CN220456994U - Photovoltaic box transformer operation platform - Google Patents

Photovoltaic box transformer operation platform Download PDF

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Publication number
CN220456994U
CN220456994U CN202322124137.5U CN202322124137U CN220456994U CN 220456994 U CN220456994 U CN 220456994U CN 202322124137 U CN202322124137 U CN 202322124137U CN 220456994 U CN220456994 U CN 220456994U
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CN
China
Prior art keywords
pedal
platform
rotating shaft
box transformer
mounting bracket
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202322124137.5U
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Chinese (zh)
Inventor
杨清
白勇
郭路平
张�雄
李超宇
史娟娟
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Yunnan Huadian Ludila Hydropower Co ltd
Binchuan Huadian New Energy Co ltd
Original Assignee
Yunnan Huadian Ludila Hydropower Co ltd
Binchuan Huadian New Energy Co ltd
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Filing date
Publication date
Application filed by Yunnan Huadian Ludila Hydropower Co ltd, Binchuan Huadian New Energy Co ltd filed Critical Yunnan Huadian Ludila Hydropower Co ltd
Priority to CN202322124137.5U priority Critical patent/CN220456994U/en
Application granted granted Critical
Publication of CN220456994U publication Critical patent/CN220456994U/en
Active legal-status Critical Current
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

Abstract

The utility model discloses an operation platform of a photovoltaic box transformer substation, which comprises a platform cover plate, a fence and a climbing assembly, wherein the fence is arranged on the platform cover plate; the climbing assembly comprises a rotating shaft, a mounting bracket and a pedal, wherein the rotating shaft is rotationally connected with the platform, the mounting bracket is fixedly arranged on the rotating shaft, and the pedal is arranged on the mounting bracket; the rotation axis passes through rotating assembly setting is in rail breach department, so that the installing support can rotate in the angle range of predetermineeing, the installing support is in the state of accomodating with the footboard and can blocks up rail breach so that the rail seals. The utility model is convenient for operators to enter the box transformer platform, and when not in use, the climbing assembly is retracted, so that unnecessary damage to the box transformer caused by entering the box transformer platform by nearby masses is avoided, and the potential safety hazard existing in entering the box transformer platform by masses is also avoided.

