Photovoltaic panel carrier frame for quickly installing photovoltaic panel
By using a combination of tensile components and rotary components on the photovoltaic panel carrier, the rapid installation of photovoltaic panels in the carrier is achieved, solving the problems of low efficiency and safety hazards in the prior art.
Patent Information
- Application Number
- CN202421831295.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-07-31
AI Technical Summary
In the prior art, when the photovoltaic panel moves in the carrier, it is necessary to pull it on the support frame by the operator standing on the support frame, which is not efficient and has safety risks.
A carrier for quickly installing photovoltaic panels is designed, and a combination of tensile components and rotary components is used to move the fixing frame upwards within the carrier by rotating components, achieving rapid installation of photovoltaic panels.
It improves the efficiency of photovoltaic panel installation, reduces the risk of operators working at high altitudes, and ensures the safety and efficiency of the installation process.
Smart Images

Figure CN222981443U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of photovoltaic panel installation, in particular to a photovoltaic panel carrier for quickly installing photovoltaic panels. Background Art
[0002] A photovoltaic panel assembly is a power generation device that generates direct current when exposed to sunlight. It consists of thin solid photovoltaic cells made almost entirely of semiconductor materials. Photovoltaic cells play a very important role. Simple photovoltaic cells can provide energy for watches and computers, and more complex photovoltaic systems can provide lighting for houses and supply power to the power grid. Photovoltaic panel assemblies can be made into different shapes, and the assemblies can be connected to generate more electricity. Therefore, the research on the connection and installation of photovoltaic panels is of great significance.
[0003] In the prior art, before installing a photovoltaic panel, a fixed support frame needs to be installed on the ground, and a plurality of spaced photovoltaic panel carriers are arranged on the support frame. The photovoltaic panels will be inserted between the photovoltaic panel carriers. Generally, about three photovoltaic panels will be inserted between each pair of photovoltaic panel carriers. Since the photovoltaic panel carriers are installed on the support frame in an inclined state, and the height of the upwardly inclined end of the photovoltaic panel carrier is relatively high, the photovoltaic panels will be inserted between two photovoltaic panel carriers from the downwardly inclined end of the photovoltaic panel carrier and move towards the upwardly inclined end of the photovoltaic panel carrier. The movement of the photovoltaic panels in the photovoltaic panel carriers is generally carried out by an operator standing on the support frame and pulling the photovoltaic panels. Such an operation not only has low efficiency but also poses a safety hazard to the operator. Therefore, a structure that can quickly and conveniently install photovoltaic panels between two photovoltaic panel carriers needs to be designed. Summary of the Invention
[0004] An embodiment of the utility model provides a photovoltaic panel carrier for quickly installing photovoltaic panels to solve the problems in the background art.
[0005] The embodiment of the utility model adopts the following technical solution: A photovoltaic panel carrier for quickly installing photovoltaic panels includes a carrier for placing photovoltaic panels. A fixed support is connected to one side of the carrier, and the fixed support is installed on the carrier through a fixing bolt; A fixed sleeve is provided on the fixed support, an assembly hole is provided on the fixed sleeve, a stretching component is arranged in the fixed sleeve, and the working end of the stretching component extends out of the fixed sleeve through the assembly hole. A fixed frame is connected to the working end of the stretching component, and the fixed frame is connected to the photovoltaic panel in the carrier; A rotating component is provided on one side of the fixed support, and the working end of the rotating component is connected to the stretching component to control the operation of the stretching component. This solves the problem that in the prior art, when the photovoltaic panel moves in the carrier, an operator needs to stand on the support frame and pull the photovoltaic panel to move in the carrier. Such an operation not only has low efficiency but also causes a safety hazard to the operator during operation.
[0006] Further, the assembly holes provided on the fixed sleeve are composed of two rectangular holes and a mating hole. The two rectangular holes are symmetrically located on both sides of the fixed sleeve, and the mating hole is located between the two rectangular holes. The two rectangular holes are in a communicating state through the mating hole. A traction frame is provided in each rectangular hole, and the working end of the stretching assembly is mounted on the traction frame. The rectangular holes are used to place the traction frame, and the traction frame can provide limiting and protective effects when the stretching assembly moves. The mating hole allows the working end of the stretching assembly to move on the fixed sleeve.
