Energy-saving solar photovoltaic panel applied to outer facade curtain wall
Through innovative designs such as quick-connect components, heat dissipation components, and snap-fit structures, the problems of insufficient disassembly and assembly efficiency, heat dissipation effect, and service life of existing solar photovoltaic wall panels have been solved, realizing rapid assembly, stable operation, and efficient heat dissipation of photovoltaic panels, and extending their service life.
Patent Information
- Application Number
- CN202511314148.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2045-09-15
AI Technical Summary
Existing energy-saving solar photovoltaic wall panels have shortcomings in terms of angle adjustment and disassembly efficiency, heat dissipation effect and service life, and their simple structure leads to poor heat dissipation effect.
The system employs quick-connect components, heat dissipation components, interface components, lifting and swinging structures, and snap-fit structures. It achieves rapid assembly and stable fixation of photovoltaic panels through a composite positioning installation using a magnet array and guide pins. It is equipped with heat dissipation fins, fans, heat dissipation pipes, and cooling cylinders to achieve efficient heat dissipation. It utilizes bevel gear transmission and a blowing heat dissipation structure to enhance air circulation. The snap-fit structure facilitates the quick disassembly and maintenance of the heat dissipation components.
It improves the efficiency of photovoltaic panel installation and removal, enhances heat dissipation, extends service life, ensures efficient heat dissipation of photovoltaic panels under stable operating conditions, and simplifies the maintenance process.
Smart Images

Figure CN120811228B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of solar photovoltaic panels, in particular to an energy-saving solar photovoltaic panel applied to an outer facade curtain wall. BACKGROUND
[0002] With the continuous development of science and technology, more and more new materials and energy technologies are applied to the field of buildings, such as solar panels applied to outer facade curtain walls, which fully utilize the surface area of buildings for solar power generation, reduce building energy consumption, and achieve the effect of green buildings.
[0003] The existing application No. CN202110067136.4 is an energy-saving solar photovoltaic wallboard, which comprises a solar photovoltaic wallboard main body, a protection frame is arranged at the outer end of the solar photovoltaic wallboard main body, a central rotating shaft is arranged at the central part of the protection frame corresponding to the inner end of the solar photovoltaic wallboard main body, a sliding rod is arranged at the upper end of the central rotating shaft, a fixed groove is arranged at the inner end of the sliding rod, a movable ring groove is arranged at the upper end of the fixed groove, a pulling handle is arranged at the upper end of the movable ring groove corresponding to the upper end of the protection frame, a connecting rod is arranged at the lower end of the pulling handle, a sliding block is arranged at the lower end of the connecting rod corresponding to the inner end of the fixed groove, a clamping plate is arranged at the rear end of the protection frame, and a first threaded cylinder is arranged at the lower end inner surface of the clamping plate.
[0004] The above-mentioned energy-saving solar photovoltaic wallboard can conveniently adjust and fix the angle of the solar photovoltaic wallboard, but it has certain limitations in improving the disassembly efficiency of the solar photovoltaic panel, and the overall structure is relatively simple when the solar photovoltaic panel is used, the heat dissipation effect is poor, and the service life of the energy storage solar photovoltaic panel is easily affected. SUMMARY
[0005] The application aims to provide an energy-saving solar photovoltaic panel applied to an outer facade curtain wall to solve the problems in the background art.
[0006] In order to achieve the above object, the present application adopts the following technical scheme: An energy-saving solar photovoltaic panel applied to an outer facade curtain wall, comprising a photovoltaic panel body, quick connecting assemblies are arranged on the left and right sides of the photovoltaic panel body, the quick connecting assemblies on the two sides are connected with the left and right sides of the front end of a mounting frame, an interface assembly is arranged on the right lower end of the mounting frame, the upper end of the interface assembly is connected with the quick connecting assembly on one side, a docking seat is bolted to the rear middle part of the mounting frame, a heat dissipation assembly is arranged on the rear side of the photovoltaic panel body, the heat dissipation assembly comprises a shell, the shell is abutted against the rear side of the photovoltaic panel body, a filter screen is mounted on the middle part of the side of the shell away from the photovoltaic panel body, a fan is arranged on the inside of the shell, and the fan is opposite to the filter screen, a rotating shaft is connected to the middle part of the fan blade end, the rotating shaft is connected with a heat dissipation pipe on the side away from the fan, a cooling cylinder is mounted on the outside of the heat dissipation pipe, and a docking pipe is arranged on the upper and lower ends of the outside of the heat dissipation pipe, the docking pipe is vertically inserted into the inside of a heat dissipation fin, the heat dissipation fin is mounted on the air outlet end of the shell and abutted against the rear side of the photovoltaic panel body, through holes are equidistantly arranged on one side of the upper and lower ends of the shell, a blowing heat dissipation structure is arranged in the inside of the shell, and the blowing heat dissipation structure is connected with the outside of the rotating shaft, clamping structures are mounted on the two sides of the outer end of the shell, and the clamping structures are clamped into the inside of a fixed plate, the fixed plate is fixedly arranged on the rear end of the photovoltaic panel body.