Description

Photovoltaic box transformer operation platform
Technical Field
The utility model relates to the field of photovoltaic box transformer operation platforms, in particular to an operation platform of a photovoltaic box transformer.
Background
Along with the rapid development of industrialization, the demand of society for energy is rapidly rising, and the development of various new energy is gradually generated and tends to be mature in face of the problems of resource shortage and environmental pollution of the traditional energy. The solar energy is a clean and efficient new energy source, and the solar energy is utilized for photovoltaic power generation, so that the solar energy power generation system has the advantages of safety, reliability, no noise, no pollution and the like, and is widely used in China. The photovoltaic power station is different according to the place where the photovoltaic power station is located, and the types of the power station are different, including mountain photovoltaic power stations, desert photovoltaic power stations, water photovoltaic, farmland photovoltaic and the like.
Because the photovoltaic power station area is big, the convenience of circuit construction around the project is not only considered in the setting of photovoltaic power station, whether the power station construction land threatens ecological environment still needs to be considered, builds the photovoltaic power station on the mountain area, can effectively reduce air pollution, reduces greenhouse gas's emission, and mountain area photovoltaic power station generally sets up under complicated topography conditions such as mountain area, hills in addition, and simultaneously, mountain area photovoltaic can effectively the energy saving, environmental pollution is reduced.
Because the mountain region photovoltaic topography is complex, the construction surface is uneven, the orientation is different, the local is accompanied by mountain furrows, the usable area of the topography is irregular and dispersed, the design difficulty is high in the construction process, and the potential safety hazards of maintenance and operation are more after the construction. Especially, the mountain region photovoltaic project box becomes high in the empty face, and high safety risks exist in overhauling and maintaining work, so that operation and maintenance personnel are not well protected. The current photovoltaic box becomes and only installs the photovoltaic box on the cement box becomes the basis, does not have corresponding protector around the case becomes, not only can not protect the personnel safety of operating personnel when overhauling the debugging, because the position that the photovoltaic box becomes is comparatively remote, equipment is not good management moreover, partly the crowd on the mountain is because curiosity is difficult to be avoided the photovoltaic box becomes, because uncontrollable factor, light then can cause the photovoltaic box to become destroyed, serious probably leads to the unexpected injury of crowd, so the photovoltaic box becomes all around does not have corresponding protector, has certain potential safety hazard.
Disclosure of Invention
The utility model mainly aims to provide an operation platform for a photovoltaic box transformer substation, which aims to solve the problems that the existing photovoltaic box transformer substation is not provided with a protection device and has potential safety hazards.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
an operating platform of photovoltaic case becomes, photovoltaic case becomes erects on the inclined plane that has the slope, operating platform includes:
the platform cover plates encircle the photovoltaic box transformer substation and are mutually spliced to form a table top for bearing;
the fences are fixedly arranged at the edge of the table top and are sequentially connected to form a fence, one side of the fence is provided with a notch, and the notch is communicated with the table top;
the climbing assembly comprises a rotating shaft, a mounting bracket and a pedal, wherein the rotating shaft is rotationally connected with the table top, the mounting bracket is fixedly arranged on the rotating shaft, and the pedal is arranged on the mounting bracket; the rotation shaft is rotatably arranged in the gap, the rotation shaft drives the mounting bracket to rotate within a preset angle range, and when the mounting bracket and the pedal are adjacent to the gap, the gap is blocked, so that the fence is closed.
As a further improvement of the utility model, a driving component is fixedly arranged on one side of the table surface adjacent to the notch, and the output end of the driving component is in power connection with the rotating shaft and is used for driving the rotating shaft to rotate within the preset angle range.
As a further improvement of the utility model, the climbing assembly comprises a linkage for retracting the pedal, the linkage comprising an adjustment mechanism provided on the mounting bracket, and a transmission mechanism provided on the rotation shaft; the transmission mechanism is in power connection with the adjusting mechanism, the adjusting mechanism is in power connection with the pedal, and the rotating shaft is further used for driving the pedal to synchronously rotate within the preset angle range.
