Device for transferring mountain photovoltaic project material equipment
By designing pallet devices and traction devices for mountain photovoltaic projects, the problems of high labor intensity and long construction cycle in mountain photovoltaic installation construction are solved, safe and efficient photovoltaic panel transportation and installation are achieved, and construction efficiency and photovoltaic panel quality are improved.
Patent Information
- Application Number
- CN202422843447.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-11-21
AI Technical Summary
During the installation and construction of mountain photovoltaics, the labor force of manpower handling of photovoltaic panels and accessories is high, the lifting is difficult, the cost is high and the construction cycle is long.
A device including a pallet device, a traction device and a conveying track is designed, and the conveying track is fixed by supporting a vertical rod assembly, and the photovoltaic panels and accessories are transported to the installation position by using the traction device, combining brakes, braking and backup battery packs to ensure safety and stability.
It reduces labor intensity, ensures the safety and damage-free photovoltaic panels, improves construction efficiency and the quality of photovoltaic panels, and provides a solid foundation for the collection and utilization of clean energy.
Smart Images

Figure CN223279940U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mountain photovoltaic installation and construction, in particular to a device for transporting materials and equipment for mountain photovoltaic projects. Background Art
[0002] During mountain photovoltaic installation and construction, photovoltaic panels and related accessories need to be transported to the corresponding installation location on the mountain. Because the photovoltaic panels and their accessories are located on the mountain, especially on a sloped surface, they are currently transported and hoisted by manpower, which is labor-intensive, difficult to hoist, costly, and has a long construction period. Summary of the Invention
[0003] In order to meet the needs of the above-mentioned prior art, the purpose of this utility model is to provide a device for transporting materials and equipment for mountain photovoltaic projects, which has the characteristics of easy operation, low labor intensity, ensuring the safety and no damage of photovoltaic panels and their accessories, and can be recycled and reused.
[0004] A device for transporting materials and equipment for mountain photovoltaic projects, comprising a pallet device, a traction device, and a conveyor track; a support pole assembly is arranged according to the on-site distribution of mountain photovoltaic materials during construction work; the conveyor track is fixed to the support pole assembly; the traction device is arranged on the conveyor track; the pallet device is arranged at the starting loading end of the conveyor track; and the pallet device is connected to the traction device via a traction plate.
[0005] Furthermore, the traction device includes a tractor, a brake assembly, a brake, a throttle assembly and a backup battery pack; the tractor is provided with a brake assembly at the front end, a brake at the side, and a backup battery pack at the rear end; and the backup battery pack is provided with a throttle assembly.
[0006] Furthermore, the tractor is also provided with a signal controller for controlling the throttle assembly on the backup battery pack; a slot for the traction plate to pass through is provided under the backup battery pack.
[0007] Furthermore, the pallet device includes a pallet, a locking frame and a locking rod; a sliding rib connected to the conveying track is provided at the bottom of the pallet, and a locking frame is provided at the connecting end of the pallet and the traction plate; a group of locking rods are provided on the locking frame.
[0008] Furthermore, the support pole assembly includes a support pole and a connecting bolt; the upper end of the support pole is fixed to the side of the conveying track through the connecting bolt.
[0009] Furthermore, the starting loading end of the conveying track is arranged at an angle, and a clamping limit plate is provided at the part where the starting loading end of the conveying track contacts the ground.
[0010] To sum up: the utility model forms a conveying line by burying a supporting pole assembly at the corresponding photovoltaic panel installation location, installing a conveying track on the supporting pole assembly, and then setting up a traction device and a pallet device on the conveying track. After qualified debugging, the photovoltaic panel is transported to the starting loading end of the conveying track which is convenient for vehicles to transport the photovoltaic panels and their accessories. The photovoltaic panels and their accessories are placed on the pallet device, and then transported to the corresponding photovoltaic panel installation position through the traction device. The photovoltaic panels and their accessories are unloaded separately, and then the corresponding construction personnel install the photovoltaic panels at the same time, which greatly improves the safety of photovoltaic panel transportation and installation, ensures the safety and damage-free of photovoltaic panels, improves work efficiency, ensures the quality of photovoltaic panels, and lays a solid foundation for the collection and utilization of clean energy. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 、 Figure 2 and Figure 3 It is a schematic diagram of the overall structure of the utility model at different angles.
[0012] Among them: tray device 1; slot 2; traction device 3; support pole assembly 4; conveyor track 5; traction plate 6; tray 101; locking frame 102; locking rod 103; brake assembly 301; brake 302; throttle assembly 303; signal controller 304; backup battery pack 305; support rod 401; connecting bolt 402; clamping limit plate 501. DETAILED DESCRIPTION
[0013] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0014] like Figures 1 to 3As shown, a device for transporting materials and equipment for mountain photovoltaic projects includes a pallet device 1, a traction device 3 and a conveying track 5; a support pole assembly 4 is set according to the on-site distribution of mountain photovoltaic materials during construction work; the conveying track 5 is fixed on the support pole assembly 4; the traction device 3 is set on the conveying track 5; the pallet device 1 is set at the starting loading end of the conveying track 5; the pallet device 1 is connected to the traction device 3 through a traction plate 6. Before on-site construction, first conduct surveying and mapping, and then design a reasonable photovoltaic panel installation position, so as to rationally plan the transportation route and ensure the maximum radiation range; then bury the support pole assembly 4 at the corresponding photovoltaic panel installation location, install the conveying track 5 on the support pole assembly 4 to form a conveying line, and then set up the traction device 3 and the pallet device 1 on the conveying track 5. After qualified debugging, the photovoltaic panel is transported to the starting loading end of the conveying track 5 which is convenient for vehicles to transport photovoltaic panels and their accessories, put the photovoltaic panels and their accessories on the pallet device 1, and then transport them to the corresponding photovoltaic panel installation position through the traction device 3, unload the photovoltaic panels and their accessories respectively, and then the corresponding construction personnel will install the photovoltaic panels at the same time, which greatly improves the safety of photovoltaic panel transportation and installation, and ensures the safety and damage-free of photovoltaic panels, improves work efficiency, ensures the quality of photovoltaic panels, and lays a solid foundation for the collection and utilization of clean energy.
