Container type photovoltaic equipment convenient to store and transport
By designing container-type photovoltaic equipment and adopting a structure of sliding adjustment and hinge connection, the problem of inconvenient installation and transportation of photovoltaic equipment is solved, convenient storage and transportation are achieved, and the flexibility and use efficiency of the equipment are improved.
Patent Information
- Application Number
- CN202420892318.4
- 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
Due to the large area of photovoltaic panels, existing photovoltaic equipment is inconvenient for installation and transportation, making it difficult to achieve convenient storage and transportation.
A container-type photovoltaic equipment is designed, adopting a slidable adjustment structure, including a storage cabinet body, an upper end beam, a left beam, a right beam, a guide rail groove, a photovoltaic panel, an end plate, a column, a support leg, a reinforcement rod, a connecting beam, a photovoltaic hinge, a rotating shaft and a sleeve. The resistance is reduced through the guide rail groove and a guide wheel to achieve rapid expansion and folding.
It realizes convenient storage and transportation of photovoltaic equipment, reduces the difficulty and time of installation and disassembly, and improves the flexibility and efficiency of equipment.
Smart Images

Figure CN222928346U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field related to photovoltaics, and particularly relates to a container-type photovoltaic device convenient for storage and transportation. Background Technique
[0002] As an essential device for new energy collection and conversion, a photovoltaic device mainly collects energy by aligning photovoltaic panels with sunlight and converts it into electric energy for output to external electricity storage or electricity-consuming terminal devices. In the current state of the art, due to the limited efficiency of photovoltaic panels in collecting solar energy, a sufficiently large area of photovoltaic plates is required to collect enough electric energy. However, large-area photovoltaic plates are not convenient for installation and transportation. Therefore, it is necessary to develop a photovoltaic device that is convenient for storage and transportation. Content of the Utility Model
[0003] The purpose of the utility model is to provide a container-type photovoltaic device convenient for storage and transportation, which can be adjusted flexibly by sliding and is stable and reliable when unfolded for use.
[0004] To achieve the above purpose, the utility model provides the following technical solution: A container-type photovoltaic device convenient for storage and transportation, including a storage cabinet, an upper end beam, a left side beam, a right side beam, a guide rail groove, a photovoltaic panel, an end plate, a column, a support leg, a strengthening rod, a connecting beam, a photovoltaic hinge, a rotating shaft, and a sleeve. The upper port of the storage cabinet is provided with an upper end beam; the left side beam and the right side beam are parallelly extended and connected at the edge of the upper end beam; the left side beam and the right side beam are arranged in a symmetrical structure; guide rail grooves are opened on the inner sides of the left side beam and the right side beam; photovoltaic panels are sequentially laid and connected between the left side beam and the right side beam; end plates are fixed on the side walls of each photovoltaic panel; columns are sequentially and spacedly installed at the bottom of the left side beam and the right side beam; support legs are sleeved at the lower ends of the columns; strengthening rods are horizontally installed on the support legs; the ends of the left side beam and the right side beam are connected to each other by a connecting beam; every two adjacent photovoltaic panels are movably installed together by a photovoltaic hinge; the photovoltaic hinge includes a rotating shaft and a sleeve, and the sleeves are sequentially and spacedly fixed on the side walls of the end plates; the rotating shaft horizontally penetrates through the sleeves on the adjacent two end plates in sequence.
[0005] As a further improvement of the utility model, guide wheels are movably installed at both ends of the rotating shaft through bearings; the guide wheels at the left and right ends are respectively sleeved inside the corresponding guide rail grooves of the left side beam and the right side beam.
[0006] As a further improvement of the utility model, a stabilizing frame is erected between the upper side wall of the column and the lower surface of the left side beam; the stabilizing frame adopts a triangular structure.
[0007] As a further improvement of the utility model, the storage cabinet, the left side beam, the right side beam, and the column are all made of stainless steel materials.
[0008] As a further improvement of the present invention, a cover is movably mounted on the top edge of the storage cabinet via a flip hinge.
[0009] As a further improvement of the utility model, the cover body adopts cover beams staggered horizontally and vertically and is equipped with a sealing plate.
[0010] As a further improvement of the present invention, a side door is installed on the side of the storage cabinet.
[0011] As a further improvement of the utility model, a wire collection port is provided on the side wall of the side door.
