Photovoltaic panel installation auxiliary equipment applied to modularized photovoltaic power generation system
By designing a photovoltaic panel installation auxiliary equipment including bottom plate, electric push rod, load bearing mechanism and auxiliary components, the shortcomings in the adaptability and automation of traditional equipment are solved, flexible installation and efficient protection of photovoltaic panels of different sizes are achieved, and the applicability and automation of the equipment are improved.
Patent Information
- Application Number
- CN202510161913.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2045-02-14
AI Technical Summary
Traditional photovoltaic panel installation auxiliary equipment has insufficient adaptability and automation, and it is difficult to flexibly deal with photovoltaic panels of different sizes. The degree of automation of the installation process is easy to cause damage to the photovoltaic panels and low installation accuracy.
A photovoltaic panel installation auxiliary equipment including a base plate, an electric push rod, a load bearing mechanism and an auxiliary component is designed. The electric push rod drives the load bearing mechanism to move up and down, and the auxiliary components are combined with the rolling belt and the limiting plate to realize the adaptive installation and fixation of the photovoltaic panel.
It realizes flexible adaptation of photovoltaic panels of different widths and lengths, improves the applicability and working stability of the equipment, reduces the risk of photovoltaic panel damage, and greatly improves the degree of installation automation and reduces labor costs.
Smart Images

Figure CN119945267A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of new energy equipment, and in particular to photovoltaic panel installation auxiliary equipment applied to a modular photovoltaic power generation system. Background Art
[0002] In the field of new energy, modular photovoltaic power generation systems are developing rapidly, and photovoltaic panel installation auxiliary equipment is crucial. It is mainly used to carry, transport and accurately position photovoltaic panels in the construction of photovoltaic power stations or the installation and maintenance of photovoltaic equipment, ensuring the installation process is efficient and safe, and ensuring that photovoltaic panels are accurately positioned and firmly connected on the mounting frame. It is a key device to improve the efficiency and quality of photovoltaic power generation system construction, and is of great significance to promoting the use of new energy.
[0003] However, traditional photovoltaic panel installation auxiliary equipment has many shortcomings. In terms of adaptability, it is difficult to flexibly cope with photovoltaic panels of different sizes, and the compatibility with changes in width and length is poor. It is often necessary to customize equipment for photovoltaic panels of specific specifications or make frequent adjustments, which increases costs and time consumption and limits the versatility of the equipment. The photovoltaic panel fixing and protection mechanism is imperfect, and it is easy to be damaged by shaking and equipment friction during transportation. In addition, there is a lack of effective buffering and shock absorption. The resonance phenomenon increases the risk of damage and reduces the yield rate of photovoltaic panels. In addition, the installation process has a low degree of automation and relies heavily on manual operation to release the fixation and adjust the position. It requires a large amount of manpower and low efficiency. It is easy to introduce human errors, which affects the installation accuracy and system performance. It is difficult to meet the development needs of a large-scale, high-efficiency photovoltaic industry and needs to be improved urgently. Summary of the invention
[0004] The present invention provides a photovoltaic panel installation auxiliary device applied to a modular photovoltaic power generation system, which solves the problems mentioned in the above background technology.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: A photovoltaic panel installation auxiliary device applied to a modular photovoltaic power generation system, comprising a bottom plate, the bottom plate is horizontally arranged, the bottom surface of the bottom plate is moved by adding rollers, and the upper surfaces of both sides of the bottom plate are symmetrically fixedly connected with electric push rods, and also includes: A bearing mechanism, wherein the bearing mechanism is fixedly mounted on the top of the electric push rod, wherein the bearing mechanism moves up and down relative to the bottom plate through the electric push rod; An auxiliary component, wherein the auxiliary component is fixedly mounted on the bearing mechanism, the auxiliary component works in combination with the electric push rod, and the auxiliary component also works in coordination with the bearing mechanism; The bearing mechanism includes a bearing plate, which is fixedly connected to the top of the electric push rod, wherein the bearing plate and the bottom plate are arranged parallel to each other, and the upper surfaces of both ends of the bearing plate are symmetrically fixedly connected with support plates, wherein the support plate and the bearing plate are arranged perpendicular to each other, and the inner surface of the support plate is fixedly connected with mounting rods, and the mounting rods are arranged in pairs, wherein two groups of mounting rods are provided, and the two groups of mounting rods are arranged parallel to each other, and the outer surface of the mounting rod is fixedly sleeved with a fixing component.
