Construction Equipment for a Photovoltaic Support and Its Usage Method

By designing automated photovoltaic bracket construction equipment, and using drive components and transmission parts to adjust the position of the drilling machine, the problems of low installation efficiency and insufficient positioning accuracy in the prior art are solved, and efficient and stable bracket installation is achieved.

CN120038354BActive Publication Date: 2025-08-01HUANENG YINGKOU THERMAL POWER CO LTD
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Patent Information

Application Number
CN202510522180.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2025-08-01
Estimated Expiration
2045-04-24

AI Technical Summary

Technical Problem

During the installation of existing photovoltaic brackets, four corner points need to be manually measured and positioned, resulting in low installation efficiency and insufficient positioning accuracy, and inability to stabilize and fix.

Method used

A photovoltaic bracket construction equipment is designed, including driving components, mating components, connection components and hole punching components. Through the cooperation of the drive motor and the transmission, the position of the drilling machine is automatically adjusted to realize automatic positioning and opening of four corner points.

Benefits of technology

Improve installation efficiency, reduce working steps, improve positioning accuracy, and ensure the stability and accuracy of the bracket.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN120038354B_ABST
    Figure CN120038354B_ABST
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Abstract

The present invention relates to the technical field of photovoltaic support construction. The present invention discloses a photovoltaic support construction device and a method for using the same, comprising a base, a drive assembly provided on the base, a mating assembly provided at the side end of the drive assembly, an adapter device provided on the mating assembly for positioning and installation, two drills provided on the adapter device for punching holes, the two drills being arranged in parallel, a preliminary positioning assembly provided at the side end of the adapter device, an interference assembly provided on one side of the preliminary positioning assembly, and the adapter device comprising a connection assembly and a punching assembly. The present invention, through the operation of the drive assembly and the adapter device, can automatically locate the positions of the four base points at the bottom of the bracket according to brackets of different specifications, thereby greatly improving installation efficiency and positioning accuracy.
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Description

Technical Field

[0001] The present invention relates to the technical field of photovoltaic support construction, and in particular to a photovoltaic support construction device and a method for using the same. Background Art

[0002] Due to the large size and weight of photovoltaic power generation equipment, the bracket needs to be fixed to the ground first. It is often necessary to drill some corresponding bottom holes for fixing construction. After matching with the bracket, the installation of the photovoltaic equipment is completed.

[0003] In the prior art, the bottom of the bracket of the photovoltaic equipment is usually rectangular. In the process of opening the bottom hole, workers are often required to measure and locate the positions of the four corner points according to the brackets of different specifications, so that the corner points are parallel to each other. The work steps are cumbersome, resulting in low installation efficiency. At the same time, manual measurement can easily lead to deviations in the positioning position, resulting in the installed bracket being unstable and the positioning accuracy being insufficient. Therefore, there is a need for a device that can automatically locate the positions of the four base points at the bottom of the bracket according to brackets of different specifications to avoid low installation efficiency and insufficient positioning accuracy. Summary of the Invention

[0004] The purpose of the present invention is to provide a photovoltaic bracket construction equipment and its use method, so as to solve the problems raised in the above background technology. To achieve the above purpose, the present invention provides the following technical solutions: a photovoltaic bracket construction equipment, including a base, a driving assembly is provided on the base, a mating assembly is provided on the side end of the driving assembly, an adapter device for positioning and installation is provided on the mating assembly, two drilling machines for punching are provided on the adapter device, the two drilling machines are arranged in parallel, a preliminary positioning assembly is provided on the side end of the adapter device, a conflict assembly is provided on one side of the preliminary positioning assembly, the adapter device includes a connecting assembly and a punching assembly, the connecting assembly is arranged on the mating assembly, and the punching assembly is arranged on the connecting assembly.

[0005] Preferably, the driving assembly includes a driving frame. There are two driving frames, and the two driving frames are symmetrically arranged on the base. The bottom of the driving frame is fixedly connected to the top of the base. A horizontally arranged first transmission member is rotatably connected to each driving frame. Above one side of the two first transmission members is a moving track. The bottom of the side end of the moving track is fixedly connected to the top of the base. A first transmission belt is sleeved on the outside of one of the first transmission members, and the other end of the first transmission belt is sleeved on the outside of the other first transmission member. Below one of the driving frames is a driving motor, and the output end of the driving motor is connected to the center of the adjacent first transmission member. A sliding bracket is slidably arranged in the moving track. The bottom of the sliding bracket is connected to the first transmission belt through a first jaw. A matching slide rail is arranged on the sliding bracket, and the bottom of the matching slide rail is slidably matched with the top of the moving track. The included angle between the sliding direction of the matching slide rail and the sliding direction of the sliding bracket is set at 90 degrees.

