Solar cell panel frame sheath with buffer structure

By designing a solar panel frame sheath with a buffer structure, the existing sheath is solved inconvenient to operate during disassembly and easily loose and disassembled due to permanent deformation, achieving higher installation tightness and disassembly convenience.

CN222940765UActive Publication Date: 2025-06-03SHANGHAI PUSUN PLASTIC PROD
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Patent Information

Application Number
CN202421907766.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-06-03
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

The existing solar panel frame sheath is inconvenient to operate during disassembly and is prone to loosening and disengagement due to permanent deformation, and lack of buffer structure, resulting in poor installation.

Method used

A solar panel frame sheath with a cushioning structure is designed, including a sheath body, a cushioning inner lining, a cushioning outer lining and an operating curling edge. The sheath body is compatible with the frame of the solar panel, and the cushioned inner lining and cushioned outer lining provide a cushioning effect, and the operation of the curling edges facilitates the removal of the sheath.

Benefits of technology

Through the design of cushioning inner lining and cushioning outer lining, the stability and protection of the contact parts between the sheath and the solar panel frame are improved, and the damage caused by external impact or vibration is reduced. The design of operating the curling edges is simplified, and the convenience of installation and disassembly is improved.

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Abstract

The utility model provides a solar cell panel frame sheath with a buffer structure, which comprises a sheath main body, a buffer lining and an operation warping edge, the sheath main body is matched with the shape of a solar cell panel frame and can be clamped on the solar cell panel frame, the buffer lining is attached to the inner wall of the sheath main body, and the operation warping edge is arranged on the sheath main body. When the sheath main body is clamped on the solar cell panel frame, the buffer lining is abutted between the sheath main body and the solar cell panel frame, so that the contact part of the sheath main body and the solar cell panel frame can be buffered, the frictional resistance between the sheath main body and the solar cell panel frame is improved, displacement is avoided, and the service life of the solar cell panel is prolonged. The operation warped edge is formed on the edge of the protective sleeve body and deflects towards the outer side of the protective sleeve body, a force exerting wedge opening is formed between the operation warped edge and the solar cell panel, the operation warped edge can be pressed at the force exerting wedge opening to enable the protective sleeve body to deform and be taken down from the solar cell frame, and convenience in the installation and disassembly process can be improved.
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Description

Technical Field

[0001] The utility model relates to solar power generation equipment, in particular to a solar panel frame sheath with a buffer structure. Background Art

[0002] Patent document CN208522698U discloses a frame cover for solar panels, which includes a rectangular frame protection strip body made of a polyolefin thermoplastic elastomer material, a slot is set inwardly on a plane of the frame protection strip body, a groove bottom protrusion is set outwardly along the length of the slot, and a clamping plate for clamping the solar panel is extended outwardly at the slot mouth. The two clamping plates and the frame protection strip body are an integrated structure to form a frame cover, which can be directly clamped on the periphery of the solar panel and clamped tightly, simplifying the solar panel fixing steps. However, this frame cover adopts a right-angle structure on both sides, and there is no point of force during the disassembly and assembly process, which is inconvenient to operate, and it is easy to be permanently deformed after being assembled on the frame for a long time, and then loosen and detach. At the same time, there is no buffer structure between the cover and the frame and the outside world, which makes the frame of the solar panel easy to be installed loosely. Therefore, it is necessary to optimize the structure of this frame cover to overcome the above defects. Utility Model Content

[0003] The utility model aims to provide a solar panel frame sheath with a buffer structure to improve installation fastness and facilitate assembly and disassembly operations.

[0004] The technical solution adopted by the utility model to solve its technical problems is:

[0005] A solar panel frame cover with a buffer structure includes a cover body, the cover body is adapted to the shape of the solar panel frame and can be snapped onto the solar panel frame, and also includes:

[0006] A buffer lining is attached to the inner wall of the sheath body. When the sheath body is engaged with the solar panel frame, the buffer lining abuts between the sheath body and the solar panel frame, and can buffer the contact portion between the sheath body and the solar panel frame;

[0007] The operating warping edge is formed at the edge of the sheath body and is inclined toward the outside of the sheath body. A force wedge is formed between the operating warping edge and the solar cell panel. The operating warping edge can be pressed at the force wedge to deform the sheath body and remove it from the solar cell frame.

[0008] Also includes:

[0009] A buffer outer lining, which is attached to the outer wall of the sheath body. When the sheath body is clamped onto the frame of the solar panel, the buffer outer lining buffers the contact part between the external environment and the sheath body.