[0006] Preferably, two fixing components are provided, and the fixing components are arranged at an angle. The fixing components include a socket, and the socket is fixedly sleeved on the outer surface of the mounting rod, wherein four sockets are symmetrically arranged on the same group of mounting rods, and the sockets are arranged in pairs in a group, and the inner ends of the sockets in the same group are fixedly plugged with a connecting rod.
[0007] Preferably, the inner surface of the connecting rod is fixedly connected with a mounting frame, and two mounting frames are symmetrically arranged on the same group of mounting rods. The outer inner surface of the mounting frame is slidably plugged with a plug-in rod, wherein the two mounting frames on the same group of mounting rods are slidably connected via the plug-in rod.
[0008] Preferably, a mounting groove No. 1 is provided on the inner surface of the mounting frame, and a limiting plate is arranged in the mounting groove No. 1. Two limiting plates are symmetrically arranged in the mounting groove No. 1 of the same mounting frame, and the limiting plates are arranged in pairs as a group, wherein the side surface of the outer limiting plate is fixedly connected to the inner surface of the mounting groove.
[0009] Preferably, a No. 2 mounting groove is provided on one side of the limit plate away from each other, and a rotating roller is rotatably connected in the No. 2 mounting groove, wherein three rotating rollers are arranged at fixed intervals in the same No. 2 mounting groove, and a rolling belt is fitted on the outer surface of the rotating roller, wherein the rolling belt is made of rubber material.
[0010] Preferably, a connecting plate is symmetrically hinged on the surface of the outer limiting plate, and an end of the connecting plate away from the outer limiting plate is hinged with a hinge seat, and the hinge seat is elastically and slidably connected to the surface of the inner limiting plate, and a corrugated bag is provided on the outer side of the connecting plate, and the two ends of the corrugated bag are respectively fixedly connected to the inner surfaces of the same group of limiting plates.
[0011] Preferably, a guide rod is provided inside the mounting groove, the guide rod is configured as a telescopic rod, and two guide rods are symmetrically provided in the same mounting groove, the guide rod is provided in the cavity between the limit plate and the mounting frame, and the two ends of the guide rod are respectively rotatably connected to the inner surface of the same group of mounting frames.
[0012] Preferably, the inner surface of the mounting frame is symmetrically provided with movable grooves, an extrusion rod is fixedly connected in the movable groove, a ring is fixedly connected to the end of the extrusion rod, an adaptation rod is rotatably connected to the inner surface of the ring, the adaptation rod is arranged as a telescopic rod, wherein a rolling belt is S-shaped and wound around the outer surfaces of the guide rod and the adaptation rod, and the internal cavity of the extrusion rod is connected to the internal cavity of the corrugated bag.
[0013] Preferably, the auxiliary component includes a No. 1 telescopic plate, which is symmetrically fixedly connected to the lower surfaces of both sides of the bearing plate, the bottom of the No. 1 telescopic plate is fixedly connected to the upper surfaces of both sides of the bottom plate, the inner surface of the support plate is fixedly connected with a mounting plug-in plate, and the No. 2 telescopic plate is fixedly plugged onto the mounting plug-in plate, the top of the No. 2 telescopic plate is arranged in a cavity between the mounting frame and the mounting rod, the internal cavity of the No. 1 telescopic plate is communicated with the internal cavity of the No. 2 telescopic plate, and the internal cavity of the No. 1 telescopic plate is also communicated with the internal cavity of the corrugated bag. If a photovoltaic panel needs to be installed, the photovoltaic panel can be inserted from the top mounting rod, and then the present invention is pushed The equipment moves to the photovoltaic panel mounting frame of the power generation module, and finally the electric push rod is started. When the electric push rod is started, it will push the load-bearing plate upward, so that the fixed assembly as a whole rises close to the height of the photovoltaic panel mounting frame. When the load-bearing plate rises, it will drive the No. 1 telescopic plate to expand, so that its interior is in a negative pressure state, and then air pressure is extracted from the interior of the No. 2 telescopic plate, so that the No. 2 telescopic plate begins to shrink. As the No. 2 shrinkage plate gradually shrinks, it loses its limiting effect on the photovoltaic panel in the fixed assembly. At this time, the photovoltaic panel moves outward through the rolling belt along the guide of the fixed assembly under the action of gravity, and finally moves to the photovoltaic panel mounting frame to complete the installation of the photovoltaic panel.
