Photovoltaic power generation panel transportation mounting rack
By designing a photovoltaic panel transport and installation frame, and using components such as curved elastic rubber sheets and T-shaped rods to clamp the photovoltaic panels, the problem of easy damage to photovoltaic panels during transportation was solved, and stable transportation was achieved.
Patent Information
- Application Number
- CN202423183710.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-12-24
AI Technical Summary
In existing technologies, photovoltaic panels are prone to cracking during transportation due to excessive loads or severe vibrations, and it is also impossible to effectively clamp multiple photovoltaic panels to prevent them from shaking and being damaged.
A photovoltaic panel transport and installation frame was designed, including a frame, placement components and auxiliary components. The photovoltaic panel is clamped by an arc-shaped elastic rubber plate, a T-shaped rod and a clamping frame, and is kept stable by connecting ropes and limiting tubes. The photovoltaic panel is quickly clamped and fixed by pulling the lifting rod.
It effectively avoids shaking and damage to photovoltaic panels during transportation, providing stable protection and ensuring the safe transport of photovoltaic panels.
Smart Images

Figure CN223792025U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of photovoltaic panel transportation technology, specifically a photovoltaic panel transportation and installation frame. Background Technology
[0002] Photovoltaic (PV) panels are a renewable and green power generation technology. The main material of PV panels is silicon. Due to the material's properties, excessive loads or severe vibrations during transportation can easily cause cracks, leading to malfunctions. Therefore, multiple PV panels should not be folded together.
[0003] Although existing devices can transport photovoltaic panels separately, they cannot quickly clamp multiple individually placed photovoltaic panels to prevent them from shaking and being damaged.
[0004] To address this issue, we propose a photovoltaic panel transport and installation frame. Utility Model Content
[0005] The purpose of this invention is to provide a photovoltaic panel transport and installation frame, which solves the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a photovoltaic panel transport and mounting frame, comprising:
[0007] frame;
[0008] Place components within the frame;
[0009] An auxiliary component is positioned above the frame and is connected to the placement component.
[0010] Preferably, four anti-slip pads are fixedly installed at the bottom of the frame. The four anti-slip pads are fixedly installed at the bottom of the four corners of the frame. The anti-slip pads installed at the bottom of the four corners of the frame can play an anti-slip role, prevent the frame from moving during transportation, and play a stable protection role for the photovoltaic panels.
[0011] Preferably, the number of placement components is five, and the five placement components are distributed at equal intervals within the frame.
[0012] Preferably, the placement component includes:
[0013] The U-shaped placement rack has its upper surface fixedly installed to the inner surface of the frame;
[0014] An arc-shaped elastic rubber sheet is placed inside a U-shaped placement frame, and the lower end of the arc-shaped elastic rubber sheet is fixedly installed to the inner wall of the U-shaped placement frame by a mounting rod.
[0015] The bottom end of the T-shaped rod is fixedly installed to the top end of the arc-shaped elastic rubber plate, and the lower end of the T-shaped rod is fitted with a clip frame that is fixedly installed to the inner wall of the U-shaped placement rack.
[0016] Preferably, the width of the inner wall of the card frame is smaller than the width of the upper end of the T-shaped rod, so as to prevent the T-shaped rod from detaching from the lower part of the card frame.
[0017] Preferably, the auxiliary component includes:
[0018] The connecting rope is fixedly installed at its bottom end to the top surface of the T-shaped rod;
[0019] The number of connecting ropes is set to match the number of placement components;
[0020] A connecting rod is fixedly installed on the lower surface of a plurality of connecting ropes at their top ends, and a lifting rod is fixedly installed at the end of the connecting rod.
[0021] Preferably, a limiting tube is sleeved on the outer wall of the connecting rope, and an L-shaped rod is fixedly installed on the outer wall of the limiting tube. The end of the L-shaped rod away from the limiting tube is fixedly installed on the top surface of the frame. The limiting tube can keep the connecting rope in a vertical state during the stretching process, and the L-shaped rod can securely install the limiting tube.