[0010] Specifically, the sheath body includes:

[0011] An end face guard plate, which is in a strip-shaped structure and extends along the length direction of the frame of the solar panel. It can cover the end face of the frame of the solar panel. The buffer inner lining is attached to the inner wall of the end face guard plate, and the buffer outer lining is attached to the outer wall of the end face guard plate;

[0012] An outer side guard plate, which is in a strip-shaped structure and is formed at the outer side edge of the end face guard plate. Its length direction extends along the length direction of the end face guard plate, and its width direction is skewed towards the direction close to the outer side face of the frame of the solar panel. The included angle between the end face guard plate and the outer side guard plate is an acute angle, so that the outer side guard plate can cover and clamp the outer side face of the frame of the solar panel. An operation flanging is formed at the end of the width direction of the outer side guard plate. Its length direction extends along the length direction of the outer side guard plate, and its width direction is skewed towards the direction away from the outer side face of the frame of the solar panel;

[0013] An inner side guard plate, which is in a strip-shaped structure and is formed at the inner side edge of the end face guard plate. Its length direction extends along the length direction of the end face guard plate, and its width direction is skewed towards the direction close to the inner side face of the frame of the solar panel. The included angle between the end face guard plate and the inner side guard plate is an acute angle, so that the inner side guard plate can cover and clamp the inner side face of the frame of the solar panel.

[0014] In an embodiment of the present utility model, the sheath body and the operation flanging are made of hard rubber, and the buffer inner lining and the buffer outer lining are made of soft rubber.

[0015] In an embodiment of the present utility model, the end of the width direction of the inner side guard plate has an inner convex rib. The length direction of the inner convex rib extends along the length direction of the inner side guard plate, and its width direction is skewed towards the direction close to the inner side face of the frame of the solar panel, and it can clamp the inner side edge of the frame of the solar panel.

[0016] In an embodiment of the present utility model, the connection part between the outer side guard plate and the operation flanging has an outer convex rib. The length direction of the outer convex rib extends along the length direction of the outer side guard plate and the operation flanging, and its width direction is skewed towards the direction close to the outer side face of the frame of the solar panel, and it can clamp the outer side edge of the frame of the solar panel.

[0017] The advantages of the present utility model are:

[0018] Through the combination of an end face guard plate, an outer guard plate, and an inner guard plate, the sheath can be tightly clamped on the frame of the solar panel, ensuring the stability and protection of the sheath. A buffer lining and a buffer outer lining are provided. When the sheath body is clamped on the frame of the solar panel, the buffer lining can effectively fit between the sheath body and the frame of the solar panel, reducing the damage caused to the frame of the solar panel by external force impact or vibration. The buffer outer lining buffers the contact part between the external environment and the sheath body, further protecting the frame of the solar panel from the influence of external environmental factors. An operation flanging is also provided at the edge of the sheath body, which is inclined outward to form a force-applying wedge opening. Users can press the operation flanging at the force-applying wedge opening to deform the sheath body, so as to easily remove the sheath from the frame of the solar panel, improving the convenience of installation and disassembly. Brief Description of the Drawings

[0019] Figure 1 is a schematic structural diagram of a sheath for a solar panel frame with a buffer structure proposed by the present utility model;

[0020] Figure 2 is a schematic cross-sectional structural diagram of the sheath. Detailed Description of the Embodiments

[0021] To make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. The components of the embodiments of the present utility model described and illustrated herein can be arranged and designed in various different configurations. Therefore, the detailed description of the embodiments of the present utility model provided herein is not intended to limit the scope of the present utility model to be protected, but merely represents selected embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model.

[0022] Such as Figure 1 , Figure 2As shown in the figure, the solar panel frame sheath with a buffer structure proposed by the present utility model includes a sheath main body 100, which is adapted to the shape of the solar panel frame and can be snapped onto the solar panel frame. It also includes a buffer lining 200 and an operating flange 300. The buffer lining is attached to the inner wall of the sheath main body. When the sheath main body is snapped onto the solar panel frame, the buffer lining abuts between the sheath main body and the solar panel frame, and can buffer the contact part between the sheath main body and the solar panel frame. The operating flange is formed at the edge of the sheath main body and deflects outward from the sheath main body, forming a force-applying wedge opening between the operating flange and the solar panel. The operating flange can be pressed at the force-applying wedge opening to deform the sheath main body and remove it from the solar panel frame.

[0023] In Embodiment 1, it further includes a buffer outer lining 400, which is attached to the outer wall of the sheath main body. When the sheath main body is snapped onto the solar panel frame, the buffer outer lining buffers the contact part between the external environment and the sheath main body.

[0024] In this embodiment, the sheath main body includes an end face guard plate 110, an outer side guard plate 120 and an inner side guard plate 130. The end face guard plate is a strip-shaped structure, which extends along the length direction of the solar panel frame and can cover the end face of the solar panel frame. The buffer lining is attached to the inner wall of the end face guard plate, and the buffer outer lining is attached to the outer wall of the end face guard plate. The outer side guard plate is a strip-shaped structure, which is formed at the outer edge of the end face guard plate. Its length direction extends along the length direction of the end face guard plate, and its width direction deflects towards the outer side face of the solar panel frame. The included angle between the end face guard plate and the outer side guard plate is an acute angle, so that the outer side guard plate can cover and clamp the outer side face of the solar panel frame. The operating flange is formed at the end of the width direction of the outer side guard plate. Its length direction extends along the length direction of the outer side guard plate, and its width direction deflects away from the outer side face of the solar panel frame. The inner side guard plate is a strip-shaped structure, which is formed at the inner edge of the end face guard plate. Its length direction extends along the length direction of the end face guard plate, and its width direction deflects towards the inner side face of the solar panel frame. The included angle between the end face guard plate and the inner side guard plate is an acute angle, so that the inner side guard plate can cover and clamp the inner side face of the solar panel frame.

