New energy electric power construction auxiliary device

By designing a new energy power construction auxiliary device including installation frames and adjustment components, using bidirectional screws and vacuum adsorption technology, the problems of low installation efficiency and waste of manpower in photovoltaic power station construction are solved, and efficient and accurate photovoltaic panel installation is achieved.

CN120110282APending Publication Date: 2025-06-06KAIFENG POWER SUPPLY COMPANY STATE GRID HENAN ELECTRIC POWER
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Patent Information

Application Number
CN202510337660.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

In the construction of existing photovoltaic power stations, the installation of photovoltaic modules requires cooperation among multiple people, resulting in waste of manpower and low installation efficiency. Construction personnel need to manually support photovoltaic panels for installation, increasing the impact of operation difficulty and accuracy.

Method used

A new energy power construction auxiliary device is designed, including a mounting frame and an adjustment component, and a two-way screw is used to drive the symmetrical movement of the moving block, and the linkage design of the clamping component and the extrusion component is combined to realize stepless adjustment of the front and rear spacing of the suction cup. Vacuum adsorption technology is adopted to achieve stable grasping of photovoltaic panels through the synergy between the pump and the suction cup, and reduce manpower consumption.

Benefits of technology

The device can quickly adjust the suction cup spacing, adapt to photovoltaic panels of different specifications, significantly improve the device versatility, reduce manpower consumption, improve installation efficiency, and simplify the disassembly process through intelligent control.

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Abstract

The invention discloses a new energy electric power construction auxiliary device, and relates to the technical field of new energy electric power construction, and the new energy electric power construction auxiliary device comprises a mounting frame and an adjusting assembly; a storage battery and a control switch group are mounted on the front side of the mounting frame, two corresponding moving blocks are slidably connected to the interior of the mounting frame, first threaded holes are formed in the middles of the moving blocks, threads of the two first threaded holes are opposite, two-way screws are in threaded connection with the interiors of the two first threaded holes, a rotating hole is formed in the middle of the mounting frame, and the two-way screws are in threaded connection with the interiors of the rotating holes. The two-way screw is rotationally connected into the rotating hole, two corresponding rotating discs are fixed to the left end and the right end of the two-way screw, an air exhaust assembly is installed on the front side of the mounting frame, two corresponding adsorption assemblies are installed at the left end and the right end of the air exhaust assembly, and air injection assemblies are installed on the surfaces of the adsorption assemblies. Labor can be saved during installation, and meanwhile, the device can be suitable for photovoltaic panels of different specifications.
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Description

Technical Field

[0001] The present invention relates to the technical field of new energy power construction, and in particular to a new energy power construction auxiliary device. Background Art

[0002] With the rapid advancement of new energy power construction, photovoltaic power station construction is developing in the direction of scale and intelligence. In the traditional photovoltaic module installation process, construction workers need to manually carry and fix photovoltaic modules, which usually requires the cooperation of multiple people. Specifically, the installers must continue to manually support the photovoltaic panels to ensure their accurate position and then perform fixed operations. This mode not only relies on a large amount of manpower, but also requires construction workers to have high operating skills to ensure the installation accuracy and stability of the modules. However, this method has problems during construction. Firstly, the installation of photovoltaic modules requires the collaboration of multiple people, which results in a serious waste of manpower and makes it difficult for the installation efficiency to meet the rapidly growing installation demand. Secondly, during the installation process, the construction workers must support the photovoltaic panels with one hand and perform fixed operations with the other hand, which not only increases the difficulty of operation, but also easily affects the accuracy and effect of the installation. Therefore, we propose a new energy power construction auxiliary device. Summary of the invention

[0003] The technical problem to be solved by the present invention is to overcome the existing defects and provide a new energy power construction auxiliary device, which can save manpower during installation and can be applicable to photovoltaic panels of different specifications, and can effectively solve the problems in the background technology.