[0006] Preferably, the matching assembly includes a matching seat. The matching seat is arranged at the side end of the moving track. The bottom of the matching seat is fixedly connected to the top of the base. A fixing plate is fixedly connected to the side of the matching seat away from the first transmission member. The fixing plate is located at one end of the matching seat. An installation frame is arranged on the side of the fixing plate away from the matching seat. A sliding plate is arranged at the end of the installation frame away from the fixing plate. The side end of the sliding plate is slidably matched with the side end of the matching seat. The center of the installation frame and the center between the two first transmission members are on the same horizontal line. Two telescopic tracks are arranged on the side of the fixing plate close to the first transmission member. The two telescopic tracks are arranged vertically. The telescopic ends of the two telescopic tracks are respectively connected to the side end of the sliding plate. Arc-shaped notches are respectively opened at both ends of the telescopic track. A matching block is arranged on the side of the sliding plate close to the installation frame. The end of the matching block away from the sliding plate slides through the installation frame and is slidably matched with it. When the matching block slides on the installation frame, it can drive the two telescopic tracks to expand and contract synchronously through the sliding plate. The matching block is sleeved on the driving threaded rod and is in threaded cooperation with it. The two ends of the driving threaded rod are respectively rotatably matched with the rotating seats. The side end of the rotating seat is connected to one side of the installation frame. Sliding rods are symmetrically arranged on both sides of the driving threaded rod. The two ends of the sliding rod are respectively connected to the side wall of one rotating seat. The two sides of the matching block are respectively sleeved on the adjacent sliding rods through semi-circular frames and are slidably matched with them. A knob is arranged on the side of one of the rotating seats away from the driving threaded rod. The center of the knob is connected to the end of the driving threaded rod.

[0007] Preferably, the connection component includes a connection telescopic plate which is arranged at one end of the two telescopic rails. Connection columns are symmetrically arranged on both sides of the connection telescopic plate. In the initial state, the top and bottom of one of the connection columns are respectively embedded in the arc-shaped bayonets at the end of a telescopic rail. The included angle between the connection telescopic plate and the telescopic rail is set at 90 degrees. An L-shaped frame is arranged at the bottom of the connection telescopic plate. A clamping shaft is hinged at the end of the bottom of the L-shaped frame. The bottom of the clamping shaft is embedded in and slidably matched with the matching slide rail. The clamping shaft is located at the end of the matching slide rail away from the mounting frame. The top of the L-shaped frame is located at the center of the connection telescopic plate. A gravity block is arranged at the side end of the L-shaped frame and is located at the side end of the center of the connection telescopic plate.

[0008] Preferably, the drilling component includes a first drilling frame. The bottom of the first drilling frame is fixedly connected to the top of the connection telescopic plate and is not located on the telescopic end. The bottom of the top of the first drilling frame is connected to the tail of the drilling machine. The output end of the drilling machine is arranged downward. A second drilling frame is arranged at the side end of the first drilling frame. The bottom of the second drilling frame is slidably matched with the top of the connection telescopic plate and is located on the telescopic end of the connection telescopic plate. The bottom of the top of the second drilling frame is connected to the tail of the drilling machine. An auxiliary frame is arranged at the side end of the second drilling frame close to the first drilling frame. The bottom of the auxiliary frame is connected to the top of the telescopic end of the connection telescopic plate. A first auxiliary slide rail is arranged at the side end of the auxiliary frame. A control frame is slidably matched on the first auxiliary slide rail. Two second transmission parts are symmetrically arranged at the side end of the control frame away from the auxiliary frame. The center of the second transmission part is rotatably connected to the control frame. A second transmission belt is sleeved on the second transmission part. The other end of the second transmission belt is sleeved on the outside of another second transmission part. A second clamping jaw is arranged at the side end of the top of the auxiliary frame and clamps the side end of the second transmission belt located above. A second auxiliary slide rail is arranged below the second transmission belt. The side end of the second auxiliary slide rail is connected to the side end of the control frame. A connecting frame is slidably arranged on the second auxiliary slide rail. The top of the connecting frame is connected to the side end of the second transmission belt located below through an auxiliary clamping jaw. The end of the connecting frame away from the control frame is connected to the side end of the second drilling frame.

[0009] Preferably, the preliminary positioning component includes an adjusting rod for controlling the elongation or shortening of the connection telescopic plate. The adjusting rod is arranged on the side of the connection telescopic plate away from the connecting frame and is horizontally arranged. An adjusting knob is arranged on the outside of the connection telescopic plate. The center of the adjusting knob is connected to the end of the adjusting rod.

[0010] Preferably, the interference assembly includes an L-shaped connecting frame, the bottom of the L-shaped connecting frame is connected to the top of the control frame, the bottom of the top of the L-shaped connecting frame is provided with a horizontally arranged interference wheel, the interference wheel is located above the adjusting rod, and an inclined guide frame used in conjunction with the interference wheel is provided above the sliding plate, the bottom of the inclined guide frame is fixedly connected to the top of the sliding plate, and when the connecting telescopic plate is deflected in the arc-shaped bayonet with one of the connecting columns, the control frame can be driven to slide along the first auxiliary slide rail through the cooperation between the provided interference wheel and the inclined guide frame.

[0011] Preferably, the method for using the construction equipment of the photovoltaic bracket comprises the following steps:

[0012] S1: The staff first rotates the adjustment knob to drive the adjustment rod to extend and retract the connecting telescopic plate, and then adjusts the initial distance between the two drilling machines to correspond to the short side distance of the required installation bracket, determines the drilling position on one side of the bottom of the bracket, so as to facilitate the completion of the two bottom holes by the drilling machine, and drives the driving threaded rod to rotate by operating the control knob, so that the matching block moves along the direction of the sliding rod, and the sliding plate moves synchronously, thereby adjusting the length of the telescopic track according to the long side distance of the bracket;

