Single-layer cable flexible photovoltaic support
By designing a single-layer cable-stayed flexible photovoltaic support system, and employing clamping installation and component cable fixing, the problems of long processing cycles and high costs of existing photovoltaic support systems are solved, enabling convenient installation and optimized arrangement of photovoltaic components, and improving construction efficiency.
Patent Information
- Application Number
- CN202423235275.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-26
AI Technical Summary
Existing flexible photovoltaic brackets use welding connections, resulting in long processing cycles, high costs, difficult installation, and high construction requirements, making large-scale simultaneous construction impossible.
A single-layer cable flexible photovoltaic support system is adopted. Through the design of clamps and support arms, the connecting frame is fixed to the pile column by clamping installation. The photovoltaic modules are fixed by component cables, which realizes convenient installation. The photovoltaic modules are arranged at an angle by the vertical distribution of the support arms.
It reduces the difficulty of basic construction, avoids welding work, improves the ease of installation, and allows photovoltaic modules to better receive sunlight, making the installation process more convenient.
Smart Images

Figure CN223693864U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to photovoltaic support technical field especially is single layer cable flexible photovoltaic support. BACKGROUND
[0002] In recent years, clean energy has been valued at the national level and has developed unprecedentedly. Clean energy mainly includes wind energy, photovoltaic, water conservancy, etc., among which photovoltaic can convert sunlight into electric energy, is not limited by conditions such as climate, has a wide range of applications, and is more favored by people. The existing photovoltaic equipment is mainly composed of a flexible photovoltaic support and a photovoltaic module. The existing flexible photovoltaic support has certain problems in actual use. The existing flexible support is fixed by welding connection, has high requirements for foundation construction, and the welding process is limited by the site environmental conditions and cannot be constructed synchronously in a large range. SUMMARY
[0003] The utility model solves the technical problem that: in order to overcome the flexible support in the prior art all by steel column as main support point, thus bring a lot of factory processing, welding and so on work, cause processing period is long, processing cost is high, single column weight is not easy to install and so on many drawbacks problem, provide a single layer cable flexible photovoltaic support.
[0004] The utility model adopts the technical scheme that: a single layer cable flexible photovoltaic support, photovoltaic module is installed on the flexible photovoltaic support, the flexible photovoltaic support includes connecting frame, two component cables and at least two piles, the connecting frame and the pile are one-to-one correspondence, the connecting frame is arranged on the pile corresponding to it, the connecting frame includes connecting rod, two hoops and two support arms, the hoop is installed on the pile corresponding to it, one of the hoops is located above the other hoop, the two hoops are connected through the connecting rod, the support arm and the hoop are one-to-one correspondence, the support arm and the hoop corresponding to it are fixedly connected, and the two support arms of the connecting frame are oppositely arranged, through the design of the hoop and the support arm, the connecting frame is fixed on the pile in the clamping installation mode, so that the installation of the connecting frame is adjustable up and down, the difficulty of foundation construction is reduced, welding work is not needed, and the installation is convenient, and the component cable is used to fix the photovoltaic module, the component cable can be used to pull and drive the lifting installation of the photovoltaic module, so that the installation of the photovoltaic module is convenient, and the installed photovoltaic module is arranged in an inclined manner through the up-and-down distribution of the support arm, so that the photovoltaic module can better accept light;
[0005] When the number of piles is two, the end of one of the component cables is connected with the support arm above on the side, the end of the other component cable is connected with the support arm below on the side, and the component cable passes through the through hole on the photovoltaic module support, so that the photovoltaic module is in an inclined state;
[0006] When the number of piles is more than two, the support arm of the connecting frame in the middle is arranged with a cable pressing block, one end of one component cable is connected with the upper support arm in the connecting frame at the end of the side, the other end of the other component cable is connected with the lower support arm in the connecting frame at the end of the side, and the component cable passes through the through hole on the photovoltaic component support and the cable pressing block on the connecting frame in the middle at the side, so that the photovoltaic component is in an inclined state.
