Solar power generation assembly and solar power generation curtain wall
The protective and power generation mechanisms, designed with a linkage transmission system, enable the rapid storage of photovoltaic panels and the automatic shading of the protective cloth. This solves the problem of photovoltaic panel damage in severe weather, improves power generation efficiency and the ease of operation of the protective cloth, and is suitable for applications in multiple climate zones.
Patent Information
- Application Number
- CN202511279602.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-09
- Publication Date
- 2025-11-07
AI Technical Summary
Existing solar power generation modules are installed at an angle and cannot be flexibly adjusted, which makes the photovoltaic panels easy to be damaged in severe weather. Furthermore, the laying, fixing and recycling of protective cloth are difficult, affecting power generation efficiency and safety.
Design a linkage transmission protection mechanism and power generation mechanism. The photovoltaic panel is stored and the protective cloth is unfolded by driving a motor, so as to realize the rapid storage of the photovoltaic panel and the automatic shielding of the protective cloth. The operation steps are simplified and the stability is improved by using the transmission cooperation of gear set and rod-shaped component.
It enables the rapid and safe storage of photovoltaic panels in severe weather, avoiding damage, simplifies the operation of protective cloth, improves power generation efficiency and protection, and is suitable for applications in multiple climate regions.
Smart Images

Figure CN120915233A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of solar power generation equipment, in particular to a solar power generation assembly and a solar power generation curtain wall. BACKGROUND
[0002] With the transformation of global energy structure to clean energy, solar power generation technology has become increasingly widely used in the field of construction due to its advantages of renewable resources and environmental friendliness. As a new component integrating power generation function and building decoration function, the solar power generation curtain wall has become an important part of green buildings. The core functional carrier of the solar power generation curtain wall is the solar power generation assembly (mainly photovoltaic panels), and its power generation efficiency is closely related to the installation angle of the photovoltaic panels - to maximize the reception of solar radiation. The existing solar power generation assembly (especially photovoltaic panels for curtain walls) is mostly fixedly connected with the building body through rigid connecting pieces such as supports and bolts, and once the inclination angle is installed, it cannot be flexibly adjusted, not to mention the function of convenient storage. When encountering adverse weather such as typhoon, heavy rain, heavy snow, and hail, the inclined photovoltaic panels will form a "windward surface" or "accumulation surface": on the one hand, strong winds are easy to produce lateral thrust on the inclined photovoltaic panels, causing the supports to deform, the bolts to loosen, and even the photovoltaic panels to fall off as a whole. To cope with the damage of adverse weather to photovoltaic panels, the industry often uses protective cloth to shield and protect (such as waterproof and sun-proof cloth, impact-resistant cloth, etc.), but the existing inclined installation structure of photovoltaic panels and the overall design of the curtain wall make it difficult to lay, fix, and recycle the protective cloth. Therefore, we propose a solar power generation assembly and a solar power generation curtain wall. SUMMARY
[0003] Invention purposes: The purpose of the present application is to provide a solar power generation assembly which can ensure the normal installation of photovoltaic panels to maximize the reception of solar radiation and guarantee the power generation efficiency, break the limitation of the angle of the existing photovoltaic panel which cannot be flexibly adjusted and has no convenient storage function caused by the rigid connecting piece such as support and bolt, realize the quick and safe storage of the photovoltaic panel when the severe weather such as typhoon, rainstorm, snowstorm and hail arrives, avoid the damage of the photovoltaic panel which is installed in an inclined manner due to the lateral thrust and snow pressure caused by the formation of "windward surface" and "accumulation surface", and improve the protection convenience and safety of the photovoltaic assembly in severe weather; the present application also aims to provide a solar power generation curtain wall which integrates the above-mentioned solar power generation assembly and can solve the problems of difficult laying, poor fixing reliability and low recovery efficiency of the protective cloth caused by the inclined installation structure and overall design of the existing photovoltaic curtain wall, so that the protective cloth can be conveniently laid on the surface of the curtain wall, stably fixed and not easy to fall off when coping with severe weather, and can be quickly recovered after the weather recovers to not affect the normal power generation of the photovoltaic panel, while avoiding the damage to the sealing performance, surface light transmittance and power generation performance of the photovoltaic panel in the operation process of the protective cloth, further adapting to the dual needs of "high-efficiency power generation" and "reliable protection" of the solar power generation curtain wall of green building, and promoting its wide application in multi-climate areas.