[0013] S2: In the process of the control knob driving the sliding plate to move, the inclined guide frame is synchronously driven to move to complete the positioning. When the two bottom holes on one side of the short side of the bracket are completed, the driving motor is controlled to work, thereby driving one of the first transmission members to rotate, and the first transmission belt is used to drive the other first transmission member to rotate synchronously. Under the action of the first clamping claw, the sliding bracket is driven to move in the direction of the matching slide rail, so that the matching slide rail moves synchronously, and through the cooperation with the card shaft, the connecting telescopic plate is driven to rotate with the connecting column now clamped in the arc bayonet as the axis, thereby driving the two drilling machines to deflect 90 degrees synchronously toward the direction of the mounting bracket, and in the process of deflection, through The cooperation of the contact wheel and the inclined guide frame drives the control frame to move along the first auxiliary slide rail, and in the process of moving, the cooperation of the second clamping claw and the second transmission belt, under the action of the second transmission member, drives the connecting frame to slide along the second auxiliary slide rail through the auxiliary clamping claw, thereby driving the second drilling frame to move away from the first drilling frame and slide on the top of the connecting telescopic plate, and then adjust the distance between the two drilling machines so that the two drilling machines change according to the preset distance. Under the action of the driving motor, the connecting column on one side of the connecting telescopic plate is moved away from the arc bayonet, and the connecting column on the other side is embedded in the other arc bayonet, thereby locating the position of the third corner point and completing the opening of the third corner point;

[0014] S3: Then continue to control the driving motor to make the connecting telescopic plate deflect 90 degrees along the connecting column embedded in the arc-shaped bayonet on the other side as the axis, so that the connecting telescopic plate drives the drilling machine on the second punching frame to be positioned to the fourth corner point, thereby opening.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] In the present invention, when the device is used, the staff first controls the preliminary positioning component to adjust so that the initial distance between the two drills corresponds to the short side distance of the required installation bracket, and then determines the drilling position on one side of the bottom of the bracket, so as to facilitate the completion of the opening of the two bottom holes by the drill, and determines the long side distance of the positioning bracket by adjusting the work of the matching component. Then, after the opening is completed, the driving component is controlled to work, so that under the action of the matching component, the connecting component is driven to deflect along one end thereof toward the matching component, and in the process of deflection into place, the two drills are changed according to the preset distance under the action of the punching component through the cooperation with the matching component, so that the distance between the two drills is completed. After the connection component is moved by the driving component, the third corner point is opened, and after the opening is completed, the connection component is deflected along the third corner point by the driving component again, the fourth corner point is located and opened, so that the four corner points are automatically positioned and opened. In this process, the need for staff to manually measure and locate the positions of the four corner points at the bottom of the bracket is avoided, and the positioning of the four corner points of the rectangle is automatically completed, which reduces the work steps and improves the installation efficiency. It can also improve the positioning accuracy and ensure the stability of the bracket installation, thereby realizing the ability to automatically locate the positions of the four base points at the bottom of the bracket according to brackets of different specifications to avoid the effects of low installation efficiency and insufficient positioning accuracy.

[0017] In the present invention, the staff first controls the rotation of the adjustment knob to drive the adjustment rod to extend and retract the connecting telescopic plate, and then adjusts the initial distance between the two drilling machines to correspond to the short side distance of the required installation bracket, determines the punching position on one side of the bottom of the bracket, so as to facilitate the completion of the opening of the two bottom holes by the drilling machine, and drives the driving threaded rod to rotate by controlling the knob, so that the matching block moves along the direction of the sliding rod, and the sliding plate moves synchronously, so as to adjust the length of the telescopic track according to the long side distance of the bracket, and then facilitates the positioning of the four corner points at the bottom of the bracket, thereby improving the convenience of using the device.

[0018] In the present invention, during the process of the control knob driving the sliding plate to move, the inclined guide frame is synchronously driven to move to complete positioning. Subsequently, by controlling the driving motor to operate, the connecting telescopic plate is driven to rotate with the connecting column currently clamped in the arc-shaped bayonet as the axis, and during the deflection process, the distance between the two drilling machines is adjusted, thereby positioning the position of the third corner point and completing the opening of the third corner point. Subsequently, continue to control the driving motor to operate, so that the connecting telescopic plate drives the drilling machine on the second drilling frame to be positioned at the fourth corner point for opening. During this process, it is thus avoided that the staff needs to manually measure and position the positions of the four corner points at the bottom of the bracket, automatically completing the positioning of the four corner points of the rectangle, reducing the working steps while improving the installation efficiency, and being able to improve the positioning accuracy, ensuring the stability of the bracket installation. After the opening is completed, by controlling the driving motor to work in the reverse direction, the connecting telescopic plate is driven to reset along the telescopic track, and during the next operation, by controlling the control knob and the adjustment knob to work, the positioning of the next bracket is completed, thereby further improving the convenience of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a schematic three-dimensional structure of the present invention Figure 1 ;

[0020] Figure 2 is a schematic three-dimensional structure of the present invention Figure 2 ;

[0021] Figure 3 is a schematic partial three-dimensional structure diagram of the driving component in the present invention;

[0022] Figure 4 is a schematic exploded partial three-dimensional structure diagram of the driving component in the present invention;

[0023] Figure 5 is a schematic partial three-dimensional structure of the present invention Figure 1 ;

[0024] Figure 6 is a schematic partial three-dimensional structure diagram of the matching component and the adaptation device in the present invention;

[0025] Figure 7 is a schematic partial three-dimensional structure of the present invention Figure 2 ;

[0026] Figure 8 is a schematic partial three-dimensional structure of the present invention Figure 3 ;

[0027] Figure 9 is a schematic partial three-dimensional structure of the present invention Figure 4 ;

[0028] Figure 10Schematic partial three-dimensional structure of the adaptation device in the present invention Figure 1 ;

[0029] Figure 11 Schematic partial three-dimensional structure of the adaptation device in the present invention Figure 2 ;

[0030] Figure 12 Schematic partial three-dimensional structure of the present invention Figure 5 .

