Buffer connecting piece between two photovoltaic panels
By designing wear-resistant and buffering connectors, the problem of photovoltaic panels being damaged by wave pressure in marine environments is solved, and the wear resistance and service life of photovoltaic panels are extended.
Patent Information
- Application Number
- CN202422380820.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-09-29
AI Technical Summary
Existing photovoltaic panel connectors cannot effectively buffer wave pressure in the marine environment, resulting in damage to the photovoltaic panel.
A buffer connection piece including a partition, a baffle, a wear-resistant mechanism and a buffer member is designed, made of HDPE material, the photovoltaic panel is connected by a screw, a nut and a snap structure, and deformation and buffering under the pressure of the waves, and the wear-resistant panel is easy to replace.
It effectively avoids damage to photovoltaic panels due to wave pressure, improves the service life and wear resistance of the connectors, and is suitable for marine environments.
Smart Images

Figure CN223274034U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of buffer connectors, in particular to a buffer connector between two photovoltaic panels. Background Art
[0002] As the global energy structure transitions to clean energy, marine energy as a renewable resource has received increasing attention. "Fish-photovoltaic complementarity" refers to a form of combining fish farming with photovoltaic power generation, that is, photovoltaic panels are set up above the water surface to generate electricity, and marine delicacies are farmed in the waters below the photovoltaic panels. The photovoltaic panel array also provides a good shielding effect for farmed marine delicacies, forming a new power generation model of "power generation above and farming below"; the fish-photovoltaic complementarity development model integrates fish farming, production and processing; utilizing my country's rich marine resources, building photovoltaic power generation systems in the deep sea, and assembling and supporting fisheries through modern facilities underwater, not only increases the output value of marine resources, but the photovoltaic power generation in the upper space can also provide green electricity for nearby industry, commerce and seafood processing industries.
[0003] However, in the prior art, since the connectors between the two groups of photovoltaic panels only have the function of connecting and fixing, and the ocean environment is complex, waves and the like can easily exert pressure on the photovoltaic panels, causing the two groups of photovoltaic panels to squeeze each other and be damaged. Utility Model Content
[0004] The purpose of the present utility model is to provide a buffer connector between two photovoltaic panels to solve the problems raised in the above background technology.
[0005] In order to solve the above technical problems, the technical solution of the present utility model is a buffer connector between two photovoltaic panels, comprising a partition, a baffle is provided at the upper end of the partition and near one side, a wear-resistant mechanism is provided at the upper end of the partition and at one side of the baffle, the wear-resistant mechanism comprises an insert, a wear-resistant plate is provided at the upper end of the insert, and a clamping plate is provided on both side walls of the insert and near one end;
[0006] A groove is provided at the upper end of the partition, a slot is provided at the bottom end of the groove, two groups of slots are provided at the end of the slot, a screw is fixedly provided on the inner side wall of the slot, and a nut is threadedly sleeved on the screw.
[0007] As a further solution of the present invention: the wear-resistant plate is inserted into the groove along the slot through an insert plate, and the upper end of the wear-resistant plate is flush with the upper end surface of the partition plate.
[0008] As a further solution of the present invention: the clamping plate is sleeved on the screw rod and located inside the clamping groove, and the nut is arranged on one side of the clamping plate along the screw rod.
[0009] As a further solution of the present invention: a connecting piece is provided on the upper end of the partition and at the other side, a support plate is provided on the upper end of the connecting piece, and a buckle is provided on one side of the support plate and at the top position.
[0010] As a further solution of the present invention: three groups of screw holes are formed through the upper end of the buckle, and a buffer is provided between the two groups of partitions.
[0011] As a further solution of the present invention: the support plate is arranged on the upper end of the partition through a connecting piece, the buckle is located above the wear-resistant mechanism, and the two groups of buckles are symmetrically arranged, and the cross-section of the buffer is arc-shaped.
[0012] The above technical solution is adopted: the photovoltaic panel is inserted into the upper end of the partition and placed on the baffle, then the support plate is reset to buckle the clip on the upper end of the photovoltaic panel, and the bolts are set through the screw holes on the upper end of the photovoltaic panel to squeeze and fix it, so as to connect and fix the two groups of photovoltaic panels together. When the two photovoltaic panels are squeezed close to each other, the buffer in the buffer connector is deformed to offset the pressure, which can play a good buffering effect, thereby avoiding the two groups of photovoltaic panels on the sea surface due to the pressure exerted by waves, etc. The buffer connector is made of HDPE material, which has good corrosion resistance and aging resistance, and can be used on the ocean for a long time.