[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a new energy power construction auxiliary device, including a mounting frame and an adjustment component; Installation frame: a battery and a control switch group are installed on the front side, two corresponding moving blocks are slidably connected inside the installation frame, a first threaded hole is opened in the middle of the moving block, the threads of the two first threaded holes are opposite, and a bidirectional screw is connected to the internal threads of the two first threaded holes, a rotating hole is opened in the middle of the installation frame, and the bidirectional screw is rotatably connected inside the rotating hole, and two corresponding rotating disks are fixed on the left and right ends of the bidirectional screw, an exhaust assembly is installed on the front side of the installation frame, and two corresponding adsorption assemblies are installed on the left and right ends of the exhaust assembly, and an injection assembly is installed on the surface of the adsorption assembly, a connecting assembly is installed on the front side of the installation frame, and a fastening assembly is installed on the lower side of the connecting assembly; Adjustment component: comprises a connecting frame, a slide groove, a slider, a guide wheel, a connecting rod and a clamping hole, a connecting frame is fixed on the lower side of the moving block, two corresponding slide grooves are provided on the left and right sides of the connecting frame, a slider is slidably connected to the inside of the connecting frame, four corresponding guide wheels are rotatably connected to the left and right sides of the slider, and the four guide wheels are respectively fixed to the inside of the two slide grooves, a guide hole is provided on the rear side of the connecting frame, a connecting rod is slidably connected to the inside of the guide hole, the connecting rod is fixed to the rear side of the slider, and uniformly distributed clamping holes are provided on the left and right sides of the connecting frame, a clamping component is installed on the surface of the connecting frame, an extrusion component is installed on the upper side of the clamping component, the clamping component cooperates with the extrusion component, the connecting frame is connected to the adsorption component, and the front and rear spacing of the four suction cups is adjusted by setting the adjustment component; Wherein: the input end of the control switch group is electrically connected to the output end of the battery.

[0005] Furthermore, the adsorption assembly includes a connecting block, a suction cup and a connecting tube. Two corresponding connecting blocks are arranged on the front and rear sides of the connecting frame. The rear connecting block is fixed to the front side of the connecting frame, and the rear connecting block is fixed to the rear end of the corresponding connecting rod. A mounting hole is opened in the middle of the connecting block, and a suction cup is fixed inside the mounting hole. Two adjacent suction cups are connected by a connecting tube, and the photovoltaic panel is adsorbed by setting the adsorption assembly.

[0006] Furthermore, the vacuum assembly includes a vacuum pump, a vacuum pipe and a connecting hose. The vacuum pump is installed on the front side of the mounting frame. The vacuum pipe is fixed inside the air outlet of the vacuum pump. The connecting hose is fixed to the rear end of the vacuum pipe. The two connecting pipes are connected by the connecting hose. The vacuum pipe, the connecting hose and the two connecting pipes are communicated with each other. The input end of the vacuum pump is electrically connected to the output end of the control switch group. The air in the suction cup is extracted by setting the vacuum assembly.

[0007] Furthermore, the gas injection assembly includes a gas injection pipe and a solenoid valve. An exhaust port is opened on the circumferential surface of the connecting pipe, and a gas injection pipe is fixed inside the exhaust port. A solenoid valve is installed on the circumferential surface of the gas injection pipe. The input end of the solenoid valve is electrically connected to the output end of the control switch group. The external gas is injected into the interior of the four suction cups by setting the gas injection assembly.

[0008] Furthermore, the clamping assembly includes a fixed frame, a sliding frame, a clamping column, a first spring and a sliding frame, the side of the connecting frame is sleeved with the sliding frame, the sliding frame is fixed on the side of the sliding block, two corresponding fixed frames are fixed on the upper side of the sliding frame, the interior of the fixed frame is slidably connected with the sliding frame, two corresponding connecting holes are provided on the left and right sides of the sliding frame, the interior of the connecting hole is slidably connected with a clamping column, the clamping column is clamped in the interior of the corresponding clamping hole, the clamping column is fixed on the side of the corresponding sliding frame, two corresponding first springs are fixed on the upper side of the interior of the sliding frame, the other ends of the two first springs are fixed on the side of the corresponding fixed frame, and the sliding block is fixed by setting the clamping assembly.