[0007] Preferably, the quick connecting assembly comprises a limiting plate and a side strip, the limiting plates are oppositely arranged on the left and right sides of the mounting frame, a clamping groove is arranged in the inside of the limiting plate, magnets are equidistantly arranged on one side of the inside of the limiting plate, the side strip is bolted to the left and right sides of the photovoltaic panel body, and guide pins are equidistantly mounted on the outer end of the side strip, the guide pins are clamped into the inside of the clamping groove, and the rear side of the side strip is magnetically attracted to the magnets.
[0008] Preferably, the interface assembly comprises a connecting plate, the connecting plate is arranged on the bottom of the limiting plate on the right side, a stud is mounted on the right side of the connecting plate, the connecting plate is threadedly locked with the bottom of the limiting plate on the right side through the stud arranged on the right side, a rubber pad is arranged on the left upper end of the connecting plate, a spring needle is arranged on the upper end of the rubber pad, the rubber pad and the spring needle are embedded into the lower end of the photovoltaic panel body on the right side, and the spring needle is connected with the interface on the lower end of the photovoltaic panel body on the right side.
[0009] Preferably, the blowing heat dissipation structure comprises a first bevel gear, the first bevel gear is connected to the outside of the rotating shaft, second bevel gears are meshingly connected to the upper and lower ends of the first bevel gear, a series connecting rod is connected to the middle part of the second bevel gear, the series connecting rod is connected with a third bevel gear on the side away from the second bevel gear, a fourth bevel gear is meshingly connected to the outside of the third bevel gear, the fourth bevel gear is connected with a lifting and swinging structure in the middle part, an air outlet shell is connected to the inside of the lifting and swinging structure, a hose is connected to one side of the air outlet shell, the hose is connected with a gas collecting cover on the side away from the air outlet shell, and the gas collecting cover is connected with the inside of the shell.
[0010] Preferably, the jacking and swinging structure comprises a transmission rod, one side of which is connected with the fourth bevel gear, and the other side of which is connected with a rotary disc, the side of the rotary disc is provided with a convex shaft, the convex shaft is inserted into the inside of the moving frame, the lower end of the moving frame is provided with an abutting groove in the middle, the abutting groove is connected with the convex shaft, the upper end of the moving frame is rotatably connected with the air outlet shell, one side of the upper end of the moving frame is connected with a gear, the gear is externally connected with a rack, the rack is vertically arranged in the inside of the welding plate, the welding plate is welded on the both sides of the shell, and the bottom of the welding plate is provided with a limiting groove, the limiting groove is connected with the side of the lower end of the moving frame.
[0011] Preferably, the clamping structure comprises a positioning strip, the positioning strip is installed on the left and right ends of the shell, one end of the positioning strip is movably provided with a plug-in shaft, the inside of the plug-in shaft is connected with a transmission plate, the transmission plate is arranged in the inside of the positioning strip, and lock shafts are inserted into the inside of the transmission plate, the outside of the lock shafts is inserted into the inside of the fixed plate, the side of the transmission plate away from the plug-in shaft is provided with a first spring, the inside of the positioning strip is provided with a resisting strip on the upper end and the lower end, and the resisting strip is connected with a second spring close to the inside of the positioning strip.
[0012] Preferably, the clamping groove is not penetrated through the limiting plate, and the front side of the limiting plate is integrally provided with a rectangular recess.
[0013] Preferably, the rubber pads are arranged in a stepped manner, and the upper end of the rubber pads is provided with three spring thimbles at equal intervals.
[0014] Preferably, the abutting pipes are arranged on the upper and lower sides of the heat dissipation pipe in a symmetrical manner, and the number of the abutting pipes is not less than five.
[0015] Preferably, the moving frame is arranged in an inverted door-shaped frame, and the lower ends of the left and right sides of the moving frame are limited and connected with the limiting grooves through the convex blocks.
[0016] Compared with the prior art, the present application has the following advantages:
[0017] The present application sets the heat dissipation assembly, i.e. the heat dissipation fins arranged in the inside of the shell, to satisfy the heat dissipation of the heat generated by the photovoltaic panel body, and through the rotation of the fan, the transmission of the heat dissipation pipe and the abutting pipe, and the cooling of the cooling cylinder, the external air can quickly satisfy the heat exchange and cooling of the heat dissipation fins, so that the heat dissipation fins can maintain a high-efficiency heat dissipation state, and at the same time, when the fan rotates, the rotating shaft connected with the fan blades can be driven, so that the blowing and heat dissipation structure can be operated in linkage to blow and blow reciprocally, improve the air circulation and discharge in the inside of the shell, and further strengthen the heat dissipation efficiency of the heat dissipation fins, so as to ensure that the photovoltaic panel body is in a stable operation state and has a long service life, and the convenient connection effect of the clamping structure and the fixed plate arranged on the both sides of the shell can make the heat dissipation assembly satisfy the convenient and efficient disassembly, maintenance and assembly.