[0007] In order to solve the problem of how to arrange the hoop, further comprising the hoop comprising two clamps, the connecting frame comprising two connecting rods, the hoop being located between the two connecting rods, the end of the clamp being fixedly connected with the connecting rod at the side, and the clamp clamping the corresponding pile, and the connecting rod being located between the two clamps.
[0008] In order to solve the problem of how to arrange the support arm, further comprising the support arm comprising two support rods and a connecting seat, the connecting rod being fixedly connected with the clamp at the corresponding side, the two support rods being connected through the connecting seat, and the connecting seat being used for connecting the component cable or installing the cable pressing block.
[0009] In order to solve the problem of low structural strength of the support arm, further comprising the support arm comprising a diagonal brace rod, one end of the diagonal brace rod being connected with the support rod of one of the hoops, the other end of the diagonal brace rod being connected with the clamp of the other hoop, and the end of the support rod connected with the diagonal brace rod being located between the two support rods, and the end of the clamp connected with the diagonal brace rod being located between the two clamps.
[0010] In order to solve the problem of low stability of the pile at the end, further comprising the flexible photovoltaic support comprising two diagonal component cables, the diagonal component cable being one-to-one corresponding to the pile at the end, and the diagonal component cable being connected with the corresponding pile.
[0011] In order to solve the problem of how to arrange the diagonal component cable, further comprising the diagonal component cable comprising an anchor pile and a diagonal cable, one end of the diagonal cable being connected with the connecting frame, and the other end of the diagonal cable being connected with the anchor pile.
[0012] The single-layer cable flexible photovoltaic support has the advantages that: the connecting frame is fixed on the pile in a clamping manner through the design of the hoop and the support arm, the installation of the connecting frame is adjustable up and down, the difficulty of foundation construction is reduced, the installation is convenient without welding work, the photovoltaic component is fixed in a component cable manner, the component cable is used to drive the lifting installation of the photovoltaic component, the installation of the photovoltaic component is convenient, and the installed photovoltaic component is arranged in an inclined manner through the up and down distribution of the support arm, and the photovoltaic component can better accept light. BRIEF DESCRIPTION OF DRAWINGS
[0013] The utility model is further illustrated in connection with the drawings and examples.
[0014] Figure 1 is a structural schematic view of the utility model;
[0015] Figure 2 is the utility model Figure 1 is an enlarged structural schematic view of A in the utility model;
[0016] Figure 3 is the utility model Figure 1 is an enlarged structural schematic view of B in the utility model.
[0017] In the drawing: 1, photovoltaic module, 2, connecting frame, 21, connecting rod, 22, hoop, 221, embrace clamp, 23, support arm, 231, support rod, 232, connecting seat, 233, inclined strut, 24, cable pressure block, 3, module cable, 4, pile, 5, cable-stayed module, 51, anchoring pile, 52, cable-stayed cable. DETAILED DESCRIPTION
[0018] The utility model will be further explained in detail in combination with the drawings. These drawings are all simplified schematic views, only the basic structure of the utility model is schematically shown, therefore it only shows the structure related to the utility model.