[0009] Furthermore, the extrusion assembly includes an elliptical disk and a toggle disk. The upper side of the sliding frame is rotatably connected to the elliptical disk, the elliptical disk is located between two sliding frames, and the toggle disk is fixed to the upper end of the elliptical disk. The four sliding frames are extruded by setting the extrusion assembly.

[0010] Furthermore, the connecting assembly includes a connecting frame, a limiting rod, an L-shaped clamping frame, a threaded column and a fixing plate, the connecting frame is fixed on the front side of the mounting frame, the front side of the connecting frame is provided with an L-shaped clamping frame, a mounting hole is opened in the middle of the L-shaped clamping frame, a threaded column is rotatably connected inside the mounting hole, a second threaded hole is opened on the front side of the connecting frame, the threaded column is threadedly connected to the inside of the second threaded hole, two corresponding limiting rods are fixed on the rear side of the L-shaped clamping frame, two corresponding limiting holes are opened on the front side of the connecting frame, the limiting rod is slidably connected to the inside of the limiting hole, a fixing plate is fixed to the front end of the threaded column, and the mounting frame and the photovoltaic component are connected by setting the connecting assembly.

[0011] Furthermore, the fastening assembly includes a threaded shaft, an anti-skid plate and a limit strip. A third threaded hole is provided on the lower side of the L-shaped clip frame. The internal thread of the third threaded hole is connected to the threaded shaft. The upper end of the threaded shaft is rotatably connected to the anti-skid plate. Two corresponding limit grooves are provided on the left and right sides of the L-shaped clip frame. The lower side of the anti-skid plate is fixed with a limit strip. The limit strip is slidably connected to the inside of the limit groove. The L-shaped clip frame is fixed to the frame of the photovoltaic component by setting the fastening assembly.

[0012] Furthermore, a support ring and a second spring are sleeved on the circumferential surface of the threaded column, the front end of the second spring is fixed to the rear end of the support ring, and the rear end of the second spring is fixed to the front side of the L-shaped clamping frame, and the fixed plate is supported by setting the support ring and the second spring.

[0013] Furthermore, an anti-skid ring is fixed on the circumferential surface of the rotating disk, and evenly distributed anti-skid grooves are opened on the circumferential surface of the anti-skid ring. The anti-skid ring is provided to facilitate the user to turn the rotating disk.

[0014] Compared with the prior art, the beneficial effects of the present invention are: the new energy power construction auxiliary device has the following advantages: 1. The symmetrical movement of the moving block driven by the bidirectional screw can realize stepless adjustment of the left and right spacing of the adsorption component; with the linkage design of the clamping component and the extrusion component, the front and rear spacing of the suction cup can be quickly adjusted to effectively adapt to the installation requirements of photovoltaic panels of various sizes, significantly improving the versatility of the device; 2. The vacuum adsorption technology is used to achieve a stable grip of the photovoltaic panel through the synergy of the vacuum pump and the suction cup, and positioning can be completed without manual support, greatly reducing manpower consumption. The intelligent control of the gas injection component can achieve rapid release of the adsorption force and simplify the disassembly process.

[0015] 3. The cooperation between the guide wheel and the slide groove in the adjustment component ensures the smooth movement of the slider. The locking structure of the clamping hole and the clamping column provides multi-gear fixation. Combined with the lever-type squeezing operation of the elliptical plate, the front and rear spacing adjustment is both accurate and convenient.

