CN216649592U - Can splice photovoltaic power plant support - Google Patents
Can splice photovoltaic power plant support Download PDFInfo
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- CN216649592U CN216649592U CN202220197653.3U CN202220197653U CN216649592U CN 216649592 U CN216649592 U CN 216649592U CN 202220197653 U CN202220197653 U CN 202220197653U CN 216649592 U CN216649592 U CN 216649592U
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- bracket
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- 238000010248 power generation Methods 0.000 description 5
- 230000003245 working effect Effects 0.000 description 4
- 230000005611 electricity Effects 0.000 description 2
- 230000004075 alteration Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000001125 extrusion Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
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Abstract
A spliceable photovoltaic power station bracket comprises a base for a spliceable photovoltaic power station bracket, wherein the base is provided with a connector, the connector is provided with a group of clamping devices, the clamping devices are connected with a splicing frame, one end of the splicing frame, far away from the connector, is provided with a group of clamping devices, the group of clamping devices are connected with the bracket, the lower end of the bracket is provided with an adjusting device, the adjusting device comprises a fixed block arranged at the lower end of the bracket, the fixed block is hinged with one end of a telescopic rod, the free end of the telescopic rod is connected with a sliding block, so that the angle of equipment can be adjusted according to requirements, the angle adjusting device is suitable for various environments, the utilization rate of products is improved, meanwhile, the angle adjusting work is convenient, the photovoltaic panel bracket can be spliced according to conditions, the utilization rate of the equipment is improved, the work effect is improved, the operation of the utility model is simple, and the practicability is strong, is convenient for popularization and application.
Description
Technical Field
The utility model relates to a photovoltaic power plant equipment technical field specifically is a can splice photovoltaic power plant support.
Background
Photovoltaic power generation products are mainly used in three major areas: firstly, a power supply is provided for a non-electricity occasion; solar electronic products such as various solar chargers, solar street lamps and various solar grassland lamps; thirdly, grid-connected power generation, which is already popularized and implemented in a large scale in developed countries. By 2009, the grid-connected power generation in china has not started to be fully popularized, however, in 2008, part of electricity used by the beijing olympic conference is provided by solar power generation and wind power generation.
Among the prior art, can not lead to not being applicable to multiple environment according to demand adjusting device's angle, influenced the rate of utilization of product, be not convenient for carry out angle modulation work simultaneously, can not splice the photovoltaic grillage according to the circumstances, influenced the working effect simultaneously, among the prior art, the operation is complicated, and the practicality is weak, and the not convenient to popularize and use provides a photovoltaic power plant support that can splice for this reason and is used for solving above-mentioned problem.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a can splice photovoltaic power plant support to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above purpose, the utility model provides the following technical scheme: the utility model provides a can splice photovoltaic power plant support, is including being used for the base that can splice formula photovoltaic power plant support used, be equipped with the connector on the base, be equipped with a set of latch device on the connector, latch device connects the concatenation frame, the concatenation frame is kept away from connector one end and is equipped with a set of latch device, this set of latch device linking bridge, adjusting device is installed to the support lower extreme, adjusting device is including establishing the fixed block at the support lower extreme, articulated telescopic link one end on the fixed block, the sliding block is connected to the telescopic link free end, threaded connection has the screw rod that is used for restricting the sliding block and slides on the base on the sliding block, threaded connection has the bolt that is used for the support on the support of sliding block top.
Preferably, the clamping device is used for connecting the connector, the splicing frame and the bracket.
Preferably, the clamping device comprises a first clamping block arranged on the connector, and the first clamping block is clamped on a second clamping block.
Preferably, the minimum length of telescopic link is less than the height of connector, the sliding block is "T" font structure, sliding block sliding joint is on the base.
Preferably, the screw thread penetrates through the sliding block and is used for moving to contact with the base to limit the movement of the sliding block, and the bolt moves to contact with the sliding block and is used for supporting the support.
Preferably, all be equipped with latch device on splice frame and the support, the splice frame is provided with the multiunit.
Preferably, the first fixture block and the second fixture block are arranged on the splicing frame and the support in a corresponding mode, the first fixture block is of an L-shaped structure, and the second fixture block is of an inverted F-shaped structure.
Preferably, the connector is formed by hinging an upper part and a lower part, the two parts of the connector are both rectangular structures, and the upper part of the connector is connected with a first clamping block.
