A mounting structure for a photovoltaic power generation assembly
Patent Information
- Application Number
- CN202522036439.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-22
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-09-22
AI Technical Summary
[0003]在户外过光伏发电组件进行发电时,需要将光伏板面向太阳以合适的角度摆放在地面上,通常会有配备一个摆放光伏板的支架,但由于支架缺少固定,在遇到较大的自然风时,会将光伏板和支架吹倒影响发电工作,且支架体积较大不便于收纳和携带
本实用新型优点在于,通过安装组件能够将安装框安装固定在地面上,通过支撑杆、螺杆和支撑筒对安装框进行支撑,将插杆插入土层中进行固定,避免遇到较大的自然风时,将安装框吹倒影响发电工作的运行,转动螺套与螺杆旋合能够调整螺杆的长度,使光伏发电板能够调整不同角度,且插杆可拆下放置到放置槽中,将螺杆收入到支撑筒中,再将支撑杆和支撑筒折叠收入到收纳槽中,便于收纳携带。
Smart Images

Figure CN224760177U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of photovoltaic power generation equipment technology, specifically an installation structure for a photovoltaic power generation module. Background Technology
[0002] As people's living standards improve and their interest in exploring nature grows, outdoor activities such as hiking and camping are becoming increasingly popular. In these activities, power supply has become an important issue, especially for people who rely on electronic devices. When temporary power is needed outdoors, photovoltaic power generation modules are often used to generate electricity.
[0003] When generating electricity using photovoltaic power generation modules outdoors, the photovoltaic panels need to be placed on the ground at a suitable angle facing the sun. Usually, a bracket is provided to hold the photovoltaic panels. However, due to the lack of fixation of the bracket, the photovoltaic panels and the bracket may be blown over by strong natural winds, affecting the power generation. In addition, the bracket is bulky and inconvenient to store and carry. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide an installation structure for a photovoltaic power generation module. The installation module can fix the installation frame on the ground. The installation frame is supported by a support rod, a screw, and a support cylinder. The insertion rod is inserted into the soil for fixation, which prevents the installation frame from being blown over by strong natural winds and affecting the operation of power generation. The screw length can be adjusted by rotating the screw sleeve and screw rod to adjust the photovoltaic power generation panel to different angles. The insertion rod can be removed and placed in the placement slot, the screw rod can be put into the support cylinder, and the support rod and support cylinder can be folded and put into the storage slot for easy storage and carrying.
[0005] The technical problem to be solved by this utility model is achieved by the following technical solution: An installation structure for a photovoltaic power generation module includes: two mounting frames connected by a hinge, each mounting frame having a protective layer inside, and each protective layer having a photovoltaic panel inside. The mounting components are respectively disposed on the two mounting frames and are used to install and fix the two mounting frames on the ground. The mounting components include: a support cylinder, a support rod, a screw, a screw sleeve, a threaded hole, and a plug rod.
[0006] Furthermore, a support cylinder and a support rod are respectively provided below the two mounting frames. A screw is slidably connected inside the support cylinder, and a screw sleeve is provided on the support cylinder. The screw is threadedly connected inside the screw sleeve. Threaded holes are opened at the bottom ends of the support rod and the screw, and insert rods are threadedly connected inside the two threaded holes.
[0007] Furthermore, two storage slots are respectively formed on the lower surface of the two mounting frames, and the top ends of the support cylinder and the support rod are rotatably connected to the inner walls on opposite sides of the two storage slots.
[0008] Furthermore, both of the storage slots are equipped with clamps inside, and the upper surfaces of the two mounting frames each have two placement slots.
[0009] Furthermore, each of the two mounting frames is fixedly connected to a splicing handle on one side of its opposite side. One of the mounting frames is fixedly connected to two card holders on the side of its side near the splicing handle, and the other mounting frame is fixedly installed with two buckles on the side of its side near the splicing handle.
[0010] Furthermore, a fitting frame is fixedly connected to the upper surface of one of the mounting frames, and a fitting groove is formed on the upper surface of the other mounting frame.
[0011] Furthermore, a sealing strip a is installed on the fitting frame, wherein a sealing strip b is fixedly installed on the upper surface of one of the mounting frames near the placement groove.