[0013] Insert the plug plate into the partition along the slot, and the upper end of the wear-resistant plate is flush with the upper end surface of the partition, and then put the nut on the screw to fix the card plate in the slot, so that the wear-resistant plate is set in the groove. Through the above operation, it is more convenient to replace the wear-resistant plate, which can facilitate the staff to replace the damaged wear-resistant plate in time to increase the service life of the buffer connector. Insert the two photovoltaic panels between the partition and the buckle respectively. At this time, the photovoltaic panel moves on the surface of the wear-resistant plate. Since the wear-resistant plate has good wear resistance and can avoid direct contact between the photovoltaic panel and the partition in the buffer connector during installation, the damage caused by friction between the photovoltaic panel and the buffer connector during installation is reduced, thereby effectively improving the service life of the buffer connector. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of the overall structure of a buffer connector between two photovoltaic panels;
[0015] Figure 2 A schematic structural diagram of a partition of a buffer connection between two photovoltaic panels;
[0016] Figure 3 This is a structural diagram of a plug-in board that is a buffer connector between two photovoltaic panels;
[0017] Figure 4This is a front view of a buffer connector between two photovoltaic panels.
[0018] In the figure: 1. partition; 3. wear-resistant mechanism; 4. groove; 5. slot; 6. card slot; 7. screw; 8. nut; 9. plug-in plate; 10. wear-resistant plate; 11. card plate; 12. connector; 13. support plate; 14. buckle; 15. screw hole; 16. buffer; 17. baffle. DETAILED DESCRIPTION
[0019] The following further describes specific embodiments of the present invention in conjunction with the accompanying drawings. It should be noted that the descriptions of these embodiments are intended to aid understanding of the present invention and do not constitute limitations on the present invention. Furthermore, the technical features involved in the various embodiments of the present invention described below may be combined with one another as long as they do not conflict with one another.
[0020] Example 1
[0021] See also Figures 1-4 The utility model provides a technical solution: a buffer connector between two photovoltaic panels, including a partition 1, a baffle 17 is provided on the upper end of the partition 1 and near one side, a wear-resistant mechanism 3 is provided on the upper end of the partition 1 and located on one side of the baffle 17, the wear-resistant mechanism 3 includes an insert 9, a wear-resistant plate 10 is provided on the upper end of the insert 9, and a clamping plate 11 is provided on both side walls of the insert 9 and near one end;
[0022] A groove 4 is provided at the upper end of the partition 1, a slot 5 is provided at the bottom end of the groove 4, two groups of slots 6 are provided at the end of the slot 5, a screw 7 is fixedly provided on the inner side wall of the slot 6, and a nut 8 is threadedly sleeved on the screw 7.
[0023] The wear-resistant plate 10 is inserted into the groove 4 along the slot 5 through the inserting plate 9 , and the upper end of the wear-resistant plate 10 is flush with the upper end surface of the partition 1 .
[0024] The clamping plate 11 is sleeved on the screw rod 7 and located inside the clamping groove 6 , and the nut 8 is arranged along the screw rod 7 at one side of the clamping plate 11 .
[0025] When in use, the plug plate 9 is inserted into the partition 1 along the slot 5, and the upper end of the wear-resistant plate 10 is flush with the upper end surface of the partition 1, and then the nut 8 is put on the screw 7 to fix the card plate 11 in the slot 6, so that the wear-resistant plate 10 is set in the groove 4. Through the above operation, the replacement of the wear-resistant plate 10 is relatively convenient, and it is convenient for the staff to replace the damaged wear-resistant plate 10 in time to improve the service life of the buffer connection. The two photovoltaic panels are respectively inserted between the partition 1 and the buckle 14. At this time, the photovoltaic panel moves on the surface of the wear-resistant plate 10. Since the wear-resistant plate 10 has good wear resistance and can avoid direct contact between the photovoltaic panel and the partition 1 in the buffer connection during installation, the damage caused by friction between the photovoltaic panel and the buffer connection during installation is reduced, thereby effectively improving the service life of the buffer connection.
[0026] Example 2
[0027] See also Figures 1-4 The utility model provides a technical solution: a buffer connector between two photovoltaic panels, including a partition 1, a baffle 17 is provided on the upper end of the partition 1 and near one side, a wear-resistant mechanism 3 is provided on the upper end of the partition 1 and located on one side of the baffle 17, the wear-resistant mechanism 3 includes an insert 9, a wear-resistant plate 10 is provided on the upper end of the insert 9, and a clamping plate 11 is provided on both side walls of the insert 9 and near one end;
[0028] A groove 4 is provided at the upper end of the partition 1, a slot 5 is provided at the bottom end of the groove 4, two groups of slots 6 are provided at the end of the slot 5, a screw 7 is fixedly provided on the inner side wall of the slot 6, and a nut 8 is threadedly sleeved on the screw 7.
[0029] A connecting piece 12 is provided at the upper end of the partition 1 and at the other side thereof, a supporting plate 13 is provided at the upper end of the connecting piece 12 , and a buckle 14 is provided at the top position on one side of the supporting plate 13 .
[0030] Three groups of screw holes 15 are formed through the upper end of the buckle 14 , and a buffer member 16 is provided between the two groups of partitions 1 .
[0031] The support plate 13 is arranged on the upper end of the partition 1 through the connecting piece 12, the buckle 14 is located above the wear-resistant mechanism 3, and the two groups of buckles 14 are symmetrically arranged. The cross section of the buffer 16 is arranged in an arc shape.