As a further improvement of the utility model, the regulating mechanism comprises a pedal regulating wheel which is in power connection with the pedal and a pedal driving wheel which is rotatably arranged on the rotating shaft, wherein the pedal driving wheel is in power connection with the pedal regulating wheel so as to drive the pedal to rotate within the preset angle range; the transmission mechanism comprises a first transmission wheel fixedly arranged on the rotating shaft and a second transmission shaft in power connection with the first transmission wheel and the pedal driving wheel, the said The second transmission shaft synchronously transmits the rotation power of the rotation shaft to the pedal driving wheel.
As a further improvement of the utility model, the operating platform further comprises a connection assembly for supporting the table top; the connecting assembly comprises a supporting plate for supporting each platform cover plate and a connecting plate for connecting two adjacent supporting plates, wherein the supporting plates comprise supporting surfaces and first connecting holes, and the first connecting holes are fixedly arranged at two ends of the supporting plates; the two ends of the connecting plate are fixedly provided with a connecting groove and a second connecting hole, and the edge of the supporting surface is clamped in the connecting groove.
As a further improvement of the utility model, the connecting assembly further comprises a fixed foot fixedly arranged at the bottom of the supporting plate, the fixed foot is used for fixedly arranging the platform on the inclined plane, the fixed foot comprises a fixed rod and a telescopic rod movably arranged in the fixed rod, and the telescopic rod can be stretched or shortened in the fixed rod so as to adjust the fixed foot to be matched with the inclined plane.
As a further improvement of the utility model, an anti-slip layer for increasing friction is laid on the table top.
Compared with the prior art, the utility model has the following beneficial effects:
according to the photovoltaic box transformer substation, the platform is arranged on one circle of the photovoltaic box transformer substation, so that the maintenance of operators is facilitated, and meanwhile, the fence is arranged on one circle of the platform, so that the operators are prevented from falling off at high places due to accidents in the maintenance process, and the personal safety of the operators is protected; in addition, the rotatable climbing assembly is convenient for operators to enter the box transformer platform, when the box transformer platform is not used, the climbing assembly is folded, nearby masses are prevented from entering the box transformer platform, meanwhile, the folded climbing assembly and the fence form a closed space, nearby masses can be further prevented from entering the box transformer platform, unnecessary damage to the box transformer caused by the fact that the masses enter the box transformer platform is avoided, and potential safety hazards existing in the fact that the masses enter the box transformer platform are avoided.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of the structure of the climbing assembly of the present utility model;
FIG. 3 is a schematic diagram of a transmission mechanism according to the present utility model;
FIG. 4 is a schematic view of the structure of the fixing foot according to the present utility model;
FIG. 5 is a schematic view of a connecting assembly according to the present utility model;
FIG. 6 is a schematic view of a structure of a support plate according to the present utility model;
FIG. 7 is a schematic view of an extension connector according to the present utility model;
FIG. 8 is a schematic view of a corner connector according to the present utility model;
FIG. 9 is a schematic view of the climbing assembly of the present utility model in a stowed position.
Description of sequence number: 1-platform cover plate, 2-fence, 3-fixed footing, 4-connecting component, 5-climbing component, 31-fixed rod, 32-telescopic rod, 41-supporting plate, 42-connecting plate, 411-supporting surface, 412-first connecting hole, 421-extension connecting plate, 422-corner connecting plate, 4211-extension connecting plate groove, 4212-extension connecting plate supporting surface, 4213-extension connecting plate connecting hole, 4221-fence mounting hole, 51-rotating shaft, 52-first mounting bracket, 53-second mounting bracket, 54-pedal, 55-driving component, 511-first driving wheel, 512-second driving shaft, 513-second driving wheel, 514-third driving wheel, 541-pedal adjusting wheel, 542-synchronous belt and 543-pedal driving wheel.
Detailed Description
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the described embodiments are merely some, but not all embodiments of the present utility model. Embodiments and features of embodiments in this application may be combined with each other without conflict. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1, the present embodiment provides an embodiment of a photovoltaic box transformer operating platform, which is erected on an inclined surface having a gradient, and in the present embodiment includes a plurality of platform cover plates 1, a plurality of fences 2, and a climbing assembly 5.
