A mobile photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform

By using a mobile intelligent manufacturing platform for riveting and assembling photovoltaic steel and aluminum structures, and employing riveting technology and intelligent manufacturing techniques, the problems of thermal deformation and low efficiency in steel structure connections have been solved, achieving efficient and intelligent assembly and transportation optimization.

CN117046992BActive Publication Date: 2026-04-10EPRESS SYST (SHENZHEN) LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-08
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

In existing steel structure connection methods, welding processes suffer from problems such as thermal deformation, large tolerances, and corrosion, while bolt connections are inefficient and difficult to align with drilled holes, resulting in low assembly efficiency.

Method used

A mobile intelligent manufacturing platform for riveting and assembling photovoltaic steel and aluminum structures is adopted. It combines robotic automatic riveting equipment and manual riveting equipment to assemble steel structures through riveting processes. The platform utilizes robotic automatic riveting equipment and manual riveting equipment for efficient riveting, and combines online quality monitoring and remote operation and maintenance systems to achieve intelligent manufacturing.

Benefits of technology

It improves assembly quality and efficiency, avoids thermal deformation and tolerance issues, reduces transportation costs, and enables flexible processing and intelligent manufacturing.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application belongs to the field of steel structure assembly equipment, especially a mobile photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform. The existing methods are usually welding process or bolt connection, but the welding process may cause thermal deformation, large tolerance, corrosion prevention and other problems, and the bolt connection may cause punching, low assembly efficiency or hole diameter alignment problems. The present application proposes the following scheme, which includes a robot automatic rivet locking device, a manual rivet locking device, a workbench, a cantilever crane system, a protection system, a production line base, a tooling base, and a steel structure using rivet locking process assembly. Compared with welding process and traditional bolt connection, the rivet locking process has advanced technology advantages, improves assembly quality and assembly efficiency, and realizes intelligent manufacturing through the combination of online quality monitoring and quality data traceability management system and robot riveting workstation through the remote operation and maintenance system. The fault diagnosis and equipment life management data can be stored on the remote server.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of steel structure assembly equipment, and particularly relates to a mobile photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform. BACKGROUND

[0002] Steel structure has the characteristics of high strength, good plasticity, good overall rigidity and good dynamic load bearing, and becomes the main structure of modern light steel structure building and new energy photovoltaic steel structure support. Whether it is a light steel structure building or a new energy photovoltaic steel structure support, due to the limitation of outdoor construction, even if the modern steel structure assembly can be highly mechanized and specialized, high transportation costs will be generated from the factory to the project construction site.

[0003] The prior art has the following problems:

[0004] At present, the connection mode for steel structure is usually welding process or bolt connection mode, but the welding process may cause thermal deformation, large tolerance, corrosion and other problems, and the bolt connection may cause problems such as punching, low assembly efficiency or hole diameter alignment. SUMMARY

[0005] The purpose of the present application is to solve the problems in the prior art that the connection mode for steel structure is usually welding process or bolt connection mode, but the welding process may cause thermal deformation, large tolerance, corrosion and other problems, and the bolt connection may cause problems such as punching, low assembly efficiency or hole diameter alignment.

[0006] In order to achieve the above purpose, the present application adopts the following technical scheme:

[0007] A mobile photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform, comprising a robot automatic rivet locking device, a manual rivet locking device, a workbench, a cantilever crane system, a protection system, a production line base, a tooling base, a gantry, a robot electric cabinet, a control electric cabinet and a hydraulic station, the robot automatic rivet locking device is fixedly arranged on the production line base, the manual rivet locking device is hung on the gantry, the cantilever crane system is fixedly arranged at the center position of the production line base, the workbench is fixedly arranged on the tooling base, the tooling base is fixed on both sides of the production line base, the production line base comprises a locking mechanism and a tooling telescopic mechanism, and the tooling base and the production line base are bolted through the locking mechanism and the tooling telescopic mechanism.

[0008] In a possible design, the robot automatic riveting device comprises a robot, a robot base, an automatic riveting unit, and a first power device, the first power device is installed on the automatic riveting unit, the automatic riveting unit is installed on the robot through a connecting flange, the robot is fixedly arranged on the robot base, the robot base is fixedly arranged on a production line base, and the workbench is symmetrically arranged with the robot.