[0016] 4. The connection assembly uses a composite guide design of threaded columns and limit rods to achieve precise alignment between the installation frame and the photovoltaic bracket; the cooperation of the anti-skid plate and the limit strip further enhances the fastening effect and ensures the structural stability of the device under complex working conditions. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the front structure of the present invention; Figure 2 A is an enlarged view of the present invention; Figure 3 Schematic diagram of the structure of the adjustment component of the present invention; Figure 4 A schematic diagram of the structure of the card assembly of the present invention; Figure 5 A schematic diagram of the structure of the connection assembly of the present invention; Figure 6 It is a schematic diagram of the structure of the adsorption component of the present invention.

[0018] In the figure: 1 mounting frame, 2 adjusting assembly, 21 connecting frame, 22 slide groove, 23 slider, 24 guide wheel, 25 connecting rod, 26 clamping hole, 3 adsorption assembly, 31 connecting block, 32 suction cup, 33 connecting pipe, 4 exhaust assembly, 41 exhaust pump, 42 exhaust pipe, 43 connecting hose, 5 gas injection assembly, 51 gas injection pipe, 52 solenoid valve, 6 clamping assembly, 61 fixed frame, 62 sliding frame, 63 clamping column, 64 first spring, 65 sliding frame, 7 extrusion assembly, 71 elliptical disk, 72 toggle disk, 8 connecting assembly, 81 connecting frame, 82 limit rod, 83 L-type clamping frame, 84 threaded column, 85 fixed disk, 9 fastening assembly, 91 threaded shaft, 92 anti-slip plate, 93 limit strip, 10 support ring, 11 second spring, 12 moving block, 13 bidirectional screw, 14 rotating disk, 15 anti-slip ring, 16 battery, 17 control switch group. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0020] See also Figure 1-6 ,This embodiment provides a technical solution: a new energy power construction auxiliary device, including a mounting frame 1 and an adjustment component 2; Installation frame 1: A battery 16 and a control switch group 17 are installed on the front side, two corresponding moving blocks 12 are slidably connected inside the installation frame 1, a first threaded hole is opened in the middle of the moving block 12, the threads of the two first threaded holes are opposite, and the internal threads of the two first threaded holes are connected with a bidirectional screw 13, a rotating hole is opened in the middle of the installation frame 1, the bidirectional screw 13 is rotatably connected inside the rotating hole, and two corresponding rotating disks 14 are fixed on the left and right ends of the bidirectional screw 13, an exhaust component 4 is installed on the front side of the installation frame 1, two corresponding adsorption components 3 are installed on the left and right ends of the exhaust component 4, and a gas injection component 5 is installed on the surface of the adsorption component 3, a connecting component 8 is installed on the front side of the installation frame 1, and a fastening component 9 is installed on the lower side of the connecting component 8, and the adsorption The component 3 includes a connecting block 31, a suction cup 32 and a connecting pipe 33. Two corresponding connecting blocks 31 are arranged on the front and rear sides of the connecting frame 21. The connecting block 31 on the rear side is fixed to the front side of the connecting frame 21. The connecting block 31 on the rear side is fixed to the rear end of the corresponding connecting rod 25. A mounting hole is opened in the middle of the connecting block 31. A suction cup 32 is fixed inside the mounting hole. Two adjacent suction cups 32 are connected by a connecting pipe 33. The exhaust component 4 includes an exhaust pump 41, an exhaust pipe 42 and a connecting hose 43. The exhaust pump 41 is installed on the front side of the mounting frame 1. The exhaust pipe 42 is fixed inside the air outlet of the exhaust pump 41. The rear end of the exhaust pipe 42 is fixed with a connecting hose 43. The two connecting pipes 33 are connected by the connecting hose 43. The exhaust pipe 42 and the connecting hose 43 are connected. The tube 43 is connected to the two connecting tubes 33, the input end of the air pump 41 is electrically connected to the output end of the control switch group 17, the gas injection component 5 includes a gas injection pipe 51 and a solenoid valve 52, an exhaust port is provided on the circumferential surface of the connecting pipe 33, the gas injection pipe 51 is fixed inside the exhaust port, the solenoid valve 52 is installed on the circumferential surface of the gas injection pipe 51, the input end of the solenoid valve 52 is electrically connected to the output end of the control switch group 17, the connecting component 8 includes a connecting frame 81, a limit rod 82, an L-shaped clamping frame 83, a threaded column 84 