[0014] The present invention provides a photovoltaic panel installation auxiliary device for a modular photovoltaic power generation system. It has the following beneficial effects: 1. The photovoltaic panel installation auxiliary equipment used in the modular photovoltaic power generation system can transmit the internal air pressure of the corrugated bag to the extrusion rod when it is squeezed, so that the end extrusion ring of the extrusion rod moves along the moving groove, and then the adaptation rod moves in the moving groove, extending the moving distance of the rolling belt in the installation groove, so that the rolling belt can be adaptively adjusted when it is squeezed, so that the rolling belt always maintains good tension, and cooperates with the elastic connection between the two limit plates, so that the equipment can be installed on photovoltaic panels of different widths, which greatly improves the applicability of the equipment. At the same time, when adapting to photovoltaic panels of different widths, the rolling belt can also automatically adapt, which greatly improves the working stability of the equipment.
[0015] 2. The photovoltaic panel installation auxiliary equipment is applied to the modular photovoltaic power generation system. The two installation frames on the same set of installation rods are slidably plugged through the plug-in rods, and then the distance between the two installation frames can be adjusted to match photovoltaic panels of different lengths, further improving the applicability of the equipment. After the photovoltaic panels are plugged into the fixed components, the rolling belts on both sides will have an extrusion and fixing effect on the photovoltaic panels through the limit plates due to the elastic effect, so that the photovoltaic panels can be fixed by the rubber rolling belts when the equipment is pushed to move, avoiding the problem of friction damage to the photovoltaic panels caused by shaking of the photovoltaic panels when the equipment moves and friction between the equipment. At the same time, the elastic fixation can also reduce the resonance effect of the photovoltaic panels when the equipment shakes, thereby further improving the protection effect of the photovoltaic panels.
[0016] 3. This photovoltaic panel installation auxiliary equipment is applied to modular photovoltaic power generation system. When the No. 1 telescopic plate moves up, in addition to causing the No. 2 telescopic plate to begin to shrink, it will also extract the air pressure in the internal cavity of the corrugated bag, so that the two limit plates begin to approach each other, so that the rolling belt gradually loses the squeezing and fixing of the photovoltaic panel, thereby automatically canceling the fixing effect of the photovoltaic panel when installing the photovoltaic panel, so that it is convenient to move the photovoltaic panel to the photovoltaic panel mounting frame, and after a photovoltaic panel is installed, the electric push rod descends and resets to reset the fixing component, which is convenient for the next installation of the photovoltaic panel, thereby greatly improving the degree of automation of this equipment and reducing labor costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a front view of the present invention; Figure 2 It is a structural schematic diagram of the second telescopic plate of the present invention; Figure 3 It is a schematic diagram of the structure of the fixing assembly of the present invention; Figure 4 It is a structural schematic diagram of the connecting rod of the present invention; Figure 5 It is a structural schematic diagram of the plug-in rod of the present invention; Figure 6 It is a structural schematic diagram of the rotating roller of the present invention; Figure 7 It is a structural schematic diagram of the connecting plate of the present invention; Figure 8 It is a structural schematic diagram of the extrusion rod of the present invention.