[0031] In the figure: 1, base; 2, drive assembly; 21, drive frame; 22, first transmission member; 23, moving track; 24, first transmission belt; 25, drive motor; 26, sliding bracket; 27, first jaw; 28, mating slide rail; 3, mating assembly; 31, mating seat; 32, fixing plate; 33, mounting frame; 34, sliding plate; 35, telescopic track; 36, arc-shaped bayonet; 37, mating block; 38, drive threaded rod; 39, rotating seat; 40, sliding rod; 41, knob; 5, adaptation device; 51, connection assembly; 511, connection telescopic plate; 512, connection column; 513, L-shaped frame; 514, clamping shaft; 515, gravity block; 52, drilling component; 521, first drilling frame; 522, second drilling frame; 523, auxiliary frame; 524, first auxiliary slide rail; 525, control frame; 526, second transmission member; 527, second transmission belt; 528, second jaw; 529, second auxiliary slide rail; 530, connecting frame; 531, auxiliary jaw; 6, drilling machine; 7, preliminary positioning assembly; 71, adjusting rod; 72, adjusting knob; 8, abutting assembly; 81, L-shaped connecting frame; 82, abutting wheel; 83, inclined guide frame. Detailed implementation manners

[0032] 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. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0033] Please refer to Figures 1 to 12The present invention provides a technical solution: a construction equipment for a photovoltaic bracket, comprising a base 1, a driving component 2 is provided on the base 1, a mating component 3 is provided at the side end of the driving component 2, an adapter 5 for positioning and installation is provided on the mating component 3, two drilling machines 6 for punching are provided on the adapter 5, and the two drilling machines 6 are arranged in parallel, a preliminary positioning component 7 is provided at the side end of the adapter 5, and a resistance component 8 is provided on one side of the preliminary positioning component 7, the adapter 5 comprises a connecting component 51 and a punching component 52, the connecting component 51 is arranged on the mating component 3, and the punching component 52 is arranged on the connecting component 51.

[0034] In this embodiment, Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 and Figure 10 As shown, the driving assembly 2 includes a driving frame 21, and two driving frames 21 are provided. The two driving frames 21 are symmetrically arranged on the base 1. The bottom of the driving frame 21 is fixedly connected to the top of the base 1. Each of the driving frames 21 is rotatably connected to a horizontally arranged first transmission member 22. A movable track 23 is provided above one side of the two first transmission members 22. The bottom of the side end of the movable track 23 is fixedly connected to the top of the base 1. A first transmission belt 24 is sleeved on the outer side of one of the first transmission members 22. The other end of the first transmission belt 24 is sleeved on On the outside of the other first transmission member 22, a driving motor 25 is provided below one of the driving frames 21. The output end of the driving motor 25 is connected to the center of the adjacent first transmission member 22. A sliding bracket 26 is slidably provided in the movable rail 23. The bottom of the sliding bracket 26 is connected to the first transmission belt 24 through a first clamping claw 27. A matching slide rail 28 is provided on the sliding bracket 26. The bottom of the matching slide rail 28 is slidably matched with the top of the movable rail 23. The sliding direction of the matching slide rail 28 and the sliding direction of the sliding bracket 26 are set at an angle of 90 degrees.

[0035] The mating assembly 3 includes a mating seat 31 which is arranged at the side end of the moving track 23. The bottom of the mating seat 31 is fixedly connected to the top of the base 1. On the side of the mating seat 31 away from the first transmission member 22, a fixing plate 32 is fixedly connected. The fixing plate 32 is located at one end of the mating seat 31. On the side of the fixing plate 32 away from the mating seat 31, an installation frame 33 is provided. At the end of the installation frame 33 away from the fixing plate 32, a sliding plate 34 is provided. The side end of the sliding plate 34 is slidably mated with the side end of the mating seat 31. The center of the installation frame 33 and the center between the two first transmission members 22 are on the same horizontal line. On the side of the fixing plate 32 close to the first transmission member 22, two telescopic tracks 35 are provided. The two telescopic tracks 35 are arranged vertically. The telescopic ends of the two telescopic tracks 35 are respectively connected to the side end of the sliding plate 34. Arc-shaped bayonets 36 are respectively formed at both ends of the telescopic track 35. On the side of the sliding plate 34 close to the installation frame 33, a mating block 37 is provided. The end of the mating block 37 away from the sliding plate 34 slidably passes through the installation frame 33 and is slidably mated with it. When the mating block 37 slides on the installation frame 33, it can drive the two telescopic tracks 35 to synchronously expand and contract through the sliding plate 34. The mating block 37 is sleeved on the driving threaded rod 38 and is threadedly mated with it. The two ends of the driving threaded rod 38 are respectively rotatably mated with a rotating seat 39. The side end of the rotating seat 39 is connected to one side of the installation frame 33. On both sides of the driving threaded rod 38, sliding rods 40 are symmetrically provided. The two ends of the sliding rod 40 are respectively connected to the side wall of a rotating seat 39. Both sides of the mating block 37 are respectively sleeved on the adjacent sliding rods 40 through semi-circular frames and are slidably mated with them. On the side of one of the rotating seats 39 away from the driving threaded rod 38, a knob 41 is provided. The center of the knob 41 is connected to the end of the driving threaded rod 38;