[0009] In a possible design, the manual riveting device comprises a manual riveting unit, a second power device, and a handle starting switch, the second power device is installed on the manual riveting unit, and the manual riveting device is hung on the beam of the gantry through a balancer.

[0010] In a possible design, the workbench comprises a workbench frame, a clamping device, an error-proofing device, an electric rotary table, and a foot switch, the clamping device comprises a clamping cylinder, the error-proofing device comprises a proximity sensor, the clamping device is installed on the beam of the workbench frame, the error-proofing device is installed in the diagonal brace of the workbench frame, the electric rotary table is installed at two ends of the workbench frame and is fixed with the tool base, and the foot switch is connected with a controller in signal and is used for controlling the turnover workbench and the steel structure workpiece.

[0011] In a possible design, the cantilever crane system comprises a cantilever crane, an electric hoist, and a pushing cylinder, the cantilever crane is fixedly arranged at the center position of the production line base, the electric hoist is installed at two ends of the cantilever crane, and the pushing cylinder is installed at the center position of the upper end of the cantilever crane.

[0012] In a possible design, the gantry comprises a gantry telescopic oil cylinder, the gantry telescopic oil cylinder is installed on the main body frame at two sides of the gantry, and the main body frame at two sides of the gantry is fixedly arranged at two ends of the production line base.

[0013] In a possible design, the protection system comprises a safety grating and a safety protection net, the safety protection net is slidingly installed at two ends of the production line base and is flush with the gantry, and the safety grating is vertically installed on the side frames at two sides of the safety protection net.

[0014] In a possible design, the control cabinet is arranged adjacent to a robot cabinet, the control cabinet is provided with a human-computer interaction operation screen, and the hydraulic station and the control cabinet are fixedly arranged at two ends of the production line base and are located at the outer sides of the gantry.

[0015] In a possible design, the production line base (6) is arranged on a movable platform, and a container box cover is arranged above the movable photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform. Specifically, the movable platform is a transport vehicle.

[0016] In this application, first, the mobile steel structure lock riveting assembly intelligent manufacturing platform is installed in place, the "installation mode" is clicked on the man-machine interaction interface, and the workbench, the production line base, the tooling base, and the cantilever crane system are automatically unfolded and fixed under the automatic "installation mode"; then outside the production line, the steel structure frame is pre-assembled manually; under the assistance of the electric hoist, the assembled steel structure frame and the workpiece are preloaded into the workbench left side frame by manual, the flange bolt of the steel structure frame is locked by manual, the clamping device automatically clamps the steel structure workpiece, the worker leaves the workbench left side area, turns to the workbench right side area to perform the same operation; the left and right areas of the robot automatic lock riveting equipment perform automatic riveting on the steel structure workpiece on the left side of the workbench, after single-sided riveting is completed, the foot switch is started, the left and right sides of the workbench and the steel structure workpiece are automatically turned over by 180°, the left and right areas of the robot automatic lock riveting equipment perform automatic riveting on the other side of the steel structure workpiece; at the same time, the worker locks the flange bolt on the right side of the workbench, and the right side of the workbench automatically clamps the steel structure workpiece; when the left and right areas of the robot automatic lock riveting equipment perform automatic riveting on the right side of the workbench, the worker starts all the air cylinders of the clamping device to loosen, and under the assistance of the electric hoist, the steel structure workpiece on the left side of the workbench is unloaded and a new workpiece to be riveted is loaded or the worker places a manual forklift or a gasoline forklift below the tooling frame, the workpiece falls on the forklift and moves away, and then the left side of the workbench returns to the original state; the worker moves back and forth between the left and right areas of the workbench to perform manual operation, and the robot automatic lock riveting equipment in the left and right areas also performs cyclic riveting on the steel structure workpiece preloaded in the left and right areas of the workbench, and after production is completed, the "loading mode" is clicked on the interface of the man-machine interaction operation screen, and the workbench, the production line base, the tooling base, and the cantilever crane system are automatically retracted and loaded into the truck under the "loading mode".