Compared with the prior art, this practical beneficial effect is:
1. install photovoltaic board and equipment on support and splice frame, when needs adjust the photovoltaic board angle, start the telescopic link, the telescopic link upwards promotes the fixed block, make the support remove through the fixed block, it follows the removal to make the splice frame follow through the latch device on the support, latch device through on the splice frame rotates on the connector, promote the sliding block simultaneously, make the telescopic link keep vertical state, when the support angle is suitable, stop drive telescopic link and promotion sliding block, the rotation screw rod, screw rod threaded connection sliding block moves extrusion contact base downwards, the restriction sliding block removes, the angle modulation work of photovoltaic board and equipment has been accomplished this moment, make the angle that can be according to demand adjusting equipment, and then can be applicable to multiple environment, the rate of utilization of product has been improved, be convenient for carry out angle modulation work simultaneously.
2. When the splicing frame needs to be removed, the steps are operated, the support is rotated to be in a horizontal state, then the bolt is rotated, the bolt is in threaded connection with the support to move downwards, when the bolt moves to be attached to and contacted with the sliding block, the rotation of the bolt is stopped, when the support is in the horizontal state, the splicing frame and the upper half part of the connector are in the horizontal state, then the splicing frame is lifted upwards, the contact surfaces of a first clamping block and a second clamping block on the splicing frame and a first clamping block and a second clamping block which are clamped adjacently are reduced, when the contact surfaces are minimum, the lifting of the splicing frame is stopped, then the splicing frame is pushed longitudinally, the splicing frame moves horizontally, the clamped clamping devices are separated, then the splicing frame is taken out, the sliding block is pushed, the sliding block moves, the support moves towards one side of the connector through the telescopic rod and the fixed block, one end of the connector connecting base is removed, the first clamping block on the connector is clamped into the second clamping block on the support, the lower end of the connector is arranged on the base, and the photovoltaic panel frame splicing work is completed at the moment, so that the photovoltaic panel frames can be spliced according to conditions, the utilization rate of equipment is improved, and meanwhile, the working effect is improved.
Drawings
FIG. 1 is a schematic view of the structure of the present invention.
FIG. 2 is a schematic structural diagram of an adjusting device according to the present invention.
FIG. 3 is an enlarged view of the utility model at A in FIG. 1.
In the figure: the device comprises a base 1, a connector 2, a clamping device 3, a first clamping block 31, a second clamping block 32, a bracket 4, an adjusting device 5, a fixed block 51, a telescopic rod 52, a sliding block 53, a screw rod 54, a bolt 55 and a splicing frame 6.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. All other embodiments obtained by persons skilled in the art based on the embodiments in the present application without any creative work belong to the protection scope of the present application.
Referring to fig. 1-3, the present invention provides a technical solution: a spliceable photovoltaic power station bracket comprises a base 1 for a spliceable photovoltaic power station bracket, wherein the base 1 is provided with a connector 2, the connector 2 is provided with a group of clamping devices 3, the connector 2 is formed by hinging an upper part and a lower part, the two parts of the connector 2 are both in a rectangular structure, the upper part of the connector 2 is connected with a first clamping block 31, the clamping devices 3 are connected with a splicing frame 6, the splicing frame 6 and the bracket 4 are both provided with the clamping devices 3, the splicing frame 6 is provided with a plurality of groups, one end of the splicing frame 6, far away from the connector 2, is provided with a group of clamping devices 3, the group of clamping devices 3 is connected with the bracket 4, the lower end of the bracket 4 is provided with an adjusting device 5, the adjusting device 5 comprises a fixed block 51 arranged at the lower end of the bracket 4, the fixed block 51 is hinged with one end of a telescopic rod 52, the free end of the telescopic rod 52 is connected with a sliding block 53, the sliding rod 54 used for limiting the sliding block 53 to slide on the base 1 is in a threaded connection way, the bolt 55 for supporting the support 4 is connected to the support 4 above the sliding block 53 through threads, the minimum length of the telescopic rod 52 is smaller than the height of the connector 2, the sliding block 53 is of a T-shaped structure, the sliding block 53 is connected to the base 1 in a sliding and clamping mode, the screw 54 penetrates through the sliding block 53 in a threaded mode and is used for being in movable contact with the base 1 to limit the sliding block 53 to move, and the bolt 55 is used for moving contact with the sliding block 53 and is used for supporting the support 4.