[0036] The connection assembly 51 includes a connection telescopic plate 511 which is arranged at one end of the two telescopic tracks 35. On both sides of the connection telescopic plate 511, connection columns 512 are symmetrically provided. In the initial state, the top and bottom of one of the connection columns 512 are respectively embedded in the arc-shaped bayonets 36 at the end of one telescopic track 35. The included angle between the connection telescopic plate 511 and the telescopic track 35 is set at 90 degrees. At the bottom of the connection telescopic plate 511, an L-shaped frame 513 is provided. At the end of the bottom of the L-shaped frame 513, a clamping shaft 514 is hinged. The bottom of the clamping shaft 514 is embedded in the mating slide rail 28 and is slidably mated with it. The clamping shaft 514 is located at the end of the mating slide rail 28 away from the installation frame 33. The top of the L-shaped frame 513 is located at the center of the connection telescopic plate 511. On the side end of the L-shaped frame 513, a gravity block 515 is provided. The gravity block 515 is located at the side end of the center of the connection telescopic plate 511;

[0037] The punching assembly 52 includes a first punching frame 521. The bottom of the first punching frame 521 is fixedly connected to the top of the connecting telescopic plate 511 and is not located on the telescopic end. The bottom of the top of the first punching frame 521 is connected to the tail of the drilling machine 6. The output end of the drilling machine 6 is arranged downward. A second punching frame 522 is provided at the side end of the first punching frame 521. The bottom of the second punching frame 522 is slidably matched with the top of the connecting telescopic plate 511. The bottom of the second punching frame 522 is located on the telescopic end of the connecting telescopic plate 511. The bottom of the top of the second punching frame 522 is connected to the tail of the drilling machine 6. An auxiliary frame 523 is provided at the side end of the second punching frame 522 close to the first punching frame 521. The bottom of the auxiliary frame 523 is connected to the top of the telescopic end of the connecting telescopic plate 511. A first auxiliary slide rail 524 is provided at the side end of the auxiliary frame 523. A control frame 525 is slidably matched on the first auxiliary slide rail 524. Two second transmission members 526 are symmetrically provided at the side end of the control frame 525 away from the auxiliary frame 523. The center of the second transmission member 526 is rotatably connected to the control frame 525. A second transmission belt 527 is sleeved on the second transmission member 526. The other end of the second transmission belt 527 is sleeved on the outside of another second transmission member 526. A second clamping jaw 528 is provided at the side end of the top of the auxiliary frame 523. The second clamping jaw 528 clamps the side end of the second transmission belt 527 located above. A second auxiliary slide rail 529 is provided below the second transmission belt 527. The side end of the second auxiliary slide rail 529 is connected to the side end of the control frame 525. A connecting frame 530 is slidably provided on the second auxiliary slide rail 529. The top of the connecting frame 530 is connected to the side end of the second transmission belt 527 located below through an auxiliary clamping jaw 531. One end of the connecting frame 530 away from the control frame 525 is connected to the side end of the second punching frame 522;

[0038] The preliminary positioning assembly 7 includes an adjusting rod 71 for controlling the elongation or shortening of the connecting telescopic plate 511. The adjusting rod 71 is arranged on the side of the connecting telescopic plate 511 away from the connecting frame 530. The adjusting rod 71 is horizontally arranged. An adjusting knob 72 is provided on the outside of the connecting telescopic plate 511. The center of the adjusting knob 72 is connected to the end of the adjusting rod 71;

[0039] The staff first controls the rotation of the adjustment knob 72 to drive the adjustment rod 71 to extend and retract the connecting telescopic plate 511, and then adjusts the initial distance between the two drilling machines 6 to correspond to the short side distance of the required installation bracket, and determines the punching position on one side of the bottom of the bracket, so as to facilitate the completion of the opening of the two bottom holes by the drilling machine 6, and works by controlling the knob 41 to drive the driving threaded rod 38 to rotate, so that the matching block 37 moves along the direction of the sliding rod 40, and the sliding plate 34 moves synchronously, so as to adjust the length of the telescopic rail 35 according to the long side distance of the bracket, and then facilitate the positioning of the four corner points at the bottom of the bracket, thereby improving the convenience of using the device.

[0040] In this embodiment, Figure 11 and Figure 12 As shown, the interference assembly 8 includes an L-shaped connecting frame 81, the bottom of the L-shaped connecting frame 81 is connected to the top of the control frame 525, and the bottom of the top of the L-shaped connecting frame 81 is provided with a horizontally arranged interference wheel 82, and the interference wheel 82 is located above the adjusting rod 71. An oblique guide frame 83 is provided above the sliding plate 34 for use with the interference wheel 82. The bottom of the oblique guide frame 83 is fixedly connected to the top of the sliding plate 34. When the connecting telescopic plate 511 deflects in the arc-shaped bayonet 36 with one of the connecting columns 512, the control frame 525 can be driven to slide along the first auxiliary slide rail 524 through the cooperation between the provided interference wheel 82 and the oblique guide frame 83;