[0012] The beneficial effects of this utility model are: The advantages of this invention are that the mounting frame can be fixed to the ground by the mounting components, and the mounting frame is supported by the support rod, screw, and support cylinder. The insertion rod is inserted into the soil for fixation, which prevents the mounting frame from being blown over by strong natural winds and affecting the operation of power generation. The screw length can be adjusted by rotating the screw sleeve and screw rod to adjust the photovoltaic panel to different angles. The insertion rod can be removed and placed in the placement slot, the screw rod can be put into the support cylinder, and the support rod and support cylinder can be folded and put into the storage slot for easy storage and carrying. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0014] Figure 2 This is a cross-sectional view of the overall structure of this utility model.
[0015] Figure 3 This is a schematic diagram of the folding of the mounting frame of this utility model.
[0016] Figure 4 This is a schematic diagram of the mounting frame structure of this utility model from another perspective.
[0017] Figure 5 This is a schematic diagram of the support cylinder structure of this utility model.
[0018] Figure 6 For the present utility model Figure 2 Enlarged view of point A in the middle.
[0019] Figure 7 For the present utility model Figure 2 Enlarged view of section B in the middle.
[0020] Figures 1-7 In the middle: 1. Mounting frame; 11. Protective layer; 12. Photovoltaic panel; 2. Support cylinder; 21. Support rod; 22. Screw; 23. Screw sleeve; 24. Threaded hole; 25. Insert rod; 3. Storage slot; 31. Clamp; 32. Placement slot; 4. Splicing handle; 41. Card seat; 42. Buckle; 5. Fitting frame; 51. Fitting groove; 52. Sealing strip a; 53. Sealing strip b. Detailed Implementation
[0021] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0022] The present application will now be described in detail with reference to the accompanying drawings and specific embodiments. Example 1
[0023] like Figures 1-7 As shown, an installation structure for a photovoltaic power generation module includes: two mounting frames 1 connected by hinges, each mounting frame 1 having a protective layer 11 inside, and each protective layer 11 having a photovoltaic power generation panel 12 inside; and mounting components, which are respectively mounted on the two mounting frames 1 for fixing the two mounting frames 1 to the ground.
[0024] When using the photovoltaic panel 12, the two mounting frames 1 are opened. The protective layer 11 reduces the transmission of vibration and prevents damage to the photovoltaic panel 12 due to collision. Then, the two mounting frames 1 can be fixed to the ground by the mounting components to prevent the two mounting frames 1 from being blown down by strong winds and affecting the use of the photovoltaic panel 12. Example 2
[0025] Based on Embodiment 1, two storage slots 3 are respectively opened on the lower surface of the two mounting frames 1. The top ends of the support cylinder 2 and the support rod 21 are respectively rotatably connected to the inner walls on opposite sides of the two storage slots 3. Each of the two storage slots 3 is provided with a clamp 31. Two placement slots 32 are respectively opened on the upper surface of the two mounting frames 1. A splicing handle 4 is fixedly connected to one side of the two mounting frames 1. Two card seats 41 are fixedly connected to the side of one mounting frame 1 near the splicing handle 4, and two buckles 42 are fixedly installed on the side of the other mounting frame 1 near the splicing handle 4.
[0026] When not in use, the support cylinder 2 and support rod 21 are folded up and stored in the storage slot 3. The support cylinder 2 and support rod 21 can be restricted by the clamp 31. The support cylinder 2 and support rod 21 are fixed by friction. The insertion rod 25 is removed and placed in the placement slot 32. The two mounting frames 1 are folded up and the buckle 42 is fastened to the card seat 41 to connect and fix the two folded mounting frames 1. The two splicing handles 4 are spliced together for easy carrying. Example 3
[0027] Based on Embodiment 2, the installation components include: a support cylinder 2, a support rod 21, a screw 22, a screw sleeve 23, a threaded hole 24, and a plug rod 25. The support cylinder 2 and the support rod 21 are respectively provided below the two mounting frames 1. The screw 22 is slidably connected inside the support cylinder 2. The screw sleeve 23 is provided on the support cylinder 2. The screw 22 is threadedly connected to the inside of the screw sleeve 23. The bottom ends of the support rod 21 and the screw 22 are both provided with threaded holes 24. The plug rod 25 is threadedly connected inside the two threaded holes 24.