[0022] This utility model provides a photovoltaic panel transport and mounting frame. This photovoltaic panel transport and mounting frame has the following advantages:
[0023] (1) The photovoltaic panel transport and installation frame can clamp the photovoltaic panels placed in the U-shaped placement frame by flexibly cooperating between the arc-shaped elastic rubber plate, T-shaped rod and clamp frame, so as to avoid shaking and damage during transportation.
[0024] (2) The photovoltaic panel transport and installation frame can straighten the arc-shaped elastic rubber plate in the five sets of placement components by setting auxiliary components, which facilitates the placement of photovoltaic panels quickly and conveniently. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the overall three-dimensional structure of a photovoltaic panel transport and installation frame according to the present invention;
[0026] Figure 2 This is a schematic diagram of the component placement structure in a photovoltaic panel transport and installation frame according to the present invention;
[0027] Figure 3 This utility model relates to a photovoltaic panel transport and installation frame. Figure 1 Enlarged structural diagram at point A in the diagram;
[0028] Figure 4This utility model relates to a photovoltaic panel transport and installation frame. Figure 2 A schematic diagram of the local decomposition structure.
[0029] In the diagram: 1. Frame; 2. Anti-slip mat; 3. Placement component; 31. U-shaped placement rack; 32. Clip frame; 33. T-shaped rod; 34. Arc-shaped elastic rubber plate; 35. Mounting rod; 4. Auxiliary component; 41. Connecting rope; 42. Connecting rod; 43. Lifting rod; 44. Limiting tube; 45. L-shaped rod. Detailed Implementation
[0030] To provide a clearer understanding of the technical features, objectives, and effects of this utility model, the specific embodiments of this utility model are now described with reference to the accompanying drawings.
[0031] Example 1: A preferred embodiment of the photovoltaic panel transport and installation frame provided by this utility model. Figures 1 to 4 As shown: A photovoltaic panel transport and mounting frame, comprising:
[0032] Framework 1;
[0033] Among them, four anti-slip pads 2 are fixedly installed at the bottom of the frame 1. The four anti-slip pads 2 are fixedly installed at the bottom of the four corners of the frame 1. The anti-slip pads 2 installed at the bottom of the four corners of the frame 1 can play an anti-slip role, prevent the frame 1 from moving during transportation, and play a stable protection role for the photovoltaic panel.
[0034] Five components 3 are placed inside frame 1 and are evenly spaced within frame 1.
[0035] Auxiliary component 4 is positioned above frame 1 and is connected to placement component 3.
[0036] Placement component 3 includes:
[0037] The upper surface of the U-shaped placement rack 31 is fixedly installed to the inner surface of the frame 1;
[0038] An arc-shaped elastic rubber plate 34 is installed inside the U-shaped placement frame 31. The lower end of the arc-shaped elastic rubber plate 34 is fixedly installed to the inner wall of the U-shaped placement frame 31 by a mounting rod 35. The arc-shaped elastic rubber plate 34 can clamp the photovoltaic panel placed inside the U-shaped placement frame 31 to prevent it from shaking and being damaged.
[0039] The bottom end of the T-shaped rod 33 is fixedly installed to the top end of the arc-shaped elastic rubber plate 34, and the lower end of the T-shaped rod 33 is fitted with a clip frame 32 that is fixedly installed to the inner wall of the U-shaped placement rack 31.
[0040] In this embodiment, the width of the inner wall of the card frame 32 is smaller than the width of the upper end of the T-shaped rod 33, thus preventing the T-shaped rod 33 from detaching from the lower part of the card frame 32.
[0041] Example 2: Based on the above implementation scheme, auxiliary component 4 includes:
[0042] The bottom end of the connecting rope 41 is fixedly installed to the top surface of the T-shaped rod 33;
[0043] The number of connecting ropes 41 is set to match the number of placement components 3;
[0044] The lower surface of the connecting rod 42 is fixedly installed with the top ends of multiple connecting ropes 41, and the end of the connecting rod 42 is fixedly installed with a lifting rod 43.