[0041] During the process of the control knob 41 driving the sliding plate 34 to move, the inclined guide frame 83 is synchronously driven to move to complete its positioning. After the opening of the two bottom holes on the short side of the bracket is completed, the driving motor 25 is then controlled to work, thereby driving one of the first transmission members 22 to rotate. Through the arranged first transmission belt 24, the other first transmission member 22 is driven to rotate synchronously. Under the action of the first clamping jaw 27, the sliding bracket 26 is driven to move along the direction of the mating slide rail 28, causing the mating slide rail 28 to move synchronously. Through the cooperation with the clamping shaft 514, the connecting telescopic plate 511 is driven to rotate with the connecting column 512 currently clamped in the arc-shaped bayonet 36 as the axis, thereby driving the two drilling machines 6 to deflect 90 degrees towards the mounting frame 33. During the deflection process, through the cooperation of the abutting wheel 82 and the inclined guide frame 83, the control frame 525 is driven to move along the first auxiliary slide rail 524. During the movement process, through the cooperation of the second clamping jaw 528 and the second transmission belt 527, under the action of the second transmission member 526, the connecting frame 530 is driven to slide along the second auxiliary slide rail 529 through the auxiliary clamping jaw 531, thereby driving the second drilling frame to slide away from the first drilling frame on the top of the connecting telescopic plate 511, and then adjusting the distance between the two drilling machines 6, so that the two drilling machines 6 change according to the preset distance. Through the arranged gravity block 515, the connecting telescopic plate 511 is made more stable during the deflection process. Under the action of the driving motor 25, the connecting column 512 on one side of the connecting telescopic plate 511 is moved away from the arc-shaped bayonet 36, and the connecting column 512 on the other side is embedded into another arc-shaped bayonet 36, thereby positioning the position of the third corner point and completing the opening of the third corner point, thus automatically completing the positioning of the vertical side and improving the practicability of the device. S3 Then, the driving motor 25 is continuously controlled to work, so that the connecting telescopic plate 511 deflects 90 degrees with the connecting column 512 currently embedded in the arc-shaped bayonet 36 on the other side as the axis, causing the connecting telescopic plate 511 to drive the drilling machine 6 on the second drilling frame 522 to be positioned at the fourth corner point for opening. During this process, it is thus avoided that the staff needs to manually measure and position the positions of the four corner points at the bottom of the bracket, automatically completing the positioning of the four corner points of the rectangle, reducing the working steps while improving the installation efficiency, and being able to improve the positioning accuracy, ensuring the stability of the bracket installation. After the opening is completed, by controlling the driving motor 25 to work in the reverse direction, the connecting telescopic plate 511 is driven to reset along the telescopic track 35. When working next time, by controlling the control knob 41 and the adjustment knob 72 to work, the positioning of the next bracket is completed, thereby further improving the convenience of the device.

[0042] The usage method and advantages of the present invention: The usage method of the construction equipment for a kind of photovoltaic bracket is as follows, and the working process is as follows:

[0043] Such as Figure 1 、Figure 2 , Figure 3 , Figure 4 , ​ , ​ , ​ , ​ , ​ , ​ , ​ and ​ as shown in:

[0044] S1: First, the staff rotates the control adjustment knob 72 to drive the adjustment rod 71, so as to make the connection telescopic plate 511 expand and contract, and then adjust the initial distance between the two drilling machines 6 corresponding to the short side distance of the required mounting bracket, determine the drilling positions on one side of the bottom of the bracket, so as to facilitate the opening of two bottom holes by the drilling machines 6, and drive the driving threaded rod 38 to rotate by controlling the knob 41, so that the matching block 37 moves along the direction of the sliding rod 40, and the sliding plate 34 moves synchronously, so as to adjust the length of the telescopic track 35 according to the long side distance of the bracket;

[0045] S2: During the process of driving the sliding plate 34 to move by the control knob 41, the inclined guide frame 83 is synchronously driven to move to complete its positioning. When the opening of the two bottom holes on the short side of the bracket is completed, then drive the motor 25 to work, so as to drive one of the first transmission parts 22 to rotate. Through the arranged first transmission belt 24, drive the other first transmission part 22 to rotate synchronously. Under the action of the first clamping jaw 27, drive the sliding bracket 26 to move along the direction of the matching slide rail 28, and the matching slide rail 28 moves synchronously. Through the cooperation with the clamping shaft 514, drive the connection telescopic plate 511 to rotate with the connection column 512 currently clamped in the arc-shaped bayonet 36 as the axis, and then drive the two drilling machines 6 to deflect 90 degrees towards the installation frame 33 synchronously. During the deflection process, through the cooperation of the contact wheel 82 and the inclined guide frame 83, drive the control frame 525 to move along the first auxiliary slide rail 524. During the movement process, through the cooperation of the second clamping jaw 528 and the second transmission belt 527, under the action of the second transmission part 526, drive the connecting frame 530 to slide along the second auxiliary slide rail 529 through the auxiliary clamping jaw 531, so as to drive the second drilling frame to slide away from the first drilling frame on the top of the connection telescopic plate 511, and then adjust the distance between the two drilling machines 6, so that the two drilling machines 6 change according to the preset distance. Under the action of the drive motor 25, make the connection column 512 on one side of the connection telescopic plate 511 away from the arc-shaped bayonet 36, and make the connection column 512 on the other side of it embed into another arc-shaped bayonet 36, so as to position the position of the third corner point and complete the opening of the third corner point;

[0046] S3: Subsequently, continue to control the driving motor 25 to operate, so that the connecting telescopic plate 511 deflects 90 degrees with the connecting column 512 embedded in the other arc-shaped bayonet 36 at this time as the axis, and the connecting telescopic plate 511 drives the drilling machine 6 on the second drilling frame 522 to be positioned at the fourth corner point, so as to carry out the opening.