[0004] Technical scheme: A solar power generation assembly and a solar power generation curtain wall, comprising a protection mechanism, a power generation mechanism is arranged below the protection mechanism; The protection mechanism comprises a storage box, a double-way screw rod is rotationally connected in the inside of the storage box through a rotating shaft, two moving blocks are threadedly connected to the outer side wall of the double-way screw rod, a traction rod one is rotationally connected to the upper surface of the moving block through a rotating shaft, an axle seat is rotationally connected to the end of the traction rod one away from the moving block, and a cover plate is fixedly connected to the front of the two axle seats; The outer side wall of the double-way screw rod is fixedly connected with a gear one on both sides; A winding rod is rotationally connected to the inside of the storage box and below the double-way screw rod through a rotating shaft, a protective cloth is fixedly connected to the outer side wall of the winding rod, and the end of the protective cloth away from the winding rod is fixedly connected to the lower surface of the rear surface of the cover plate; The outer side wall of the winding rod is fixedly connected with a gear two on both sides; Both sides of the storage box are fixedly connected with a turning plate one, and the side of the turning plate one close to the storage box is rotationally connected with a gear three through a rotating shaft.
[0005] Furthermore, the outer side wall of the gear two is meshingly connected with the lower surface of the outer side wall of the gear one and the upper surface of the outer side wall of the gear three.
[0006] Further, the rear of the interior of the two mobile blocks is slidably connected with a limiting rod, the two ends of the limiting rod are fixedly connected with the two sides of the interior of the storage box.
[0007] Further, the front of the lower surface of the mobile block is provided with a rotating hole, the interior of the rotating hole is provided with a lifting column, the outer side wall of the lifting column is provided with a spiral groove, the inner side wall of the rotating hole and the inner side of the spiral groove are fixedly connected with a pushing column, the bottom end of the lifting column is fixedly connected with a traction rod two.
[0008] Further, the lower surface of the shaft seat is provided with a circular hole, the upper surface of the traction rod two and the interior of the circular hole are fixedly connected with a circular column.
[0009] Further, the power generation mechanism comprises a folding box, the interior of the upper surface of the folding box is rotatably connected with a photovoltaic panel through a rotating shaft, the lower surface of the two sides of the folding box is provided with a vertical groove, the lower surface of the two sides of the photovoltaic panel is rotatably connected with a movable plate through a rotating shaft, the side away from the photovoltaic panel of the movable plate and the inner side of the vertical groove are rotatably connected with a movable rod through a rotating shaft, the opposite ends of the two movable rods and the two sides of the folding box are fixedly connected with an L-shaped rack.
[0010] Further, the lower surface of the two sides of the folding box is rotatably connected with a gear four through a rotating shaft, the opposite sides of the two gear fours are fixedly connected with a steering plate two, the upper surface of the side away from the folding box of the steering plate two is rotatably connected with a vertical rod through a rotating shaft, the top end of the vertical rod and the upper surface of the opposite side of the steering plate one are rotatably connected through a rotating shaft, the front surface of the L-shaped rack and the rear of the outer side wall of the gear four are meshingly connected.
[0011] Further, the rear surface of the interior of the folding box is fixedly connected with a fixing seat, the lower surface of the fixing seat is rotatably connected with a vertical screw rod through a rotating shaft, the outer side wall of the vertical screw rod is threadedly connected with a screw block, the two sides of the screw block are rotatably connected with a supporting rod through a rotating shaft, the opposite ends of the two supporting rods are rotatably connected with a supporting block through a rotating shaft, the front end of the supporting block and the rear surface of the photovoltaic panel are fixedly connected.
[0012] Further, the lower surface of the folding box is fixedly connected with a driving motor, the top end of the output shaft of the driving motor penetrates into the interior of the folding box and is fixedly connected with the bottom end of the vertical screw rod.