[0045] In this embodiment, a limiting tube 44 is sleeved on the outer wall of the connecting rope 41, and an L-shaped rod 45 is fixedly installed on the outer wall of the limiting tube 44. The end of the L-shaped rod 45 away from the limiting tube 44 is fixedly installed on the top surface of the frame 1. The limiting tube 44 can keep the connecting rope 41 in a vertical state during the stretching process, and the L-shaped rod 45 can securely install the limiting tube 44.
[0046] Working principle: When it is necessary to transport and place the photovoltaic panel, the lifting rod 43 is lifted upwards. At this time, the connecting rod 42 will drive the connecting rope 41 installed at the bottom to move upwards. During the upward movement of the connecting rope 41, the T-shaped rod 33 can be moved upwards. Since the arc-shaped elastic rubber plate 34 is made of rubber and has deformation properties, the upward movement of the T-shaped rod 33 can straighten the arc-shaped elastic rubber plate 34, making it easier for the photovoltaic panel to be placed in the U-shaped placement rack 31. After placement, the lifting rod 43 is slowly lowered. Finally, the arc-shaped elastic rubber plate 34 will gradually return to its original shape and clamp the photovoltaic panel tightly to prevent shaking and damage during transportation.
[0047] The above are merely illustrative embodiments of this utility model and are not intended to limit the scope of this utility model. Any equivalent changes and modifications made by those skilled in the art without departing from the concept and principles of this utility model should fall within the protection scope of this utility model. Furthermore, it should be noted that the components of this utility model are not limited to the overall application described above. Each technical feature described in the specification can be used individually or in combination as needed. Therefore, this utility model naturally covers other combinations and specific applications related to the points of this utility model.
Claims
1. A photovoltaic panel transport mount, characterized by: Include: Frame (1); Placement assembly (3) is arranged in frame (1); The placement assembly (3) comprises: U-shaped placement rack (31), the surface of the upper end is fixedly installed with the inner surface of the frame (1); Arc-shaped elastic rubber plate (34) is arranged in the U-shaped placement rack (31), and the lower end of the arc-shaped elastic rubber plate (34) is fixedly installed with the inner wall of the U-shaped placement rack (31) through the mounting rod (35); T-shaped rod (33), the bottom end is fixedly installed with the top end of the arc-shaped elastic rubber plate (34), and the lower end of the T-shaped rod (33) is sleeved with the clamping frame (32) fixedly installed with the inner wall of the U-shaped placement rack (31); Auxiliary assembly (4) is arranged above the frame (1), and the auxiliary assembly (4) is connected with the placement assembly (3).
2. A photovoltaic panel transport and mounting rack as claimed in claim 1, wherein: The bottom of the frame (1) is fixedly installed with the anti-skid pad (2), the number of the anti-skid pad (2) is four, and the four anti-skid pads (2) are fixedly installed at the bottom of the four corners of the frame (1).
3. The photovoltaic panel transport and mounting rack of claim 1, wherein: The number of the placement assembly (3) is five, and the five placement assemblies (3) are distributed at equal intervals in the frame (1).
4. The photovoltaic panel transport and mounting rack of claim 1, wherein: The width of the inner wall of the clamping frame (32) is less than the width of the upper end of the T-shaped rod (33).
5. The photovoltaic panel transport and mounting rack of claim 1, wherein: The auxiliary assembly (4) comprises: Connecting rope (41), the bottom end is fixedly installed with the top surface of the T-shaped rod (33); Among them, the number of the connecting rope (41) is matched with the number of the placement assembly (3); Connecting rod (42), the lower surface is fixedly installed with the top end of the plurality of connecting ropes (41), and the end of the connecting rod (42) is fixedly installed with the lifting rod (43).
6. A photovoltaic panel transport and mounting rack as claimed in claim 5, wherein: The outer wall of the connecting rope (41) is sleeved with the limiting tube (44), the outer wall of the limiting tube (44) is fixedly installed with the L-shaped rod (45), and the end away from the limiting tube (44) of the L-shaped rod (45) is fixedly installed with the top surface of the frame (1).