[0012] Compared with the prior art, the beneficial effects of the utility model are as follows: the technical solution extends the left beam and the right beam in parallel with the upper end beam, which is convenient for building a basic frame for subsequent photovoltaic panel laying and can be continuously extended and expanded as needed; the technical solution is arranged on the left beam and the right beam to be laid with photovoltaic panels, and the sides of the photovoltaic panels are adjacently connected in series through photovoltaic hinges, which has the beneficial technical effect of facilitating the rapid folding and unfolding of multiple photovoltaic panels in a row; the technical solution symmetrically arranges guide grooves on the inner sides of the left beam and the right beam, and also uses guide wheels installed at both ends of the rotating shaft, which can effectively reduce the resistance when the photovoltaic panels are stored or unfolded and achieve the beneficial technical effect of preventing the arrangement from deviating; the technical solution is also designed with a cable collection port on the side door, which is convenient for the entry and exit of power and communication control cables for photovoltaic power generation, and provides wiring convenience for the use of external equipment after subsequent installation; the technical solution is also supported by columns at the bottom of the left beam and the right beam, and the roots of the columns are equipped with reinforcing rods through supporting legs, which has the beneficial technical effects of fast assembly and stable and reliable support. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of the structure after the utility model is unfolded.
[0014] Figure 2 It is a schematic diagram of the structure of the utility model after folding.
[0015] In the figure: 1. Storage cabinet; 2. Upper end beam; 3. Left beam; 4. Right beam; 5. Guide rail groove; 6. Photovoltaic panel; 7. End plate; 8. Column; 9. Support leg; 10. Reinforcement rod; 11. Connecting beam; 12. Photovoltaic hinge; 13. Rotating shaft; 14. Sleeve; 15. Guide wheel; 16. Flip hinge; 17. Cover; 18. Cover beam; 19. Side door; 20. Cable collection port; 21. Stabilizing frame. DETAILED DESCRIPTION
[0016] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0017] Please refer to Figures 1 to 2 , the present invention provides a technical solution: a container-type photovoltaic device convenient for storage and transportation, including a storage cabinet 1, an upper end beam 2, a left side beam 3, a right side beam 4, a guide rail groove 5, a photovoltaic panel 6, an end plate 7, a column 8, a support leg 9, a strengthening rod 10, a connecting beam 11, a photovoltaic hinge 12, a rotating shaft 13 and a sleeve 14. An upper end beam 2 is arranged at the upper port of the storage cabinet 1; the left side beam 3 and the right side beam 4 are parallelly extended and connected at the edge of the upper end beam 2; the left side beam 3 and the right side beam 4 are arranged in a symmetric structure; guide rail grooves 5 are respectively opened on the inner sides of the left side beam 3 and the right side beam 4; photovoltaic panels 6 are sequentially laid and connected between the left side beam 3 and the right side beam 4; an end plate 7 is fixed on the side wall of each photovoltaic panel 6; columns 8 are sequentially and spacedly installed at the bottom of the left side beam 3 and the right side beam 4; a support leg 9 is sleeved at the lower end of the column 8; a strengthening rod 10 is horizontally installed on the support leg 9; the ends of the left side beam 3 and the right side beam 4 are connected to each other through a connecting beam 11; every two adjacent photovoltaic panels 6 are movably installed together through a photovoltaic hinge 12; the photovoltaic hinge 12 includes a rotating shaft 13 and a sleeve 14, and the sleeves 14 are sequentially and spacedly fixed on the side wall of the end plate 7; the rotating shaft 13 horizontally penetrates through the sleeves 14 on two adjacent end plates 7 in sequence.
[0018] Guide wheels 15 are movably installed at both ends of the rotating shaft 13 through bearings; the left and right guide wheels 15 are respectively sleeved inside the corresponding guide rail grooves 5 of the left side beam 3 and the right side beam 4; a stabilizing frame 21 is erected between the upper side wall of the column 8 and the lower surface of the left side beam 3; the stabilizing frame 21 adopts a triangular structure.
[0019] The storage cabinet 1, the left side beam 3, the right side beam 4 and the column 8 are all made of stainless steel materials; a cover body 17 is movably installed at the top edge of the storage cabinet 1 through a flip hinge 16; a sealing plate is installed on the cover body 17 by using a crosswise and longitudinally staggered cover plate beam 18; a side door 19 is installed on the side of the storage cabinet 1; a wire collecting port 20 is opened on the side wall of the side door 19.