[0013] Beneficial effect: through scientific structure design and linkage transmission logic, the device effectively solves the core problems of "storage difficulty" and "inconvenient use of protective cloth" of the existing solar power generation assembly and curtain wall in bad weather, and at the same time, the normal power generation efficiency is considered; The device can form stable inclined support on the photovoltaic panel through the support rod in the normal power generation state, so that the photovoltaic panel maintains the optimal inclination angle to maximize the reception of solar radiation, fully guarantees the power generation efficiency, and meets the core demand of the solar curtain wall "high-efficiency power generation"; when encountering severe weather such as typhoon, snowstorm, and hail, only the driving motor needs to be started to trigger the storage action, the support rod is retracted and the photovoltaic panel is horizontally stored in the folding box through the vertical screw rod driving the sliding block, without manual climbing disassembly or manual adjustment, which greatly shortens the storage time, avoids the problems of bracket deformation, component shedding, and snow pressure damage of traditional fixed installation photovoltaic panel due to the formation of "windward surface" and "accumulation surface", significantly reduces the damage risk of photovoltaic components in severe weather, and prolongs the service life of the components; The device breaks through the limitations of traditional protective cloth "difficult to lay, poor fixation, and low recovery efficiency", and realizes automatic unfolding and stable shielding of the protective cloth through the linkage transmission of the protection mechanism and the power generation mechanism: when the photovoltaic panel is stored, the movable rod and the L-shaped rack driven by the photovoltaic panel will drive the gear four to rotate, and then the gear three, the gear two, and the gear one will drive the winding rod to release the protective cloth, and the moving block will move under the push of the bidirectional screw rod, so that the cover plate drives the protective cloth to completely unfold and cover the photovoltaic panel; Through the synchronous movement and lifting of the traction rod two, the unfolded protective cloth is pressed from the outside to avoid the flapping, wrinkling or falling of the protective cloth caused by strong wind, ensuring that the protective cloth always adheres to the surface of the photovoltaic panel, solving the sliding and deviation problems of traditional protective cloth laying, and avoiding the need for additional fixing parts such as buckles and hooks, simplifying the operation process and avoiding damage to the sealing performance of the photovoltaic panel by the fixing parts; The device adopts multi-component linkage transmission design, without the need for additional multiple driving devices: the storage action of the photovoltaic panel can trigger the turning of the protection mechanism and the unfolding of the protective cloth simultaneously, and the whole process from "photovoltaic panel storage" to "protective cloth shielding" can be realized by only one driving motor, which simplifies the operation steps (without manual control of storage and protection actions), reduces the number of power equipment, and reduces the overall energy consumption and manufacturing cost of the device; at the same time, the transmission cooperation between the gear set (gear one, gear two, gear three, and gear four) and the rod-shaped parts (traction rod, support rod, and movable rod) is precise, which can ensure smooth connection of each action and avoid problems such as jamming and deviation, improving the reliability and stability of the device operation; The device further improves the operation stability through the design of limiting rods, lifting columns and other detail structures: the limiting rods can limit the movement track of the moving block, prevent it from rotating synchronously with the bidirectional screw rod, ensure the stable lifting of the cover plate when the protective cloth is unfolded, and avoid the irregular storage or unfolding of the protective cloth due to the deviation of the moving block; the cooperation of the lifting column, the poking column and the spiral groove can realize automatic lifting and horizontal movement during the rotation of the second traction rod, which not only ensures the pressing effect of the second traction rod on the protective cloth, but also does not need additional power driving, simplifies the structure and improves the stability of the protective cloth shielding; The device can effectively cope with typhoons, heavy rains, heavy snow, hail and other severe weather, solve the pressure loss problem of photovoltaic panels in high-latitude areas caused by rain and snow, and relieve the impact damage of photovoltaic components in coastal areas caused by strong winds, break the limitation that the existing solar energy curtain wall is difficult to promote in multiple climate regions due to insufficient protection ability; at the same time, the device takes into account the power generation efficiency and architectural decoration (the folding box and the protection mechanism can form a regular appearance after the photovoltaic panel is stored), meets the requirement of green building for "functionality and aesthetics", can promote the application of solar power generation curtain wall in more regions and more types of buildings, and provides strong support for global energy structure transformation and green building development. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is a front view structural schematic diagram of the present application; Figure 2 is a side view structural schematic diagram of the present application; Figure 3 is an internal structure schematic diagram of the protection mechanism of the present application; Figure 4 is a top view structural schematic diagram of the present application; Figure 3 Figure 5 is a connection structure schematic diagram of the bidirectional screw rod, the limiting rod, the turning plate and the winding rod of the present application; Figure 6 is a bottom view connection structure schematic diagram of the first traction rod, the shaft seat and the moving block of the present application; Figure 7 is a connection structure schematic diagram of the second traction rod, the lifting column and the cylinder of the present application; Figure 8 is a structural schematic diagram of the power generation assembly of the present application; Figure 9 is a local structure schematic diagram of the power generation assembly of the present application.
