Photovoltaic transformer substation capable of being installed rapidly
Technical Field
The utility model relates to the technical field of photovoltaic equipment installation, in particular to a photovoltaic transformer station capable of being installed quickly.
Background
The core equipment comprises a photovoltaic array (comprising a plurality of photovoltaic plates and used for converting solar energy into direct current), an inverter (used for converting the direct current into alternating current) and a transformer (used for boosting and the like so as to meet the conveying or using requirements of different voltage levels), and is also provided with equipment such as a distribution box, a monitoring system and the like to realize the control, monitoring and management of the electric energy and ensure the stable and efficient operation of the photovoltaic power generation system.
At present, most existing photovoltaic substations need to carry out a plurality of links such as foundation construction, structure construction, equipment installation and the like on a construction site, so that the construction period is long, a large amount of cost is required to be input in the early stage, the occupied area is large, the construction waste generated in building the photovoltaic substations is also more, box-type photovoltaic substations are introduced in the market for solving the problems, parts required by the photovoltaic substations are preassembled in factories through manufacturers, and then the photovoltaic substations can be installed after being transported to the place required to be used by using a crane.
However, the photovoltaic panel at the top of the existing box-type photovoltaic transformer substation is fixed in angle, and is troublesome and inconvenient to use when the angle of the photovoltaic panel needs to be adjusted, so that the problem is solved, and the photovoltaic transformer substation capable of being quickly installed is provided for solving the problem.
Disclosure of utility model
In view of the above, the utility model provides a photovoltaic transformer substation capable of being quickly installed, which is installed and connected with the top of a container through a positioning assembly, the first sliding block, a guide rod and the second sliding block synchronously move through an electric push rod, and the guide rod pushes the second guide rod to rotate along the direction of a guide wheel on a corner mechanism through the opposite inclination of the guide rod and the second guide rail, so that the angle of a photovoltaic panel fixed on a supporting assembly is adjusted.
In order to solve the technical problems, the utility model provides a photovoltaic transformer substation capable of being quickly installed, which comprises a mounting plate arranged at the top of a container, wherein a plurality of pairs of grooves are symmetrically arranged at the top of the mounting plate, a positioning component is arranged at the upper part of each groove, a first guide rail is arranged on each positioning component, a corner mechanism is arranged at the front end of each first guide rail, an electric push rod is arranged at the rear end of each first guide rail, a first sliding block is arranged at the telescopic end of each electric push rod, a guide rod is obliquely arranged at the upper part of each first sliding block, a second guide rail is obliquely arranged at the upper part of each guide rod, a supporting component is arranged at one side of each second guide rail far away from the guide rod, a connecting block is symmetrically arranged at the middle part of each supporting component, a photovoltaic plate is arranged at the upper part of each connecting block, and four corners of the bottom of each photovoltaic plate are respectively connected with one connecting block.
The locating component comprises a locating plate arranged at the top of the groove, the locating plate is used for connecting the first guide rail with the mounting plate, the locating plate is fixedly connected with the upper surface of the mounting plate through bolts, locating groove plates are arranged at the front end and the rear end of the locating plate, the locating groove plates are connected with the reinforcing locating plate and the mounting plate, and the locating groove plates are fixedly connected with the upper surface of the mounting plate through bolts.
The corner mechanism comprises a cushion block fixed with the upper surface of the mounting plate, the cushion block is used for connecting the mounting plate with the fan-shaped base, the fan-shaped base is high with the first guide rail, the fan-shaped base is arranged on the upper portion of the cushion block, the fan-shaped base is used for guiding the rotation angle of the wheel, the guiding wheel is arranged in the fan-shaped base and used for driving the second guide rail to conduct angle adjustment, and one end of the guiding wheel, which is close to the first guide rail, is connected with the front end of the second guide rail.
The first slider top is provided with the linkage piece, and the linkage piece is used for the guide arm to be connected with first slider, and linkage piece top is fixed mutually with the guide arm bottom, and the slip is provided with the second slider in the second guide rail, and the second slider is used for moving along with the guide arm, and second slider bottom is fixed mutually with the guide arm top.
Each supporting component comprises a mounting groove connected with the second guide rail, the mounting groove is used for fixing the supporting rod, the supporting rod is longitudinally arranged in the mounting groove, and the supporting rod is used for fixing the supporting block to prevent the supporting block from falling.
