Photovoltaic panel with rapid installation structure
Through the innovative design of support components and clamps, the complex problem of photovoltaic panel installation is solved, and the folding and rapid installation of support short rods and support long rods is achieved, which improves the installation efficiency of photovoltaic panels.
Patent Information
- Application Number
- CN202422385754.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The existing photovoltaic panels are complex to install and require multiple independent support components, resulting in long construction time and low efficiency.
The design of support components, clamps 1 and clamps 2 is adopted. Through the cooperation of U-shaped grooves, strip grooves and circular grooves, the folding and rapid installation of the support short rods and long rods is achieved, the number of independent parts is reduced, and the cooperation of clamps and square blocks is used to achieve quick installation of photovoltaic panels.
The installation process of photovoltaic panels is simplified, the installation complexity is reduced, the installation efficiency is improved, and the rapid installation of photovoltaic panels is achieved.
Smart Images

Figure CN223168274U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of photovoltaic panel installation, and particularly relates to a photovoltaic panel with a quick installation structure. Background Technique
[0002] Photovoltaic panels, also known as solar panels, are devices that directly convert sunlight into electrical energy. They are the core components of solar power generation systems and are widely used in households, commercial places, industrial facilities, and large-scale solar power plants. The existing installation of photovoltaic panels usually takes a long time, including steps such as foundation excavation, bracket assembly, and photovoltaic panel positioning. This not only increases labor costs but may also affect the overall project progress. Traditional photovoltaic panel brackets are relatively complex, including multiple independent support components such as crossbeams, columns, and connectors, which need to be positioned and installed sequentially on-site. The structure of independent support components increases the number of parts, resulting in increased installation complexity. Therefore, photovoltaic panels and brackets without a quick installation structure not only increase construction time but may also reduce installation efficiency. So, we need a new structure to solve the above problems. Content of the Utility Model
[0003] Aiming at the deficiencies existing in the prior art, the purpose of the utility model is to provide a photovoltaic panel with a quick installation structure to solve the problems put forward in the above background technique.
[0004] The utility model is realized through the following technical solutions: A photovoltaic panel with a quick installation structure includes: a support component, a first clamping plate, and a second clamping plate. The support component is installed at the bottom of the photovoltaic panel. The support component includes a connecting rod, side plates, short support rods, and long support rods. A U-shaped groove is formed by downward depression on the upper surface of the connecting rod, and splicing plates are installed at both ends of the connecting rod.
[0005] Round grooves are formed on the surface of the splicing plates. Strip-shaped grooves are formed on the front and rear sides of the inner wall of the U-shaped groove. Square blocks are assembled inside the strip-shaped grooves. A short support rod is vertically installed on the left side inside the U-shaped groove, and a long support rod is vertically installed on the right side inside the U-shaped groove.
[0006] The short support rod is connected to the first clamping plate above. A first clamping groove is formed by leftward depression on the right surface of the first clamping plate. The long support rod is connected to the second clamping plate above. A second clamping groove is formed by rightward depression on the left surface of the second clamping plate. The left and right ends of the photovoltaic panel are respectively inserted into the first clamping groove and the second clamping groove.
[0007] As a preferred embodiment, the bottoms of the supporting short rods and the supporting long rods are both in contact with the bottom of the U-shaped groove. Inside the U-shaped groove, strip-shaped grooves are formed by inward depressions on the left and right sides of the front and rear surfaces. By making the bottoms of the supporting short rods and the supporting long rods in contact with the bottom of the U-shaped groove, the rotation of the supporting short rods and the supporting long rods in the U-shaped groove can be avoided, improving their stability.
[0008] As a preferred embodiment, two sets of splicing plates are symmetrically fixed on both the left and right sides of the connecting rod. The distance between the two sets of relatively symmetric splicing plates is the same as the distance between the inner walls of the U-shaped groove. Circular grooves are formed by inward depressions on the inner surfaces of the four splicing plates. The connecting rod and the splicing plates are of an integrally formed structure. The four strip-shaped grooves correspondingly extend into the four splicing plates and communicate with the corresponding circular grooves. By making the strip-shaped grooves communicate with the circular grooves, the square blocks can slide into the circular grooves through the strip-shaped grooves.