and a fixing plate 85, the front side of the mounting frame 1 is fixed with the connecting frame 81, the front side of the connecting frame 81 is provided with an L-shaped clamping frame 83, the middle part of the L-shaped clamping frame 83 is provided with a mounting hole, the inside of the mounting hole is rotatably connected with the threaded column 84, the front side of the connecting frame 81 A second threaded hole is provided, and the threaded column 84 is threadedly connected to the inside of the second threaded hole. Two corresponding limiting rods 82 are fixed to the rear side of the L-shaped clamping frame 83, and two corresponding limiting holes are provided on the front side of the connecting frame 81. The limiting rod 82 is slidably connected to the inside of the limiting hole. A fixing plate 85 is fixed to the front end of the threaded column 84. The fastening assembly 9 includes a threaded shaft 91, an anti-slip plate 92 and a limiting strip 93. A third threaded hole is provided on the lower side of the L-shaped clamping frame 83, and the inner thread of the third threaded hole is connected to the threaded shaft 91. The upper end of the threaded shaft 91 is rotatably connected to the anti-slip plate 92. Two corresponding limiting grooves are provided on the left and right sides of the L-shaped clamping frame 83. The limiting strip 93 is fixed to the lower side of the anti-slip plate 92, and the limiting strip 93 is slidably connected to the inside of the limiting groove.The L-shaped clamping frame 83 is fixed on the frame of the photovoltaic module by setting the fastening component 9, the installation frame 1 is connected to the photovoltaic module by setting the connecting component 8, the external gas is injected into the inside of the four suction cups 32 by setting the gas injection component 5, the air in the suction cups 32 is extracted by setting the exhaust component 4, and the photovoltaic panel is adsorbed by setting the adsorption component 3; Adjustment assembly 2: includes a connection frame 21, a slide groove 22, a slider 23, a guide wheel 24, a connection rod 25 and a clamping hole 26. The connection frame 21 is fixed to the lower side of the moving block 12. Two corresponding slide grooves 22 are provided on the left and right sides of the connection frame 21. The connection frame 21 is slidably connected to the slider 23. The left and right sides of the slider 23 are rotatably connected to four corresponding guide wheels 24. The four guide wheels 24 are respectively fixed to the inside of the two slide grooves 22. A guide hole is provided on the rear side of the connection frame 21. The guide hole is provided on the rear side of the connection frame 21. The inside of the hole is slidably connected with a connecting rod 25, which is fixed to the rear side of the slider 23. The left and right sides of the connecting frame 21 are provided with evenly distributed card holes 26. The surface of the connecting frame 21 is installed with a card assembly 6, and the upper side of the card assembly 6 is installed with an extrusion assembly 7. The card assembly 6 and the extrusion assembly 7 cooperate with each other. The connecting frame 21 is connected to the adsorption assembly 3. The card assembly 6 includes a fixed frame 61, a sliding frame 62, a card column 63, a first spring 64 and a sliding frame 65. The side of the connecting frame 21 is sleeved with a sliding frame 65, the sliding frame 65 is fixed on the side of the slider 23, and two corresponding fixed frames 61 are fixed on the upper side of the sliding frame 65, and the interior of the fixed frame 61 is slidably connected to the sliding frame 62, and two corresponding connecting holes are provided on the left and right sides of the sliding frame 65, and the interior of the connecting hole is slidably connected to the clamping column 63, and the clamping column 63 is clamped in the interior of the corresponding clamping hole 26, and the clamping column 63 is fixed on the side of the corresponding sliding frame 62, and two corresponding first springs 64 are fixed on the upper side of the interior of the sliding frame 62, and the other ends of the two first springs 64 are fixed on the side of the corresponding fixed frame 61, and the extrusion component 7 includes an elliptical disk 71 and a toggle disk 72, and the upper side of the sliding frame 65 is rotatably connected to the elliptical disk 71, and the elliptical disk 71 is located between the two sliding frames 62, and the upper end of the elliptical disk 71 is fixed with a toggle disk 72, and the slider 23 is fixed by setting the clamping component 6, and the four sliding frames 62 are squeezed by setting the extrusion component 7, and the front and rear spacing of the four suction cups 32 is adjusted by setting the adjustment component 2; Wherein: the input end of the control switch group 17 is electrically connected to the output end of the battery 16 .