[0047] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art of this industry should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A photovoltaic support construction device, comprising a base (1); It is characterized in that: The base (1) is provided with a driving assembly (2), a matching assembly (3) is provided at a side end of the driving assembly (2), an adapting device (5) for positioning and mounting is provided on the matching assembly (3), two drilling machines (6) for punching are provided on the adapting device (5), and the two drilling machines (6) are arranged in parallel, a preliminary positioning assembly (7) is provided at a side end of the adapting device (5), and a resistance assembly (8) is provided on one side of the preliminary positioning assembly (7), and the adapting device (5) includes a connecting assembly (51) and a punching assembly (52), the connecting assembly (51) is arranged on the matching assembly (3), and the punching assembly (52) is arranged on the connecting assembly (51); The driving assembly (2) includes a driving frame (21), two of the driving frames (21) are provided, and the two driving frames (21) are symmetrically arranged on the base (1). The bottom of the driving frame (21) is fixedly connected to the top of the base (1). Each of the driving frames (21) is rotatably connected to a first transmission member (22) arranged horizontally. A movable track (23) is provided above one side of the two first transmission members (22). The bottom of the side end of the movable track (23) is fixedly connected to the top of the base (1). A first transmission belt (24) is provided on the outer side of one of the first transmission members (22). The other end of the first transmission belt (24) is provided on the other side. A driving motor (25) is provided below one of the driving frames (21) on the outside of a first transmission member (22), the output end of the driving motor (25) is connected to the center of the adjacent first transmission member (22), a sliding bracket (26) is provided in the movable track (23), the bottom of the sliding bracket (26) is connected to the first transmission belt (24) through a first clamp (27), a matching slide rail (28) is provided on the sliding bracket (26), the bottom of the matching slide rail (28) is slidably matched with the top of the movable track (23), and the sliding direction of the matching slide rail (28) and the sliding direction of the sliding bracket (26) are set at an angle of 90 degrees; The mating component (3) includes a mating seat (31), the mating seat (31) is arranged at the side end of the moving track (23), the bottom of the mating seat (31) is fixedly connected to the top of the base (1), a fixing plate (32) is fixedly connected to the side of the mating seat (31) away from the first transmission member (22), the fixing plate (32) is located at one end of the mating seat (31), an installation frame (33) is arranged on the side of the fixing plate (32) away from the mating seat (31), a sliding plate (34) is arranged at the end of the installation frame (33) away from the fixing plate (32), the side end of the sliding plate (34) is in sliding fit with the side end of the mating seat (31), the center of the installation frame (33) and the center between the two first transmission members (22) are on the same horizontal line, two telescopic tracks (35) are arranged on the side of the fixing plate (32) close to the first transmission member (22), the two telescopic tracks (35) are arranged vertically, the telescopic ends of the two telescopic tracks (35) are respectively connected to the side end of the sliding plate (34), arc-shaped bayonets (36) are respectively arranged at both ends of the telescopic track (35), a mating block (37) is arranged on the side of the sliding plate (34) close to the installation frame (33), the end of the mating block (37) away from the sliding plate (34) slides through the installation frame (33) and is in sliding fit with it. When the mating block (37) slides on the installation frame (33), it can drive the two telescopic tracks (35) to expand and contract synchronously through the sliding plate (34). The mating block (37) is sleeved on the driving threaded rod (3:8) and is in threaded fit with it. Both ends of the driving threaded rod (38) are in rotational fit with a rotating seat (39), the side end of the rotating seat (39) is connected to the side of the installation frame (33) away from the sliding plate (34), sliding rods (40) are symmetrically arranged on both sides of the driving threaded rod (38), both ends of the sliding rod (40) are connected to the side wall of a rotating seat (39), both sides of the mating block (37) are respectively sleeved on the adjacent sliding rods (40) through a semi-circular frame and are in sliding fit with them. A knob (41) is arranged on the side of one of the rotating seats (39) away from the driving threaded rod (38), and the center of the knob (4:1) is connected to the end of the driving threaded rod (38); The connection component (51) includes a connection telescopic plate (511). The connection telescopic plate (511) is arranged at one end of the two telescopic rails (35). Connection columns (512) are symmetrically arranged on both sides of the connection telescopic plate (511). In the initial state, the top and bottom of one of the connection columns (512) are respectively embedded in the arc-shaped bayonet (36) at the end of a telescopic rail (35). The included angle between the connection telescopic plate (511) and the telescopic rail (35) is set at 90 degrees. An L-shaped frame (513) is arranged at the bottom of the connection telescopic plate (511). A clamping shaft (514) is hinged to the end of the bottom of the L-shaped frame (513). The bottom of the clamping shaft (514) is embedded in and slidably cooperates with the matching slide rail (28). The clamping shaft (514) is located at one end of the matching slide rail (28) away from the mounting frame (33). The top of the L-shaped frame (513) is located at the center of the connection telescopic plate (511). A gravity block (515) is arranged at the side end of the L-shaped frame (513). The gravity block (515) is located at the side end of the center of the connection telescopic plate (511).

