fixedly connected to the side support plate 2, and the other end is fixedly connected to the baffle ring 35; when the side baffle 4 is in the folded posture and the unfolded posture, the elastic member 42 is in a recoverable deformation state, and during the process of the side baffle 4 rotating from the unfolded posture to the folded posture, the deformation amount of the elastic member 42 gradually increases, so as to store force to restore the side baffle 4 from the folded posture to the unfolded posture;
[0083] The present disclosure does not make any specific limitation on the specific type of the elastic member 42, as long as it can be used to push the side baffle rod 4 to rotate. For example, the elastic member 42 can be configured as a torsion spring sleeved on the fixed shaft 21, and one end of the elastic member 42 configured as a torsion spring is fixedly connected to the inner wall of the storage groove 22 of the side support plate 2, and the other end is fixedly connected to the rotating end 41 of the side baffle rod 4.
[0084] Reference Figure 5 and Figure 6 In order to prevent the side baffle rod 4 from rotating to tilt toward the first standing interval 13 under the drive of the elastic member 42, in the present disclosure, a limit stop block 43 is fixedly connected to the side support plate 2, and the limit stop block 43 is located on the side of the side baffle rod 4 close to the side support plate 2 along the rotation axis of the main support plate 11; when the side baffle rod 4 is in the deployed posture, the side baffle rod 4 contacts the limit stop block 43, so that the limit stop block 43 prevents the side baffle rod 4 from rotating toward the side of the side support plate 2 along the rotation axis of the main support plate 11; preferably, in the present disclosure, the limit stop block 43 is located in the storage groove 22.
[0085] Reference Figure 7 In order to drive the side baffle 4 to rotate from the unfolded posture to the folded posture, in the present disclosure, the orthographic projection of the side baffle 4 along the third direction is located within the orthographic projection of the main protective plate 12 in the third direction; during the rotation of the side support plate 2 to the upright posture, the side baffle 4 will be gradually stored in the storage groove 22 under the push action of the push end surface of the hanging basket body 1;
[0086] In order to improve the smoothness of the main protective plate 12 pushing the side baffle rod 4, in the present disclosure, the end of the side baffle rod 4 away from the mounting end is fixedly connected with a guide block 44, and the guide block 44 has an arc-shaped guide surface 441. When the side support plate 2 is in a flat position and the side baffle rod 4 is in an expanded position, the arc-shaped guide surface 441 is located on the side of the guide block 44 close to the first standing interval 13, and the opening of the arc-shaped guide surface 441 faces the side away from the first standing interval 13. In the process of the side baffle rod 4 rotating along the side support plate 2, the arc-shaped guide surface 441 is used to contact the main protective plate 12 to guide the side baffle rod 4 to rotate into the storage groove 22.
[0087] Reference Figure 8 , in order to further improve the safety of the workers when standing on the side support board 2, the present disclosure further includes a cross bar 5;
[0088] When the cross rod 5 is not needed, in order to accommodate the cross rod 5, the two main protection plates 12 are each provided with a placement groove 122 on one side close to each other, and the inner wall of the placement groove 122 close to the main support plate 11 is an overlap inner wall 1221, and the overlap inner wall 1221 is used to place the cross rod 5;
[0089] In order to prevent the cross-bar 5 from interfering with the side support plate 2 in an upright position, the length of the cross-bar 5 in the third direction is smaller than the length of the placement groove 122 in the third direction;
[0090] The main protective plate 12 is provided with a through groove 123 along the third direction, the through groove 123 is connected with the placement groove 122 in the third direction, and the groove bottom of the through groove 123 is flush with the overlapping inner wall 1221 of the placement groove 122; when the cross rod 5 is inserted into the through groove 123 along the third direction, the two inner side walls of the through groove 123 contact the cross rod 5 to limit the cross rod 5 from sliding along the second direction.