[0018] In the figure: 1. bottom plate; 2. electric push rod; 3. bearing mechanism; 31. bearing plate; 32. support plate; 33. mounting rod; 34. fixing assembly; 35. socket; 36. connecting rod; 37. mounting frame; 38. connecting rod; 39. mounting slot No. 1; 310. limit plate; 311. mounting slot No. 2; 312. rotating roller; 313. rolling belt; 314. connecting plate; 315. hinged seat; 316. bellows; 317. guide rod; 318. moving slot; 319. extrusion rod; 320. sleeve; 321. adaptation rod; 4. auxiliary assembly; 41. telescopic plate No. 1; 42. mounting plug plate; 43. telescopic plate No. 2. DETAILED DESCRIPTION
[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0020] First embodiment: Figures 1 to 8 As shown, the present invention provides a technical solution: a photovoltaic panel installation auxiliary device applied to a modular photovoltaic power generation system, comprising a bottom plate 1, the bottom plate 1 is horizontally arranged, the bottom surface of the bottom plate 1 is moved by adding rollers, and the upper surfaces of both sides of the bottom plate 1 are symmetrically fixedly connected with electric push rods 2, and also includes: The bearing mechanism 3 is fixedly mounted on the top of the electric push rod 2, wherein the bearing mechanism 3 moves up and down relative to the bottom plate 1 through the electric push rod 2; Auxiliary component 4, the auxiliary component 4 is fixedly mounted on the bearing mechanism 3, the auxiliary component 4 works in combination with the electric push rod 2, and the auxiliary component 4 works in coordination with the bearing mechanism 3 at the same time; The bearing mechanism 3 includes a bearing plate 31, which is fixedly connected to the top of the electric push rod 2, wherein the bearing plate 31 and the bottom plate 1 are arranged parallel to each other, and support plates 32 are symmetrically fixedly connected to the upper surfaces of both ends of the bearing plate 31, wherein the support plates 32 and the bearing plates 31 are arranged perpendicular to each other, and mounting rods 33 are fixedly connected to the inner surface of the support plate 32, and the mounting rods 33 are arranged in pairs in a group, wherein two groups of mounting rods 33 are arranged, and the two groups of mounting rods 33 are arranged parallel to each other, and the outer surface of the mounting rod 33 is fixedly sleeved with a fixing component 34.
[0021] Two fixing components 34 are provided, and the fixing components 34 are arranged at an angle. The fixing components 34 include a socket 35, and the socket 35 is fixedly sleeved on the outer surface of the mounting rod 33, wherein four sockets 35 are symmetrically arranged on the same group of mounting rods 33, and the sockets 35 are arranged in pairs as a group, and the inner ends of the same group of sockets 35 are fixedly plugged with a connecting rod 36.
[0022] The inner surface of the connecting rod 36 is fixedly connected with a mounting frame 37. Two mounting frames 37 are symmetrically arranged on the same group of mounting rods 33. A plug-in rod 38 is slidably inserted into the outer inner surface of the mounting frame 37. The two mounting frames 37 on the same group of mounting rods 33 are slidably connected via the plug-in rod 38.
[0023] The inner surface of the mounting frame 37 is provided with a mounting groove No. 1 39 , in which a limiting plate 310 is arranged. Two limiting plates 310 are symmetrically arranged in the mounting groove No. 1 39 of the same mounting frame 37 , and the limiting plates 310 are arranged in pairs as a group, wherein the side surface of the outer limiting plate 310 is fixedly connected to the inner surface of the mounting groove.
[0024] A No. 2 mounting groove 311 is provided on one side of the limiting plate 310 that is away from each other, and a rotating roller 312 is rotatably connected in the No. 2 mounting groove 311, wherein three rotating rollers 312 are arranged at fixed intervals in the same No. 2 mounting groove 311, and a rolling belt 313 is fitted on the outer surface of the rotating roller 312, wherein the rolling belt 313 is made of rubber material.
[0025] A connecting plate 314 is symmetrically hinged on the surface of the outer limiting plate 310, and a hinge seat 315 is hinged on one end of the connecting plate 314 away from the outer limiting plate 310. The hinge seat 315 is elastically and slidably connected to the surface of the inner limiting plate 310. A corrugated bag 316 is arranged on the outer side of the connecting plate 314, and the two ends of the corrugated bag 316 are respectively fixedly connected to the inner surface of the same group of limiting plates 310.