[0019] As Figure 1 is a structural schematic view of the utility model, a single-layer cable flexible photovoltaic support, photovoltaic module 1 is installed on the flexible photovoltaic support, the flexible photovoltaic support includes connecting frame 2, two module cables 3 and at least two piles 4, connecting frame 2 and pile 4 one-to-one correspondence, connecting frame 2 is arranged on its corresponding pile 4, connecting frame 2 includes connecting rod 21, two hoops 22 and two support arms 23, the hoop 22 is installed on its corresponding pile 4, wherein one hoop 22 is located above the other hoop 22, the two hoops 22 are connected through the connecting rod 21, the support arm 23 and the hoop 22 one-to-one correspondence, the support arm 23 and its corresponding hoop 22 fixed connection, and the two support arms 23 of connecting frame 2 are oppositely arranged, that is, the support arm 23 on the same connecting frame 2 is not on the same side; through the design of hoop 22 and support arm 23, the connecting frame is fixed on the pile 4 in the way of clamping installation, so that the installation of connecting frame 2 has up and down adjustable, reduces the difficulty of foundation construction, does not need welding work installation convenient, and adopts the mode of module cable 3 to fix photovoltaic module, can utilize the component cable to pull and drive the lifting installation of photovoltaic module, so that the installation of photovoltaic module 1 is convenient, and through the up and down distribution of support arm 23, the installed photovoltaic module 1 is arranged obliquely, which can better accept light
[0020] As Figure 2As shown in FIG. 3, when the number of pile columns 4 is two, the end of one component cable 3 is connected with the support arm 23 on the upper side where the component cable 3 is located, the end of the other component cable 3 is connected with the support arm 23 on the lower side where the component cable 3 is located, and the component cable 3 passes through the through hole on the bracket of the photovoltaic component 1, so that the photovoltaic component 1 is in an inclined state; the end of the component cable 3 has a connecting head, the connecting head of the end of the component cable 3 is rotationally connected with the connecting seat 232 of the connecting frame 2 on the end of the pile column 4, the component cable 3 at the high position is matched with the connecting seat 232 and the cable pressing block 24 on the support arm 23 at the high position, and the component cable 3 at the low position is matched with the connecting seat 232 and the cable pressing block 24 on the support arm 23 at the low position, that is, the component cable 3 is in a straight state as a whole, and there is no turning installation position.
[0021] As shown in FIG. 3, when the number of pile columns 4 is two, the end of one component cable 3 is connected with the support arm 23 on the upper side where the component cable 3 is located, the end of the other component cable 3 is connected with the support arm 23 on the lower side where the component cable 3 is located, and the component cable 3 passes through the through hole on the bracket of the photovoltaic component 1, so that the photovoltaic component 1 is in an inclined state; the end of the component cable 3 has a connecting head, the connecting head of the end of the component cable 3 is rotationally connected with the connecting seat 232 of the connecting frame 2 on the end of the pile column 4, the component cable 3 at the high position is matched with the connecting seat 232 and the cable pressing block 24 on the support arm 23 at the high position, and the component cable 3 at the low position is matched with the connecting seat 232 and the cable pressing block 24 on the support arm 23 at the low position, that is, the component cable 3 is in a straight state as a whole, and there is no turning installation position. Figure 1 、 2 As shown in FIG. 3, when the number of pile columns 4 is two, the end of one component cable 3 is connected with the support arm 23 on the upper side where the component cable 3 is located, the end of the other component cable 3 is connected with the support arm 23 on the lower side where the component cable 3 is located, and the component cable 3 passes through the through hole on the bracket of the photovoltaic component 1, so that the photovoltaic component 1 is in an inclined state; the end of the component cable 3 has a connecting head, the connecting head of the end of the component cable 3 is rotationally connected with the connecting seat 232 of the connecting frame 2 on the end of the pile column 4, the component cable 3 at the high position is matched with the connecting seat 232 and the cable pressing block 24 on the support arm 23 at the high position, and the component cable 3 at the low position is matched with the connecting seat 232 and the cable pressing block 24 on the support arm 23 at the low position, that is, the component cable 3 is in a straight state as a whole, and there is no turning installation position.