[0020] When this device needs to work, first install the left beam 3 and the right beam 4 symmetrically and parallelly on both sides of the upper beam 2, and then support the upper component device on the ground at the required installation position by using the columns 8 at the bottoms of the left beam 3 and the right beam 4; then unfold the photovoltaic panel 6 that has been folded in the storage cabinet 1, open the side door 19 on the side of the storage cabinet 1, turn over the cover body 17 through the flipping hinge 16, and then use the guide wheels 15 at both ends of the rotating shaft 13 to push the photovoltaic panel 6 outwards so that it is laid flat on the left beam 3 and the right beam 4 in sequence; when encountering bad weather or when it is necessary to transfer the installation position of this device, at this time, a folding and storage operation is required, including first pushing the photovoltaic panel 6 towards one side of the storage cabinet 1, so that the photovoltaic panel 6 is folded up in sequence and is received in the storage cabinet 1, and then disassembling the columns 8, the support legs 9 and the reinforcing rods 10 at the lower parts of the left beam 3 and the right beam 4 in sequence and placing them together in the storage cabinet 1, and finally closing the side door 19 and covering the cover body 17, thus completing the folding and storage operation.
[0021] The above are only the preferred examples of the present utility model and are not used to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they 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 containerized photovoltaic device that is easy to store and transport, characterized in that: The storage cabinet comprises a storage cabinet (1), an upper end beam (2), a left beam (3), a right beam (4), a guide rail groove (5), a photovoltaic panel (6), an end plate (7), a column (8), a support leg (9), a reinforcing rod (10), a connecting beam (11), a photovoltaic hinge (12), a rotating shaft (13) and a sleeve (14), wherein the upper end of the storage cabinet (1) is provided with an upper end beam (2); the edge of the upper end beam (2) is parallelly connected to the left beam (3) and the right beam (4); the left beam (3) and the right beam (4) are arranged in a symmetrical structure; the inner sides of the left beam (3) and the right beam (4) are both provided with guide rail grooves (5); the photovoltaic panels (6) are sequentially laid and connected between the left beam (3) and the right beam (4); each of the photovoltaic panels (6) is parallel to ... The side walls of the panels (6) are all fixed with end panels (7); columns (8) are installed at intervals at the bottom of the left beam (3) and the right beam (4); the lower ends of the columns (8) are sleeved with support legs (9); reinforcing rods (10) are transversely installed on the support legs (9); the ends of the left beam (3) and the right beam (4) are connected to each other through a connecting beam (11); each two adjacent photovoltaic panels (6) are movably installed together through a photovoltaic hinge (12); the photovoltaic hinge (12) comprises a rotating shaft (13) and a sleeve (14), and the sleeve (14) is fixedly installed at intervals on the side walls of the end panels (7); the rotating shaft (13) transversely penetrates the sleeves (14) on the two adjacent end panels (7) in sequence.
2. The container-type photovoltaic device that is easy to store and transport according to claim 1 is characterized in that: Guide wheels (15) are movably mounted on both ends of the rotating shaft (13) via bearings; the guide wheels (15) at the left and right ends are respectively sleeved inside the guide rail grooves (5) corresponding to the left beam (3) and the right beam (4).
3. The container-type photovoltaic device that is easy to store and transport according to claim 1 is characterized in that: A stabilizing frame (21) is arranged between the upper end side wall of the upright column (8) and the lower surface of the left beam (3); the stabilizing frame (21) has a triangular structure.
4. The container-type photovoltaic device that is easy to store and transport according to claim 1 is characterized in that: The storage cabinet body (1), the left beam (3), the right beam (4) and the column (8) are all made of stainless steel.
5. The container-type photovoltaic device that is easy to store and transport according to claim 1 is characterized in that: A cover body (17) is movably mounted on the top edge of the storage cabinet body (1) via a flip hinge (16).
6. The container-type photovoltaic device that is easy to store and transport according to claim 5, characterized in that: The cover body (17) adopts cover beams (18) staggered horizontally and vertically and is equipped with a sealing plate.
7. The container-type photovoltaic device that is easy to store and transport according to claim 6 is characterized by: A side door (19) is installed on the side of the storage cabinet (1).
8. The container-type photovoltaic device that is easy to store and transport according to claim 7 is characterized in that: A wire collection opening (20) is provided on the side wall of the side door (19).