[0026] A guide rod 317 is arranged inside the mounting groove. The guide rod 317 is arranged as a telescopic rod, and two guide rods 317 are symmetrically arranged in the same mounting groove. The guide rod 317 is arranged in the cavity between the limiting plate 310 and the mounting frame 37, and the two ends of the guide rod 317 are respectively rotatably connected to the inner surface of the same group of mounting frames 37.
[0027] The inner surface of the mounting frame 37 is symmetrically provided with movable grooves 318, in which an extrusion rod 319 is fixedly connected, and a sleeve ring 320 is fixedly connected to the end of the extrusion rod 319, and an adaption rod 321 is rotatably connected to the inner surface of the sleeve ring 320, and the adaption rod 321 is configured as a telescopic rod, wherein the rolling belt 313 is S-shaped and wound around the outer surfaces of the guide rod 317 and the adaption rod 321, and the internal cavity of the extrusion rod 319 is connected to the internal cavity of the corrugated bag 316.
[0028] Second embodiment: Figures 1 to 8 As shown, the auxiliary component 4 includes a No. 1 telescopic plate 41, which is symmetrically fixedly connected to the lower surfaces of both sides of the bearing plate 31, and the bottom of the No. 1 telescopic plate 41 is fixedly connected to the upper surfaces of both sides of the bottom plate 1, and the inner surface of the support plate 32 is fixedly connected with a mounting plug plate 42, and a No. 2 telescopic plate 43 is fixedly plugged on the mounting plug plate 42, and the top of the No. 2 telescopic plate 43 is arranged in the cavity between the mounting frame 37 and the mounting rod 33, the internal cavity of the No. 1 telescopic plate 41 is connected to the internal cavity of the No. 2 telescopic plate 43, and the internal cavity of the No. 1 telescopic plate 41 is also connected to the internal cavity of the corrugated bag 316.
[0029] During operation, if it is necessary to install a photovoltaic panel, the photovoltaic panel can be inserted from the top mounting rod 33, and then the device can be pushed to move to the photovoltaic panel mounting frame of the power generation module, and finally the electric push rod 2 is started. When the electric push rod 2 is started, the bearing plate 31 will be pushed upward, so that the fixing assembly 34 will rise as a whole to the height of the mounting frame close to the photovoltaic panel. When the bearing plate 31 rises, it will drive the No. 1 telescopic plate 41 to expand, so that its interior is in a negative pressure state, and then air pressure is extracted from the interior of the No. 2 telescopic plate 43, so that the No. 2 telescopic plate 43 begins to shrink. As the No. 2 shrinkage plate gradually shrinks, it loses its limiting effect on the photovoltaic panel in the fixing assembly 34. At this time, the photovoltaic panel is guided by the fixing assembly 34 under the action of gravity through the rolling belt 313 to When the photovoltaic panel is inserted into the fixing mechanism, the rolling belts 313 on both sides thereof will be squeezed, so that the limit plate 310 on the inner side of the rolling belt 313 will be squeezed. When the limit plate 310 is squeezed, the connecting plate 314 will be squeezed, and the hinge seat 315 on the connecting plate 314 will slide to both sides along the inner surface of the limit plate 310, so that the two limit plates 310 of the same group are close to each other, that is, the connected rolling belt 313 moves as a whole to the mounting groove in the mounting frame 37, and at the same time, the corrugated bag 316 will be squeezed. When the corrugated bag 316 is squeezed, its internal air pressure will be transmitted to the squeezing rod 319, so that the end of the squeezing rod 319 The extrusion ring 320 moves along the moving groove 318, thereby allowing the adaptation rod 321 to move in the moving groove 318, extending the moving distance of the rolling belt 313 in the installation groove, so that the rolling belt 313 can be adaptively adjusted when it is squeezed, so that the rolling belt 313 always maintains a good tension, and cooperates with the elastic connection between the two limit plates 310, so that the device can be installed on photovoltaic panels of different widths, greatly improving the applicability of the device, and at the same time, when adaptively adapting to photovoltaic panels of different widths, the rolling belt 313 can also automatically adapt, greatly improving the working stability of the device, and the two mounting frames 37 on the same set of mounting rods 33 are slidably plugged through the plug-in rod 38, and then by adjusting the two mounting The distance between the frames 37 can be used to match photovoltaic panels of different lengths, further