[0032] Specifically, the support plate 13 is bent by the connecting piece 12 to expand the distance between the buckle 14 and the partition 1, and then the photovoltaic panel is inserted into the upper end of the partition 1 and placed on the baffle 17. Then the support plate 13 is reset to buckle the buckle 14 on the upper end of the photovoltaic panel, and the bolts are set through the screw holes 15 on the upper end of the photovoltaic panel to squeeze and fix it, so as to connect and fix the two groups of photovoltaic panels together. When the two photovoltaic panels are squeezed close to each other, the buffer part 16 in the buffer connector is deformed to offset the pressure, which can play a good buffering effect, thereby avoiding the two groups of photovoltaic panels from being damaged on the sea surface due to the pressure exerted by waves, etc. The buffer connector is made of HDPE material, which has good corrosion resistance and aging resistance and can be used on the ocean for a long time.
[0033] Working principle: Use the connector 12 to bend the support plate 13 to expand the distance between the buckle 14 and the partition 1, then insert the photovoltaic panel into the upper end of the partition 1 and put it on the baffle 17, then reset the support plate 13 to buckle the buckle 14 into the upper end of the photovoltaic panel, set the bolts through the screw holes 15 on the upper end of the photovoltaic panel to squeeze and fix it, so as to connect and fix the two groups of photovoltaic panels together. When the two photovoltaic panels are squeezed close to each other, the buffer 16 in the buffer connector is deformed to offset the pressure, which can play a good buffering effect, thereby avoiding the two groups of photovoltaic panels from being damaged by the pressure exerted by waves on the sea surface. The buffer connector is made of HDPE material, which has good corrosion resistance and aging resistance and can be used on the ocean for a long time. Insert the plug 9 into the partition 1 along the slot 5. Inside, and the upper end of the wear-resistant plate 10 is flush with the upper end surface of the partition 1, and then the nut 8 is put on the screw 7 to fix the card plate 11 in the slot 6, so that the wear-resistant plate 10 is set in the groove 4. Through the above operation, it is relatively convenient to replace the wear-resistant plate 10, which can facilitate the staff to replace the damaged wear-resistant plate 10 in time to improve the service life of the buffer connector. The two photovoltaic panels are respectively inserted between the partition 1 and the buckle 14. At this time, the photovoltaic panel moves on the surface of the wear-resistant plate 10. Since the wear-resistant plate 10 has good wear resistance and can avoid direct contact between the photovoltaic panel and the partition 1 in the buffer connector during installation, the damage caused by friction between the photovoltaic panel and the buffer connector during installation is reduced, thereby effectively improving the service life of the buffer connector.
[0034] The embodiments of the present invention are described in detail above with reference to the accompanying drawings, but the present invention is not limited to the described embodiments. It is apparent to those skilled in the art that various changes, modifications, substitutions, and variations to these embodiments may be made without departing from the principles and spirit of the present invention, and these changes and modifications still fall within the scope of protection of the present invention.
Claims
1. A buffer connector between two photovoltaic panels, comprising a partition (1), characterized in that: A baffle (17) is provided at the upper end of the partition (1) and near one side thereof, a wear-resistant mechanism (3) is provided at the upper end of the partition (1) and at one side of the baffle (17), the wear-resistant mechanism (3) comprises an inserting plate (9), a wear-resistant plate (10) is provided at the upper end of the inserting plate (9), and a clamping plate (11) is provided on both side walls of the inserting plate (9) and near one end thereof; A groove (4) is provided at the upper end of the partition (1), a slot (5) is provided at the bottom end of the groove (4), two groups of clamping grooves (6) are provided at the end of the slot (5), a screw (7) is fixedly provided on the inner side wall of the clamping groove (6), and a nut (8) is threadedly sleeved on the screw (7).
2. The buffer connector between two photovoltaic panels according to claim 1, characterized in that: The wear-resistant plate (10) is inserted into the groove (4) along the slot (5) through the inserting plate (9), and the upper end of the wear-resistant plate (10) is flush with the upper end surface of the partition (1).
3. The buffer connector between two photovoltaic panels according to claim 2, characterized in that: The clamping plate (11) is sleeved on the screw rod (7) and located inside the clamping groove (6); the nut (8) is arranged along the screw rod (7) at one side of the clamping plate (11).
4. The buffer connector between two photovoltaic panels according to claim 1, characterized in that: A connecting piece (12) is provided at the upper end of the partition (1) and at the other side thereof, a supporting plate (13) is provided at the upper end of the connecting piece (12), and a buckle (14) is provided at the top of one side of the supporting plate (13).
5. The buffer connector between two photovoltaic panels according to claim 4, characterized in that: Three groups of screw holes (15) are provided through the upper end of the buckle (14), and a buffer member (16) is provided between the two groups of partitions (1).
6. The buffer connector between two photovoltaic panels according to claim 5, characterized in that: The support plate (13) is arranged on the upper end of the partition (1) through the connecting piece (12), the buckle (14) is located above the wear-resistant mechanism (3), and the two groups of buckles (14) are symmetrically arranged, and the cross section of the buffer (16) is arranged in an arc shape.