The photovoltaic panel and the equipment are arranged on the bracket 4 and the splicing frame 6, when the angle of the photovoltaic panel needs to be adjusted, the telescopic rod 52 is started, the telescopic rod 52 pushes the fixing block 51 upwards, the bracket 4 is moved by the fixed block 51, the splicing frame 6 is moved by the clamping device 3 on the bracket 4, the splicing frame 4 rotates on the connector 2 by the clamping device 3 on the splicing frame, meanwhile, the sliding block 53 is pushed to keep the telescopic rod 52 in a vertical state, and when the angle of the bracket 4 is proper, stopping driving the telescopic rod 52 and pushing the sliding block 53, rotating the screw rod 54, connecting the screw rod 54 with the sliding block 53 in a threaded manner, moving downwards to be extruded and contacted with the base 1, limiting the movement of the sliding block 53, completing the angle adjustment work of the photovoltaic panel and the equipment at the moment, so that the angle of the equipment can be adjusted according to the requirement, and then can be applicable to multiple environment, improved the rate of utilization of product, be convenient for carry out angle modulation work simultaneously.
Clamping device 3 is used for connecting connector 2, splice frame 6 and support 4, and clamping device 3 is including establishing first fixture block 31 on connector 2, and first fixture block 31 joint has on the second fixture block 32, and first fixture block 31 and second fixture block 32 homogeneous phase are relative to be established on splice frame 6 and support 4, and first fixture block 31 is "L" font structure, and second fixture block 32 is "F" font structure.
When the splicing frame 6 needs to be removed, the above steps are operated, the bracket 4 is rotated to be in a horizontal state, then the bolt 55 is rotated, the bolt 55 is in threaded connection with the bracket 4 to move downwards, when the bolt 55 moves to be attached to and contacted with the sliding block 53, the bolt 55 is stopped rotating, when the bracket 4 is in the horizontal state, the splicing frame 6 and the upper half part of the connector 2 are in a horizontal state, then the splicing frame 6 is lifted upwards, the contact surfaces of the first fixture block 31 and the second fixture block 32 on the splicing frame 6 and the first fixture block 31 and the second fixture block 32 which are clamped and are adjacent to each other are reduced, when the contact surface is minimum, the splicing frame 6 is stopped being lifted, then the splicing frame 6 is pushed longitudinally, the splicing frame 6 moves horizontally, the clamped clamping device 3 is separated, then the splicing frame 6 is taken out, the sliding block 53 is pushed, the sliding block 53 moves, the bracket 4 moves towards the side of the connector 2 through the telescopic rod 52 and the fixed block 51, the connector 2 is connected with one end of the base 1 to be removed, the first clamping block 31 on the connector 2 is clamped into the second clamping block 32 on the support 4, the lower end of the connector 2 is arranged on the base 1, and the splicing work of the photovoltaic panel frame is completed at the moment, so that the photovoltaic panel frame can be spliced according to conditions, the utilization rate of equipment is improved, and meanwhile, the working effect is improved.
The working principle is as follows: according to the utility model, the photovoltaic panel and the equipment are arranged on the support 4 and the splicing frame 6, when the angle of the photovoltaic panel needs to be adjusted, the telescopic rod 52 is started, the telescopic rod 52 pushes the fixed block 51 upwards, the support 4 is moved through the fixed block 51, the splicing frame 6 moves along with the fixed block through the clamping device 3 on the support 4, the clamping device 3 on the splicing frame 4 rotates on the connector 2 and pushes the sliding block 53 at the same time, the telescopic rod 52 is kept in a vertical state, when the angle of the support 4 is proper, the telescopic rod 52 and the pushing sliding block 53 are stopped to be driven, the screw rod 54 is rotated, the screw rod 54 is in threaded connection with the sliding block 53 to move downwards to be extruded and contacted with the base 1, and the sliding block 53 is limited to move, so that the angle adjustment work of the photovoltaic panel and the equipment is completed, the angle of the equipment can be adjusted according to requirements, the equipment can be suitable for various environments, the utilization rate of products is improved, and the angle adjustment work is convenient to be carried out, when the splicing frame 6 needs to be removed, the above steps are operated, the bracket 4 is rotated to be in a horizontal state, then the bolt 55 is rotated, the bolt 55 is in threaded connection with the bracket 4 to move downwards, when the bolt 55 moves to be attached to and contacted with the sliding block 53, the bolt 55 is stopped rotating, when the bracket 4 is in the horizontal state, the splicing frame 6 and the upper