improving the applicability of the device. After the photovoltaic panels are inserted into the fixing components 34, the rolling belts 313 on both sides will produce an extrusion and fixing effect on the photovoltaic panels through the limit plates 310 due to the elastic effect, thereby achieving the fixation of the photovoltaic panels by the rubber rolling belts 313 when the device is pushed to move, avoiding the problem of the photovoltaic panels being damaged by friction due to the shaking of the photovoltaic panels and the friction between the devices when the device is moved. At the same time, the elastic fixation can also reduce the resonance effect of the photovoltaic panels when the device shakes, thereby further improving the protection effect of the photovoltaic panels. When the first telescopic plate 41 moves up, in addition to causing the second telescopic plate 43 to begin to shrink,The internal cavity air pressure of the corrugated bag 316 is also extracted, so that the two limit plates 310 begin to approach each other, so that the rolling belt 313 gradually loses the squeezing and fixing of the photovoltaic panel, and then automatically cancels the fixing effect of the photovoltaic panel when installing the photovoltaic panel, so that the photovoltaic panel is moved to the photovoltaic panel mounting frame, and after a photovoltaic panel is installed, the electric push rod 2 is lowered and reset to reset the fixing assembly 34, which is convenient for the next installation of the photovoltaic panel, thereby greatly improving the automation of the equipment and reducing labor costs.
[0030] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions. The sentence "includes an element defined by... does not exclude the existence of other identical elements in the process, method, article or device including the element".
Claims
1. A photovoltaic panel installation auxiliary device for a modular photovoltaic power generation system, comprising a base plate (1), characterized in that: The bottom plate (1) is arranged horizontally, the bottom surface of the bottom plate (1) is moved by installing rollers, and the upper surfaces of both sides of the bottom plate (1) are symmetrically fixedly connected with electric push rods (2), and further comprising: A bearing mechanism (3), the bearing mechanism (3) being fixedly mounted on the top of the electric push rod (2), wherein the bearing mechanism (3) moves up and down relative to the base plate (1) via the electric push rod (2); An auxiliary component (4), the auxiliary component (4) being fixedly mounted on the bearing mechanism (3), the auxiliary component (4) working in combination with the electric push rod (2), and the auxiliary component (4) working in coordination with the bearing mechanism (3); The bearing mechanism (3) comprises a bearing plate (31), wherein the bearing plate (31) is fixedly connected to the top of the electric push rod (2), wherein the bearing plate (31) and the bottom plate (1) are arranged parallel to each other, and support plates (32) are symmetrically fixedly connected to the upper surfaces of both ends of the bearing plate (31), wherein the support plates (32) and the bearing plate (31) are arranged perpendicular to each other, and mounting rods (33) are fixedly connected to the inner surface of the support plate (32), wherein the mounting rods (33) are arranged in pairs as a group, wherein two groups of mounting rods (33) are arranged, and the two groups of mounting rods (33) are arranged parallel to each other, and the outer surfaces of the mounting rods (33) are fixedly sleeved with a fixing assembly (34).
2. The photovoltaic panel installation auxiliary device used in a modular photovoltaic power generation system according to claim 1, characterized in that: Two fixing assemblies (34) are provided. The fixing assemblies (34) are arranged at an angle. The fixing assemblies (34) include a socket (35). The socket (35) is fixedly sleeved on the outer surface of the mounting rod (33). Four sockets (35) are symmetrically arranged on the same group of mounting rods (33). The sockets (35) are arranged in pairs in a group. The inner ends of the sockets (35) in the same group are fixedly plugged with a connecting rod (36).
3. The photovoltaic panel installation auxiliary device for modular photovoltaic power generation system according to claim 2, characterized in that: The inner surface of the connecting rod (36) is fixedly connected to a mounting frame (37), two mounting frames (37) are symmetrically arranged on the same group of mounting rods (33), and a plug-in rod (38) is slidably plugged into the outer inner surface of the mounting frame (37), wherein the two mounting frames (37) on the same group of mounting rods (33) are slidably connected via the plug-in rod (38).