[0018] The quick-connection assembly is arranged, i.e. the side strip is connected to the left and right sides of the photovoltaic panel body through bolts, the guiding pin shaft arranged equidistantly on the side edge of the side plate is positioned and connected to the clamping groove in the limiting plate, the quick assembly of the photovoltaic panel body is satisfied, and the magnet arranged equidistantly on one side in the limiting plate can magnetically attract and fix the magnet and the side strip, so as to improve the quick-connection stability of the photovoltaic panel body, i.e. the composite positioning and mounting structure of the magnet array and the wire pin shaft can satisfy the quick assembly of the photovoltaic panel body as a whole.
[0019] The interface assembly is arranged, i.e. the rubber pad arranged on the left upper end of the connecting plate can be embedded into the interface position on the right lower end of the photovoltaic panel body to satisfy the sealing and waterproof connection, and the spring needle arranged on the upper end of the rubber pad can be in continuous contact with the interface by cooperating with the spring arranged in the rubber pad, so as to ensure the stability of the electrical connection state.
[0020] The jacking and swinging structure is arranged, i.e. when the fan rotates, the rotating shaft connected to the fan blade end can rotate synchronously, so that the first bevel gear, the second bevel gear, the series connecting rod, the third bevel gear and the fourth bevel gear can be driven in linkage, the transmission rod connected to the middle part of the fourth bevel gear can satisfy the rotation of the rotating disc, the convex shaft connected to one side of the rotating disc can rotate circumferentially to drive the connecting groove arranged in the middle part of the lower end of the moving frame, so as to assist the up-and-down reciprocating movement of the moving frame, and the air outlet shell connected to the upper end of the moving frame can realize up-and-down reciprocating discharge, so that the air circulation in the shell is further improved, the heat dissipation fins can quickly dissipate heat, and the heat dissipation effect of the heat dissipation fins is improved.
[0021] The gears, the rack, the welding plate and the limiting groove are arranged, i.e. when the moving frame moves up and down in linkage with the rotating disc, the convex shaft and the connecting groove, the gear connected to one side of the upper end of the moving frame moves up and down synchronously, and in the moving process, the rack meshing with the side edge of the gear is driven to satisfy the up-and-down reciprocating swinging of the air outlet shell connected to the upper end of the moving frame, so that the air outlet shell can not only discharge air up and down, but also swing synchronously to discharge air, the air circulation in the shell is significantly improved, the heat dissipation efficiency of the heat dissipation fins is improved, and the stability of the up-and-down reciprocating movement of the moving frame is improved by the limiting connection effect of the limiting groove and the lower end of the moving frame.
[0022] The setting of the clamping structure, that is, by extruding the plug-in shaft, the push transmission plate in the plug-in shaft is pushed, so that the lock shaft connected with the inclined groove in the upper and lower ends of the transmission plate is moved vertically up and down, that is, the plug-in locking of the two side lock shafts and the fixed plate is realized, thereby, by pulling the shell as a whole, the quick disassembly and maintenance of the whole heat dissipation assembly can be met, and when the positioning strip is connected with the fixed plate, the positioning and butt joint can be realized in advance, and meanwhile, the combination of the resistance strip and the second spring arranged on the left upper and lower ends can realize the resistance of the movement, improve the butt joint firmness of the positioning strip and the fixed plate, and ensure the stability of the whole heat dissipation assembly in installation and use. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a structural schematic diagram of the present application;
[0024] Figure 2 It is a split structural schematic diagram of the present application;
[0025] Figure 3 It is a split structural schematic diagram of the quick connection assembly of the present application;
[0026] Figure 4 It is a three-dimensional structural schematic diagram of the interface assembly of the present application;
[0027] Figure 5 It is a front view connection structural schematic diagram of the interface assembly and the photovoltaic panel body of the present application;
[0028] Figure 6 It is a rear view combination structural schematic diagram of the photovoltaic panel body and the heat dissipation assembly of the present application;
[0029] Figure 7 It is a rear view three-dimensional structural schematic diagram of the heat dissipation assembly of the present application;
[0030] Figure 8 It is a structural schematic diagram of the heat dissipation assembly of the present application;
[0031] Figure 9 It is a structural schematic diagram of the blowing heat dissipation structure of the present application;
[0032] Figure 10 It is a three-dimensional split structural schematic diagram of the jacking swing structure of the present application;
[0033] Figure 11 It is a butt joint internal structural schematic diagram of the clamping structure of the present application.
[0034] In the figure: photovoltaic panel main body-1, quick connection assembly-2, limiting plate-21, clamping groove-22, magnet-23, side bar-24, guide pin-25, mounting bracket-3, interface assembly-4, connecting plate-41, stud-42, rubber pad-43, spring needle-44, docking seat-5, heat dissipation assembly-6, shell-61, filter screen-62, fan-63, rotating shaft-64, heat dissipation pipe-65, cooling cylinder-66, docking pipe-67, heat dissipation fin-68, through hole-69, blowing and wiping heat dissipation structure-610, first bevel gear-6101, second bevel gear-6102, series connection rod-6103, third bevel gear-6104, fourth bevel gear-6105, jacking swing structure-6106, transmission rod-61061, rotating disc-61062, convex shaft-61063, moving frame-61064, docking groove-61065, gear-61066, rack-61067, welding plate-61068, limiting groove-61069, air outlet shell-6107, hose-6108, gas collecting cover-6109, clamping structure-611, positioning strip-6111, plug-in shaft-6112, transmission plate-6113, lock shaft-6114, first spring-6115, resisting strip-6116, second spring-6117, fixed plate-612. DETAILED DESCRIPTION
[0035] In order to further explain the technical scheme of the present application, the following will be described in detail through specific embodiments.