[0009] As a preferred embodiment, square blocks are assembled in the four strip-shaped grooves. The four square blocks are symmetrically installed on the lower sides of the front and rear surfaces of the supporting short rods and the supporting long rods. The four square blocks are correspondingly in contact with the four strip-shaped grooves. The diagonal length of the square block is less than the inner diameter length of the circular groove. The square blocks are fitted in the strip-shaped grooves, which can prevent the supporting short rods and the supporting long rods from moving upward.
[0010] As a preferred embodiment, the supporting components are symmetrically installed in the front and rear sides of the bottoms of the first clamping plate and the second clamping plate in two groups;
[0011] Square grooves are formed by inward depressions at the tops of the supporting short rods and the supporting long rods connected by the two groups of supporting components. Square rods are installed on the front and rear sides of the bottoms of the first clamping plate and the second clamping plate. The four square rods are respectively inserted into the bottoms of the corresponding square grooves. The cooperation between the square rods and the square grooves facilitates the corresponding installation of the first clamping plate and the second clamping plate above the supporting short rods and the supporting long rods, and is convenient for positioning the installation position.
[0012] As a preferred embodiment, a set of side plates are connected to the front and rear sides of the first clamping plate and the second clamping plate by screws. A side plate is installed on the side of the side plate facing the photovoltaic panel. The top of the side plate is in contact with the bottom of the photovoltaic panel. The setting of the side plates prevents the photovoltaic panel from detaching from the front and rear sides of the first clamping plate and the second clamping plate. At the same time, the clamping and supporting of both sides of the photovoltaic panel can be realized through the side plates.
[0013] As a preferred embodiment, multiple holes one are formed by the bottom of the U-shaped groove penetrating downward;
[0014] Holes two are formed by the left and right sides of the front surface of the connecting rod being chiseled backward. The holes two also penetrate through the lower sides of the front and rear surfaces of the supporting short rods and the supporting long rods;
[0015] Two sets of holes three are formed through the upper sides of the front and rear surfaces of the supporting short rod and the supporting long rod, and the holes three also penetrate through the lower sides of the front and rear surfaces of the four square rods correspondingly.
[0016] By installing bolts in the holes one, the connecting rod can be fixed at the installation position. Through the holes two, when assembling bolts into the holes two, the connecting rod is fixedly connected to the supporting short rod and the supporting long rod respectively, which can limit the left - right movement of the supporting short rod and the supporting long rod. Through the holes three, when bolts are inserted into the holes three, the square rod can be fixed in the square groove, realizing the connection between the clamping plate one and the clamping plate two and the supporting short rod and the supporting long rod respectively.
[0017] After adopting the above - mentioned technical solution, the beneficial effects of the utility model are as follows: The settings of the strip - shaped groove, the square block and the circular groove can make the bottom surfaces of the supporting short rod and the supporting long rod fit inside the strip - shaped groove when the square block is located inside the strip - shaped groove, realizing their vertical installation. When the square block slides through the strip - shaped groove into the circular groove, the supporting short rod and the supporting long rod can be flipped and folded inside the connecting rod. The folded supporting short rod and supporting long rod reduce the number of independent parts, reduce the installation complexity and save the steps of finding the relative connection positions of the connecting rod, the supporting short rod and the supporting long rod. At the same time, it is convenient to carry the connecting rod, the supporting short rod and the supporting long rod synchronously. The settings of the clamping plate one and the clamping plate two can quickly install the photovoltaic panel between them through the clamping groove one and the clamping groove two respectively, realizing the quick installation of the photovoltaic panel, effectively improving the installation efficiency, and the clamping plate one and the clamping plate two can be quickly and correspondingly installed on the tops of the supporting short rod and the supporting long rod. Description of the Drawings
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following - described drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0019] Figure 1 It is a schematic diagram of the overall structure of a photovoltaic panel with a quick - installation structure according to the present utility model.
[0020] Figure 2 It is a front - view plane diagram of a photovoltaic panel with a quick - installation structure according to the present utility model.
[0021] Figure 3 It is a schematic diagram of the structure of the supporting component in a photovoltaic panel with a quick - installation structure according to the present utility model.
[0022] Figure 4This is the front view of the support assembly in a photovoltaic panel with a quick installation structure according to the present utility model.