[0028] In use, the buckle 42 is opened to release the fixation of the two mounting frames 1. Then, the insertion rod 25 is taken out from the placement slot 32. Next, the support cylinder 2 and the support rod 21 are unfolded from the storage slot 3. Then, the insertion rod 25 is screwed into the threaded hole 24 at the bottom of the support rod 21 and the screw 22. Then, the insertion rod 25 at the bottom of the support rod 21 is inserted into the soil vertically. Then, according to the required angle of the photovoltaic panel 12, the length of the screw 22 is adjusted. The screw sleeve 23 on the support cylinder 2 is rotated, and the screw sleeve 23 rotates and engages with the screw 22, thereby driving the screw 22 to push out of the support cylinder 2. After adjusting to a suitable length, the insertion rod 25 at the bottom of the screw 22 is inserted into the soil to fix the two mounting frames 1, so that the photovoltaic panel 12 maintains a suitable angle for operation and prevents the two mounting frames 1 from being blown over by strong winds. Example 4
[0029] Based on Embodiment 1, a fitting frame 5 is fixedly connected to the upper surface of one of the mounting frames 1, and a fitting groove 51 is opened on the upper surface of the other mounting frame 1. A sealing strip a52 is installed on the fitting frame 5, and a sealing strip b53 is fixedly installed on the upper surface of one of the mounting frames 1 near the placement groove 32.
[0030] After the two mounting frames 1 are closed and retracted, the fitting frame 5 and the fitting groove 51 are joined together. The sealing strip a52 can seal the gap between the fitting frame 5 and the fitting groove 51, while the sealing strip b53 can seal the space between the two mounting frames 1, so that the photovoltaic panel 12 is stored in a sealed space to prevent water, dust and debris from entering.
[0031] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.
[0032] The above provides a detailed description of the installation structure of a photovoltaic power generation module provided in the embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand the technical solutions and core ideas of this application. 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. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. An installation structure for a photovoltaic power generation module, characterized in that, include: Two mounting frames (1) are connected by hinges. Each of the two mounting frames (1) has a protective layer (11) inside, and each of the protective layers (11) has a photovoltaic panel (12) inside. The mounting components are respectively disposed on the two mounting frames (1) for fixing the two mounting frames (1) on the ground. The mounting components include: support cylinder (2), support rod (21), screw rod (22), screw sleeve (23), threaded hole (24) and insertion rod (25).
2. The installation structure of the photovoltaic power generation module according to claim 1, characterized in that, Below the two mounting frames (1) are respectively a support cylinder (2) and a support rod (21). A screw (22) is slidably connected inside the support cylinder (2). A screw sleeve (23) is provided on the support cylinder (2). The screw (22) is threadedly connected inside the screw sleeve (23). Threaded holes (24) are opened at the bottom ends of the support rod (21) and the screw (22). Insert rods (25) are threadedly connected inside the two threaded holes (24).
3. The installation structure of the photovoltaic power generation module according to claim 1, characterized in that, Two storage slots (3) are respectively opened on the lower surface of the two mounting frames (1), and the top ends of the support cylinder (2) and the support rod (21) are respectively rotatably connected to the inner walls of the two storage slots (3) on opposite sides.
4. The installation structure of the photovoltaic power generation module according to claim 3, characterized in that, Both of the storage slots (3) are equipped with clamps (31), and the upper surfaces of the two mounting frames (1) are respectively provided with two placement slots (32).
5. The installation structure of the photovoltaic power generation module according to claim 1, characterized in that, Two mounting frames (1) are respectively fixedly connected to splicing handles (4) on opposite sides. One of the mounting frames (1) is fixedly connected to two card seats (41) on the side near the splicing handle (4), and the other mounting frame (1) is fixedly installed with two buckles (42) on the side near the splicing handle (4).
6. The installation structure of the photovoltaic power generation module according to claim 4, characterized in that, One of the mounting frames (1) has a fitting frame (5) fixedly connected to its upper surface, and the other mounting frame (1) has a fitting groove (51) on its upper surface.
7. The installation structure of the photovoltaic power generation module according to claim 6, characterized in that, A sealing strip a (52) is installed on the fitting frame (5), wherein a sealing strip b (53) is fixedly installed on the upper surface of one of the mounting frames (1) near the placement groove (32).