[0036] Please refer to Figures 1-2 The present application provides a kind of energy-saving solar photovoltaic panel for curtain wall, including photovoltaic panel main body 1, photovoltaic panel main body 1 left and right sides are equipped with quick connection assembly 2, two sides quick connection assembly 2 and mounting bracket 3 front end left and right sides are connected, mounting bracket 3 right side lower end is equipped with interface assembly 4, and interface assembly 4 upper end is connected with one side quick connection assembly 2, mounting bracket 3 middle part rear side bolt docking has docking seat 5, also includes being equipped with heat dissipation assembly 6 in photovoltaic panel main body 1 rear side.
[0037] Please refer to Figure 3 The quick connection assembly 2 in the embodiment includes limiting plate 21 and side bar 24, limiting plate 21 is vertically opposite to mounting bracket 3 left and right sides, the clamping groove 22 for positioning installation is formed in the inside of both sides limiting plate 21, a plurality of magnets 23 are equidistantly arranged on the inside of limiting plate 21 from top to bottom, side bar 24 is bolted to the left and right sides of photovoltaic panel main body 1, and a plurality of guide pins 25 are equidistantly mounted on the outer end of side bar 24 from top to bottom, the guide pins 25 are clamped into the inside of clamping groove 22, and the rear side of side bar 24 is magnetically attracted to the magnets 23, so that the composition of the magnet 23 array and the guide pin 25 composite positioning structure can be realized to meet the quick disassembly and assembly of the photovoltaic panel main body 1 as a whole.
[0038] The bottom of the clamping groove 22 does not penetrate the limiting plate 21, and a rectangular recess is integrally formed on the front side of the limiting plate 21, that is, after the side strip 24 is positioned and connected with the limiting plate 21 through the clamping groove 22, it can be stably supported with the bottom plate of the limiting plate 21 to ensure the stability of the installation effect.
[0039] Specifically, when the installation of the photovoltaic panel body 1 is to be carried out, the side strip 24 can be installed on the left and right sides of the photovoltaic panel body 1 through bolts, and after being connected on the outside, the guide pin shaft 25 equidistantly installed on the side edge of the side strip 24 can be clamped into the clamping groove 22 formed in the limiting plate 21, so as to realize the positioning and connecting activity, and at the same time, when the side strip 24 is connected with the limiting plate 21, the magnetic attraction cooperation of the multiple magnets 23 equidistantly arranged on one side of the limiting plate 21 from top to bottom can magnetically attract the side strip 24 to strengthen the connecting firmness, and thus, the multiple magnet 23 array and the multiple guide pin shaft 25 composite positioning structure can be combined to realize the quick installation of the photovoltaic panel body 1 as a whole without too many complicated steps.
[0040] Please refer to Figures 4-5 The interface assembly 4 in the embodiment includes a connecting plate 41 arranged at the bottom of the right limiting plate 21, two threaded studs 42 are installed on the right side of the connecting plate 41, and the connecting plate 41 is threadedly locked with the bottom of the right limiting plate 21 through the two threaded studs 42 arranged on the right side to ensure the stability of the interface position, a rubber pad 43 is arranged on the left side of the upper end of the connecting plate 41, a spring needle 44 is arranged on the upper end of the rubber pad 43, and the rubber pad 43 and the spring needle 44 are embedded in the right lower end of the photovoltaic panel body 1, and the spring needle 44 is connected with the right lower end interface of the photovoltaic panel body 1.
[0041] The rubber pad 43 is arranged in a stepped manner, and three spring needles 44 are equidistantly arranged on the upper end of the rubber pad 43, that is, through the stepped arrangement of the rubber pad 43, the interface position can be efficiently sealed and waterproofed.
[0042] Specifically, after the photovoltaic panel body 1 is positioned and connected with the limiting plate 21 through the side strip 24, the right lower end interface thereof will be positioned and connected with the spring needle 44 arranged on the upper end of the rubber pad 43, and the spring needle 44 can provide a continuous contact force through the spring inside the spring needle 44 to ensure the stability of the joint end point connection, and the rubber pad 43 is arranged in a stepped manner, so that the rubber pad 43 can be embedded in the right lower end of the photovoltaic panel body 1 at the same time, so as to meet the sealing and waterproofing of the interface position and reduce the water ingress problem at the interface.