[0023] In the figure, 100 - support assembly, 110 - connecting rod, 120 - U - shaped groove, 130 - splicing plate, 140 - circular groove, 150 - strip groove;
[0024] 200 - support short rod, 210 - square block, 300 - support long rod;
[0025] 400 - clamping plate one, 410 - clamping groove one, 500 - clamping plate two, 510 - clamping groove two;
[0026] 600 - side plate, 610 - side board, 700 - photovoltaic panel. Detailed implementation manners
[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all 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 shall fall within the protection scope of the present utility model.
[0028] Please refer to Figures 1 to 4 , the present utility model provides a technical solution: a photovoltaic panel with a quick installation structure, including: a support assembly 100, a clamping plate one 400, and a clamping plate two 500. The support assembly 100 is installed at the bottom of the photovoltaic panel 700. The support assembly 100 includes a connecting rod 110, a side plate 600, a support short rod 200, and a support long rod 300. The upper surface of the connecting rod 110 is recessed downward to form a U - shaped groove 120. Splicing plates 130 are installed at both ends of the connecting rod 110;
[0029] The surface of the splicing plate 130 is provided with a circular groove 140. Strip grooves 150 are provided on both the front and rear sides of the inner wall of the U - shaped groove 120. Square blocks 210 are assembled inside the strip grooves 150. A support short rod 200 is vertically installed on the left side inside the U - shaped groove 120, and a support long rod 300 is vertically installed on the right side inside the U - shaped groove 120;
[0030] The support short rod 200 is connected to the clamping plate one 400 above. The right surface of the clamping plate one 400 is recessed leftward to form a clamping groove one 410. The support long rod 300 is connected to the clamping plate two 500 above. The left surface of the clamping plate two 500 is recessed rightward to form a clamping groove two 510. The left and right ends of the photovoltaic are respectively inserted into the inside of the clamping groove one 410 and the clamping groove two 510.
[0031] The bottoms of the supporting short rod 200 and the supporting long rod 300 are both in contact with the bottom of the U-shaped groove 120. Inside the U-shaped groove 120, strip-shaped grooves 150 are formed by inward depressions on the left and right sides of the front and rear surfaces. By making the bottoms of the supporting short rod 200 and the supporting long rod 300 in contact with the bottom of the U-shaped groove 120, it is possible to prevent the supporting short rod 200 and the supporting long rod 300 from rotating within the U-shaped groove 120, thereby improving their stability.
[0032] On both the left and right sides of the connecting rod 110, two groups of splicing plates 130 are symmetrically fixed. The distance between the two relatively symmetric groups of splicing plates 130 is the same as the distance between the inner walls of the U-shaped groove 120. Circular grooves 140 are formed by depressions on the inner surfaces of the four groups of splicing plates 130. The connecting rod 110 and the splicing plates 130 are of an integrally formed structure. After the four strip-shaped grooves 150 correspondingly extend into the four groups of splicing plates 130, they communicate with the corresponding circular grooves 140. By making the strip-shaped grooves 150 communicate with the circular grooves 140, it is possible to make the square block 210 slide into the circular groove 140 through the strip-shaped groove 150.
[0033] Four square blocks 210 are assembled inside the four strip-shaped grooves 150. The four square blocks 210 are symmetrically installed on the lower sides of the front and rear surfaces of the supporting short rod 200 and the supporting long rod 300. The four square blocks 210 correspondingly fit inside the four strip-shaped grooves 150. The diagonal length of the square block 210 is less than the inner diameter length of the circular groove 140. The square block 210 is fitted in the strip-shaped groove 150, which can prevent the supporting short rod 200 and the supporting long rod 300 from moving upward.
[0034] The supporting assembly 100 is symmetrically installed in two groups on the front and rear sides of the bottoms of the clamping plate one 400 and the clamping plate two 500. The structures of the two groups of supporting assemblies 100 are the same;
[0035] Square grooves are formed by inward depressions at the tops of the supporting short rod 200 and the supporting long rod 300 connected by the two groups of supporting assemblies 100. Square rods are installed on the front and rear sides of the bottoms of the clamping plate one 400 and the clamping plate two 500. The four square rods are respectively inserted into the bottoms of the corresponding square grooves. The cooperation between the square rods and the square grooves facilitates the corresponding installation of the clamping plate one 400 and the clamping plate two 500 above the supporting short rod 200 and the supporting long rod 300, and is convenient for positioning the installation position.