[0007] Further, the stretching assembly includes a rotating rod, a rope drum, a rope, and a connecting frame. The rotating rod is rotatably provided in the fixed sleeve. One end of the rotating rod is connected to the rotating assembly. The rope drum is mounted on the rotating rod. The rope is provided on the rope drum. One end of the rope is pulled out from the rope drum and moves out of the fixed sleeve through the assembly hole. A connecting frame is provided at one end of the rope, and the rope is connected to the fixed frame through the connecting frame. The stretching assembly is used to drive the fixed frame to extend or retract.
[0008] Further, the interior of the fixed frame is made of rubber and has a certain curvature. When the fixed frame is connected to the photovoltaic panel, the interior of the fixed frame is wrapped around the side wall of the photovoltaic panel. The fixed frame is used to cooperate with the movement of the stretching assembly to drive the photovoltaic panel to move within the carrier frame.
[0009] Further, the rotating assembly includes a connecting rod, a rotating plate, and a rotating handle. The connecting rod is rotatably provided on one side of the fixed sleeve, and one end of the connecting rod is connected to the rotating rod. The rotating plate is provided at the other end of the connecting rod. The rotating handle is provided on the rotating plate, and the rotating handle is not located at the central axis of the rotating plate on the rotating plate. The rotating assembly is used to drive the stretching assembly to operate.
[0010] The above at least one technical solution adopted in the embodiment of the present utility model can achieve the following beneficial effects:
[0011] In this application, when the photovoltaic panels need to be installed on the carrier one by one, the operator first inserts a photovoltaic panel into the carrier from the bottom of the carrier, then operates the stretching component through the rotating component to extend the working end of the stretching component, and then places the fixing frame on the bottom side of the photovoltaic panel. By operating the rotating component, the working end of the stretching component is retracted. In this way, the fixing frame will move along with the working end of the stretching component. At this time, the fixing frame will pull the photovoltaic panel and move it towards one side of the fixing sleeve. In this way, the photovoltaic panel will move upward in the carrier. After the photovoltaic panel reaches the installation position, the operator fixes the photovoltaic panel, thus completing the installation of the photovoltaic panel in the carrier. In this way, the problem in the prior art that when the photovoltaic panel moves in the carrier, the operator needs to stand on the support frame and pull the photovoltaic panel to move in the carrier is solved. This operation not only has low efficiency but also poses a safety hazard to the operator during the operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The drawings described herein are used to provide a further understanding of the present invention, and form a part of the present invention. The schematic embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation to the present invention. In the drawings:
[0013] Figure 1 is a three-dimensional schematic diagram of the first angle of the present invention;
[0014] Figure 2 is a three-dimensional schematic diagram of the second angle of the present invention;
[0015] Figure 3 is a partial structural schematic diagram of the present invention;
[0016] Figure 4 is an internal structural schematic diagram of the fixing sleeve in the present invention.
[0017] Reference numerals: fixing bracket 1, fixing sleeve 2, assembly hole 21, rectangular hole 211, mating hole 212, traction frame 213, stretching component 3, rotating rod 31, rope drum 32, rope 33, connecting frame 34, fixing frame 4,
[0018] rotating component 5, connecting rod 51, rotating plate 52, rotating handle 53. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] To make the objectives, technical solutions, and advantages of the present utility model clearer, the technical solutions of the present utility model will be clearly and completely described below in conjunction with specific embodiments of the present utility model and the corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts fall within the scope of protection of the present utility model.
[0020] The technical solutions provided by each embodiment of the present utility model will be described in detail below in conjunction with the drawings.