[0043] Please refer to Figures 6-7The heat dissipation assembly 6 in the embodiment includes a shell 61 abutting the rear end of the four sides of the photovoltaic panel body 1. The shell 61 is provided with a filter screen 62 at the middle of the side away from the photovoltaic panel body 1. The filter screen 62 can reduce the entry of impurities in the air. The shell 61 is provided with a fan 63 at one side inside. The fan 63 is opposite to the filter screen 62. The fan 63 is provided with a rotating shaft 64 at the middle of the fan blade end. When the fan 63 rotates, the rotating shaft 64 can be rotated synchronously. The rotating shaft 64 is connected to a heat dissipation pipe 65 away from the fan 63. The heat dissipation pipe 65 is provided with a cooling cylinder 66. The heat dissipation pipe 65 is provided with a butt joint pipe 67 at the upper and lower ends. The butt joint pipe 67 is vertically inserted into the side edge inside of a heat dissipation fin 68. The heat dissipation fin 68 is installed at the air outlet end of the shell 61 and abuts the rear side of the photovoltaic panel body 1. The heat dissipation fin 68 can efficiently absorb and guide the heat generated by the photovoltaic panel body 1. The combination of the heat dissipation pipe 65 and the butt joint pipe 67 can improve the heat dissipation efficiency of the heat dissipation fin 68, so that the heat dissipation fin 68 can maintain high-efficiency heat dissipation state. The shell 61 is provided with a through hole 69 at one side of the upper and lower ends. The through hole 69 can ensure the air circulation inside the shell 61 and meet the requirement of rapid heat discharge. The shell 61 is provided with a blowing heat dissipation structure 610 inside. The blowing heat dissipation structure 610 is connected to the outer side of the rotating shaft 64. The shell 61 is provided with a clamping structure 611 at the outer end of both sides. The clamping structure 611 is clamped into the inner part of a fixed plate 612. The fixed plate 612 is fixed to the rear end of the four sides of the photovoltaic panel body 1. The four fixed plates 612 are symmetrically arranged.
[0044] The butt joint pipe 67 is symmetrically arranged along the upper and lower sides of the heat dissipation pipe 65. The number of the butt joint pipes 67 is not less than five. The multiple butt joint pipes 67 arranged symmetrically along the upper and lower sides of the heat dissipation pipe 65 can meet the requirement of vertical transmission of cold air. The cold air can be deeply inserted into the heat dissipation fin 68 to improve the heat dissipation efficiency of the heat dissipation fin 68.
[0045] Specifically, to ensure that the photovoltaic panel body 1 is not easy to overheat during use, at this time, the fan 63 can be rotated to bring external air into the shell 61 by running the fan 63 on one side of the shell 61. When entering, the filter screen 62 provided at the air inlet of the shell 61 is used to filter the entering air to reduce the dust carried by the air. When the air enters the shell 61, it can enter the heat dissipation pipe 65, and the cooling cylinder 66 provided outside the heat dissipation pipe 65 can cool the air in the heat dissipation pipe 65 to form cold air. The cold air formed by the heat dissipation pipe 65 is transmitted into the multiple butt joint pipes 67 provided on the upper and lower ends on one side, and the multiple butt joint pipes 67 are respectively connected with the heat dissipation fins 68 on the right side. In this way, the cold air flowing through the multiple butt joint pipes 67 can exchange heat with the heat dissipation fins 68 in the high-efficiency heat absorption state of the photovoltaic panel body 1, so as to cool the heat dissipation fins 68 and ensure the high-efficiency heat dissipation of the photovoltaic panel body 1. At the same time, the through hole 69 provided on the upper and lower ends on one side can assist in discharging the heat outside the heat dissipation fins 68 to further enhance the heat dissipation effect.
[0046] Please refer to Figures 8-10 The blowing heat dissipation structure 610 in the embodiment includes a first bevel gear 6101, the first bevel gear 6101 is connected to the outer side of the rotating shaft 64, the upper and lower ends of the first bevel gear 6101 are both engaged with a second bevel gear 6102, the middle parts of the two second bevel gears 6102 are both vertically connected with a series connection rod 6103, the ends of the two series connection rods 6103 away from the second bevel gears 6102 are both connected with a third bevel gear 6104, the outer side of the third bevel gear 6104 is engaged with a fourth bevel gear 6105, the middle part of the fourth bevel gear 6105 is connected with a lifting swing structure 6106, and the inside of the lifting swing structure 6106 is connected with an air outlet shell 6107. One side of the air outlet shell 6107 is connected with a hose 6108, the side of the hose 6108 away from the air outlet shell 6107 is connected with a gas collecting cover 6109, and the gas collecting cover 6109 is connected with the inside of the shell 61. In this way, the efficient combination of the gas collecting cover 6109, the hose 6108 and the air outlet shell 6107 can assist in transmitting air to make the air diffuse and flow in the inside of the shell 61, thereby improving the air flow and heat dissipation of the inside of the shell 61.
