Foldable mobile solar power generation device
By designing a foldable solar power generation device, the use of articulation mechanism and lift regulator to achieve rapid assembly and angle adjustment, and the sliding wheels to achieve movement, the existing equipment is solved by complex assembly, high cost and inconvenient transportation, and the effects of rapid assembly, convenient adjustment and efficient transportation are achieved.
Patent Information
- Application Number
- CN202420892308.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-26
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-04-26
AI Technical Summary
The assembly of existing solar power generation equipment is complicated, the installation angle adjustment mechanism is complex and costly, and there are many problems with mobile transportation.
A foldable mobile solar power generation device is designed, using a structure combining a hinge mechanism and a lifting regulator to adjust the inclination angle of the photovoltaic module through a pull rod, and to use a sliding wheel to adjust the moving and installation position of the equipment.
It achieves the effects of quick assembly, easy installation angle adjustment and easy handling, reduces the manufacturing cost of equipment, and improves the convenience of mobile transportation.
Smart Images

Figure CN222928323U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field related to solar power generation, and particularly relates to a foldable and movable solar power generation device. Background Art
[0002] As a new type of energy discovered by humans, solar energy has the advantages of environmental protection and being renewable. However, to conveniently obtain solar energy and convert it into electric energy, solar power generation equipment is needed. Existing common solar power generation equipment has the problems of cumbersome assembly, overly complex installation angle adjustment mechanisms for solar collection devices and high manufacturing costs, and there are also many problems in mobile transportation. Therefore, a foldable and movable solar power generation device is required. Summary of the Utility Model
[0003] The purpose of the utility model is to provide a foldable and movable solar power generation device that is quick to assemble, convenient to adjust the installation angle, and easy to carry and move.
[0004] To achieve the above purpose, the utility model provides the following technical solution: A foldable and movable solar power generation device includes a first photovoltaic module, a second photovoltaic module, a third photovoltaic module, a fourth photovoltaic module, a first support vertical rod, a second support vertical rod, a first hinge mechanism, a second hinge mechanism, a third hinge mechanism, a first lifting regulator, a second lifting regulator, a first pull rod, a second pull rod, a third pull rod, and a fourth pull rod. The right end of the first photovoltaic module is movably installed with the first hinge mechanism; the left side of the first photovoltaic module and the right side of the second photovoltaic module are connected together through a two-way hinge; the left side of the third photovoltaic module and the right side of the fourth photovoltaic module are connected together through a two-way hinge; the left side of the second photovoltaic module and the right side of the third photovoltaic module are connected together through the second hinge mechanism; the left end of the fourth photovoltaic module is movably installed with the third hinge mechanism; the first support vertical rod is installed at the bottom of the two-way hinge between the first photovoltaic module and the second photovoltaic module; the second support vertical rod is installed at the bottom of the two-way hinge between the third photovoltaic module and the fourth photovoltaic module; the root of the first support vertical rod is sleeved and installed with the first lifting regulator; the root of the second support vertical rod is sleeved and installed with the second lifting regulator; the first pull rod is installed between the first hinge mechanism and the first lifting regulator; the second pull rod is installed between the first lifting regulator and the second hinge mechanism; the third pull rod is installed between the second hinge mechanism and the second lifting regulator; the fourth pull rod is installed between the second lifting regulator and the third hinge mechanism.
[0005] As a further improvement of the present utility model, the first hinge mechanism, the second hinge mechanism and the third hinge mechanism have the same structure. The specific structure includes an upper frame body, a lower frame body, a transverse shaft, a first connecting shaft, a second connecting shaft, a sliding wheel and an upper rotating shaft. The bottom of the upper frame body is fixedly connected with the lower frame body; the middle part of the upper frame body is movably installed through the transverse shaft; the first connecting shaft and the second connecting shaft are symmetrically arranged near the lower part of the upper frame body; the bottom of the lower frame body is rotatably installed with the sliding wheel; near the upper part of the upper frame body, the upper rotating shaft is installed through.
[0006] As a further improvement of the present utility model, the right end of the first photovoltaic module is movably connected to the first hinge mechanism through the upper rotating shaft; the left end of the second photovoltaic module and the right end of the third photovoltaic module are both movably connected to the second hinge mechanism through the upper rotating shaft; the left end of the fourth photovoltaic module is movably connected to the third hinge mechanism through the upper rotating shaft.