[0021] Referring to Figures 1-4 , an embodiment of the present utility model provides a photovoltaic panel carrier for quickly installing photovoltaic panels, including a carrier for placing photovoltaic panels. A fixing bracket 1 is connected to one side of the carrier, and the fixing bracket 1 is installed on the carrier through fixing bolts; a fixing sleeve 2 is provided on the fixing bracket 1, an assembly hole 21 is provided on the fixing sleeve 2, a stretching component 3 is provided inside the fixing sleeve 2, the working end of the stretching component 3 extends out of the fixing sleeve 2 through the assembly hole 21, a fixing frame 4 is connected to the working end of the stretching component 3, and the fixing frame 4 is connected to the photovoltaic panel in the carrier; a rotating component 5 is provided on one side of the fixing bracket 1, the working end of the rotating component 5 is connected to the stretching component, and the operation of the stretching component is controlled by the rotating component 5.
[0022] In this application, when photovoltaic panels need to be installed on the carrier one by one, the operator first inserts a photovoltaic panel into the carrier from the bottom of the carrier, then operates the stretching component 3 through the rotating component 5 to extend the working end of the stretching component 3, and then places the fixing frame 4 on the bottom side of the photovoltaic panel. By operating the rotating component 5, the working end of the stretching component 3 is retracted. In this way, the fixing frame 4 will move along with the working end of the stretching component 3. At this time, the fixing frame 4 will pull the photovoltaic panel towards one side of the fixing sleeve 2, so that the photovoltaic panel will move upward in the carrier. After the photovoltaic panel reaches the installation position, the operator fixes the photovoltaic panel, thereby completing the installation of the photovoltaic panel in the carrier. In this way, the problem in the prior art that when the photovoltaic panel moves in the carrier, the operator needs to stand on the support frame to pull the photovoltaic panel to move in the carrier is solved. This operation not only has low efficiency but also poses a safety hazard to the operator during the operation.
[0023] Preferably, the assembly hole 21 provided on the fixed sleeve 2 is composed of two rectangular holes 211 and a mating hole 212. The two rectangular holes 211 are symmetrically located on both sides of the fixed sleeve 2, and the mating hole 212 is located between the two rectangular holes 211. The two rectangular holes 211 are in a communicating state through the mating hole 212. A traction frame 213 is provided in each rectangular hole 211, and the working end of the stretching assembly 3 is mounted on the traction frame 213.
[0024] In this application, the rectangular hole 211 is used to place the traction frame 213. The traction frame 213 can provide limiting and protective effects when the stretching assembly 3 moves, and the traction frame 213 can make the movement of the stretching assembly 3 smoother. The mating hole 212 allows the working end of the stretching assembly 3 to freely move above or below the fixed sleeve 2, so that the operator can choose to connect the fixed frame 4 to the photovoltaic panel from above or from below according to the actual operation situation.
[0025] Preferably, the stretching assembly 3 includes a rotating rod 31, a rope drum 32, a rope 33 and a connecting frame 34. The rotating rod 31 is rotatably arranged in the fixed sleeve 2. One end of the rotating rod 31 is connected to the rotating assembly 5. The rope drum 32 is installed on the rotating rod 31. The rope 33 is arranged on the rope drum 32. One end of the rope 33 is pulled out from the rope drum 32 and moves out of the fixed sleeve 2 through the assembly hole 21. A connecting frame 34 is provided at one end of the rope 33, and the rope 33 is connected to the fixed frame 4 through the connecting frame 34.
[0026] In this application, the rotating rod 31 is rotatably arranged in the fixed sleeve 2 for placing the rope drum 32, and the connection between the rotating rod 31 and the rotating assembly 5 can drive the rope drum 32 to rotate when the rotating assembly 5 operates. When the rope drum 32 rotates, the rope 33 will be lengthened or retracted according to the rotation direction. In this way, the fixed frame 4 connected to the rope 33 will also move along with the movement of the rope 33.
[0027] Preferably, the interior of the fixed frame 4 is made of rubber and has a certain curvature. When the fixed frame 4 is connected to the photovoltaic panel, the interior of the fixed frame 4 is wrapped around the side wall of the photovoltaic panel. When the fixed frame 4 is connected to the photovoltaic panel, the fixed frame 4 will be stuck on one side of the photovoltaic panel through the curvature provided inside. Such an operation is more convenient, and since the interior of the fixed frame 4 is made of rubber, the fixed frame 4 will not cause damage to the photovoltaic panel when it is stuck on the side wall of the photovoltaic panel and pulls the photovoltaic panel.