[0036] On the front and rear sides of the clamping plate one 400 and the clamping plate two 500, a group of side plates 600 are connected by screws. On the side of the side plate 600 facing the photovoltaic panel 700, a side plate 610 is installed. The top of the side plate 610 is in contact with the bottom of the photovoltaic panel 700. The setting of the side plate 600 prevents the photovoltaic panel 700 from detaching from the front and rear sides of the clamping plate one 400 and the clamping plate two 500. At the same time, the side plate 610 can realize the clamping and support of both sides of the photovoltaic panel 700.
[0037] Multiple holes one are formed by the bottom of the U-shaped groove 120 penetrating downward;
[0038] On both the left and right sides of the front surface of the connecting rod 110, second holes are formed by chiseling backward, and the second holes also penetrate through the lower sides of the front and rear surfaces of the supporting short rod 200 and the supporting long rod 300.
[0039] On the upper sides of the front and rear surfaces of the supporting short rod 200 and the supporting long rod 300, two groups of third holes are formed through, and the third holes also correspondingly penetrate through the lower sides of the front and rear surfaces of the four square rods.
[0040] By installing bolts in the first holes, the connecting rod 110 can be fixed at the installation position. Through the second holes, when assembling bolts into the second holes, the connecting rod 110 is fixedly connected to the supporting short rod 200 and the supporting long rod 300 respectively, and the left - right movement of the supporting short rod 200 and the supporting long rod 300 can be restricted. Through the third holes, when bolts are inserted into the third holes, the square rods can be fixed in the square grooves, realizing the connection between the first clamping plate 400 and the second clamping plate 500 and the supporting short rod 200 and the supporting long rod 300 respectively.
[0041] Embodiment 1: Before actual use, when it is necessary to carry the support assembly 100, if the supporting short rod 200 and the supporting long rod 300 are perpendicular inside the U - shaped groove 120, the supporting short rod 200 and the supporting long rod 300 are respectively pushed into the adjacent splicing plates 130. At this time, the square block 210 inside the strip - shaped groove 150 moves. During the movement of the square block 210, it slides through the strip - shaped groove 150 into the corresponding circular groove 140. Since the diagonal length of the square block 210 is less than the inner diameter length of the circular groove 140, and at the same time, the supporting short rod 200 and the supporting long rod 300 are moved out of the U - shaped groove 120, causing their bottoms to be suspended from the ground. Therefore, the supporting short rod 200 and the supporting long rod 300 have the condition of rotation. By rotating the square block 210 in the circular groove 140, the supporting short rod 200 and the supporting long rod 300 can be rotated to be parallel to the connecting rod 110 after rotation, reflecting the folding effect of the supporting short rod 200 and the supporting long rod 300. The folding - structured supporting short rod 200 and supporting long rod 300 effectively reduce the number of parts, facilitate the synchronous carrying of the connecting rod 110, the supporting short rod 200 and the supporting long rod 300, achieve the quick installation of the supporting short rod 200 and the supporting long rod 300, and save the steps of finding the connection positions of the connecting rod 110, the supporting short rod 200 and the supporting long rod 300, shortening the installation time.