[0007] As a further improvement of the present utility model, adjusting bolts are installed on the left and right sides of the first lifting regulator and the second lifting regulator.
[0008] As a further improvement of the present utility model, the adjusting bolt on the right side of the first lifting regulator is connected to the first connecting shaft of the first hinge mechanism through a first pull rod.
[0009] As a further improvement of the present utility model, the adjusting bolt on the left side of the first lifting regulator is connected to the second connecting shaft of the second hinge mechanism through a second pull rod.
[0010] As a further improvement of the present utility model, the first connecting shaft of the second hinge mechanism is connected to the adjusting bolt on the right side of the second lifting regulator through a third pull rod.
[0011] As a further improvement of the present utility model, the adjusting bolt on the left side of the second lifting regulator is connected to the second connecting shaft of the third hinge mechanism through a fourth pull rod.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: When the inclination angles between the first photovoltaic module, the second photovoltaic module, the third photovoltaic module and the fourth photovoltaic module of the present technical solution need to be adjusted, the lengths of the first pull rod, the second pull rod, the third pull rod and the fourth pull rod are respectively adjusted for control. Sliding wheels are installed at the bottoms of the first hinge mechanism, the second hinge mechanism and the third hinge mechanism. Therefore, when the overall installation position of the device needs to be adjusted, the device is pushed to move to the required position by using the sliding wheels. When temporary disassembly and transportation are needed, the first pull rod, the second pull rod, the third pull rod and the fourth pull rod can be disassembled, and then the first photovoltaic module, the second photovoltaic module, the third photovoltaic module and the fourth photovoltaic module are folded and loaded onto the vehicle for transportation. The overall device has good adjustability and convenience in use. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic side view structure diagram of the whole of the present utility model.
[0014] Figure 2 It is a schematic top view structure diagram of the whole of the present utility model.
[0015] Figure 3 It is an enlarged structure diagram of the first hinge mechanism of the present utility model.
[0016] In the figure: 1. First photovoltaic module; 2. Second photovoltaic module; 3. Third photovoltaic module; 4. Fourth photovoltaic module; 5. First support vertical rod; 6. Second support vertical rod; 7. First hinge mechanism; 8. Second hinge mechanism; 9. Third hinge mechanism; 10. First lifting regulator; 11. Second lifting regulator; 12. First pull rod; 13. Second pull rod; 14. Third pull rod; 15. Fourth pull rod; 16. Upper frame body; 17. Lower frame body; 18. Horizontal axis; 19. First connection axis; 20. Second connection axis; 21. Sliding wheel; 22. Bidirectional hinge; 23. Upper rotating shaft; 24. Adjusting bolt. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0018] Please refer to Figures 1 to 2, the present utility model provides a technical solution: a foldable mobile solar power generation device, including a first photovoltaic module 1, a second photovoltaic module 2, a third photovoltaic module 3, a fourth photovoltaic module 4, a first support vertical rod 5, a second support vertical rod 6, a first hinge mechanism 7, a second hinge mechanism 8, a third hinge mechanism 9, a first lifting regulator 10, a second lifting regulator 11, a first pull rod 12, a second pull rod 13, a third pull rod 14 and a fourth pull rod 15. A first hinge mechanism 7 is movably installed at the right end of the first photovoltaic module 1; the left side of the first photovoltaic module 1 and the right side of the second photovoltaic module 2 are connected to each other through a bidirectional hinge 22; the left side of the third photovoltaic module 3 and the right side of the fourth photovoltaic module 4 are connected to each other through a bidirectional hinge 22; the left side of the second photovoltaic module 2 and the right side of the third photovoltaic module 3 are connected to each other through a second hinge mechanism 8; a third hinge mechanism 9 is movably installed at the left end of the fourth photovoltaic module 4; a first support vertical rod 5 is installed at the bottom of the bidirectional hinge 22 between the first photovoltaic module 1 and the second photovoltaic module 2; a second support vertical rod 6 is installed at the bottom of the bidirectional hinge 22 between the third photovoltaic module 3 and the fourth photovoltaic module 4; a first lifting regulator 10 is sleeved and installed at the root of the first support vertical rod 5; a second lifting regulator 11 is sleeved and installed at the root of the second support vertical rod 6; a first pull rod 12 is installed between the first hinge mechanism 7 and the first lifting regulator 10; a second pull rod 13 is installed between the first lifting regulator 10 and the second hinge mechanism 8; a third pull rod 14 is installed between the second hinge mechanism 8 and the second lifting regulator 11; a fourth pull rod 15 is installed between the second lifting regulator 11 and the third hinge mechanism 9.