[0017] The manual artificial mode unfolds and retracts the mobile steel structure lock riveting assembly intelligent manufacturing platform, and the installation steps are as follows:

[0018] S1, the pin shaft of the locking mechanism for locking the production line base and the tooling base is manually disassembled, the workbench and the tooling base are reset to the production state under the assistance of the forklift by using the chain hoist to hook the hanging points on the two sides of the workbench and the tooling base and the cantilever crane column, the pin shaft of the locking mechanism is re-tightened to lock the production line base and the tooling base; the safety protection net is manually pulled open and fixed in place, the cantilever crane is rotated 90° and installed and fixed perpendicularly to the production line base under the assistance of the crane, and the unfolding installation state of the mobile steel structure lock riveting assembly intelligent manufacturing platform under the manual mode is completed.

[0019] S2, the safety fence is manually pushed back and fixed, the pin shaft of the locking mechanism of the locking production line base and the tooling base is manually disassembled, the two side workbenches and the tooling base are hooked by the zipper cable, the hanging points on the upper column of the cantilever crane are used, the forklift is used to assist the workbench and the tooling base to be vertically turned over 90 degrees to the inside; the cantilever crane is rotated 90 degrees to be parallel to the production line base under the assistance of the overhead crane and is fixed. The movable steel structure locking assembly intelligent manufacturing platform in the manual mode is completed in the contracted state.

[0020] In the application, the movable photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform is flexible and mobile on the vehicle, is suitable for project type working scenes such as fabricated light steel structure buildings and new energy photovoltaic steel structure supports, and reduces factory production and transportation costs and transportation time.

[0021] In the application, the movable photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform is assembled by using the steel structure riveting process, compared with the welding process and the traditional bolt connection, has the advantages of advanced process technology, can avoid problems such as thermal deformation, large tolerance and corrosion, and effectively prevents problems such as punching, low assembly efficiency or hole diameter alignment, and improves assembly quality and assembly efficiency.

[0022] In the application, the movable photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform is combined with the online quality monitoring and quality data traceability management system and the robot riveting workstation through the intelligent manufacturing platform, and intelligent manufacturing is realized.

[0023] In the application, the movable photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform can store fault diagnosis and equipment life management data on a remote server through the remote operation and maintenance system.

[0024] In the application, the structure is reasonable, the steel structure is assembled by using the riveting process, compared with the welding process and the traditional bolt connection, has the advantages of advanced process technology, improves assembly quality and assembly efficiency, is combined with the online quality monitoring and quality data traceability management system and the robot riveting workstation through the intelligent manufacturing platform, realizes intelligent manufacturing, and can store fault diagnosis and equipment life management data on a remote server through the remote operation and maintenance system. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 FIG. 1 is an expanded state front view structural schematic diagram of a movable photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform according to the application;

[0026] Figure 2 FIG. 2 is an expanded state top view structural schematic diagram of the movable photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform according to the application;

[0027] Figure 3A left view structural schematic diagram of an unfolded state of a mobile photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform is provided in the present application.

[0028] Figure 4 A structural schematic diagram of a contraction state of a mobile photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform is provided in the present application.

[0029] Figure 5 A front view structural schematic diagram of a workbench of a mobile photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform is provided in the present application.

[0030] Figure 6 A top view structural schematic diagram of a workbench of a mobile photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform is provided in the present application.

[0031] In the figure: 1, a robot automatic riveting equipment; 101, a robot; 102, a robot base; 13, an automatic riveting unit; 14, a first power device; 2, a manual riveting equipment; 21, a manual riveting unit; 22, a second power device; 23, a handle starting switch; 3, a workbench; 31, a work station frame; 32, a clamping device; 33, a mistake-proofing device; 34, an electric rotary table; 35, a foot switch; 321, a clamping cylinder; 331, a proximity sensor; 4, a cantilever crane system; 41, a cantilever crane; 42, an electric hoist; 43, a pushing cylinder; 5, a protection system; 51, a safety grating; 52, a safety protection net; 6, a production line base; 61, a locking mechanism; 62, a tool telescopic mechanism; 7, a tool base; 8, a gantry frame; 81, a gantry telescopic oil cylinder; 9, a container box cover; 10, a robot electric cabinet; 11, a control electric cabinet; 111, a human-computer interaction; 12, a hydraulic station. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application.