Wherein, the platform cover plate 1 surrounds the photovoltaic box and is mutually spliced to form a table top for bearing, the fence 2 is fixedly arranged at the edge of the table top and is sequentially connected to form a fence, one side of the fence is provided with a notch, the notch is communicated with the table top, the climbing component 5 comprises a rotating shaft 51 rotationally connected with the table top, a mounting bracket fixedly arranged on the rotating shaft 51 and a pedal 54 arranged on the mounting bracket; the rotation shaft 51 is rotatably disposed at the notch of the enclosure, and drives the mounting bracket to rotate within a preset angle range, and when the mounting bracket and the pedal are adjacent to the notch, the notch is blocked to close the enclosure.
Further, a driving component 55 is fixedly arranged on one side of the table surface adjacent to the notch, and an output end of the driving component 55 is in power connection with the rotating shaft 51 and is used for driving the rotating shaft to rotate within a preset angle range;
the climbing assembly comprises a linkage piece for retracting the pedal, wherein the linkage piece comprises an adjusting mechanism arranged on the mounting bracket and a transmission mechanism arranged on the rotating shaft; the transmission mechanism is in power connection with the adjusting mechanism, the adjusting mechanism is in power connection with the pedal, and the rotating shaft is further used for driving the pedal to synchronously rotate within the preset angle range.
Preferably, as shown in fig. 2, the mounting bracket includes a first mounting bracket 52 and a second mounting bracket 53, the first and second mounting brackets 52 and 53 are parallel and fixedly disposed on the rotation shaft 51, a pedal 54 is disposed between the first and second mounting brackets 52 and 53 through a pedal mounting shaft fixedly disposed at a middle portion of the pedal 54, and the pedal mounting shaft is rotatably coupled to the first and second mounting brackets 52 and 53 through a bearing; the pedal installation shaft on one side is connected with a pedal adjusting wheel 541, a pedal driving wheel 543 is rotatably connected to a rotating shaft 51 through a bearing, a first driving wheel 511 is fixedly arranged on the rotating shaft 51, a second driving wheel 513 is connected to the first driving wheel 511 in a meshed manner, the second driving wheel 513 is arranged on a second driving shaft 512 through a bearing, the second driving shaft 512 is fixedly arranged on the platform, a third driving wheel 514 is further arranged on the second driving shaft 512, the third driving wheel 514 is connected with the pedal driving wheel 543 in a meshed manner, and preferably, as shown in the drawing, the pedal driving wheel 543 is in a convex structure, one end of the pedal driving wheel 543 is connected with the pedal adjusting wheel 541 in a power manner through a synchronous belt 542, and the other end of the pedal driving wheel is connected with the third driving wheel 514 in a meshed manner; the second transmission wheel 513 and the third transmission wheel 514 are provided as an integral structure.
Preferably, the driving assembly 55 is a servo motor, and the servo motor is generally fixed on the platform cover plate by adopting a bolt structure, or a shell of the servo motor can be fixed on the platform cover plate by adopting a welding mode, so that the motor is ensured to be stably fixed; in addition, the driving component 55 is provided with a control device, the control device and the servo motor are connected with an external power supply, and the control device is also connected with an operation end so that a worker can conveniently control the operation of the servo motor through the operation end, and the operation end can be provided with an electronic touch screen with a password or a portable remote control device so as to prevent other people except the worker from starting the servo motor at will; in addition, a protecting cover is arranged on a linkage part formed by the pedal driving wheel 543 and the synchronous belt 542 which are arranged on the second mounting bracket 53, so that the transmission structure is prevented from being exposed.
Preferably, after the platform cover plate 1 is paved, an anti-slip layer is paved on the surface of the platform cover plate, so that workers can be prevented from falling down due to accidents when walking on the platform.
