Adjusting type photovoltaic aluminum frame convenient to disassemble and assemble
By designing an adjustable photovoltaic aluminum frame that is easy to assemble and disassemble, and utilizing the mortise and tenon connection of locking components and trapezoidal block grooves, the problem of photovoltaic aluminum frames being difficult to assemble and transport in existing technologies has been solved, achieving the effect of quick assembly and disassembly and convenient transportation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-03-31
AI Technical Summary
Existing photovoltaic aluminum frames cannot be easily assembled and transported, resulting in transportation inconvenience.
An adjustable photovoltaic aluminum frame including four sets of frame components and connecting splicing components is designed. The frame components and connecting splicing components can be quickly locked and disassembled by locking components. The positioning and splicing of the four sets of frame components are realized by mortise and tenon connection of trapezoidal blocks and trapezoidal grooves.
It enables rapid disassembly and assembly of photovoltaic aluminum frames and convenient transportation, improving transportation and installation efficiency.
Smart Images

Figure CN224068604U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of photovoltaic frame technology, specifically to an adjustable photovoltaic aluminum frame that is easy to assemble and disassemble. Background Technology
[0002] Aluminum frames for photovoltaic panels are important components used for fixing and protecting photovoltaic panels.
[0003] Among the many existing technologies, Chinese patent application CN119109397A discloses an aluminum alloy frame for solar photovoltaic panels, which includes an aluminum alloy frame body. A fixing component is provided inside the aluminum alloy frame body. The fixing component includes an L-shaped groove, which is opened inside the aluminum alloy frame body. A gear is fixedly connected to the inner wall of the L-shaped groove.
[0004] However, the frame in this patent application cannot be spliced together for convenient transportation.
[0005] Based on this, this utility model designs an adjustable photovoltaic aluminum frame that is easy to assemble and disassemble to solve the above problems. Utility Model Content
[0006] In view of the above-mentioned shortcomings of the existing technology, the present invention provides an adjustable photovoltaic aluminum frame that is easy to assemble and disassemble.
[0007] To achieve the above objectives, this utility model provides the following technical solution:
[0008] An adjustable photovoltaic aluminum frame that is easy to assemble and disassemble includes four sets of frame components and four sets of connecting splicing components. The connecting splicing components are equipped with two sets of locking components for locking between the frame components and the connecting splicing components.
[0009] The connection and splicing assembly includes a connection component and a splicing component;
[0010] The splicing component is disposed on the connecting component, and the locking component is installed on the connecting component. The connecting component and the border component are used together for splicing.
[0011] Two sets of locking components are installed on the connecting components;
[0012] The splicing component is used for splicing between the four sets of connecting splicing components.
[0013] Furthermore, the two border components can be used together in a splicing manner.
[0014] Furthermore, the frame assembly includes an L-shaped frame, a square tube, and an abutment strip;
[0015] The L-shaped frame is fixedly installed on the upper end face of the square tube, and the abutment strip is fixedly installed on the inner top of the L-shaped frame. The inner side of the square tube is used in conjunction with the connecting component.
[0016] Furthermore, a limiting groove is provided at the bottom of the square tube.
[0017] Furthermore, when two frame components are joined together, the square tube of one frame component is placed inside the L-shaped frame of the other frame component, and the abutment strip on the L-shaped frame and the limiting groove on the square tube are used in a sliding connection.
[0018] Furthermore, the upper end face of the square tube has two lock holes for use in locking with a locking assembly.
[0019] Furthermore, the connecting assembly includes a first beveled square tube and a second beveled square tube;
[0020] The first and second oblique square tubes have the same shape and include an oblique end and a flat end. The flat ends of the first and second oblique square tubes are used to fit into the inner wall of the square tube.
[0021] The beveled end of the first beveled square tube is fixedly connected to the beveled end of the second beveled square tube, and the splicing assembly is set at the planar ends of the first and second beveled square tubes.
[0022] Furthermore, the splicing component includes trapezoidal blocks;
[0023] The trapezoidal blocks are two in number and are fixedly installed symmetrically on the flat end of the angled square tube.
[0024] The oblique square tube II has trapezoidal grooves symmetrically opened on the upper and lower end faces of its planar end.
[0025] Compared with the prior art, the advantages of this utility model are as follows: When using this utility model, the transportation mode is as follows: by using the splicing of four sets of connecting splicing components, the positioning of the four sets of frame components is realized, so that the four sets of frame components and the four sets of connecting splicing components form a whole; thus facilitating transportation.
[0026] When this utility model is used, the installation mode is as follows: the locking component is used to lock the frame component and the connecting splicing component, thereby realizing the installation frame of four sets of frame components and four sets of two photovoltaic panels.