[0047] The jacking and swinging structure 6106 comprises a transmission rod 61061, one side of which is connected with the fourth bevel gear 6105, and the other side of which is connected with a rotating disc 61062, the rotating disc 61062 is provided with a convex shaft 61063 on the side edge, the convex shaft 61063 is inserted into the inside of the lower end of a moving frame 61064, the lower end of the moving frame 61064 is provided with an abutting groove 61065 in the middle, and the abutting groove 61065 is connected with the convex shaft 61063, so as to form a lifting transmission state, so as to meet the stable movement of the air outlet shell 6107 in the up-down reciprocating movement process, the upper end of the moving frame 61064 is rotatably connected with the two sides of the air outlet shell 6107, one side of the upper end of the moving frame 61064 is connected with a gear 61066, the gear 61066 is connected with one side of the upper end of the air outlet shell 6107, the gear 61066 is externally meshed with a rack 61067, the rack 61067 is vertically arranged in the inside of a welding plate 61068, the welding plate 61068 is welded on the two sides of the shell 61, the bottom of the two welding plates 61068 is provided with a limiting groove 61069 in a vertical state, and the limiting groove 61069 is connected with the side edge of the lower end of the moving frame 61064, so as to meet the up-down lifting guiding cooperation of the moving frame 61064.
[0048] The moving frame 61064 is in the shape of an inverted door frame, and the lower ends of the left and right sides of the moving frame 61064 are limited and connected with the limiting grooves 61069 through the convex blocks, so as to ensure the stable limiting and connecting of the left and right sides of the lower end of the moving frame 61064, and improve the subsequent up-down lifting stability effect.
[0049] Specifically, when the fan 63 rotates, the rotating shaft 64 connected to the fan 63 blade end rotates synchronously, and in this way, the synchronous rotation of the first bevel gear 6101 connected to the outside is driven, and the second bevel gear 6102 meshing with the upper and lower ends of the first bevel gear 6101 rotates synchronously in the opposite direction, and cooperates with the series connection rod 6103 connected in the middle, the two sides of the second bevel gear 6102 are linked to meet the rotation of the third bevel gear 6104, and then the fourth bevel gear 6105 meshing with the outside of the third bevel gear 6104 can synchronously mesh and rotate, and drive the transmission rod 61061 connected in the middle, so that the transmission rod 61061 meets the rotation of the rotating disc 61062 connected on one side, and the rotating disc 61062 rotates with the rotating shaft 61063 connected on one side, which can move circumferentially, at the same time, the circumferentially moving rotating disc 61062 is transmitted to the connecting groove 61065 in the middle of the lower end of the moving frame 61064, to meet the up-down driving of the moving frame 61064, and the up-down reciprocating moving frame 61064 cooperates with the limiting groove 61069 in the bottom of the welding plate 61068 on the outer end of both sides to realize stable up-down reciprocating movement, so that the air outlet shell 6107 connected to the upper end of the moving frame 61064 can be synchronously up-down, to adjust its exhaust position, and then the air brought into the shell 61 by the fan 63 will be transmitted by the air collecting cover 6109 and the hose 6108, and will be discharged from the air outlet end of the air outlet shell 6107, so as to blow and scatter the outside of the heat dissipation fin 68, strengthen the air circulation in the shell 61, make the heat carried by the heat dissipation fin 68 quickly discharged from the through hole 69, so as to assist to speed up the cooling rate of the heat dissipation fin 68, and keep the high-efficiency heat dissipation use state of the photovoltaic panel main body 1;
[0050] Secondly, when the moving frame 61064 moves up and down with the rotating disc 61062, the rotating shaft 61063 and the connecting groove 61065, the gear 61066 connected to one side of the upper end of the moving frame 61064 moves up and down synchronously, and in the moving process, it is meshed and transmitted with the rack 61067 vertically installed in the inside of the welding plate 61068, so that the meshing and connecting effect of the gear 61066 and the rack 61067 can be linked to make the air outlet shell 6107 swing up and down when the moving frame 61064 drives the air outlet shell 6107 to move up and down, so that it can not only move up and down to exhaust air, but also can swing up and down to exhaust air, which can significantly improve the air circulation assistance effect on the inside of the shell 61.
[0051] Please refer to Figure 11The clamping structure 611 in the embodiment includes positioning strips 6111 installed on the left and right ends of the outer side of the shell 61, and the two positioning strips 6111 are respectively inserted into the inside of the two fixed plates 612. One end of the positioning strip 6111 movably provides a plug-in shaft 6112, the inside of the plug-in shaft 6112 is opposite to a transmission plate 6113, the transmission plate 6113 is movably arranged inside the positioning strip 6111, and the inside of the transmission plate 6113 is provided with opposite inclined grooves at the upper and lower ends, and the inside of the transmission plate 6113 is provided with lock shafts 6114 at the upper and lower ends. The outer ends of the two lock shafts 6114 are vertically inserted into the inside of the fixed plate 612. The transmission plate 6113 is provided with two first springs 6115 on the side away from the plug-in shaft 6112. The firmness of the plug-in locking effect can be met by the elastic force of the first spring 6115. The inside of the left side of the positioning strip 6111 is provided with a resisting strip 6116 at the upper and lower ends, and the resisting strip 6116 is provided with two second springs 6117 close to the inside of the positioning strip 6111. The combination of the resisting strip 6116 and the second spring 6117 can improve the firmness of the butt joint of the positioning strip 6111 and the inside of the fixed plate 612.