[0021] Among them: a support ring 10 and a second spring 11 are sleeved on the circumferential surface of the threaded column 84, the front end of the second spring 11 is fixed to the rear end of the support ring 10, and the rear end of the second spring 11 is fixed to the front side of the L-shaped clamping frame 83, and the fixed plate 85 is supported by setting the support ring 10 and the second spring 11.

[0022] Wherein: an anti-skid ring 15 is fixed on the circumferential surface of the rotating disk 14 , and evenly distributed anti-skid grooves are opened on the circumferential surface of the anti-skid ring 15 . The anti-skid ring 15 is provided to facilitate the user to turn the rotating disk 14 .

[0023] The working principle of a new energy power construction auxiliary device provided by the present invention is as follows: the operator rotates the anti-slip ring 15, drives the moving block 12 to move toward each other through the bidirectional screw 13, and drives the connecting frame 21 to adjust the left and right spacing between the four left and right suction cups 32. Then rotate the two elliptical disks 71, and the elliptical disks 71 rotate to squeeze the two adjacent sliding frames 62. After squeezing, the sliding frames 62 move to drive the connected clamping columns 63 to disengage from the corresponding clamping holes 26, and then pull the two sliding frames 65 to move so that the two sliders 23 move. The two sliders 23 move and drive the two connecting rods 25 to move to adjust the front and rear spacing between the front and rear four suction cups 32. After adjustment, the positions of the four suction cups 32 can adapt to the photovoltaic panels that need to be installed, and then reset the two elliptical disks 71. After resetting, reset the four sliding frames 62 and drive the four clamping columns 63 to pass through the four guide holes on the left and right sides of the two sliding frames 65 and clamp them into the corresponding four clamping holes 26 to fix the two sliding frames 65. After fixing, the four suction cups 32 are attached to the surface of the photovoltaic panel, and then the vacuum pump 41 is started to suck the suction through the connecting hose 43. The air pressure inside the disk 32 drops to -80 kPa to adsorb the photovoltaic panel. After adsorption, the threaded column 84 is rotated according to the size of the photovoltaic component frame to adjust the position of the L-shaped clip frame 83. During the adjustment, the support ring 10 will support the fixed disk 85 under the action of the second spring 11 to ensure the stability of the threaded column 84. After adjustment, the L-shaped clip frame 83 is adapted to the frame of the photovoltaic component, and then the L-shaped clip frame 83 is clipped on the bracket of the photovoltaic component. Then, the threaded shaft 91 is tightened to push the anti-slip plate 92 upward to contact the frame of the photovoltaic component to fix the L-shaped clip frame 83. After fixation, it is convenient for construction workers to assemble the photovoltaic panel alone. After assembly, the two solenoid valves 52 are opened to allow external gas to enter the four suction cups 32 through the two gas injection pipes 51, so that the four suction cups 32 are separated from the photovoltaic panel. After separation, the installation can be completed, which is extremely convenient.