[0019] The first hinge mechanism 7, the second hinge mechanism 8 and the third hinge mechanism 9 have the same structure. The specific structure includes an upper frame body 16, a lower frame body 17, a transverse shaft 18, a first connecting shaft 19, a second connecting shaft 20, a sliding wheel 21 and an upper rotating shaft 23. The bottom of the upper frame body 16 is fixedly connected to the lower frame body 17; a transverse shaft 18 is movably installed through the middle of the upper frame body 16; a first connecting shaft 19 and a second connecting shaft 20 are symmetrically arranged near the lower part of the upper frame body 16; a sliding wheel 21 is rotatably installed at the bottom of the lower frame body 17; an upper rotating shaft 23 is installed through the upper part of the upper frame body 16 near the upper part.
[0020] The right end of the first photovoltaic module 1 is movably connected to the first hinge mechanism 7 through the upper rotating shaft 23; the left end of the second photovoltaic module 2 and the right end of the third photovoltaic module 3 are both movably connected to the second hinge mechanism 8 through the upper rotating shaft 23; the left end of the fourth photovoltaic module 4 is movably connected to the third hinge mechanism 9 through the upper rotating shaft 23.
[0021] Adjusting bolts 24 are installed on the left and right sides of the first lifting regulator 10 and the second lifting regulator 11; the adjusting bolt 24 on the right side of the first lifting regulator 10 is connected to the first connecting shaft 19 of the first hinge mechanism 7 through the first pull rod 12; the adjusting bolt 24 on the left side of the first lifting regulator 10 is connected to the second connecting shaft 20 of the second hinge mechanism 8 through the second pull rod 13; the first connecting shaft 19 of the second hinge mechanism 8 is connected to the adjusting bolt 24 on the right side of the second lifting regulator 11 through the third pull rod 14; the adjusting bolt 24 on the left side of the second lifting regulator 11 is connected to the second connecting shaft 20 of the third hinge mechanism 9 through the fourth pull rod 15.
[0022] When using this equipment, it needs to be assembled and installed first. Specifically, first install two double hinges 22 on the upper ends of the first support vertical rod and the second support vertical rod respectively, then sleeve and install the first lifting regulator 10 at the root of the first support vertical rod, sleeve and install the second lifting regulator 11 at the root of the second support vertical rod 6, install the first photovoltaic module 1 and the first pull rod 12 between the first support vertical rod 5 and the first hinge mechanism 7, install the second photovoltaic module 2 and the second pull rod 13 between the second hinge mechanism 8 and the first support vertical rod 5, install the third photovoltaic module 3 and the third pull rod 14 between the second hinge mechanism 8 and the second support vertical rod 6, install the fourth photovoltaic module 4 and the fourth pull rod 15 between the second support vertical rod 6 and the third hinge mechanism 9; the first photovoltaic module 1, the second photovoltaic module 2, the third photovoltaic module 3 and the fourth photovoltaic module 4 are arranged in a wavy shape in sequence.
[0023] When the inclination angles between the first photovoltaic module 1, the second photovoltaic module 2, the third photovoltaic module 3 and the fourth photovoltaic module 4 of this technical solution need to be adjusted, they are respectively controlled by adjusting the lengths of the first pull rod 12, the second pull rod 13, the third pull rod 14 and the fourth pull rod 15. Sliding wheels 21 are installed at the bottoms of the first hinge mechanism 7, the second hinge mechanism 8 and the third hinge mechanism 9. Therefore, when the overall installation position of this device needs to be adjusted, the equipment is pushed to move to the required position by using the sliding wheels 21. When it needs to be disassembled and transported temporarily, it can be folded and loaded for transportation after disassembling the first pull rod 12, the second pull rod 13, the third pull rod 14 and the fourth pull rod 15 and then folding the above-mentioned first photovoltaic module 1, the second photovoltaic module 2, the third photovoltaic module 3 and the fourth photovoltaic module 4.