[0052] Specifically, if the overall disassembly and maintenance of the heat dissipation assembly 6 is required, the plug-in shaft 6112 movably inserted on one side of the positioning strip 6111 can be extruded, so that the transmission plate 6113 at one end of the plug-in shaft 6112 is pushed in. The lock shaft 6114 connected to the transmission plate 6113 moves, and the lock shaft 6114 connected to the inclined grooves in the transmission plate 6113 moves horizontally and is guided by the inclined grooves to move up and down. In this way, the two lock shafts 6114 can simultaneously move away from the plug-in locking position of the fixed plate 612 to achieve quick unlocking. Therefore, by pulling the shell 61 as a whole, the overall heat dissipation assembly 6 can be quickly disassembled. In this process, there is no need for too many complicated steps, and compared with the traditional bolt fixing method, the maintenance efficiency is greatly improved.
[0053] If the installation activity is re-performed, the plug-in shaft 6112 needs to be extruded again to pre-achieve the inward movement of the two side lock shafts 6114. After the inward movement of the lock shaft 6114 is completed, the inside of the fixed plate 612 can be positioned by the positioning strip 6111 to realize the quick positioning butt joint activity. At the same time, in the positioning insertion process of the positioning strip 6111, the resistance strip 6116 arranged on the left side of the inside upper and lower ends will be extruded and inserted to realize the extrusion of the second spring 6117 on one side. The second spring 6117 can be externally pressed against the resistance strip 6116 through the rebound force of the second spring 6117. In this way, the resistance strip 6116 can provide a certain damping effect in the positioning insertion process of the positioning strip 6111, so that the positioning butt joint effect of the positioning strip 6111 and the fixed plate 612 is firm. When the positioning strip 6111 is completely inserted into the inside of the fixed plate 612, the pressed plug-in shaft 6112 can be released. At this time, by extruding the plug-in shaft 6112, the transmission plate 6113 is transversely moved, and the compressed first spring 6115 automatically rebounds to automatically transversely push the transmission plate 6113 to reset. In combination with the transverse reset effect of the transmission plate 6113, the lock shaft 6114 connected with the inclined grooves on the two sides of the inside is simultaneously moved vertically and oppositely to be inserted into the upper and lower ends of the fixed plate 612, respectively, to realize positioning and insertion locking, and to strengthen the positioning butt joint firmness of the positioning strip 6111 and the fixed plate 612. Further, the quick connection combination of the heat dissipation assembly 6 and the outside of the photovoltaic panel main body 1 is achieved, and the efficient maintenance activity is adapted.
[0054] The above only describes the preferred examples of the present application and is not used to limit the present application. Although the present application is described in detail with reference to the foregoing examples, those skilled in the art can still modify the technical solutions recorded in the foregoing examples or equivalently replace some technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. An energy-saving solar photovoltaic panel for use on an exterior curtain wall, comprising a photovoltaic panel body (1), wherein quick-connect components (2) are provided on both the left and right sides of the photovoltaic panel body (1), the quick-connect components (2) on both sides are connected to the left and right sides of the front end of the mounting frame (3), the mounting frame (3) is provided with an interface component (4) at the lower right side, and the upper end of the interface component (4) is connected to the quick-connect component (2) on one side, and a docking seat (5) is bolted to the rear side of the middle of the mounting frame (3); Its features are: It also includes a heat dissipation assembly (6) located on the rear side of the photovoltaic panel body (1). The heat dissipation assembly (6) includes a housing (61) which abuts against the rear side of the photovoltaic panel body (1). A filter screen (62) is installed in the middle of the side of the housing (61) away from the photovoltaic panel body (1). A fan (63) is provided on one side inside the housing (61), and the fan (63) and the filter screen (62) are opposite each other. A rotating shaft (64) is connected to the middle of the fan blade end of the fan (63). The side of the rotating shaft (64) away from the fan (63) is connected to the heat dissipation pipe (65). A cooling cylinder (66) is installed on the outside of the heat dissipation pipe (65), and the outside of the heat dissipation pipe (65) is vertically and horizontally connected. The end is provided with connecting pipes (67) at equal intervals. The connecting pipes (67) are vertically inserted into the heat dissipation fins (68). The heat dissipation fins (68) are installed at the air outlet end of the housing (61) and abut against the rear side of the photovoltaic panel body (1). The housing (61) has through holes (69) at equal intervals on one side at both the upper and lower ends. The housing (61) is provided with a blowing heat dissipation structure (610) inside. The blowing heat dissipation structure (610) is connected to the outside of the rotating shaft (64). The housing (61) has a snap-fit structure (611) installed on both sides of the outer end. The snap-fit structure (611) is snapped into the fixed plate (612). The fixed plate (612) is fixed to the four sides of the rear end of the photovoltaic panel body (1). The quick-connect assembly (2) includes a limiting plate (21) and a side strip (24). The limiting plate (21) is disposed opposite to the left and right sides of the mounting frame (3). The limiting plate (21) has a slot (22) inside. Magnets (23) are provided at equal intervals on one side of the inner side of the limiting plate (21). The side strip (24) is bolted to the left and right sides of the photovoltaic panel body (1). Guide pins (25) are installed at equal intervals on the outer end of the side strip (24). The guide pins (25) are inserted into the slot (22). The rear side of the side strip (24) is magnetically attracted to the magnets (23). The blowing heat dissipation structure (610) includes a first bevel gear (6101), which is connected to the outside of the rotating shaft (64). The upper and lower ends of the first bevel gear (6101) are meshed with second bevel gears (6102). A connecting rod (6103) is connected to the middle of the second bevel gear (6102). The connecting rod (6103) is connected to a third bevel gear (6104) on the side away from the second bevel gear (6102). The third bevel gear (6104)... 04) A fourth bevel gear (6105) is meshed on the outside. The middle part of the fourth bevel gear (6105) is connected to the lifting swing structure (6106), and the lifting swing structure (6106) is connected to the air outlet shell (6107). A hose (6108) is connected to one side of the air outlet shell (6107). The hose (6108) is connected to the air collection hood (6109) on the side away from the air outlet shell (6107), and the air collection hood (6109) is connected to the inside of the housing (61).