[0027] This enables quick assembly and disassembly in both modes. Attached Figure Description
[0028] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0029] Figure 1 This is a perspective view of an installation mode for an adjustable photovoltaic aluminum frame that is easy to assemble and disassemble according to the present invention.
[0030] Figure 2 This is a front view of an adjustable photovoltaic aluminum frame that is easy to assemble and disassemble according to the present invention.
[0031] Figure 3 This is a perspective view of a transportation mode for an adjustable photovoltaic aluminum frame that is easy to assemble and disassemble according to the present invention.
[0032] Figure 4 A perspective view of the frame component of the utility model;
[0033] Figure 5 A three-dimensional connection and splicing component for utility model Figure 1 ;
[0034] Figure 6 A three-dimensional connection and splicing component for utility model Figure 2 .
[0035] The labels in the diagram represent:
[0036] 1. Frame assembly 11. L-shaped frame 12. Square tube 13. Abutment strip 14. Limiting groove 15. Lock hole 2. Connecting splicing assembly 21. Connecting assembly 211. Angled square tube one 212. Angled square tube two 22. Splicing assembly 221. Trapezoidal block 222. Trapezoidal groove 3. Locking assembly 31. Pin 32. Mounting port 33. Spring. Detailed Implementation
[0037] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.
[0038] The terms "left," "right," "front," "back," "up," and "down" used in the following description refer to the orientation from the perspective of the front view.
[0039] In some embodiments, please refer to the accompanying drawings. Figures 1-6 An adjustable photovoltaic aluminum frame that is easy to assemble and disassemble includes four sets of frame components 1 and four sets of connecting splicing components 2. Two sets of locking components 3 are installed on the connecting splicing components 2 for locking between the frame components 1 and the connecting splicing components 2.
[0040] The connecting splicing component 2 includes a connecting component 21 and a splicing component 22;
[0041] The splicing component 22 is disposed on the connecting component 21, the locking component 3 is installed on the connecting component 21, and the connecting component 21 and the border component 1 are used together for splicing.
[0042] Two sets of locking components 3 are installed on the connecting component 21;
[0043] The splicing component 22 is used for splicing between the four sets of connecting components 21 of the splicing component 2.
[0044] like Figure 3 When this utility model is used, the transportation mode is as follows: by splicing the four sets of connecting splicing components 2, the positioning of the four sets of frame components 1 is achieved, so that the four sets of frame components 1 and the four sets of connecting splicing components 2 form a whole; thus facilitating transportation.
[0045] like Figure 1 When this utility model is used, the installation mode is as follows: the locking component 3 is used to lock the frame component 1 and the connecting splicing component 2, thereby realizing the installation frame of four sets of frame components 1 and four sets of two components to form a photovoltaic panel.
[0046] This enables quick assembly and disassembly in both modes.
[0047] The two border components 1 are used together for splicing.
[0048] The border component 1 includes an L-shaped border 11, a square tube 12, and an abutment strip 13;
[0049] The L-shaped frame 11 is fixedly installed on the upper end face of the square tube 12, and the abutment strip 13 is fixedly installed on the inner top of the L-shaped frame 11. The inner side of the square tube 12 is used in conjunction with the connecting component 21.
[0050] A limiting groove 14 is provided at the bottom of the square tube 12;
[0051] When two frame components 1 are spliced together, the square tube 12 of one frame component 1 is set inside the L-shaped frame 11 of the other frame component 1, and the abutment strip 13 on the L-shaped frame 11 and the limiting groove 14 on the square tube 12 are used in a sliding connection.
[0052] Two lock holes 15 are provided on the upper end face of the square tube 12 for use in locking with the locking component 3.
[0053] When this utility model is used, the photovoltaic panel is installed between the contact strip 13 and the upper end face of the square tube 12.
[0054] The connecting component 21 includes a first beveled square tube 211 and a second beveled square tube 212;
[0055] The angled square tube 1 211 and the angled square tube 2 212 have the same shape and include an angled end and a flat end. The flat end of the angled square tube 1 211 and the angled square tube 2 212 are used to fit into the inner wall of the square tube 12.
[0056] The beveled end of the first beveled square tube 211 is fixedly connected to the beveled end of the second beveled square tube 212, and the splicing component 22 is set on the flat end of the first beveled square tube 211 and the second beveled square tube 212.
[0057] The splicing component 22 includes trapezoidal blocks 221;
[0058] Two trapezoidal blocks 221 are fixedly installed symmetrically on the flat end of the beveled square tube 211.
[0059] The oblique square tube 212 has trapezoidal grooves 222 symmetrically opened on the upper and lower end faces of the flat end.