half part of the connector 2 are in a horizontal state, then the splicing frame 6 is lifted upwards, the contact surfaces of the first fixture block 31 and the second fixture block 32 on the splicing frame 6 and the first fixture block 31 and the second fixture block 32 which are clamped and are adjacent to each other are reduced, when the contact surface is minimum, the splicing frame 6 is stopped being lifted, then the splicing frame 6 is pushed longitudinally, the splicing frame 6 moves horizontally, the clamped clamping device 3 is separated, then the splicing frame 6 is taken out, the sliding block 53 is pushed, the sliding block 53 moves, the bracket 4 moves towards the side of the connector 2 through the telescopic rod 52 and the fixed block 51, the connector 2 is connected with one end of the base 1 to be removed, the first clamping block 31 on the connector 2 is clamped into the second clamping block 32 on the support 4, the lower end of the connector 2 is arranged on the base 1, and the splicing work of the photovoltaic panel frame is completed at the moment, so that the photovoltaic panel frame can be spliced according to conditions, the utilization rate of equipment is improved, and meanwhile, the working effect is improved.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (8)
1. The utility model provides a can splice photovoltaic power plant support, is including being used for base (1) that can splice formula photovoltaic power plant support was used, its characterized in that: the base (1) is provided with a connector (2), the connector (2) is provided with a group of clamping devices (3), the clamping device (3) is connected with the splicing frame (6), one end of the splicing frame (6) far away from the connector (2) is provided with a group of clamping devices (3), the group of clamping devices (3) is connected with a bracket (4), the lower end of the bracket (4) is provided with an adjusting device (5), the adjusting device (5) comprises a fixed block (51) arranged at the lower end of the bracket (4), the fixed block (51) is hinged with one end of a telescopic rod (52), the free end of the telescopic rod (52) is connected with a sliding block (53), a screw rod (54) used for limiting the sliding of the sliding block (53) on the base (1) is connected to the sliding block (53) in a threaded manner, and a bolt (55) for supporting the bracket (4) is connected to the bracket (4) above the sliding block (53) through threads.
2. The spliceable photovoltaic power plant rack of claim 1, wherein: clamping device (3) are used for connecting connector (2), splice frame (6) and support (4).
3. The spliceable photovoltaic power plant rack of claim 2, wherein: clamping device (3) are including establishing first fixture block (31) on connector (2), first fixture block (31) joint has on second fixture block (32).
4. The spliceable photovoltaic power plant rack of claim 1, wherein: the minimum length of telescopic link (52) is less than the height of connector (2), sliding block (53) are "T" font structure, sliding block (53) slip joint is on base (1).
5. The spliceable photovoltaic power plant rack of claim 1, wherein: the screw (54) penetrates through the sliding block (53) in a threaded mode and is used for moving and contacting the base (1) to limit the sliding block (53) to move, and the bolt (55) moves and contacts the sliding block (53) and is used for supporting the support (4).
6. The spliceable photovoltaic power plant rack of claim 1, wherein: splicing frame (6) and support (4) are last all to be equipped with latch device (3), splicing frame (6) are provided with the multiunit.
7. The spliceable photovoltaic power plant rack of claim 3, wherein: the first clamping block (31) and the second clamping block (32) are arranged on the splicing frame (6) and the support (4) oppositely, the first clamping block (31) is of an L-shaped structure, and the second clamping block (32) is of an inverted F-shaped structure.
8. The spliceable photovoltaic power plant rack of claim 1, wherein: the connector (2) is formed by hinging an upper part and a lower part, the two parts of the connector (2) are both rectangular structures, and the upper part of the connector (2) is connected with a first clamping block (31).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202220197653.3U CN216649592U (en) | 2022-01-25 | 2022-01-25 | Can splice photovoltaic power plant support |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202220197653.3U CN216649592U (en) | 2022-01-25 | 2022-01-25 | Can splice photovoltaic power plant support |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN216649592U true CN216649592U (en) | 2022-05-31 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202220197653.3U Active CN216649592U (en) | 2022-01-25 | 2022-01-25 | Can splice photovoltaic power plant support |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN216649592U (en) |
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2022
- 2022-01-25 CN CN202220197653.3U patent/CN216649592U/en active Active
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