[0022] As shown in FIG. 3, when the number of pile columns 4 is two, the end of one component cable 3 is connected with the support arm 23 on the upper side where the component cable 3 is located, the end of the other component cable 3 is connected with the support arm 23 on the lower side where the component cable 3 is located, and the component cable 3 passes through the through hole on the bracket of the photovoltaic component 1, so that the photovoltaic component 1 is in an inclined state; the end of the component cable 3 has a connecting head, the connecting head of the end of the component cable 3 is rotationally connected with the connecting seat 232 of the connecting frame 2 on the end of the pile column 4, the component cable 3 at the high position is matched with the connecting seat 232 and the cable pressing block 24 on the support arm 23 at the high position, and the component cable 3 at the low position is matched with the connecting seat 232 and the cable pressing block 24 on the support arm 23 at the low position, that is, the component cable 3 is in a straight state as a whole, and there is no turning installation position. Figure 2 、 3 As shown in FIG. 3, when the number of pile columns 4 is two, the end of one component cable 3 is connected with the support arm 23 on the upper side where the component cable 3 is located, the end of the other component cable 3 is connected with the support arm 23 on the lower side where the component cable 3 is located, and the component cable 3 passes through the through hole on the bracket of the photovoltaic component 1, so that the photovoltaic component 1 is in an inclined state; the end of the component cable 3 has a connecting head, the connecting head of the end of the component cable 3 is rotationally connected with the connecting seat 232 of the connecting frame 2 on the end of the pile column 4, the component cable 3 at the high position is matched with the connecting seat 232 and the cable pressing block 24 on the support arm 23 at the high position, and the component cable 3 at the low position is matched with the connecting seat 232 and the cable pressing block 24 on the support arm 23 at the low position, that is, the component cable 3 is in a straight state as a whole, and there is no turning installation position.
[0023] The support arm 23 comprises two support rods 231 and a connecting seat 232, the connecting rod 21 and the corresponding clamp 221 are fixedly connected, the two support rods 231 are connected through the connecting seat 232, and the connecting seat 232 is used for connecting the assembly cable 3 or mounting the cable pressing block 24. The connecting seat 232 is located between the connecting position of the diagonal bracing rod 233 and the support rod 231 on the same side and the connecting position of the clamp 221 and the connecting rod 21, so that the connecting seat 232 is stably mounted.
[0024] The support arm 23 comprises a diagonal bracing rod 233, one end of the diagonal bracing rod 233 is connected to the support rod 231 on one of the clamps 22, the other end of the diagonal bracing rod 233 is connected to the clamp 221 on the other of the clamps 22, and the end of the diagonal bracing rod 233 connected to the support rod 231 is located between the two support rods 231, and the end of the diagonal bracing rod 233 connected to the clamp 221 is located between the two clamps 221. The diagonal bracing rod 233 can increase the structural strength of the support arm 23. One end of the diagonal bracing rod 233 is clamped by the two clamps 221, and the other end of the diagonal bracing rod 233 is clamped by the two support rods 231, further increasing the structural strength of the connecting frame 2.
[0025] As shown in Figure 1 , 2 , the flexible photovoltaic support comprises two diagonal cable assemblies 5, one diagonal cable assembly 5 corresponds to one pile 4 at the end, and the diagonal cable assembly 5 is connected to the corresponding pile 4.
[0026] The diagonal cable assembly 5 comprises an anchoring pile 51 and a diagonal cable 52, one end of the diagonal cable 52 is connected to the connecting frame 2, and the other end of the diagonal cable 52 is connected to the anchoring pile 51. The support arm 23 on one side of the connecting frame 2 on the pile 4 at the end corresponds to one diagonal cable assembly 5, that is, two diagonal cable assemblies 5 are arranged on one end of the connecting frame 2, and the number of diagonal cable assemblies 5 can be more than three, so the number of diagonal cable assemblies 5 is not limited in the application.
[0027] In use, the pile 4 is fixed at a designated mounting position, the clamp 221 of the clamp 22 is clamped at a designated height of the corresponding pile 4, then the connecting head at one end of the assembly cable 3 is rotationally connected to the connecting seat 232 of the connecting frame 2 on the pile 4 at the end, the assembly cable 3 passes through the cable pressing block 24 of the connecting frame 2 on the pile 4 in the middle, then the connecting head at the other end of the assembly cable 3 is rotationally connected to the connecting seat 232 of the connecting frame 2 on the pile 4 at the other end, and the installation of the photovoltaic assembly 1 is completed. The position of the connecting frame 2 can be adjusted by loosening the bolts for fixing the clamp 22, so that the connection between the connecting frame 2 and the pile 4 is loosened, and the position of the connecting frame 2 can be adjusted. The connection mode of the assembly cable 3 allows a certain movement space, and the position of the connecting frame 2 can be adjusted step by step, so the adjustment is convenient.