[0033] Embodiment one

[0034] Reference Figures 1-6The application relates to a mobile photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform which is applied to the field of steel structure assembly equipment and comprises a robot automatic riveting equipment 1, a manual riveting equipment 2, a workbench 3, a cantilever crane system 4, a protection system 5, a production line base 6, a tool base 7, a gantry 8, a robot electric cabinet 10, a control electric cabinet 11 and a hydraulic station 12, the robot automatic riveting equipment 1 is fixedly arranged on the production line base 6, the manual riveting equipment 2 is hung on the gantry 8, the cantilever crane system 4 is fixedly arranged at the center position of the production line base 6, the workbench 3 is fixedly arranged on the tool base 7, the tool base 7 is fixed to the two sides of the production line base 6, the production line base 6 comprises locking mechanisms 61 and tool telescopic mechanisms 62, and the tool base 7 is screw-connected with the production line base 6 through the locking mechanisms 61 and the tool telescopic mechanisms 62.

[0035] The steel structure adopts the riveting process assembly, has the advantages of advanced process technology compared with the welding process and the traditional bolt connection, improves the assembly quality and the assembly efficiency, realizes intelligent manufacturing through the intelligent manufacturing platform, the online quality monitoring and the quality data tracing management system and the robot riveting workstation, realizes intelligent manufacturing, and through the remote operation and maintenance system, fault diagnosis and equipment life management data can be stored on a remote server, wherein the robot automatic riveting equipment 1 and the manual riveting equipment 2 can be installed with the online riveting quality monitoring and quality tracing management system and are used for steel structure workpiece connection point quality detection.

[0036] With reference to Figure 1 The robot automatic riveting equipment 1 comprises a robot 101, a robot base 102, an automatic riveting unit 13 and a first power device 14, the first power device 14 is installed on the automatic riveting unit 13, the automatic riveting unit 13 is installed on the robot 101 through a connecting flange, the robot 101 is fixedly arranged on the robot base 102, the robot base 102 is fixedly arranged on the production line base 6, and the workbench 3 is symmetrically arranged with the robot 101.

[0037] The robot automatic riveting equipment 1 can automatically rivet the steel structure workpieces of the workbench 3.

[0038] With reference to Figure 1 The manual riveting equipment 2 comprises a manual riveting unit 21, a second power device 22 and a handle starting switch 23, the second power device 22 is installed on the manual riveting unit 21, and the manual riveting equipment 2 is hung on the crossbeam of the gantry 8 through a balancer. Through the above structure, the riveting equipment can be moved for riveting assembly.

[0039] The manual riveting device 2 can perform artificial riveting operation when the robot automatic riveting device 1 cannot work due to failure, without affecting normal production, wherein the handle starting switch 23 in the manual riveting device 2 can also be controlled by a foot switch, the manual riveting device 2 is used as a backup and hung on the gantry 8, and when the robot automatic riveting device 1 cannot work due to failure, the manual riveting device 2 can perform artificial riveting operation, without affecting normal production, the first power device 14 and the second power device 22 are both oil cylinders, and can also be servo cylinders or gas-liquid booster cylinders.

[0040] With reference to Figure 5 and Figure 6 , the workbench 3 includes a work station frame 31, a clamping device 32, a mistake-proofing device 33, an electric turntable 34 and a foot switch 35, the clamping device 32 includes a clamping cylinder 321, the mistake-proofing device 33 includes a proximity sensor 331, the clamping device 32 is installed on the crossbeam of the work station frame 31, the mistake-proofing device 33 is installed in the diagonal brace of the work station frame 31, the electric turntable 34 is installed at both ends of the work station frame 31 and fixed with the tooling base 7, and the foot switch 35 is connected with a controller signal and used for controlling the overturning of the workbench 3 and the steel structure workpiece.

[0041] The above technical solution starts the foot switch 35, automatically overturns the workbench 3 left side and the steel structure workpiece by 180°, and the robot automatic riveting device 1 on the left side and the right side area automatically rivets the other face of the steel structure workpiece; at the same time, the worker locks the flange bolt on the right side of the workbench 3, and the right side of the workbench 3 automatically clamps the steel structure workpiece, wherein the electric turntable 34 is driven by a servo motor, and can also be driven by a hydraulic drive or a cylinder drive.

[0042] With reference to Figure 1 and Figure 3 , the cantilever crane system 4 includes a cantilever crane 41, an electric hoist 42 and a push cylinder 43, the cantilever crane 41 is fixedly arranged at the center position of the production line base 6, the electric hoist 42 is installed at both ends of the cantilever crane 41, and the push cylinder 43 is installed at the center position of the upper end of the cantilever crane 41.