4. The photovoltaic panel installation auxiliary device used in a modular photovoltaic power generation system according to claim 3, characterized in that: The inner surface of the installation frame (37) is provided with a No. 1 installation groove (39), and a limit plate (310) is arranged in the No. 1 installation groove (39). Two limit plates (310) are symmetrically arranged in the No. 1 installation groove (39) of the same installation frame (37), and the limit plates (310) are arranged in pairs to form a group, wherein the side surface of the outer limit plate (310) is fixedly connected to the inner surface of the installation groove.
5. The photovoltaic panel installation auxiliary device used in a modular photovoltaic power generation system according to claim 4, characterized in that: A second installation groove (311) is provided on a side of the limit plate (310) that is away from each other, and a rotating roller (312) is rotatably connected in the second installation groove (311), wherein three rotating rollers (312) are arranged at fixed intervals in the same second installation groove (311), and a rolling belt (313) is fitted on the outer surface of the rotating roller (312), wherein the rolling belt (313) is made of rubber material.
6. The photovoltaic panel installation auxiliary device used in a modular photovoltaic power generation system according to claim 5, characterized in that: A connecting plate (314) is symmetrically hinged on the surface of the outer limiting plate (310); an end of the connecting plate (314) away from the outer limiting plate (310) is hinged on a hinge seat (315); the hinge seat (315) is elastically slidably connected to the surface of the inner limiting plate (310); a corrugated bag (316) is arranged on the outer side of the connecting plate (314); and the two ends of the corrugated bag (316) are respectively fixedly connected to the inner surface of the same group of limiting plates (310).
7. The photovoltaic panel installation auxiliary device used in a modular photovoltaic power generation system according to claim 6, characterized in that: A guide rod (317) is arranged inside the installation groove, the guide rod (317) is arranged as a telescopic rod, and two guide rods (317) are symmetrically arranged in the same installation groove, the guide rod (317) is arranged in a cavity between the limit plate (310) and the installation frame (37), and the two ends of the guide rod (317) are respectively rotatably connected to the inner surface of the same group of the installation frames (37).
8. The photovoltaic panel installation auxiliary device for modular photovoltaic power generation system according to claim 7, characterized in that: The inner surface of the installation frame (37) is symmetrically provided with movable grooves (318), an extrusion rod (319) is fixedly connected in the movable groove (318), a collar (320) is fixedly connected to the end of the extrusion rod (319), an adaption rod (321) is rotatably connected to the inner surface of the collar (320), and the adaption rod (321) is configured as a telescopic rod, wherein the rolling belt (313) is wound in an S-shape on the outer surfaces of the guide rod (317) and the adaption rod (321), and the internal cavity of the extrusion rod (319) is in communication with the internal cavity of the corrugated bag (316).
9. The photovoltaic panel installation auxiliary device used in a modular photovoltaic power generation system according to claim 8, characterized in that: The auxiliary component (4) comprises a first telescopic plate (41), the first telescopic plate (41) being symmetrically fixedly connected to the lower surfaces of both sides of the bearing plate (31), the bottom of the first telescopic plate (41) being fixedly connected to the upper surfaces of both sides of the bottom plate (1), the inner surface of the support plate (32) being fixedly connected to a mounting plug plate (42), the mounting plug plate (42) being fixedly plugged with a second telescopic plate (43), the top of the second telescopic plate (43) being arranged in a cavity between the mounting frame (37) and the mounting rod (33), the inner cavity of the first telescopic plate (41) being in communication with the inner cavity of the second telescopic plate (43), and the inner cavity of the first telescopic plate (41) being simultaneously in communication with the inner cavity of the bellows (316).
Citation Information
Patent Citations
Auxiliary installation assembly for photovoltaic assembly installation
CN115412009A
Fixed photovoltaic support with high generating capacity
CN118631148A
Flexible support of photovoltaic power generation system
CN219980753U
Photovoltaic panel installation auxiliary device
CN222249921U
A work ladder table of a photovoltaic power plant with protective function
DE202023102024U1