[0028] With the above ideal embodiment of the present application as the inspiration, through the above description, relevant staff can make various changes and modifications without deviating from the technical idea of the present application. The technical scope of the present application is not limited to the content in the specification, and the technical scope must be determined according to the scope of claims.
Claims
1. A single-layer cable flexibility photovoltaic support on which a photovoltaic module (1) is installed, characterized in that, The flexible photovoltaic support comprises connecting frames (2), two component cables (3) and at least two piles (4), the connecting frame (2) and the pile (4) are one-to-one corresponding, the connecting frame (2) is arranged on the corresponding pile (4), the connecting frame (2) comprises a connecting rod (21), two hoops (22) and two support arms (23), one of the hoops (22) is installed on the corresponding pile (4), one of the hoops (22) is above the other hoop (22), the two hoops (22) are connected by the connecting rod (21), the support arm (23) and the hoop (22) are one-to-one corresponding, the support arm (23) and the corresponding hoop (22) are fixedly connected, and the two support arms (23) of the connecting frame (2) are oppositely arranged; When the number of piles (4) is two, the end of one of the component cables (3) is connected with the support arm (23) above on the side, the end of the other component cable (3) is connected with the support arm (23) below on the side, and the component cable (3) passes through the through hole on the photovoltaic component (1) support, so that the photovoltaic component (1) is in an inclined state; When the number of piles (4) is more than two, the support arm (23) of the connecting frame (2) in the middle is provided with a cable pressing block (24), the end of one of the component cables (3) is connected with the support arm (23) above in the connecting frame (2) at the end on the side, the end of the other component cable (3) is connected with the support arm (23) below in the connecting frame (2) at the end on the side, and the component cable (3) passes through the through hole on the photovoltaic component (1) support and the cable pressing block (24) on the connecting frame (2) in the middle on the side, so that the photovoltaic component (1) is in an inclined state.
2. A single layer cable flexible photovoltaic racking as claimed in claim 1, wherein: The hoop (22) comprises two clamps (221), the connecting frame (2) comprises two connecting rods (21), the hoop (22) is located between the two connecting rods (21), the end of the clamp (221) is fixedly connected with the connecting rod (21) on the side, and the clamp (221) clamps the corresponding pile (4), and the connecting rod (21) is located between the two clamps (221).
3. A single layer cable flexible photovoltaic racking as claimed in claim 2, wherein: The support arm (23) comprises two support rods (231) and a connecting seat (232), the connecting rod (21) and the corresponding clamp (221) are fixedly connected, the two support rods (231) are connected by the connecting seat (232), and the connecting seat (232) is used for connecting the component cable (3) or mounting the cable pressing block (24).
4. A single layer cable flexibility photovoltaic racking as claimed in claim 3, wherein: The support arm (23) comprises a diagonal brace (233), one end of the diagonal brace (233) is connected with a support rod (231) on one of the hoops (22), the other end of the diagonal brace (233) is connected with a clamping jaw (221) of the other hoop (22), and the end of the diagonal brace (233) connected with the support rod (231) is located between the two support rods (231), and the end of the diagonal brace (233) connected with the clamping jaw (221) is located between the two clamping jaws (221).
5. A single layer cable flexible photovoltaic racking as defined in claim 1, wherein: The flexible photovoltaic support comprises two diagonal cable components (5), and the diagonal cable components (5) and the piles (4) at the ends are in one-to-one correspondence, and the diagonal cable component (5) is connected with the pile (4) corresponding thereto.
6. A single layer cable flexible photovoltaic racking as claimed in claim 5, wherein: The diagonal cable component (5) comprises an anchoring pile (51) and a diagonal cable (52), one end of the diagonal cable (52) is connected with the connecting frame (2), and the other end of the diagonal cable (52) is connected with the anchoring pile (51).