[0043] The technical scheme is characterized in that the pin shaft of the locking mechanism 61 of the locking production line base 6 and the tooling base 7 is manually disassembled, the two side workbenches 3 and the tooling base 7 are hooked by the zipper cable hoist, the hanging points on the upper part of the cantilever crane 41 stand are used, the workbenches 3 and the tooling base 7 are reset to the production state with the assistance of the forklift, the pin shaft of the locking mechanism 61 is fastened again, the locking production line base 6 and the tooling base 7 are locked, the safety protection net 52 is manually pulled open and fixed, the cantilever crane 41 is rotated 90° and is perpendicular to the production line base 6 under the assistance of the overhead crane, and the cantilever crane 41 is installed and fixed, the movable steel structure lock riveting assembly intelligent manufacturing platform is expanded and installed in the manual mode, the push cylinder 43 is used to conveniently assist the manual rotation of the cantilever crane 41 by 90° when the movable steel structure lock riveting assembly intelligent manufacturing platform is retracted, manpower is saved, and the cantilever crane system 4 can also be manually rotated by 90°.

[0044] With reference to Figure 1 and Figure 2 , the gantry 8 comprises a gantry telescopic oil cylinder 81, the gantry telescopic oil cylinder 81 is installed on the main body frames on the two sides of the gantry 8, and the main body frames on the two sides of the gantry 8 are fixedly arranged at the two ends of the production line base 6.

[0045] The technical scheme can facilitate the installation of mechanical equipment and the manufacturing of workpieces through the gantry 8 and the gantry telescopic oil cylinder 81.

[0046] With reference to Figure 3 , the protection system 5 comprises a safety grating 51 and a safety protection net 52, the safety protection net 52 is slidably installed at the two ends of the production line base 6 and is flush with the gantry 8, and the safety grating 51 is vertically installed on the two side frames of the safety protection net 52.

[0047] The technical scheme can improve safety through the protection of the protection system 5.

[0048] Embodiment two

[0049] With reference to Figures 1-6 , the embodiment one is improved:

[0050] With reference to Figure 1 , the control electric cabinet 11 is arranged adjacent to the robot electric cabinet 10, the control electric cabinet 11 is provided with a man-machine interactive operation screen 111, the hydraulic station 12 and the control electric cabinet 11 are fixedly arranged at the two ends of the production line base 6 and are located on the outer side of the gantry 8.

[0051] The technical scheme is characterized in that the control cabinet 11 is arranged to control the whole device, the interface of the man-machine interaction 111 is clicked to confirm the "installation mode", the tool telescopic mechanism 62 is automatically operated, the two side workbenches 3 are automatically driven to extend, the locking mechanism 61 locks the tool base 7 and the production line base 6, the interface of the man-machine interaction 111 is clicked to confirm the "loading mode", the tool telescopic mechanism 62 is automatically operated, the two side workbenches 3 are folded and contracted, the internal safety pin of the tool telescopic mechanism 62 is automatically locked, the device is hoisted on the flatbed trailer by using a crane or a hoist, the container box cover 9 is hoisted on the production line base 6 to be fixed, the "loading mode" and the "installation mode" can be replaced by manual installation or disassembly and contraction, the man-machine interaction 111 can realize a remote operation and maintenance system, can store fault diagnosis and equipment life management data on a remote server, and the mobile photovoltaic steel-aluminum structure riveting and assembling intelligent manufacturing platform is suitable for an assembled light steel structure building, a photovoltaic / photothermal power station support / steel-aluminum structure application and expansion project working scene.

[0052] The mobile platform is a transport vehicle. In the embodiment, when it is needed to move and replace a place, the production line base 6 is arranged on the mobile platform, for example, the whole manufacturing platform is placed on a semitrailer to move, when a project place needs to be moved to another project place, the whole platform is contracted into the "loading mode" by using the above mode, that is, the tool base 7 is turned inwards by 90 degrees to be collected and then is loaded into the container of the transport vehicle, the container box cover 9 is covered, and the mobile whole replacement place is entered.

[0053] The above is only a preferred embodiment of the application, but the protection scope of the application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the application within the technical range disclosed by the application, which should be covered in the protection scope of the application.