[0015] As a preferred embodiment, the traction device 3 includes a tractor, a brake assembly 301, a brake 302, a throttle assembly 303, and a backup battery pack 305. The tractor is provided with the brake assembly 301 at the front, brakes 302 at the side, and a backup battery pack 305 at the rear. The throttle assembly 303 is mounted on the backup battery pack 305. The tractor is also provided with a signal controller 304 for controlling the throttle assembly 303 on the backup battery pack 305. A slot 2 for the traction plate 6 is provided below the backup battery pack 305. A typical tractor is powered by diesel and equipped with a backup battery pack 305 to ensure power supply. Control via the signal controller 304 allows for remote control. The throttle assembly 303 on the backup battery pack 305 can be used to control the tractor's speed. The brake assembly 301 and brake 302 ensure safe driving.
[0016] As a preferred embodiment, the pallet device 1 includes a pallet 101, a locking frame 102, and locking rods 103. The bottom of the pallet 101 is provided with a sliding bar connected to the conveyor track 5. The locking frame 102 is provided at the connection between the pallet 101 and the traction plate 6. The pallet 101 can be configured to be 2 meters long, 0.8 meters wide, and 0.4 meters high to accommodate the transportation of most photovoltaic panels, component brackets, and other materials. A set of locking rods 103 are provided on the locking frame 102. When multiple photovoltaic panels are placed on the pallet 101, the locking frames 102 and the locking rods 103 are used to lock the panels together to ensure stable transportation.
[0017] As a preferred embodiment, the support upright assembly 4 includes a support rod 401 and a connecting bolt 402; the upper end of the support rod 401 is fixed to the side of the conveying track 5 by the connecting bolt 402, and can be disassembled and used in a turnover manner. The support rod 401 adopts DN50 hot-dip galvanized steel pipe and is set at a spacing of 2 to 3 meters, so as to ensure the stability of the conveying track 5 while minimizing the number of support rods 401.
[0018] As a preferred embodiment, the starting loading end of the conveying track 5 is set at an angle, and the starting loading end of the conveying track 5 that contacts the ground is provided with a clamping limit plate 501 to prevent the pallet device 1 from sliding down when being set on the conveying track 5, thereby ensuring the safety of lifting.
[0019] Although the above describes and illustrates the specific implementation methods of the present invention in detail, it should be pointed out that: we can make various equivalent changes and modifications to the above implementation methods based on the concept of the present invention, and the functional effects produced therefrom still do not exceed the spirit covered by the specification, and should all be within the scope of protection of the present invention.
Claims
1. A device for transporting materials and equipment for mountain photovoltaic projects, characterized by: It includes a pallet device, a traction device and a conveying track; the support pole assembly is set according to the on-site distribution during mountain photovoltaic material construction operations; the conveying track is fixed on the support pole assembly; the traction device is set on the conveying track; the pallet device is set at the starting loading end of the conveying track; the pallet device is connected to the traction device through a traction plate.
2. The device for transporting materials and equipment for mountain photovoltaic projects according to claim 1, characterized in that: The traction device includes a tractor, a brake assembly, a brake, a throttle assembly and a backup battery pack; the tractor is provided with a brake assembly at the front end, a brake at the side, and a backup battery pack at the rear end; the backup battery pack is provided with a throttle assembly.
3. The device for transporting materials and equipment for mountain photovoltaic projects according to claim 2, characterized in that: The tractor is also provided with a signal controller for controlling the throttle assembly on the backup battery pack; a slot for the traction plate to pass through is provided under the backup battery pack.
4. The device for transporting materials and equipment for mountain photovoltaic projects according to claim 1, characterized in that: The pallet device includes a pallet, a locking frame and a locking rod; a sliding rib connected to the conveying track is provided at the bottom of the pallet, and a locking frame is provided at the connection end between the pallet and the traction plate; a group of locking rods are provided on the locking frame.
5. The device for transporting materials and equipment for mountain photovoltaic projects according to claim 1, characterized in that: The support pole assembly includes a support pole and a connecting bolt; the upper end of the support pole is fixed to the side of the conveying track by the connecting bolt.
6. The device for transporting materials and equipment for mountain photovoltaic projects according to claim 1, characterized in that: The starting loading end of the conveying track is arranged at an angle, and a clamping limit plate is provided at the part where the starting loading end of the conveying track contacts the ground.