It should be noted that, after the platform cover plates 1 are mutually spliced, they need to be fixed; in addition, according to the size of the operation platform which is required to be set, a whole cover plate with larger size can be adopted for paving the platform; when the cover plate is paved, the photovoltaic box can be positioned in the middle of the platform according to the installation position and the requirement of the photovoltaic box transformer substation; the photovoltaic box can be positioned on the other three sides except one side of the enclosure notch, and one side of the photovoltaic box, which is close to the enclosure, is the side without maintenance; the connecting structure of the pedal driving wheel 543 and the synchronous belt 542 can also adopt a transmission structure of a chain and a gear, and the transmission mechanism of the chain and the gear and the transmission mechanism of the synchronous belt are both mature prior art; when a transmission mechanism of a chain gear and a synchronous belt is adopted, the chain and the synchronous belt need to be tensioned, and the loosening condition cannot occur; the servo motor is controlled to operate in a mature prior art through the control device, the structure and the connection mode of the servo motor and the servo motor in the embodiment are conventionally applied, the embodiment is not repeated, and in addition, an anti-slip structure arranged on the surface of the platform cover plate 1 can adopt integrally formed anti-slip patterns and also can adopt an independently paved anti-slip rubber pad.
Illustrating: according to the size of a required platform, a platform cover plate 1 is paved on a circle of the photovoltaic box, so that an operator can walk and overhaul conveniently, the platform cover plate 1 can be paved by adopting a hot dip galvanized anti-skid steel plate with the thickness of 3mm and 600mm, the hot dip galvanized anti-skid steel plate is fixed after being paved, the platform cover plates can be connected in a welding mode to ensure the firmness of the hot dip galvanized anti-skid steel plate, holes can be punched on the cover plates, and then the two cover plates are fixed by adopting a bolt connecting piece; the platform cover plate is formed by splicing a plurality of boards with smaller sizes, so that convenience can be greatly improved during transportation and installation, and after the platform is paved, a layer of rubber pad can be continuously paved on the surface of the platform for increasing friction force and preventing operators from slipping down;
then, arranging a circle of fence 2 around the platform cover plate 1, wherein the fence 2 is arranged by adopting a stainless steel pipe with the height of 1400mm, and the width of a passage formed between the fence 2 and the photovoltaic box transformer substation is 1200mm; according to the topography and the convenience of entering and exiting, a notch is arranged on one side of the long side of the fence, and the width of the notch can be set to be 1200mm; in the climbing assembly of the embodiment, the distance between the first mounting bracket 52 and the second mounting bracket 53 is 1100mm, the length of the pedal 54 is 1000mm, the distance between two adjacent pedals 54 is larger than the width of the pedal 54, so that the two adjacent pedals 54 can not interfere when rotating, the first mounting bracket 52 and the second mounting bracket 53 are symmetrically arranged on the rotating shaft 51, servo motors are fixedly arranged on platforms at two sides of a notch, an output shaft of each servo motor is connected with the rotating shaft 51 through a coupling, and the other end of the rotating shaft 51 is connected with the platform through a bearing, so that the climbing assembly can be arranged at the notch; and then the second transmission shaft 512 and the platform are fixedly welded at the gap of the platform according to the positions of the pedal driving wheel 543 and the first transmission wheel 511.
When the climbing assembly needs to be put down to enable a person to get out, the portable remote control device of the control device controls the driving assembly 55 to operate by the servo motor arranged on the left side, so that the rotating shaft 51 rotates, and the climbing assembly is driven to rotate and put down; when the climbing component is required to be retracted, the left servo motor is controlled to be reversed, the climbing component can be retracted, when the climbing component rotates to be in the same plane with the fence, the notch of the fence can be stopped to be plugged, the entrance and exit of the box transformer platform are sealed, nearby masses can be effectively prevented from entering the box transformer platform, unnecessary damage to the box transformer caused by the fact that the masses enter the box transformer platform is avoided, and potential safety hazards existing when the masses enter the box transformer platform are avoided;
meanwhile, when the rotating shaft 51 rotates, the first driving wheel 511 rotates along with the rotating shaft 51, and drives the second driving wheel 513 in meshed connection to rotate, and the third driving gear 514 integrally arranged with the second driving wheel 513 also rotates synchronously, and the third driving gear 514 drives the pedal driving wheel 543 in meshed connection to rotate, so as to drive the synchronous belt 542 to rotate on the pedal driving wheel 543, thereby driving the pedal adjusting wheel 541 connected with the synchronous belt 542 to rotate, and the pedal can rotate.
The angle to the footboard is adjusted after the installation, at first put down climbing subassembly, one end and ground contact, the hold-in range of footboard regulating wheel 541 department that will adjust struts to both sides, the angle according to the position control footboard 54 of this moment, make the footboard be in horizontal position, then loosen the hold-in range, make the hold-in range with footboard regulating wheel 541 meshing can, can normal use after the regulation, when climbing subassembly is packed up, as shown in fig. 9, footboard 54 is along with rotating for the distance between two adjacent footboards reduces, can seal the rail breach, avoid irrelevant personnel to get into the platform.