[0042] Embodiment 2: During actual use, first place the two groups of connecting rods 110 symmetrically at appropriate installation positions. Operating in the reverse order of the above steps can quickly erect the support short rods 200 and the support long rods 300 inside the corresponding U-shaped grooves 120, improving the installation efficiency of the support short rods 200 and the support long rods 300. Then, install the first clamping plate 400 and the second clamping plate 500 at one end of the photovoltaic panel 700 through the first clamping groove 410 and the second clamping groove 510 respectively, realizing the quick installation of the photovoltaic panel 700. At the same time, fix a group of side plates 600 on both sides of the first clamping plate 400 and the second clamping plate 500 through screws, so that the photovoltaic panel 700 is fixed inside the two groups of side plates 600, the first clamping plate 400 and the second clamping plate 500. Then, lift the photovoltaic panel 700 above the support short rods 200 and the support long rods 300. When the four square rods are aligned with the four square grooves, move the first clamping plate 400 and the second clamping plate 500 downward. During the movement of the first clamping plate 400 and the second clamping plate 500, the square rods are pushed into the bottom of the square grooves, realizing the quick connection of the first clamping plate 400 and the second clamping plate 500 with the support short rods 200 and the support long rods 300
[0043] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A photovoltaic panel with a quick installation structure, comprising: A support component (100), a first clamping plate (400), and a second clamping plate (500). The support component (100) is installed at the bottom of a photovoltaic panel (700). It is characterized in that the support component (100) includes a connecting rod (110), side plates (600), short support rods (200), and long support rods (300). A U-shaped groove (120) is formed by downward depression on the upper surface of the connecting rod (110). Connecting plates (130) are installed at both ends of the connecting rod (110). A circular groove (140) is formed on the surface of the connecting plate (130). Strip-shaped grooves (150) are formed on both the front and rear sides of the inner wall of the U-shaped groove (120). A square block (210) is assembled inside the strip-shaped groove (150). A short support rod (200) is vertically installed on the left side inside the U-shaped groove (120), and a long support rod (300) is vertically installed on the right side inside the U-shaped groove (120). The upper part of the short support rod (200) is connected to the first clamping plate (400). A first clamping groove (410) is formed by leftward depression on the right surface of the first clamping plate (400). The upper part of the long support rod (300) is connected to the second clamping plate (500). A second clamping groove (510) is formed by rightward depression on the left surface of the second clamping plate (500). The left and right ends of the photovoltaic panel are respectively inserted into the first clamping groove (410) and the second clamping groove (510).
2. The photovoltaic panel with a quick installation structure as described in claim 1, wherein: The bottoms of the short support rod (200) and the long support rod (300) are both in contact with the bottom of the U-shaped groove (120). Inside the U-shaped groove (120), strip-shaped grooves (150) are formed by inward depression on both the left and right sides of the front and rear surfaces thereof.
3. The photovoltaic panel with a quick installation structure according to claim 1, characterized in that: Two groups of connecting plates (130) are symmetrically fixed on both the left and right sides of the connecting rod (110). The distance between two groups of the opposite connecting plates (130) is the same as the distance between the inner walls of the U-shaped groove (120). Circular grooves (140) are formed by depression on the inner surfaces of the four groups of connecting plates (130). The connecting rod (110) and the connecting plates (130) are of an integrally formed structure. The four strip-shaped grooves (150) correspondingly extend into the four groups of connecting plates (130) and communicate with the corresponding circular grooves (140).
4. The photovoltaic panel with a quick installation structure according to claim 1, characterized in that: Square blocks (210) are assembled inside the four strip-shaped grooves (150). The four square blocks (210) are symmetrically installed on the lower sides of the front and rear surfaces of the short support rod (200) and the long support rod (300). The four square blocks (210) correspondingly fit inside the four strip-shaped grooves (150). The diagonal length of the square block (210) is less than the inner diameter length of the circular groove (140).
5. The photovoltaic panel with a quick installation structure according to claim 1, wherein: The support component (100) is symmetrically installed in two groups on the front and rear sides of the bottoms of the first clamping plate (400) and the second clamping plate (500). The structures of the two groups of support components (100) are the same. Square grooves are formed by inward depression at the tops of the short support rods (200) and the long support rods (300) connected by the two groups of support components (100). Square rods are installed on the front and rear sides of the bottoms of the first clamping plate (400) and the second clamping plate (500). The four square rods are respectively inserted into the bottoms of the corresponding square grooves.
6. The photovoltaic panel with a quick installation structure according to claim 1, characterized in that: On both the front and rear sides of the first clamping plate (400) and the second clamping plate (500), a set of side plates (600) are connected by screws. On the side of the side plate (600) facing the photovoltaic panel (700), a side plate (610) is installed, and the top of the side plate (610) is in contact with the bottom of the photovoltaic panel (700).
7. A photovoltaic panel with a quick installation structure according to claim 1, characterized in that: Multiple first holes are formed by penetrating downward from the bottom of the U-shaped groove (120); On the left and right sides of the front surface of the connecting rod (110), second holes are formed by chiseling backward. The second holes also penetrate through the front and rear surfaces of the short support rod (200) and the lower sides of the front and rear surfaces of the long support rod (300). On the upper sides of the front and rear surfaces of the short support rod (200) and the long support rod (300), two third holes are formed by penetrating through. The third holes also correspondingly penetrate through the lower sides of the front and rear surfaces of the four square rods.