[0015] In the figure: 1, protection mechanism; 2, power generation mechanism; 101, storage box; 102, bidirectional screw; 103, moving block; 104, traction rod one; 105, shaft seat; 106, cover plate; 107, gear one; 108, winding rod; 109, protective cloth; 110, gear two; 111, turning plate one; 112, gear three; 113, limiting rod; 114, rotating hole; 115, lifting column; 116, spiral groove; 117, pushing column; 118, traction rod two; 119, round hole; 120, cylinder; 201, folding box; 202, photovoltaic panel; 203, vertical groove; 204, movable plate; 205, movable rod; 206, L-shaped rack; 207, gear four; 208, turning plate two; 209, vertical rod; 210, fixed seat; 211, vertical screw; 212, screw block; 213, support rod; 214, support block; 215, drive motor. DETAILED DESCRIPTION
[0016] In order to make the technical scheme of the present application clearer, the present application will be further described in detail below with reference to the drawings and specific embodiments.
[0017] EMBODIMENT As shown in Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 , a solar power generation assembly and a solar power generation curtain wall are provided, which include a protection mechanism 1. The protection mechanism 1 includes a storage box 101, the inside of the storage box 101 is rotationally connected with a bidirectional screw 102 through a rotating shaft, the outer side wall of the bidirectional screw 102 is threadedly connected with two moving blocks 103, the upper surface of each moving block 103 is rotationally connected with a traction rod one 104 through a rotating shaft, the end of the traction rod one 104 away from the moving block 103 is rotationally connected with a shaft seat 105 through a rotating shaft, and the front of the two shaft seats 105 is fixedly connected with a cover plate 106. The outer side wall of the bidirectional screw 102 is fixedly connected with a gear one 107 on both sides. The inside of the storage box 101 and below the bidirectional screw 102 is rotationally connected with a winding rod 108 through a rotating shaft, the outer side wall of the winding rod 108 is fixedly connected with a protective cloth 109, and the end of the protective cloth 109 away from the winding rod 108 is fixedly connected with the lower surface of the rear of the cover plate 106. The outer side wall of the winding rod 108 is fixedly connected with a gear two 110 on both sides. The two sides of the storage box 101 are fixedly connected with a turning plate one 111, and the side of the turning plate one 111 close to the storage box 101 is rotationally connected with a gear three 112 through a rotating shaft. The outer side wall of the gear two 110 is meshed and connected with the lower outer side wall of the gear one 107 and the upper outer side wall of the gear three 112 respectively; In the normal power generation state, the protection mechanism 1 is located above the power generation mechanism 2, avoiding blocking the power generation mechanism 2. At this time, the bidirectional screw 102 is in the initial position, the two moving blocks 103 are close to each other, the traction rod one 104 supports the shaft seat 105 and the cover plate 106 in an inclined state, the cover plate 106 is attached to the front surface of the storage box 101, the protective cloth 109 is completely wound by the winding rod 108, and the gear one 107, the gear two 110 and the gear three 112 are all in the static state; when encountering severe weather, the steering plate two 208 drives the steering plate one 111 to rotate synchronously, the steering plate one 111 drives the gear three 112 to rotate around the rotating shaft, the gear three 112 meshes with the transmission gear two 110, the gear two 110 meshes with the transmission gear one 107, and the bidirectional screw 102 rotates synchronously with the gear one 107, while the gear two 110 drives the winding rod 108 to rotate and be in the state of releasing the protective cloth 109, preparing for the subsequent expansion of the protective cloth 109. With continuous transmission, the protection mechanism 1 rotates from above the power generation mechanism 1 to the front, and at this time the protective cloth 109 is completely expanded, shielding the power generation mechanism 1.