Claims

1. A mobile photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform, characterized in that, The device comprises a robot automatic lock riveting device (1), a manual lock riveting device (2), a workbench (3), a cantilever crane system (4), a protection system (5), a production line base (6), a tool base (7), a gantry (8), a robot electric cabinet (10), a control electric cabinet (11) and a hydraulic station (12), the robot automatic lock riveting device (1) is fixedly arranged on the production line base (6), the manual lock riveting device (2) is hung on the gantry (8), the cantilever crane system (4) is fixedly arranged at the center position of the production line base (6), the workbench (3) is fixedly arranged on the tool base (7), the tool base (7) is fixed on the two sides of the production line base (6), the production line base (6) comprises a locking mechanism (61) and a tool telescopic mechanism (62), and the tool base (7) and the production line base (6) are bolted through the locking mechanism (61) and the tool telescopic mechanism (62). The robot automatic lock riveting device (1) comprises a robot (101), a robot base (102), an automatic lock riveting unit (13) and a first power device (14), the first power device (14) is installed on the automatic lock riveting unit (13), the automatic lock riveting unit (13) is installed on the robot (101) through a connecting flange, the robot (101) is fixedly arranged on the robot base (102), the robot base (102) is fixedly arranged on the production line base (6), and the workbench (3) is symmetrically arranged with the robot (101). The workbench (3) comprises a work station frame (31), a clamping device (32), an error-proof device (33), an electric turntable (34) and a foot switch (35), the clamping device (32) comprises a clamping cylinder (321), the error-proof device (33) comprises a proximity sensor (331), the clamping device (32) is installed on the crossbeam of the work station frame (31), the error-proof device (33) is installed in the inclined brace of the work station frame (31), the electric turntable (34) is installed at the two ends of the work station frame (31) and is fixed with the tool base (7), and the foot switch (35) is connected with a controller signal and is used for controlling the overturning workbench (3) and the steel structure workpiece. The cantilever crane system (4) comprises a cantilever crane (41), an electric hoist (42) and a push cylinder (43), the cantilever crane (41) is fixedly arranged at the center position of the production line base (6), the electric hoist (42) is installed at the two ends of the cantilever crane (41), and the push cylinder (43) is installed at the center position of the upper end of the cantilever crane (41).

2. The riveting assembly intelligent manufacturing platform of the mobile photovoltaic steel-aluminum structure according to claim 1, characterized in that, The manual lock riveting device (2) comprises a manual lock riveting unit (21), a second power device (22) and a handle starting switch (23), the second power device (22) is installed on the manual lock riveting unit (21), and the manual lock riveting device (2) is hung on the crossbeam of the gantry (8) through a balancer.

3. The riveting assembly intelligent manufacturing platform of the mobile photovoltaic steel-aluminum structure according to claim 1, characterized in that, The gantry (8) comprises a telescopic oil cylinder (81) mounted on the main body frames on both sides of the gantry (8), and the main body frames on both sides of the gantry (8) are fixedly arranged at the two ends of the production line base (6).

4. The riveting assembly intelligent manufacturing platform of the mobile photovoltaic steel-aluminum structure according to claim 1, characterized in that, The protection system (5) comprises a safety grating (51) and a safety fence (52), the safety fence (52) is slidingly arranged at the two ends of the production line base (6) and is flush with the gantry (8), and the safety grating (51) is vertically arranged on the two side frames of the safety fence (52).

5. The riveting assembly intelligent manufacturing platform of the mobile photovoltaic steel-aluminum structure according to claim 1, characterized in that, The control cabinet (11) is arranged adjacent to the robot cabinet (10), the control cabinet (11) is provided with a man-machine interaction operation screen (111), and the hydraulic station (12) and the control cabinet (11) are fixedly arranged at the two ends of the production line base (6) and are located outside the gantry (8).

6. The riveting assembly intelligent manufacturing platform of a mobile photovoltaic steel-aluminum structure according to claim 1, characterized in that, Further comprising a container box cover (9) and a movable platform, the production line base (6) is arranged on the movable platform, and the container box cover (9) covers the movable photovoltaic steel-aluminum structure riveting assembly intelligent manufacturing platform.

7. The riveting assembly intelligent manufacturing platform of a mobile photovoltaic steel-aluminum structure according to claim 6, characterized in that, The movable platform is a transport vehicle.

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