The middle part symmetry of bracing piece is provided with a supporting shoe, and the supporting shoe is used for making bracing piece and connecting block meet, and then makes the photovoltaic board on the connecting block be connected with the bracing piece, and the supporting shoe top is fixed mutually with the connecting block bottom.
In summary, compared with the prior art, the application has at least one of the following beneficial technical effects:
1. Through locating component and container top installation connection, start electric putter makes electric putter's flexible end drive with first slider of first guide rail internal connection remove, and then make linkage piece and the guide arm on the first slider remove, and then make the second slider that the guide arm is connected remove in the second guide rail, through the opposite slope of guide arm and second guide rail, and then make the guide arm promote this second guide arm and rotate along the leading wheel direction on the corner mechanism, and then make the second guide rail carry out angle modulation, and then make the fixed photovoltaic board angle modulation on the supporting component.
2. The lower end of the guide rod is connected with the first sliding block, the upper end of the guide rod is connected with the second sliding block, and then when the electric push rod drives the first sliding block to move in the first guide rail, the synchronous guide rod also drives the second sliding block to move on the second guide rail, and the angle of the top of the second guide rail can be changed along with the realization of the angle of the guide rod because the second guide rail is in an inclined state, so that the angle of the mounting groove fixed at the top of the second guide rail is adjusted.
3. The cushion block is used for enabling the fan-shaped base to be at the same height as the second guide rail, the guide wheels are connected with the second guide rail, the rotating shaft on the fan-shaped base is further connected with the second guide rail, and when the rotating shaft on the fan-shaped base rotates at an angle, the second guide rail can synchronously rotate along with the second guide rail, so that the angle adjustment of the second guide rail is realized.
Drawings
FIG. 1 is a schematic diagram of the main structure of the present utility model;
FIG. 2 is a side cross-sectional view of the present utility model;
FIG. 3 is a schematic view of an assembled structure of the present utility model;
Fig. 4 is a top cross-sectional view of the present utility model.
Reference numerals illustrate 100, container, 101, mounting plate, 102, groove, 103, positioning assembly;
104. The photovoltaic panel comprises a positioning plate, 105, a positioning groove plate, 200, a first guide rail, 201, a linkage block, 202, an electric push rod, 203, a first sliding block, 204, a guide rod, 300, a corner mechanism, 301, a second guide rail, 302, a cushion block, 303, a sector base, 304, a guide wheel, 305, a second sliding block, 400, a support assembly, 401, a connecting block, 402, a photovoltaic panel, 403, a mounting groove, 404, a support rod, 405 and a support block.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present utility model more clear, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to fig. 1 to 4 of the embodiments of the present utility model. It will be apparent that the described embodiments are some, but not all, embodiments of the utility model. All other embodiments, which are obtained by a person skilled in the art based on the described embodiments of the utility model, fall within the scope of protection of the utility model.
As shown in fig. 1-4: the embodiment provides a photovoltaic substation capable of being quickly installed, the photovoltaic substation comprises a mounting plate 101 arranged at the top of a container 100, the mounting plate 101 is used for connecting a positioning assembly 103 with a container 100 body, a plurality of pairs of grooves 102 are symmetrically arranged at the top of the mounting plate 101, the grooves 102 are used for enabling wires to penetrate through the top of the container 100 and are connected with a photovoltaic panel 402, a positioning assembly 103 is arranged at the upper part of each groove 102, a first guide rail 200 is arranged on each positioning assembly 103, a limit groove used for preventing a first sliding block 203 from falling off is arranged in each first guide rail 200, one end of each first guide rail 200, close to an electric push rod 202, is provided with an opening for facilitating connection of a telescopic end of the electric push rod 202 with the first sliding block 203, the other end of each first guide rail 200 is provided with a limit plate used for preventing the first sliding block 203 from falling off, a corner mechanism 300 is arranged at the front end of each first guide rail 200, the corner mechanism 300 is used for adjusting the angle of a second guide rail 301 and a supporting assembly 400 along with the electric push rod 202, the electric push rod 202 is arranged at the rear end of each first guide rail 200, the electric push rod 202 is used for driving the first sliding block 203 to move on the first guide rail 200, and then when the guide rod 204 fixed on the first guide rail 200 drives the first sliding block 204 to move on the first guide rail 200, the guide rod 202 is provided with a guide rod 202 to move on the second guide rod 202, the second guide rod 202 is arranged in the direction of the first slider, the first slider is provided with a corner mechanism 401, the corner mechanism is arranged at the corner connecting block, and the corner mechanism is provided with a corner connecting block, and the slider is provided with a connecting block, and the slider is arranged at the corner 401, and the slider is provided with a connecting block, and has a connecting block, and the slider has a connecting bridge 200.