[0018] As shown in Figure 4 and Figure 5 , the inside rear of the two moving blocks 103 is commonly slidably installed with a limiting rod 113, the two ends of the limiting rod 113 are fixedly connected with the inside two sides of the storage box 101 respectively; The limiting rod 113 is always fixed in the horizontal direction of the storage box 101, and its core function is to limit the movement track of the moving block 103; in the normal state, the moving block 103 is limited to slide in the middle position of the limiting rod 113, keeping the stability of the thread cooperation with the bidirectional screw 102; when the bidirectional screw 102 rotates, the moving block 103 will move in the opposite or opposite direction along the thread direction of the bidirectional screw 102, at this time the limiting rod 113 can prevent the moving block 103 from rotating synchronously with the bidirectional screw 102, ensuring that the moving block 103 stably slides in the horizontal direction, and further ensuring that the traction rod one 104 can smoothly push the shaft seat 105 and the cover plate 106 to rise and fall, avoiding the problems of jamming and deviation when the protective cloth 109 is expanded or stored due to the deviation of the moving block 103.
[0019] As shown in Figure 6 and Figure 7 , the lower surface of the moving block 103 is provided with a rotating hole 114 in the front, the rotating hole 114 is provided with a lifting column 115 inside, the outer side wall of the lifting column 115 is provided with a spiral groove 116, the inner side wall of the rotating hole 114 and inside the spiral groove 116 are fixedly connected with a pushing column 117, and the bottom end of the lifting column 115 is fixedly connected with a traction rod two 118; The lower surface of the shaft seat 105 is provided with a circular hole 119, and the upper surface of the traction rod two 118 and inside the circular hole 119 is fixedly connected with a cylinder 120; In the normal power generation state, the traction rod two 118 is in the inclined state close to the storage box 101 with the moving block 103, the lifting column 115 is completely retracted in the rotating hole 114, and the cylinder 120 is attached to the rear end of the circular hole 119; when the protection action is triggered in bad weather, the bidirectional screw rod 102 rotates to push the moving block 103 to move away, the traction rod one 104 and the traction rod two 118 are synchronized to rotate from the inclined state to the vertical state, in the process, the push column 117 slides downward along the spiral groove 116, forcing the lifting column 115 to extend from the inside of the rotating hole 114, while the cylinder 120 slides forward along the circular hole 119, driving the traction rod two 118 to move towards the folding box 201; after the protective cloth 109 is completely unfolded and shielded in front of the photovoltaic panel 202, the traction rod two 118 just moves to the outside of the protective cloth 109, forming a pressing on the protective cloth 109, avoiding the protective cloth 109 from fluttering and wrinkling caused by strong wind, ensuring that the protective cloth 109 always adheres to the surface of the photovoltaic panel 202, and improving the shielding stability.