2. The energy-saving solar photovoltaic panel for use in exterior curtain walls according to claim 1, characterized in that: The interface component (4) includes a connecting plate (41), which is located at the bottom of the right limiting plate (21). A stud (42) is installed on the right side of the connecting plate (41), and the connecting plate (41) is threadedly locked to the bottom of the right limiting plate (21) by the stud (42) on the right side. A rubber pad (43) is provided on the upper left side of the connecting plate (41), and a spring pin (44) is installed on the upper end of the rubber pad (43). The rubber pad (43) and the spring pin (44) are both embedded in the lower right side of the photovoltaic panel body (1), and the spring pin (44) is connected to the interface at the lower right side of the photovoltaic panel body (1).
3. The energy-saving solar photovoltaic panel for use in exterior curtain walls according to claim 1, characterized in that: The lifting and swinging structure (6106) includes a transmission rod (61061). One side of the transmission rod (61061) is connected to a fourth bevel gear (6105), and the other side of the transmission rod (61061) is connected to a turntable (61062). A convex shaft (61063) is provided on the side of the turntable (61062). The convex shaft (61063) is inserted into the interior of the movable frame (61064). A docking groove (61065) is provided in the middle of the lower end of the movable frame (61064), and the docking groove (61065) is connected to the convex shaft (61063). The upper end of (61064) is rotatably connected to the air outlet shell (6107), and one side of the upper end of the movable frame (61064) is connected to the gear (61066). The gear (61066) is externally meshed with a rack (61067). The rack (61067) is vertically arranged inside the welding plate (61068). The welding plate (61068) is welded to both sides inside the shell (61), and a limiting groove (61069) is opened at the bottom of the welding plate (61068). The limiting groove (61069) is connected to the lower side of the movable frame (61064).
4. The energy-saving solar photovoltaic panel for use in exterior curtain walls according to claim 1, characterized in that: The snap-fit structure (611) includes a positioning strip (6111), which is installed on the left and right ends of the outer side of the housing (61). One end of the positioning strip (6111) is movably provided with a plug shaft (6112). The inner side of the plug shaft (6112) is connected to the transmission plate (6113). The transmission plate (6113) is built inside the positioning strip (6111), and a locking shaft (6114) is inserted into the upper and lower sides of the transmission plate (6113). The outer end of the locking shaft (6114) is inserted into the interior of the fixing plate (612). A first spring (6115) is installed on the side of the transmission plate (6113) away from the plug shaft (6112). A stop bar (6116) is provided at both the upper and lower ends of the inner side of the positioning strip (6111), and a second spring (6117) is connected to the stop bar (6116) near the inner side of the positioning strip (6111).
5. The energy-saving solar photovoltaic panel for use on exterior curtain walls according to claim 1, characterized in that: The bottom of the slot (22) does not penetrate the limiting plate (21), and the front side of the limiting plate (21) has an integral rectangular recess.
6. The energy-saving solar photovoltaic panel for use in exterior curtain walls according to claim 2, characterized in that: The rubber pads (43) are stacked in a stepped manner, and three spring pins (44) are provided at equal intervals on the upper end of the rubber pads (43).
7. The energy-saving solar photovoltaic panel for use in exterior curtain walls according to claim 1, characterized in that: The connecting pipes (67) are symmetrically arranged on one side of the heat dissipation pipe (65), and the number of connecting pipes (67) is not less than five.
8. The energy-saving solar photovoltaic panel for use in exterior facade curtain walls according to claim 3, characterized in that: The movable frame (61064) is arranged in an inverted door-shaped frame, and the lower ends of both the left and right sides of the movable frame (61064) are connected to the limiting groove (61069) by protrusions.
Citation Information
Patent Citations
Energy-saving solar photovoltaic wallboard
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