[0024] It is worth noting that the control switch group 17 disclosed in the above embodiment is provided with buttons corresponding to the vacuum pump 41 and the solenoid valve 52 one by one. The vacuum pump 41 uses a GAST 0523 oil-free vacuum pump with a vacuum rate of 25L / min. The solenoid valve 52 and the battery 16 can be freely weighted according to actual conditions. The suction cup 32 is made of polyurethane with a Shore hardness of 65A, and can generate an adsorption force of ≥1200N on a standard photovoltaic panel of 1500mm×1000mm.

[0025] The above descriptions are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A new energy power construction auxiliary device, characterized in that: It comprises a mounting frame (1) and an adjustment component (2); Installation frame (1): a storage battery (16) and a control switch group (17) are installed on the front side; two corresponding moving blocks (12) are slidably connected inside the installation frame (1); a first threaded hole is opened in the middle of the moving block (12); the threads of the two first threaded holes are opposite; the internal threads of the two first threaded holes are connected to a bidirectional screw (13); a rotating hole is opened in the middle of the installation frame (1); the bidirectional screw (13) is rotatably connected inside the rotating hole; two corresponding rotating disks (14) are fixed to the left and right ends of the bidirectional screw (13); an exhaust component (4) is installed on the front side of the installation frame (1); two corresponding adsorption components (3) are installed on the left and right ends of the exhaust component (4); a gas injection component (5) is installed on the surface of the adsorption component (3); a connecting component (8) is installed on the front side of the installation frame (1); a fastening component (9) is installed on the lower side of the connecting component (8); The adjustment component (2) comprises a connection frame (21), a slide groove (22), a slider (23), a guide wheel (24), a connection rod (25) and a clamping hole (26). The connection frame (21) is fixed to the lower side of the moving block (12). Two corresponding slide grooves (22) are provided on the left and right sides of the connection frame (21). The connection frame (21) is slidably connected to the slider (23). The left and right sides of the slider (23) are rotatably connected to four corresponding guide wheels (24). The four guide wheels (24) are respectively fixed to the two slide grooves ( The connecting frame (21) is provided with a guide hole at the rear side thereof, a connecting rod (25) is slidably connected to the interior of the guide hole, the connecting rod (25) is fixed to the rear side of the slider (23), evenly distributed clamping holes (26) are provided on the left and right sides of the connecting frame (21), a clamping assembly (6) is installed on the surface of the connecting frame (21), an extrusion assembly (7) is installed on the upper side of the clamping assembly (6), the clamping assembly (6) and the extrusion assembly (7) cooperate with each other, and the connecting frame (21) is connected to the adsorption assembly (3); Wherein: the input end of the control switch group (17) is electrically connected to the output end of the storage battery (16).

2. A new energy power construction auxiliary device according to claim 1, characterized in that: The adsorption assembly (3) comprises a connection block (31), a suction cup (32) and a connection pipe (33); two corresponding connection blocks (31) are arranged on the front and rear sides of the connection frame (21); the rear connection block (31) is fixed to the front side of the connection frame (21); the rear connection block (31) is fixed to the rear end of the corresponding connection rod (25); a mounting hole is opened in the middle of the connection block (31); a suction cup (32) is fixed inside the mounting hole; two adjacent suction cups (32) are connected via a connection pipe (33).

3. A new energy power construction auxiliary device according to claim 2, characterized in that: The vacuum assembly (4) comprises a vacuum pump (41), a vacuum pipe (42) and a connecting hose (43); the vacuum pump (41) is installed on the front side of the mounting frame (1); the vacuum pipe (42) is fixed inside the air outlet of the vacuum pump (41); the connecting hose (43) is fixed at the rear end of the vacuum pipe (42); the two connecting pipes (33) are connected via the connecting hose (43); the vacuum pipe (42), the connecting hose (43) and the two connecting pipes (33) are in communication; the input end of the vacuum pump (41) is electrically connected to the output end of the control switch group (17).