[0020] As shown in Figure 1 , Figure 2 , Figure 8 and Figure 9 , the lower part of the protection mechanism 1 is provided with a power generation mechanism 2; The power generation mechanism 2 comprises a folding box 201, the upper part inside the folding box 201 is rotatably connected with a photovoltaic panel 202 through a rotating shaft, the lower part of the two sides of the folding box 201 is provided with a vertical slot 203, the lower part of the two sides of the photovoltaic panel 202 is rotatably connected with a movable plate 204 through a rotating shaft, the side away from the photovoltaic panel 202 of the movable plate 204 and inside the vertical slot 203 is rotatably connected with a movable rod 205 through a rotating shaft, the opposite ends of the two movable rods 205 and the two sides of the folding box 201 are fixedly connected with an L-shaped rack 206; The lower part of the two sides of the folding box 201 is rotatably connected with a gear four 207 through a rotating shaft, the opposite sides of the two gear fours 207 are fixedly connected with a deflection plate two 208, the upper part of the side away from the folding box 201 of the deflection plate two 208 is rotatably connected with a vertical rod 209 through a rotating shaft, the top of the vertical rod 209 is rotatably connected with the opposite side of the deflection plate one 111 through a rotating shaft, and the front surface of the L-shaped rack 206 is meshingly connected with the rear of the outer side wall of the gear four 207; The inner rear surface of the folding box 201 is fixedly connected with a fixing seat 210, the lower surface of the fixing seat 210 is rotationally connected with a vertical screw rod 211 through a rotating shaft, the outer side wall of the vertical screw rod 211 is threadedly connected with a screw block 212, the two sides of the screw block 212 are rotationally connected with support rods 213 through rotating shafts, the opposite ends of the two support rods 213 are commonly rotationally connected with a support block 214 through a rotating shaft, and the front end of the support block 214 is fixedly connected with the rear surface of the photovoltaic panel 202. The lower surface of the folding box 201 is fixedly connected with a driving motor 215, the top end of the output shaft of the driving motor 215 penetrates into the interior of the folding box 201 and is fixedly connected with the bottom end of the vertical screw rod 211. In the normal power generation state, the driving motor 215 is not started, the vertical screw rod 211 remains stationary, the screw block 212 is located at the upper position of the vertical screw rod 211, the support rods 213 are in an inclined support state, the photovoltaic panel 202 is pushed to tilt and extend out around the top rotating shaft of the folding box 201 through the support block 214, at this time, the movable plate 204 tilts with the photovoltaic panel 202, the L-shaped rack 206 is located above the vertical groove 203 and is driven by the movable rod 205, the L-shaped rack 206 is in meshing with the gear four 207 but does not drive the rotation of the gear four 207, the second steering plate 208 drags the first steering plate 111 through the vertical rod 209, so that the protection mechanism 1 is stably located above the power generation mechanism 2. When encountering severe weather, the driving motor 215 is started, the output shaft of the driving motor 215 drives the vertical screw rod 211 to rotate, the screw block 212 slides upward along the vertical screw rod 211, the support rods 213 gradually shrink with the screw block 212, and the photovoltaic panel 202 is pulled to be horizontally stored in the interior of the folding box 201 through the support block 214; at the same time, the photovoltaic panel 202 drives the movable plate 204 to rotate in the storage process, the movable plate 204 pulls the movable rod 205 to slide upward along the vertical groove 203, the movable rod 205 drives the L-shaped rack 206 to synchronously rise, the L-shaped rack 206 meshes with the gear four 207 to drive the rotation of the gear four 207, the gear four 207 drives the second steering plate 208 to rotate around the rotating shaft outside the folding box 201, the second steering plate 208 pulls the first steering plate 111 to synchronously rotate through the vertical rod 209, and finally the protection mechanism 1 is rotated from above the power generation mechanism 2 to the front of the power generation mechanism 2, so as to provide a transmission basis for the subsequent protection cloth 109 to shield the photovoltaic panel 202.
[0021] The above-described embodiments only express several embodiments of the present application, the description is more specific and detailed, but it cannot be understood as the limitation of the patent scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which belong to the protection scope of the present application. Therefore, the protection scope of the patent of the present application should be subject to the appended claims.
Claims
1. A solar power generating assembly and solar power generating curtain wall comprising a protection mechanism (1), characterized in that: The lower part of the protection mechanism (1) is provided with a power generation mechanism (2); The protection mechanism (1) comprises a storage box (101), the inside of the storage box (101) is rotatably connected with a bidirectional screw rod (102) through a rotating shaft, the outer side wall of the bidirectional screw rod (102) is threadedly connected with two moving blocks (103), the upper surface of the moving block (103) is rotatably connected with a traction rod one (104) through a rotating shaft, the end, away from the moving block (103), of the traction rod one (104) is rotatably connected with an axle seat (105), the front of the two axle seats (105) is fixedly connected with a cover plate (106) in common; The outer side wall of the bidirectional screw rod (102) is fixedly connected with a gear one (107) on both sides; The inside of the storage box (101) and below the bidirectional screw rod (102) is rotatably connected with a winding rod (108) through a rotating shaft, the outer side wall of the winding rod (108) is fixedly connected with a protective cloth (109), the end, away from the winding rod (108), of the protective cloth (109) is fixedly connected with the lower surface of the rear surface of the cover plate (106); The outer side wall of the winding rod (108) is fixedly connected with a gear two (110) on both sides; The two sides of the storage box (101) are fixedly connected with a turning plate one (111), the side, close to the storage box (101), of the turning plate one (111) is rotatably connected with a gear three (112) through a rotating shaft.