[0060] When the four sets of connecting splicing components 2 are spliced together, the four sets of connecting splicing components 2 are distributed in a rectangular shape and are located at the four corners of the rectangle respectively. Between two adjacent sets of connecting splicing components 2, the trapezoidal groove 222 of one set of connecting splicing components 2 is used in conjunction with the trapezoidal block 221 of another set of connecting splicing components 2.
[0061] When this utility model is used, in the transportation mode, a set of trapezoidal blocks 221 of the connecting splicing components 2 are engaged with another set of trapezoidal grooves 222 of the connecting splicing components 2. At this time, the trapezoidal blocks 221 and the trapezoidal grooves 222 are connected by mortise and tenon joints, and the four sets of connecting splicing components 2 are spliced into a square frame. The four sets of border components 1 are spliced in pairs and then inserted into the square frame together, thereby forming a whole and facilitating transportation.
[0062] Locking assembly 3 includes a pin 31, a mounting port 32, and a spring 33;
[0063] Two mounting ports 32 are fixedly installed on the inner top of the first beveled square tube 211 and the second beveled square tube 212, respectively. The pin 31 is slidably connected to the mounting port 32. One end of the spring 33 is fixedly connected to the mounting port 32, and the other end of the spring 33 is fixedly connected to the pin 31. The top of the pin 31 is fitted and slidably used with the inner top of the square tube 12. The pin 31 is engaged with the lock hole 15 for locking.
[0064] When this utility model is used, in the assembly mode, the first beveled square tube 211 and the second beveled square tube 212 are respectively inserted into the inner side of the two square tubes 12. At this time, the pin 31 slides along the inner top of the square tube 12 until the pin 31 is inserted into the lock hole 15, thereby realizing the locking between the splicing component 2 and the frame component 1.
[0065] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. An adjustable photovoltaic aluminum frame which is easy to disassemble, comprising four groups of frame components (1), characterized in that: It also includes four sets of connecting and splicing components (2), which are provided with two sets of locking components (3) for locking between the frame components (1) and the connecting and splicing components (2); The connecting and splicing component (2) comprises a connecting component (21) and a splicing component (22); The splicing component (22) is arranged on the connecting component (21), and the locking component (3) is arranged on the connecting component (21), and the connecting component (21) is used in cooperation with the frame component (1). Two sets of locking components (3) are arranged on the connecting component (21); The splicing component (22) is used for splicing between the connecting components (21) of the four sets of connecting and splicing components (2).
2. The adjustable photovoltaic aluminum frame easy to disassemble according to claim 1, characterized in that, Two frame components (1) are used in cooperation and splicing.
3. The adjustable photovoltaic aluminum frame easy to disassemble according to claim 2, characterized in that, The frame component (1) comprises an L-shaped frame (11), a square tube (12), and a contact bar (13). The L-shaped frame (11) is fixedly installed on the upper end surface of the square tube (12), and the contact bar (13) is fixedly installed on the inner top of the L-shaped frame (11), and the inner side of the square tube (12) is used in cooperation with the connecting component (21).
4. The adjustable photovoltaic aluminum frame easy to disassemble according to claim 3, characterized in that, The bottom of the square tube (12) is provided with a limiting groove (14).
5. The easily assembled and disassembled adjustable photovoltaic aluminum frame according to claim 4, characterized in that, When two frame components (1) are spliced, the square tube (12) of one frame component (1) is arranged on the inner side of the L-shaped frame (11) of the other frame component (1), and the contact bar (13) on the L-shaped frame (11) is used in cooperation with the limiting groove (14) on the square tube (12).
6. The adjustable photovoltaic aluminum frame easy to disassemble according to claim 5, characterized in that, The upper end surface of the square tube (12) is provided with two lock holes (15) for locking the locking components (3).
7. The easily assembled and disassembled adjustable photovoltaic aluminum frame according to claim 6, characterized in that, The connecting component (21) comprises an inclined square tube one (211) and an inclined square tube two (212). The inclined square tube one (211) and the inclined square tube two (212) are the same shape and comprise an inclined surface end and a plane end, and the plane ends of the inclined square tube one (211) and the inclined square tube two (212) are used in cooperation with the inner wall of the square tube (12). The inclined surface end of the inclined square tube one (211) is fixedly connected with the inclined surface end of the inclined square tube two (212), and the splicing component (22) is arranged on the plane ends of the inclined square tube one (211) and the inclined square tube two (212).
8. The adjustable photovoltaic aluminum frame easy to disassemble according to claim 7, characterized in that, The splicing component (22) comprises a trapezoidal block (221). The trapezoidal block (221) is symmetrical and fixedly installed on the plane end of the inclined square tube one (211). The plane ends of the inclined square tube two (212) are symmetrically provided with trapezoidal grooves (222).
Citation Information
Patent Citations
Aluminum alloy frame for solar photovoltaic panel
CN119109397A