4. A new energy power construction auxiliary device according to claim 2, characterized in that: The gas injection assembly (5) comprises a gas injection pipe (51) and a solenoid valve (52); an exhaust port is provided on the circumferential surface of the connecting pipe (33); a gas injection pipe (51) is fixed inside the exhaust port; a solenoid valve (52) is installed on the circumferential surface of the gas injection pipe (51); an input end of the solenoid valve (52) is electrically connected to an output end of the control switch group (17).

5. A new energy power construction auxiliary device according to claim 1, characterized in that: The clamping assembly (6) comprises a fixed frame (61), a sliding frame (62), a clamping column (63), a first spring (64) and a sliding frame (65). The side surface of the connecting frame (21) is sleeved with the sliding frame (65). The sliding frame (65) is fixed on the side surface of the sliding block (23). Two corresponding fixed frames (61) are fixed on the upper side of the sliding frame (65). The interior of the fixed frame (61) is slidably connected with the sliding frame (62). Two corresponding connecting holes are provided on the left and right sides of the sliding frame (65). The interior of the connecting hole is slidably connected with a clamping column (63). The clamping column (63) is clamped in the interior of the corresponding clamping hole (26). The clamping column (63) is fixed on the side surface of the corresponding sliding frame (62). Two corresponding first springs (64) are fixed on the upper side of the interior of the sliding frame (62). The other ends of the two first springs (64) are fixed on the side surfaces of the corresponding fixed frames (61).

6. A new energy power construction auxiliary device according to claim 5, characterized in that: The extrusion assembly (7) comprises an elliptical disk (71) and a toggle disk (72); the upper side of the slide frame (65) is rotatably connected to the elliptical disk (71); the elliptical disk (71) is located between the two slide frames (62); and the toggle disk (72) is fixed to the upper end of the elliptical disk (71).

7. A new energy power construction auxiliary device according to claim 1, characterized in that: The connection assembly (8) comprises a connection frame (81), a limiting rod (82), an L-shaped clamping frame (83), a threaded column (84) and a fixing plate (85); the connection frame (81) is fixed to the front side of the installation frame (1); the L-shaped clamping frame (83) is arranged on the front side of the connection frame (81); a mounting hole is provided in the middle of the L-shaped clamping frame (83); a threaded column (84) is rotatably connected inside the mounting hole; a second threaded hole is provided on the front side of the connection frame (81); the threaded column (84) is threadedly connected inside the second threaded hole; two corresponding limiting rods (82) are fixed to the rear side of the L-shaped clamping frame (83); two corresponding limiting holes are provided on the front side of the connection frame (81); the limiting rod (82) is slidably connected inside the limiting holes; and a fixing plate (85) is fixed to the front end of the threaded column (84).

8. A new energy power construction auxiliary device according to claim 7, characterized in that: The fastening assembly (9) comprises a threaded shaft (91), an anti-slip plate (92) and a limiting strip (93); a third threaded hole is provided on the lower side of the L-shaped clamping frame (83); the inner thread of the third threaded hole is connected to the threaded shaft (91); the upper end of the threaded shaft (91) is rotatably connected to the anti-slip plate (92); two corresponding limiting grooves are provided on the left and right sides of the L-shaped clamping frame (83); the limiting strip (93) is fixed on the lower side of the anti-slip plate (92); and the limiting strip (93) is slidably connected to the inside of the limiting groove.

9. A new energy power construction auxiliary device according to claim 1, characterized in that: A support ring (10) and a second spring (11) are sleeved on the circumferential surface of the threaded column (84); the front end of the second spring (11) is fixed to the rear end of the support ring (10); and the rear end of the second spring (11) is fixed to the front side of the L-shaped clamping frame (83).

10. A new energy power construction auxiliary device according to claim 1, characterized in that: An anti-skid ring (15) is fixed on the circumferential surface of the rotating disk (14), and evenly distributed anti-skid grooves are provided on the circumferential surface of the anti-skid ring (15).