2. The solar power module and solar power curtain wall according to claim 1, characterized in that: The outer side wall of the gear two (110) is meshingly connected with the lower surface of the outer side wall of the gear one (107) and the upper surface of the outer side wall of the gear three (112) respectively.
3. The solar power module and solar power curtain wall according to claim 1, characterized in that: The inside of the two moving blocks (103) is slidably installed with a limiting rod (113) in common at the back, the two ends of the limiting rod (113) are fixedly connected with the inside of the storage box (101) respectively.
4. The solar power module and solar power curtain wall according to claim 1, characterized in that: The lower surface of the moving block (103) is provided with a rotating hole (114) in front, the inside of the rotating hole (114) is provided with a lifting column (115), the outer side wall of the lifting column (115) is provided with a spiral groove (116), the inner side wall of the rotating hole (114) and located inside the spiral groove (116) is fixedly connected with a poking column (117), the bottom end of the lifting column (115) is fixedly connected with a traction rod two (118).
5. The solar power module and solar power curtain wall according to claim 4, characterized in that: The lower surface of the axle seat (105) is provided with a circular hole (119), the upper surface of the traction rod two (118) and located inside the circular hole (119) is fixedly connected with a cylinder (120).
6. The solar power module and solar power curtain wall according to claim 1, characterized in that: The power generation mechanism (2) includes a folding box (201), the upper inside of the folding box (201) is rotatably connected with a photovoltaic panel (202) through a rotating shaft, the lower sides of the folding box (201) are both provided with vertical grooves (203), the lower sides of the photovoltaic panel (202) are both rotatably connected with movable plates (204) through rotating shafts, the side, away from the photovoltaic panel (202), of the movable plate (204) and located inside the vertical groove (203) is rotatably connected with movable rods (205) through a rotating shaft, and the opposite ends of the two movable rods (205) and located at the two sides of the folding box (201) are both fixedly connected with L-shaped racks (206).
7. A solar power module and solar power curtain wall according to claim 6, characterized in that: The lower sides of the folding box (201) are both rotatably connected with gear fours (207) through rotating shafts, the opposite sides of the two gear fours (207) are both fixedly connected with steering plates two (208), the upper side, away from the folding box (201), of the steering plate two (208) is rotatably connected with a vertical rod (209) through a rotating shaft, the top of the vertical rod (209) is rotatably connected with the upper side, opposite to the steering plate one (111), through a rotating shaft, and the front surface of the L-shaped rack (206) is in meshing connection with the rear side of the outer side wall of the gear four (207).
8. The solar power module and solar power curtain wall according to claim 7, characterized in that: The rear surface of the inside of the folding box (201) is fixedly connected with a fixed seat (210), the lower surface of the fixed seat (210) is rotatably connected with a vertical screw rod (211) through a rotating shaft, the outer side wall of the vertical screw rod (211) is threadedly connected with a screw block (212), the two sides of the screw block (212) are both rotatably connected with supporting rods (213) through rotating shafts, the opposite ends of the two supporting rods (213) are commonly rotatably connected with a supporting block (214) through a rotating shaft, and the front end of the supporting block (214) is fixedly connected with the rear surface of the photovoltaic panel (202).
9. The solar power module and solar power curtain wall according to claim 8, characterized in that: The lower surface of the folding box (201) is fixedly connected with a driving motor (215), the output shaft top of the driving motor (215) penetrates into the inside of the folding box (201) and is fixedly connected with the bottom end of the vertical screw rod (211).