Further improvements to the above embodiments are made in order to increase the mounting robustness and applicability of the platform, which comprises a connection assembly 4 for supporting a table top, as shown in fig. 5; the connecting assembly 4 comprises a supporting plate 41 for supporting each platform cover plate and a connecting plate 42 for connecting two adjacent supporting plates, the supporting plate 41 comprises a supporting surface 411 and a first connecting hole 412, and the first connecting holes 412 are fixedly arranged at two ends of the supporting plate 41; the two ends of the connecting plate 42 are provided with a connecting groove and a second connecting hole, and the edge of the supporting surface is clamped in the connecting groove, wherein the connecting plate 42 comprises an extension connecting plate 421 and a corner connecting plate 422.
Preferably, the bottom of the platform cover plate 1 is provided with a supporting plate 41, an extension connecting plate 421 and a corner connecting plate 422, and the cross section of the supporting plate 41 is of an L-shaped structure, so that the load intensity of the supporting plate 41 in a vertical plane can be effectively enhanced; the extension connection plate 421 comprises an extension connection plate groove 4211, an extension connection plate supporting surface 4212 and an extension connection plate connection hole 4213, one ends of two adjacent support plates 41 are respectively arranged in the groove of the extension connection plate 421, the extension connection plate connection hole 4213 and the first connection hole 412 are concentrically aligned, then bolts penetrate through the extension connection plate connection hole 4213 and the first connection hole 412 to fixedly connect the support plates 41 and the extension connection plate 421, stability of connection of the support plates 41 and the extension connection plate 421 is ensured, before construction, a corresponding number of support plates 41 and platform cover plates are selected according to the size of the platform required by the present place and the size of the platform cover plate 1 and the support plates 41, the support plates 41 and the platform cover plates are transported to the construction site for assembly connection, the corner connection plates 422 are arranged at corners of the platform for connecting the two perpendicular support plates, after the support plates 41 and the corner connection plates 422 are fixedly connected, the platform cover plates are paved on the support surfaces 411, paving of the platform cover plates can be completed, the platform cover plates and the support plates 411 can be fixedly connected by welding through the connection structures provided with bolts, and the fence cover plates 42can be further improved, and the fence cover plates can be conveniently and fixedly installed by arranging the bolts on the corner connection plates 422.
In order to make the platform still keep level in the place of the steep terrain, the above embodiment is further improved, as shown in fig. 5, the bottom of the supporting plate is fixedly provided with a fixing foot 3, the fixing foot 3 is used for fixing the platform on the slope, as shown in fig. 4, the fixing foot 3 comprises a fixing rod 31 and a telescopic rod 32, the telescopic rod 32 can be extended or shortened in the fixing rod 31 to adjust the length of the fixing foot 3 to adapt to the installation slope, so that the platform can still keep the flatness of the platform when being arranged on the slope with the steep slope.
Preferably, the fixing rod 31 and the telescopic rod 32 are connected by a screw structure, and the length of the fixing foot 3 can be adjusted by rotating the telescopic rod 32.
In order to improve the security of case platform operation in-process that flattens, be provided with fire-fighting equipment and monitoring system that makes a video recording on the platform apron, fire-fighting equipment includes fire control tool box and fire control emergency lighting system, the monitoring system that makes a video recording is used for monitoring the daily condition of case platform that becomes, and fire control tool box includes various fire-fighting tools and equipment such as fire extinguisher, and the case equipment of being convenient for breaks down emergency use under the condition of starting a fire, and monitoring system that makes a video recording can remote monitoring case equipment to the trouble of taking place is solved in the first time of being convenient for.
The embodiments of the utility model have been described in detail above, but they are merely examples, and the utility model is not limited to the above-described embodiments. It will be apparent to those skilled in the art that any equivalent modifications or substitutions to this utility model are within the scope of the utility model, and therefore, all equivalent changes and modifications, improvements, etc. that do not depart from the spirit and scope of the principles of the utility model are intended to be covered by this utility model.