[0025] In Embodiment 2, the difference from Embodiment 1 is that the sheath main body and the operating flange are made of hard rubber, and the buffer lining and the buffer outer lining are made of soft rubber.

[0026] In Embodiment 3, the difference from Embodiment 1 is that the end of the width direction of the inner side guard plate has an inner convex rib 131. The length direction of the inner convex rib extends along the length direction of the inner side guard plate, and its width direction deflects towards the inner side face of the solar panel frame, and can clamp the inner side edge of the solar panel frame.

[0027] In Embodiment 4, the difference from Embodiment 1 is that there is an outer convex rib 121 at the connection between the outer guard plate and the operation flanging. The length direction of the outer convex rib extends along the length directions of the outer guard plate and the operation flanging, and its width direction is skewed towards the outer side surface close to the outer edge of the solar panel frame, and it can be clamped to the outer edge of the outer side surface of the solar panel frame.

[0028] In the description of the present utility model, it should be noted that when terms indicating the orientation or positional relationship such as "upper", "lower", "inner", "outer", "left", "right", etc. appear, it should be understood as based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the present utility model is usually placed during use, or the orientation or positional relationship commonly understood by those skilled in the art. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, so it cannot be understood as a limitation to the present utility model. In addition, when terms such as "first", "second", etc. appear, they are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance. In the description of the present utility model, it also needs to be noted that unless otherwise clearly specified and limited, terms such as "installation", "setting", "connection", etc. should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

Claims

1. A solar panel frame cover with a buffer structure, comprising a cover body, the cover body is adapted to the shape of the solar panel frame and can be snapped onto the solar panel frame, characterized in that: Also includes: A buffer lining is attached to the inner wall of the sheath body. When the sheath body is engaged with the solar panel frame, the buffer lining abuts between the sheath body and the solar panel frame, and can buffer the contact portion between the sheath body and the solar panel frame; The operating warping edge is formed at the edge of the sheath body and is inclined toward the outside of the sheath body. A force wedge is formed between the operating warping edge and the solar cell panel. The operating warping edge can be pressed at the force wedge to deform the sheath body and remove it from the solar cell frame.

2. The solar panel frame cover with a buffer structure according to claim 1, characterized in that: Also includes: The buffer outer lining is attached to the outer wall of the sheath body. When the sheath body is engaged with the solar panel frame, the buffer outer lining buffers the contact part between the external environment and the sheath body.

3. A solar panel frame sheath with a buffer structure according to claim 1 or 2, characterized in that: The sheath body includes: An end face guard plate, which is a strip-shaped structure, extends along the length direction of the solar panel frame, and can shield the end face of the solar panel frame, the buffer lining is attached to the inner wall of the end face guard plate, and the buffer outer lining is attached to the outer wall of the end face guard plate; An outer guard plate, which is a strip-shaped structure, is formed at the outer edge of the end guard plate, its length direction extends along the length direction of the end guard plate, and its width direction is inclined toward the direction close to the outer side surface of the solar panel frame. The angle between the end guard plate and the outer guard plate is an acute angle, so that the outer guard plate can shield and clamp the outer side surface of the solar panel frame. The operating warping edge is formed at the end of the width direction of the outer guard plate, its length direction extends along the length direction of the outer guard plate, and its width direction is inclined toward the direction away from the outer side surface of the solar panel frame; The inner guard plate is a strip-shaped structure formed on the inner edge of the end guard plate. Its length direction extends along the length direction of the end guard plate, and its width direction is inclined toward the inner side surface close to the solar cell panel frame. The angle between the end guard plate and the inner guard plate is an acute angle, so that the inner guard plate can shield and clamp the inner side surface of the solar cell panel frame.

4. The solar panel frame cover with a buffer structure according to claim 2, characterized in that: The sheath body and the operating edge are made of hard rubber, and the buffer lining and the buffer outer lining are made of soft rubber.

5. The solar panel frame cover with a buffer structure according to claim 3, characterized in that: The inner guard plate has an inner ridge at the end in the width direction, and the inner ridge extends along the length direction of the inner guard plate. Its width direction is inclined toward the inner side surface close to the solar panel frame and can be clamped at the end of the inner side surface of the solar panel frame.

6. The solar panel frame cover with a buffer structure according to claim 3, characterized in that: The connection between the outer guard plate and the operating edge has an outer ridge, the length direction of which extends along the length direction of the outer guard plate and the operating edge, and the width direction is inclined toward the outer side surface of the solar panel frame, and can be clamped at the end of the outer side surface of the solar panel frame.

Citation Information

Patent Citations

  • Solar cell panel's frame protective strip

    CN208522698U