[0028] Preferably, the rotating assembly 5 includes a connecting rod 51, a rotating plate 52 and a rotating handle 53. The connecting rod 51 is rotatably arranged on one side of the fixed sleeve 2, and one end of the connecting rod 51 is connected to the rotating rod 31. The rotating plate 52 is arranged at the other end of the connecting rod 51, and the rotating handle 53 is arranged on the rotating plate 52 and is not located at the central axis of the rotating plate 52. When an operator needs to lengthen or retract the rope 33, the operator can grasp the rotating handle 53 and rotate it. Since the rotating handle 53 is arranged on one side of the rotating plate 52, when the rotating handle 53 rotates, it will cause the rotating plate 52 to drive the connecting rod 51 to rotate along the axial position of the connecting rod 51 on the fixed sleeve 2. In this way, the connecting rod 51 can drive the rotating rod 31 to rotate in the fixed sleeve 2. At this time, the rotating rod 31 can drive the rope drum 32 to perform rope releasing or rope winding operations.
[0029] The above are only the embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention can have various modifications and changes. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the scope of the claims of the present invention.
Claims
1. A photovoltaic panel carrier for quickly installing photovoltaic panels, comprising a carrier for placing photovoltaic panels, characterized in that: A fixing bracket (1) is connected to one side of the carrier, and the fixing bracket (1) is mounted on the carrier via fixing bolts; The fixing bracket (1) is provided with a fixing sleeve (2), the fixing sleeve (2) is provided with an assembly hole (21), a stretching assembly (3) is provided inside the fixing sleeve (2), a working end of the stretching assembly (3) extends out of the fixing sleeve (2) through the assembly hole (21), a fixing frame (4) is connected to the working end of the stretching assembly, and the fixing frame (4) is connected to the photovoltaic panel in the carrier; A rotating assembly (5) is provided on one side of the fixed bracket (1); a working end of the rotating assembly (5) is connected to a stretching assembly, and the operation of the stretching assembly is controlled by the rotating assembly (5).
2. A photovoltaic panel carrier for quickly installing photovoltaic panels according to claim 1, characterized in that: The assembly hole (21) provided on the fixed sleeve (2) is composed of two rectangular holes (211) and a matching hole (212); the two rectangular holes (211) are symmetrically located on both sides of the fixed sleeve (2); the matching hole (212) is located between the two rectangular holes (211); the two rectangular holes (211) are connected via the matching hole (212); a traction frame (213) is provided in each of the rectangular holes (211); and the working end of the stretching assembly (3) is mounted on the traction frame (213).
3. A photovoltaic panel carrier for quickly installing photovoltaic panels according to claim 1, characterized in that: The stretching assembly (3) comprises a rotating rod (31), a rope drum (32), a rope (33) and a connecting frame (34); the rotating rod (31) is rotatably arranged in a fixed sleeve (2); one end of the rotating rod (31) is connected to a rotating assembly (5); the rope drum (32) is mounted on the rotating rod (31); the rope (33) is arranged on the rope drum (32); one end of the rope (33) is pulled out from the rope drum (32) and moves out of the fixed sleeve (2) through an assembly hole (21); a connecting frame (34) is arranged on one end of the rope (33); the rope (33) is connected to a fixed frame (4) via the connecting frame (34).
4. A photovoltaic panel carrier for quickly installing photovoltaic panels according to claim 1, characterized in that: The interior of the fixing frame (4) is made of rubber material and has a certain curvature; when the fixing frame (4) is connected to the photovoltaic panel, the interior of the fixing frame (4) is wrapped around the side wall of the photovoltaic panel.
5. A photovoltaic panel carrier for quickly installing photovoltaic panels according to claim 3, characterized in that: The rotating assembly (5) comprises a connecting rod (51), a rotating plate (52) and a rotating handle (53); the connecting rod (51) is rotatably arranged on one side of the fixed sleeve (2), and one end of the connecting rod (51) is connected to the rotating rod (31); the rotating plate (52) is arranged on the other end of the connecting rod (51); the rotating handle (53) is arranged on the rotating plate (52), and the rotating handle (53) is not located on the central axis of the rotating plate (52) on the rotating plate (52).