[0091] Reference Fig. 9 and Fig.10 A through hole 442 is formed on the guide block 44 along the third direction. When the cross rod 5 overlaps the overlapping inner wall 1221, the orthographic projection of the cross rod 5 in the third direction is located inside the orthographic projection of the hole wall of the through hole 442 in the third direction. Therefore, when the cross rod 5 is moved along the through groove 123, the cross rod 5 can be inserted into the through hole 442 on the guide block 44.
[0092] In order to prevent the two cross bars 5 installed on the same main fender 12 from interfering with each other, in the present disclosure, the two cross bars 5 installed on the same main fender 12 are spaced apart in the second direction.
[0093] Reference Fig. 9 and Fig.10In order to facilitate the adjustment of the height of the cross rod 5, in some embodiments of the present application, the side baffle 4 is configured as a telescopic rod, and the telescopic direction is parallel to the first direction; in the process of extending the side baffle 4, the side baffle 4 can be adjusted from the unfolded posture to the raised posture; in the process of extending the side baffle 4, the cross rod 5 is synchronously raised with the side baffle 4, and the height of the placement groove 122 and the through groove 123 in the first direction is adapted to the movement stroke of the cross rod 5 along the first direction with the side baffle 4;
[0094] A locking member 6 is also provided on the main guard plate 12, and the locking member 6 is used to fix the cross rod 5 at the working height. When the cross rod 5 is at the working height, the side guard rod 4 is in a raised position;
[0095] In the present disclosure, the locking member 6 is configured as a latch pin, and the locking member 6 passes through the main protective plate 12 on one side close to the first standing area 13 and is inserted into the through groove 123 , and the cross rod 5 overlaps the locking member 6 .
[0096] The implementation principle of a hanging basket for high-altitude power maintenance work in the embodiment of the present application is as follows: first, the side support plate 2 is adjusted to a flat position, then a person stands on the main support plate 11 and adjusts the side support plate 2 to an upright position;
[0097] Afterwards, the hanging basket can be lifted to the desired position by a helicopter. When working at high altitude, if the side support plate 2 is needed, especially when transporting materials pre-placed on the main support plate 11, the side support plate 2 needs to be adjusted to a flat position. During this process, the side guard bar 4 will be adjusted from a folded position to an unfolded position under the drive of the elastic member 42.
[0098] After adjusting the side support plate 2 to a flat position, insert the cross rod 5 placed on the overlapping inner wall 1221 into the guide block 44. Then, move the cross rod 5 upward to the working height, and insert the locking piece 6 into the main protective plate 12 to overlap the cross rod 5 on the locking piece 6. The side guard bar 4 can be adjusted to a raised position, and then personnel can stand on the side support plate 2 to work.
[0099] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. A hanging basket for high-altitude power maintenance work, characterized by: It comprises a hanging basket body (1), a side support plate (2) and a driving assembly (3); The hanging basket body (1) comprises a main support plate (11) and a main protective plate (12), wherein the main support plate (11) is arranged perpendicular to a first direction; the main protective plate (12) is fixedly connected to the main support plate (11), and two main protective plates (12) are spaced apart in a second direction, and the two main protective plates (12) form a first standing area (13) in the second direction; One end of the side support plate (2) is rotatably connected to the main support plate (11), and the side support plate (2) is parallel to the second direction along the rotation axis of the hanging basket body (1); The driving assembly (3) is connected between the hanging basket body (1) and the side support plate (2), and the driving assembly (3) is used to drive the side support plate (2) to rotate along the hanging basket body (1) so that the side support plate (2) is adjusted from a horizontal posture to an upright posture, so as to close the port of the first standing area (13) in the third direction.
2. A hanging basket for high-altitude power maintenance work according to claim 1, characterized in that: The driving assembly (3) comprises a first rotating shaft (32), a traction rope (34) and a driving motor (33); The first rotating shaft (32) is connected to the hanging basket body (1) in a rotational manner along its own axis, and the driving motor (33) is connected between the hanging basket body (1) and the first rotating shaft (32) to drive the first rotating shaft (32) to rotate; When the side support plate (2) is in an upright position, in a first direction, the first rotation axis (32) is located on a side of the side support plate (2) away from the main support plate (11); One end of the traction rope (34) is fixedly connected to the first rotating shaft (32), and the other end is fixedly connected to the side support plate (2).
