一种光伏板转运装置
By designing clamping and shock absorption mechanisms for the photovoltaic panel transfer device, the problems of easy damage and low efficiency in traditional photovoltaic panel transfer have been solved, achieving stable transportation and efficient transfer.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ROAD & BRIDGE INT CO LTD
- Filing Date
- 2025-08-13
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional photovoltaic panel transportation methods lack effective fixing devices, making photovoltaic panels easily damaged during transportation. In addition, traditional transportation devices are inefficient, especially on uneven ground where bumps have a serious impact and consume a lot of manpower.
A photovoltaic panel transfer device was designed, including a movable base and a photovoltaic panel clamping mechanism. The combination of hydraulic rods, push rods, drive linkages and clamping plates is used to achieve stable clamping of the photovoltaic panels, and the shock absorption mechanism absorbs the energy of bumps to ensure transportation stability.
This effectively prevents photovoltaic panels from falling during transportation, reduces transportation costs, improves transportation efficiency, and reduces manpower consumption.
Smart Images

Figure CN224511186U_ABST
Abstract
Claims
1. A photovoltaic panel transport device, characterized in that, The device includes a movable base and a photovoltaic panel clamping mechanism. The photovoltaic panel clamping mechanism includes a hydraulic rod, a push rod, a drive link, a first slider, and a clamping plate. The main structure of the hydraulic rod is fixed to the rear side of the bottom surface of the movable base. The drive end of the hydraulic rod extends forward and is fixed at the middle position of the push rod. The push rod extends left and right, and drive links are hinged to both ends of the push rod. The movable base has a first sliding hole extending left and right, which passes through the movable base vertically. The end of the drive link opposite to the push rod is hinged to a first slider. Two first sliders are slidably connected in the first sliding hole and can move left and right along the first sliding hole under the drive of the hydraulic rod, the push rod, and the drive link. A clamping plate is connected to each of the two first sliders, and the two clamping plates are arranged left and right at intervals above the movable base.
2. A photovoltaic panel transport device according to claim 1, wherein, The two drive linkages are arranged in a figure-eight pattern below the movable base.
3. The photovoltaic panel transport apparatus of claim 1, wherein, The push rod has a U-shaped cross-section with the U-shaped opening facing forward. One end of the drive linkage is inserted into the U-shaped opening of the push rod and is hinged to the push rod through a first hinge shaft.
4. The photovoltaic panel transport apparatus of claim 1, wherein, The lower end of the first slider extends out from the first sliding hole, and a U-shaped hinge block is provided on the front side of the lower end of the first slider. The other end of the driving link is inserted into the U-shaped hinge block and hinged to the U-shaped hinge block through the second hinge shaft.
5. The photovoltaic panel transport apparatus of claim 1, wherein, The movable base is also provided with a second sliding hole extending forward and backward in the middle, and the push rod is provided with a second slider. The second slider is disposed in the second sliding hole and can move along the second sliding hole.
6. The photovoltaic panel transport apparatus of claim 1, wherein, A horizontally arranged support plate is provided above the movable base, and the support plate is located between the two clamping plates; the support plate is fixedly installed on the upper surface of the movable base by a support column, or the support plate is installed on the upper surface of the movable base by a shock absorption mechanism.
7. A photovoltaic panel transport apparatus as claimed in claim 6, wherein, The damping mechanism includes a damping damping part and a driven link. The damping damping part is arranged horizontally, and its two ends are slidably connected to the upper surface of the movable base. The two ends of the damping damping part are also hinged to the lower surface of the support plate through the driven link.
8. A photovoltaic panel transport apparatus according to claim 7, wherein, The damping and shock absorption unit has vertically arranged movable connecting columns fixed at both ends. The lower end of the movable connecting column is slidably connected to the upper surface of the movable base, and the upper end of the movable connecting column is hinged to the lower surface of the support plate through a driven connecting rod.
9. The photovoltaic panel transport apparatus of claim 8, wherein, The upper surface of the movable base is provided with sliding grooves extending to the left and right, and the lower end of the movable connecting column is slidably connected in the sliding grooves.
10. The photovoltaic panel transport apparatus of claim 7, wherein, The distance between the lower ends of the two driven links is greater than the distance between the upper ends of the two driven links.