2. The construction equipment for a photovoltaic support according to claim 1, characterized in that: The punching assembly (52) includes a first punching frame (521). The bottom of the first punching frame (521) is fixedly connected to the top of the connecting telescopic plate (511) and is not located on the telescopic end. The bottom of the top of the first punching frame (521) is connected to the tail of the drilling machine (6). The output end of the drilling machine (6) is arranged downward. A second punching frame (522) is provided at the side end of the first punching frame (521). The bottom of the second punching frame (522) is slidably matched with the top of the connecting telescopic plate (511). The bottom of the second punching frame (522) is located on the telescopic end of the connecting telescopic plate (511). The bottom of the top of the second punching frame (522) is connected to the tail of the drilling machine (6). An auxiliary frame (523) is provided at the side end of the second punching frame (522) close to the first punching frame (521). The bottom of the auxiliary frame (523) is connected to the top of the telescopic end of the connecting telescopic plate (511). A first auxiliary slide rail (524) is provided at the side end of the auxiliary frame (523). A control frame (525) is slidably matched on the first auxiliary slide rail (524). Two second transmission parts (526) are symmetrically provided at the side end of the control frame (525) away from the auxiliary frame (523). The center of the second transmission part (526) is rotatably connected to the control frame (525). A second transmission belt (527) is sleeved on the second transmission part (526). The other end of the second transmission belt (527) is sleeved on the outside of another second transmission part (526). A second clamping jaw (528) is provided at the side end of the top of the auxiliary frame (523). The second clamping jaw (528) clamps the side end of the second transmission belt (527) located above. A second auxiliary slide rail (529) is provided below the second transmission belt (527). The side end of the second auxiliary slide rail (529) is connected to the side end of the control frame (525). A connecting frame (530) is slidably provided on the second auxiliary slide rail (529). The top of the connecting frame (530) is connected to the side end of the second transmission belt (527) located below through an auxiliary clamping jaw (531). One end of the connecting frame (530) away from the control frame (525) is connected to the side end of the second punching frame (522).

3. The construction equipment for a photovoltaic support according to claim 2, characterized in that: The preliminary positioning assembly (7) includes an adjusting rod (71) for controlling the elongation or shortening of the connecting telescopic plate (511). The adjusting rod (71) is arranged on the side of the connecting telescopic plate (511) away from the connecting frame (530). The adjusting rod (71) is horizontally arranged. An adjusting knob (72) is provided on the outside of the connecting telescopic plate (511). The center of the adjusting knob (72) is connected to the end of the adjusting rod (71).

4. The construction equipment for a photovoltaic support according to claim 3, characterized in that: The interference component (8) includes an L-shaped connecting frame (81). The bottom of the L-shaped connecting frame (81) is connected to the top of the control frame (525). At the bottom of the top of the L-shaped connecting frame (81), there is a horizontally arranged interference wheel (82). The interference wheel (82) is located above the adjusting rod (71). Above the sliding plate (34), there is an inclined guide frame (83) that is used in cooperation with the interference wheel (82). The bottom of the inclined guide frame (83) is fixedly connected to the top of the sliding plate (34). When the connecting telescopic plate (511) deflects with one of the connecting columns (512) in the arc-shaped bayonet (36), it can drive the control frame (525) to slide along the first auxiliary slide rail (524) through the cooperation of the provided interference wheel (82) and the inclined guide frame (83).

5. A method for using a construction device of a photovoltaic support, using a construction device of a photovoltaic support as described in claim 4, characterized in that, It includes the following steps: S1: First, the operator rotates the control adjustment knob (72) to drive the adjusting rod (71) to extend and retract the connecting telescopic plate (511), thereby adjusting the initial distance between the two drilling machines (6) to correspond to the short side distance of the required mounting bracket, determining the drilling position on one side of the bottom of the bracket, so as to facilitate the opening of two bottom holes by the drilling machines (6). Then, by operating the control knob (41), the driving threaded rod (38) is rotated, so that the matching block (37) moves along the direction of the sliding rod (40), and the sliding plate (34) moves synchronously, thereby adjusting the length of the telescopic track (35) according to the long side distance of the bracket; S2: During the process of the control knob (41) driving the sliding plate (34) to move, the inclined guide frame (83) is synchronously driven to move to complete positioning. After the opening of the two bottom holes on the short side of the bracket is completed, the driving motor (25) is then controlled to work, thereby driving one of the first transmission members (22) to rotate. Through the arranged first transmission belt (24), the other first transmission member (22) is driven to rotate synchronously. Under the action of the first jaw (27), the sliding bracket (26) is driven to move along the direction of the mating slide rail (28), causing the mating slide rail (28) to move synchronously. Through the cooperation with the clamping shaft (514), the connecting telescopic plate (511) is driven to rotate with the connecting column (512) currently clamped in the arc-shaped bayonet (36) as the axis, thereby driving the two drilling machines (6) to deflect 90 degrees towards the mounting frame (33) synchronously. During the deflection process, through the cooperation of the abutting wheel (82) and the inclined guide frame (83), the control frame (525) is driven to move along the first auxiliary slide rail (524). During the movement process, through the cooperation of the second jaw (528) and the second transmission belt (527), under the action of the second transmission member (526), the connecting frame (530) is driven to slide along the second auxiliary slide rail (529) through the auxiliary jaw (531), thereby driving the second drilling frame to slide away from the first drilling frame on the top of the connecting telescopic plate (511), and then adjusting the distance between the two drilling machines (6) to make the distance between the two drilling machines (6) change according to the preset distance. Under the action of the driving motor (25), the connecting column (512) on one side of the connecting telescopic plate (511) is moved away from the arc-shaped bayonet (36), and the connecting column (512) on the other side is embedded into another arc-shaped bayonet (36), thereby positioning the position of the third corner point and completing the opening of the third corner point; S3: Subsequently, continue to control the driving motor (25) to work, so that the connecting telescopic plate (511) deflects 90 degrees with the connecting column (512) currently embedded in the arc-shaped bayonet (36) on the other side as the axis, causing the connecting telescopic plate (511) to drive the drilling machine (6) on the second drilling frame (522) to be positioned at the fourth corner point for opening.

Citation Information

Patent Citations

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