3. A hanging basket for high-altitude power maintenance work according to claim 1, characterized in that: It also includes a side baffle (4) and an elastic member (42), wherein the side baffle (4) is rotatably connected to the side branch plate (2) so that the side baffle (4) can be adjusted between a folded posture and an unfolded posture, and the side baffle (4) is parallel to the second direction along the rotation axis of the side branch plate (2); When the side support plate (2) is in a flat position, the side blocking rod (4) is in an unfolded position, and the side blocking rod (4) is perpendicular to the side support plate (2); When the side support plate (2) is in an upright position, the side blocking rod (4) is in a folded position, and the side blocking rod (4) is parallel to the side support plate (2); When the side support plate (2) is in an upright position or a flat position, the elastic member (42) is in a recoverable deformation state, and in the process of the side support plate (2) rotating from the upright position to the flat position, the deformation amount of the elastic member (42) increases.
4. A hanging basket for high-altitude power maintenance work according to claim 3, characterized in that: During the process of the side support plate (2) rotating from a horizontal position to an upright position, the side baffle rod (4) moves along with the side support plate (2) until it contacts the push end surface of the hanging basket body (1), so that the push end surface of the hanging basket body (1) pushes the side baffle rod (4) to rotate from an expanded position to a folded position.
5. The hanging basket for high-altitude power maintenance work according to claim 3 is characterized by: It also includes a limit stopper (43), wherein the limit stopper (43) is fixedly connected to the side support plate (2); When the side baffle (4) is in the unfolded position and the side support plate (2) is in the flat position, the limit stop block (43) is located on the side of the side baffle (4) close to the main support plate (11), and the side baffle (4) abuts against the limit stop block (43) to prevent the side baffle (4) from continuing to rotate toward the side of the main support plate (11).
6. A hanging basket for high-altitude power maintenance work according to claim 4 or 5, characterized in that: The side support plate (2) is provided with a receiving groove (22) for accommodating the side blocking rod (4).
7. A hanging basket for high-altitude power maintenance work according to any one of claims 3 to 5, characterized in that: One end of the side baffle rod (4) away from the side support plate (2) is fixedly connected to a guide block (44), and the guide block (44) has an arc-shaped guide surface (441); when the side baffle rod (4) is in an expanded posture, the arc-shaped guide surface (441) is located on a side of the guide block (44) close to the hanging basket body (1); the arc-shaped guide surface (441) is used to contact the abutting end surface of the hanging basket body (1) to guide the side baffle rod (4) to rotate along the side support plate (2).
8. A hanging basket for high-altitude power maintenance work according to claim 7, characterized in that: Also includes a cross rod (5); The guide block (44) is provided with a through hole (442), and when the side blocking rod (4) is in an unfolded position, the through hole (442) is parallel to the third direction; The through hole (442) is used for the transverse rod (5) to pass through.
9. A hanging basket for high-altitude power maintenance work according to claim 8, characterized in that: A placement groove (122) for accommodating the cross rod (5) is provided on one side of the two main protective plates (12) close to each other, and a through groove (123) is provided on the side wall of the placement groove (122) of the main protective plate (12) along a third direction; The bottom wall of the placement groove (122) is used to place the transverse rod (5), and the transverse rod (5) can pass through the through groove (123) and then be inserted into the through hole (442); Different transverse rods (5) on the same main protective plate (12) are spaced apart in the second direction.
10. A hanging basket for high-altitude power maintenance work according to claim 9, characterized in that: The side baffle (4) is a telescopic rod, and the heights of the placement groove (122) and the through groove (123) in the first direction are adapted to the movement stroke of the cross rod (5) rising and falling synchronously with the side baffle (4). The hanging basket body (1) is provided with a locking member (6) for fixing the side baffle (4) to the highest position when the side baffle (4) moves.
Citation Information
Cited By
Bridge bottom construction tool conveying device
CN121107324A
A bridge bottom construction tool conveying device
CN121107324B