When the device is used, the positioning plate 104 and the positioning groove plate 105 on the positioning assembly 103 are connected with the mounting plate 101 on the top of the container 100, the electric push rod 202 is started to drive the telescopic end of the electric push rod 202 to move with the first sliding block 203 connected with the first guide rail 200, then the linkage block 201 on the first sliding block 203 moves with the guide rod 204, then the second sliding block 305 connected with the guide rod 204 moves in the second guide rail 301, the guide rod 204 pushes the second guide rod 204 to rotate along the direction of the guide wheel 304 on the corner mechanism 300 through the opposite inclination of the guide rod 204 and the second guide rail 301, then the second guide rail 301 is subjected to angle adjustment, and then the support assembly 400 fixed on the second guide rail 301 is subjected to angle adjustment, and then the connecting plate fixed on the support assembly 400 drives the photovoltaic panel 402 arranged on the connecting plate to perform angle adjustment.
The embodiment provides a photovoltaic substation which can be quickly installed,
As shown in fig. 1, 3 and 4, the positioning assembly 103 comprises a positioning plate 104 arranged at the top of the groove 102, a plurality of openings for inserting electric wires can be arranged on the positioning plate 104, the positioning plate 104 is used for connecting the first guide rail 200 with the mounting plate 101, the positioning plate 104 is fixedly connected with the upper surface of the mounting plate 101 by using bolts, the front end and the rear end of the positioning plate 104 are respectively provided with a positioning groove plate 105, the positioning groove plates 105 are horizontally concave, the notch of the positioning groove plates 105 are fixedly connected with the end parts of the positioning plate 104 by using steel plates in a matched bolt or welded mode, the positioning groove plates 105 are connected with the reinforcing positioning plate 104 and the mounting plate 101, and the positioning groove plates 105 are fixedly connected with the upper surface of the mounting plate 101 by using bolts.
The positioning groove plate 105 is connected with the mounting plate 101 for reinforcing the connection of the positioning plate 104, and the positioning plate 104 connects the first guide rail 200 and the guide rod 204 with the mounting plate 101, so that the positioning assembly 103 is mounted on the top of the container 100.
As shown in fig. 1, 2 and 3, the corner mechanism 300 comprises a cushion block 302 fixed with the upper surface of the mounting plate 101, the cushion block 302 is fixedly connected with the upper surface of the mounting plate 101 by bolts, the cushion block 302 is used for connecting the mounting plate 101 with a fan-shaped base 303, the fan-shaped base 303 is as high as the first guide rail 200, the fan-shaped base 303 is arranged on the upper part of the cushion block 302, arc plates are adopted on two sides of the fan-shaped base 303, a rotating shaft is arranged between the arc plates and used for fixing a guide wheel 304, the fan-shaped base 303 is used for fixing the rotating angle of the guide wheel 304, a guide wheel 304 is arranged in the fan-shaped base 303, the guide wheel 304 is used for driving the second guide rail 301 to conduct angle adjustment, and one end, close to the first guide rail 200, of the guide wheel 304 is connected with the front end of the second guide rail 301.
The fan-shaped base 303 and the second guide rail 301 are arranged at the same height by the cushion block 302, the guide wheels 304 are connected with the second guide rail 301, the rotating shaft on the fan-shaped base 303 is further connected with the second guide rail 301, and when the rotating shaft on the fan-shaped base 303 rotates by an angle, the second guide rail 301 synchronously rotates along with the rotating shaft, so that the angle of the second guide rail 301 is adjusted.