Claims (7)

1. An operation platform of photovoltaic case becomes, photovoltaic case becomes to erect on the inclined plane that has the slope, its characterized in that, operation platform includes:
the platform cover plates encircle the photovoltaic box transformer substation and are mutually spliced to form a table top for bearing;
the fences are fixedly arranged at the edge of the table top and are sequentially connected to form a fence, one side of the fence is provided with a notch, and the notch is communicated with the table top;
the climbing assembly comprises a rotating shaft, a mounting bracket and a pedal, wherein the rotating shaft is rotationally connected with the table top, the mounting bracket is fixedly arranged on the rotating shaft, and the pedal is arranged on the mounting bracket; the rotation shaft is rotatably arranged in the gap, the rotation shaft drives the mounting bracket to rotate within a preset angle range, and when the mounting bracket and the pedal are adjacent to the gap, the gap is blocked, so that the fence is closed.
2. The operating platform of a photovoltaic box transformer substation according to claim 1, wherein a driving component is fixedly arranged on one side of the table surface adjacent to the notch, and an output end of the driving component is in power connection with the rotating shaft and is used for driving the rotating shaft to rotate within the preset angle range.
3. The operating platform of a photovoltaic box transformer substation of claim 1, wherein the climbing assembly comprises a linkage for retracting the pedals, the linkage comprising an adjustment mechanism disposed on the mounting bracket, and a transmission mechanism disposed on the rotating shaft; the transmission mechanism is in power connection with the adjusting mechanism, the adjusting mechanism is in power connection with the pedal, and the rotating shaft is further used for driving the pedal to synchronously rotate within the preset angle range.
4. A photovoltaic box-type substation operation platform according to claim 3, wherein the adjustment mechanism comprises a pedal adjustment wheel in power connection with a pedal, and a pedal driving wheel rotatably arranged on a rotation shaft, and the pedal driving wheel is in power connection with the pedal adjustment wheel to drive the pedal to rotate within the preset angle range; the transmission mechanism comprises a first transmission wheel fixedly arranged on the rotating shaft and a second transmission shaft in power connection with the first transmission wheel and the pedal driving wheel, and the second transmission shaft synchronously transmits the rotating power of the rotating shaft to the pedal driving wheel.
5. The operating platform for a photovoltaic box transformer substation of claim 1, further comprising a connection assembly for supporting the table top; the connecting assembly comprises a supporting plate for supporting the platform cover plate and a connecting plate for connecting two adjacent supporting plates, wherein the supporting plate comprises a supporting surface and first connecting holes, and the first connecting holes are fixedly arranged at two ends of the supporting plate; the two ends of the connecting plate are fixedly provided with a connecting groove and a second connecting hole, and the edge of the supporting surface is clamped in the connecting groove.
6. The photovoltaic box transformer substation operation platform according to claim 5, wherein the connection assembly further comprises a fixing foot fixedly arranged at the bottom of the supporting plate, the fixing foot is used for fixedly arranging the platform on the inclined plane, the fixing foot comprises a fixing rod and a telescopic rod movably arranged in the fixing rod, and the telescopic rod can be lengthened or shortened in the fixing rod to adjust the fixing foot to be matched with the inclined plane.
7. The operating platform of a photovoltaic box transformer substation of claim 1, wherein an anti-slip layer for increasing friction is laid on the table top.
CN202322124137.5U 2023-08-08 2023-08-08 Photovoltaic box transformer operation platform Active CN220456994U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322124137.5U CN220456994U (en) 2023-08-08 2023-08-08 Photovoltaic box transformer operation platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322124137.5U CN220456994U (en) 2023-08-08 2023-08-08 Photovoltaic box transformer operation platform

Publications (1)

Publication Number Publication Date
CN220456994U true CN220456994U (en) 2024-02-06

Family

ID=89735023

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322124137.5U Active CN220456994U (en) 2023-08-08 2023-08-08 Photovoltaic box transformer operation platform

Country Status (1)

Country Link
CN (1) CN220456994U (en)

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