[0024] The above are only the preferred examples of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A foldable mobile solar power generation device, characterized in that: The invention comprises a first photovoltaic assembly (1), a second photovoltaic assembly (2), a third photovoltaic assembly (3), a fourth photovoltaic assembly (4), a first supporting pole (5), a second supporting pole (6), a first hinge mechanism (7), a second hinge mechanism (8), a third hinge mechanism (9), a first lifting regulator (10), a second lifting regulator (11), a first pull rod (12), a second pull rod (13), a third pull rod (14) and a fourth pull rod (15), wherein the first hinge mechanism (7) is movably mounted on the right end of the first photovoltaic assembly (1); the left side of the first photovoltaic assembly (1) and the right side of the second photovoltaic assembly (2) are connected to each other via a bidirectional hinge (22); the left side of the third photovoltaic assembly (3) and the right side of the fourth photovoltaic assembly (4) are connected to each other via a bidirectional hinge (22); the left side of the second photovoltaic assembly (2) and the right side of the third photovoltaic assembly (3) are connected to each other via a second hinge mechanism (8); the fourth photovoltaic assembly (1) and the second photovoltaic assembly (2) are connected to each other via a bidirectional hinge (22); the left side of the second photovoltaic assembly (2) and the right side of the third photovoltaic assembly (3) are connected to each other via a second hinge mechanism (8); the A third hinge mechanism (9) is movably mounted at the left end of the assembly (4); a first support rod (5) is mounted at the bottom of the bidirectional hinge (22) between the first photovoltaic assembly (1) and the second photovoltaic assembly (2); a second support rod (6) is mounted at the bottom of the bidirectional hinge (22) between the third photovoltaic assembly (3) and the fourth photovoltaic assembly (4); a first lifting regulator (10) is sleeved and mounted at the root of the first support rod (5); a second lifting regulator (11) is sleeved and mounted at the root of the second support rod (6); a first pull rod (12) is mounted between the first hinge mechanism (7) and the first lifting regulator (10); a second pull rod (13) is mounted between the first lifting regulator (10) and the second hinge mechanism (8); a third pull rod (14) is mounted between the second hinge mechanism (8) and the second lifting regulator (11); and a fourth pull rod (15) is mounted between the second lifting regulator (11) and the third hinge mechanism (9).
2. A foldable mobile solar power generation device according to claim 1, characterized in that: The first hinge mechanism (7), the second hinge mechanism (8) and the third hinge mechanism (9) have the same structure, and the specific structure comprises an upper frame (16), a lower frame (17), a transverse shaft (18), a first connecting shaft (19), a second connecting shaft (20), a sliding wheel (21) and an upper rotating shaft (23); the bottom of the upper frame (16) is fixedly connected to the lower frame (17); the transverse shaft (18) is movably installed through the middle of the upper frame (16); the first connecting shaft (19) and the second connecting shaft (20) are symmetrically arranged near the lower part of the upper frame (16); the sliding wheel (21) is rotatably installed at the bottom of the lower frame (17); and the upper rotating shaft (23) is installed through the upper part near the upper frame (16).
3. A foldable mobile solar power generation device according to claim 2, characterized in that: The right end of the first photovoltaic assembly (1) is movably connected to the first hinge mechanism (7) via an upper rotating shaft (23); the left end of the second photovoltaic assembly (2) and the right end of the third photovoltaic assembly (3) are both movably connected to the second hinge mechanism (8) via an upper rotating shaft (23); and the left end of the fourth photovoltaic assembly (4) is movably connected to the third hinge mechanism (9) via an upper rotating shaft (23).
4. A foldable mobile solar power generation device according to claim 3, characterized in that: Adjustment bolts (24) are installed on the left and right sides of the first lifting adjuster (10) and the second lifting adjuster (11).
5. The foldable mobile solar power generation device according to claim 4, characterized in that: The adjusting bolt (24) on the right side of the first lifting adjuster (10) is connected to the first connecting shaft (19) of the first hinge mechanism (7) via a first pull rod (12).
6. The foldable mobile solar power generation device according to claim 4, characterized in that: The adjusting bolt (24) on the left side of the first lifting adjuster (10) is connected to the second connecting shaft (20) of the second hinge mechanism (8) via a second pull rod (13).
7. The foldable mobile solar power generation device according to claim 4, characterized in that: The first connecting shaft (19) of the second hinge mechanism (8) and the adjusting bolt (24) on the right side of the second lifting adjuster (11) are connected via a third pull rod (14).
8. The foldable mobile solar power generation device according to claim 4, characterized in that: The adjusting bolt (24) on the left side of the second lifting adjuster (11) is connected to the second connecting shaft (20) of the third hinge mechanism (9) via a fourth pull rod (15).