As shown in fig. 1, 2, 3 and 4, a linkage block 201 is arranged at the top of the first slider 203, the linkage block 201 and the first slider 203 can be connected and fixed by using bolts, the linkage block 201 is used for connecting a guide rod 204 and the first slider 203, the top of the linkage block 201 and the bottom of the guide rod 204 are fixed by using bolts or fixed by welding, a second slider 305 is slidably arranged in the second guide rail 301, the second slider 305 is slidably matched with the second guide rail 301, a limiting groove for preventing the second slider 305 from falling is arranged in the second guide rail 301, limiting plates for preventing the second slider 305 from falling are arranged at two ends of the second guide rail 301, the second slider 305 is used for moving along with the guide rod 204, the bottom of the second slider 305 is fixed with the top of the guide rod 204, and the inclination direction of the second guide rail 301 is opposite to that of the guide rod 204.
The synchronous guide rod 204 can drive the second slide block 305 to move on the second guide rail 301 when the electric push rod 202 drives the first slide block 203 to move in the first guide rail 200, and the second guide rail 301 is in an inclined state, so that the angle of the top of the second guide rail 301 can be adjusted along with the angle change of the guide rod 204, and the angle of the mounting groove 403 fixed at the top of the second guide rail 301 can be adjusted.
As shown in fig. 1, 2 and 3, each supporting component 400 comprises a mounting groove 403 connected with the second guide rail 301, the bottom plate of the mounting groove 403 is fixedly connected with the top of the second guide rail 301 by welding or by using bolts and steel plates, the mounting groove 403 is used for fixing a supporting rod 404, the supporting rod 404 is longitudinally arranged in the mounting groove 403, the supporting rod 404 is arranged along the longitudinal length of the mounting groove 403, the supporting rod 404 is fixedly welded with the front end and the rear end in the mounting groove 403, the supporting rod 404 is used for fixing a supporting block 405 to prevent the supporting block 405 from falling, one supporting block 405 is symmetrically arranged in the middle of the supporting rod 404, the supporting block 405 comprises a square block welded with the supporting rod 404 and connected with the bottom of the connecting block 401, the supporting block 405 is used for connecting the supporting rod 404 with the connecting block 401, the photovoltaic panel 402 on the connecting block 401 is further connected with the supporting rod 404, the top of the supporting block 405 is fixedly welded with the top of the connecting block 401 or by using bolts, and the top of the supporting block 405 is fixedly connected with the bottom of the connecting block 401 by using bolts.
The photovoltaic panel fixing device has the advantages that the supporting assembly 400 is used for connecting the mounting groove 403 with the second guide rail 301, the supporting rods 404 and the supporting blocks 405 are arranged in the mounting groove 403 and used for fixing the connecting block 401, and then the photovoltaic panel 402 of the connecting block 401 is connected with the second guide rail 301, so that when the angle of the second guide rail 301 is adjusted, the photovoltaic panel 402 fixed on the supporting assembly 400 can also be adjusted in a following mode.
The working principle is that the positioning plate 104 and the positioning groove plate 105 on the positioning assembly 103 are connected with the mounting plate 101 on the top of the container 100, the electric push rod 202 is started, the telescopic end of the electric push rod 202 drives the first sliding block 203 connected with the first guide rail 200 to move, the linkage block 201 on the first sliding block 203 moves with the guide rod 204, the second sliding block 305 connected with the guide rod 204 moves in the second guide rail 301, the guide rod 204 pushes the second guide rod 204 to rotate along the direction of the guide wheel 304 on the corner mechanism 300 through the opposite inclination of the guide rod 204 and the second guide rail 301, the second guide rail 301 is further subjected to angle adjustment, the support assembly 400 fixed on the second guide rail 301 is further subjected to angle adjustment, and the connecting plate fixed on the support assembly 400 drives the photovoltaic plate 402 mounted on the connecting plate to perform angle adjustment, so that the angle adjustment of the photovoltaic plate 402 is convenient when the angle adjustment of the photovoltaic plate 402 is required, and the photovoltaic plate 402 can be remotely controlled.
In addition, it should be noted that, in the description of the present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, integrally connected, mechanically connected, electrically connected, directly connected, indirectly connected through an intermediate medium, or in communication between two elements. The specific meaning of the above terms in the present utility model can be understood by those skilled in the art according to the specific circumstances.
While the foregoing is directed to the preferred embodiments of the present utility model, it will be appreciated by those skilled in the art that various modifications and adaptations can be made without departing from the principles of the present utility model, and such modifications and adaptations are intended to be comprehended within the scope of the present utility model.