Slope photovoltaic space cable net anchoring assembly

By designing a slope photovoltaic spatial cable net anchoring component, the problem of not being able to monitor the loosening of photovoltaic supports in existing technologies has been solved, realizing a stable connection and real-time monitoring of photovoltaic supports, and improving safety and service life.

CN223809720UActive Publication Date: 2026-01-16CHINA YANGTZE POWER +3
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Patent Information

Application Number
CN202520249611.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2026-01-16
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

While existing anchoring components can ensure the stability of photovoltaic supports, they cannot monitor the loosening of the supports, posing a safety hazard.

Method used

A slope photovoltaic spatial cable net anchoring component was designed, including an outer cylinder, metal claws, threaded rods, abutment blocks, adjusting connectors, rotating shafts, hanging rings, steel cables, springs, and pressure sensors. Through the combination of these components, a stable connection of the photovoltaic support and real-time monitoring of its loosening status are achieved.

Benefits of technology

It improves the stability and safety of photovoltaic brackets, enables timely detection of loosening, reduces maintenance costs and difficulty, and extends service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model is suitable for the technical field of anchoring assemblies, and provides a slope photovoltaic space cable net anchoring assembly which comprises an outer cylinder, and a metal claw used for expanding the fixing range is installed at the bottom of the outer cylinder. The threaded rod is mounted on the outer cylinder in a threaded manner; the abutting block is installed at the bottom of the threaded rod, used for supporting the metal claw and located in the outer cylinder. The mounting plate is fixed to the top of the threaded rod, and an adjusting connecting piece is mounted on the mounting plate; and the connecting assembly is arranged at the top of the adjusting connecting piece and is used for supporting a photovoltaic mounting cable net. According to the slope photovoltaic space cable net anchoring assembly provided by the scheme, the stress of the cable net can be buffered, so that the stability of the device can be improved, and meanwhile, the supporting strength of the cable net can be monitored so as to timely process.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of anchoring assembly, especially relates to a slope photovoltaic space cable net anchoring assembly. BACKGROUND

[0002] The anchoring piece is a device for connecting and fixing various engineering structures, is used for connecting steel structures, fixing walls, hanging heavy objects and the like in building engineering, and is used for fixing parts in mechanical equipment.

[0003] The flexible photovoltaic support generally adopts a single-layer suspension cable structure and a prestressed cable truss structure form, and needs to use the anchoring assembly when assembling and fixing the flexible photovoltaic support, although the existing anchoring assembly can guarantee the stability of the photovoltaic support, the loosening state of the photovoltaic support cannot be monitored. UTILITY MODEL CONTENTS

[0004] The utility model provides a slope photovoltaic space cable net anchoring assembly, aims at solving the problem that the existing anchoring assembly can guarantee the stability of the photovoltaic support, but the loosening state of the photovoltaic support cannot be monitored.

[0005] To solve the above problems, the utility model is realized in this way, a slope photovoltaic space cable net anchoring assembly, comprising: an outer tube, the bottom of the outer tube is provided with a metal claw for expanding the fixed range, a threaded rod is screwed on the outer tube, a resisting block is installed at the bottom of the threaded rod for supporting the metal claw, the resisting block is located in the outer tube, an installation plate is fixed at the top of the threaded rod, an adjusting connecting piece is installed on the installation plate, a connecting assembly for supporting the photovoltaic installation cable net is arranged at the top of the adjusting connecting piece.

[0006] Preferably, the connecting assembly comprises a rotating shaft rotatably installed at the top of the adjusting connecting piece, a hanging ring is fixed at the top of the rotating shaft, a steel cable for stabilizing the photovoltaic installation cable net is wound on the hanging ring, and the steel cable is externally sprayed with an anticorrosive coating.

[0007] Preferably, the adjusting connecting piece is composed of a connecting rod, a limiting plate, a shell and a first spring, the connecting rod is fixed at the top of the installation plate, the limiting plate is installed at the top of the connecting rod, the shell is movably sleeved outside the limiting plate, the first spring is fixed at the bottom of the limiting plate and sleeved outside the connecting rod, and the bottom of the first spring can be in contact with the inner wall of the bottom of the shell.

[0008] Preferably, a plurality of second springs are fixed in the shell, the plurality of second springs are fixedly connected with the limiting plate, a limiting telescopic rod is arranged in each of the plurality of second springs, a plurality of pressure sensors are installed on the installation plate, and the plurality of pressure sensors can be in contact with the shell.

[0009] Preferably, the pressure sensor is externally fixed with a rubber protective sleeve, the bottom of the shell is provided with a limiting opening, the limiting opening is movably sleeved outside the connecting rod, and the connecting rod is in contact with the inner wall of the limiting opening.

[0010] Preferably, the two sides of the outer cylinder are fixed with support shafts, the same support plate is fixed on the two support shafts, the support plate is movably sleeved outside the outer cylinder, and the support plate is in contact with the slope surface.

[0011] Preferably, the outer wall of the outer cylinder is provided with a threaded section, the top of the limiting plate is provided with a damping washer, and the damping washer can be in contact with the inner wall of the top of the shell.

[0012] Preferably, the shell is a hexagonal column, the shell is externally fixed with a protective sleeve, and the protective sleeve is made of silica gel.

[0013] Compared with the related art, the slope photovoltaic space cable net anchoring assembly has the following beneficial effects:

[0014] Compared with the prior art, the slope photovoltaic space cable net anchoring assembly provided by the scheme can slow down the stress generated by the photovoltaic installation cable net in a harsh environment through the adjusting connecting piece, the direction of the steel cable can be more conveniently adjusted through the rotating shaft and the stable hanging ring, so that the photovoltaic installation cable net is applicable to different positions and installation requirements, the outer cylinder can be more closely attached to the slope surface through the support plate, so that the stability of the device is increased, the metal claw can be opened through the abutting block, so that the slope surface is gripped, and the stability of the device installation is increased, when the steel cable is loose, the first spring and the second spring are extended, so that the shell abuts against the pressure sensor, so that the loosening condition of the steel cable can be known by the personnel in time, and corresponding treatment can be made in time. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a front view structural schematic view of a slope photovoltaic space cable net anchoring assembly provided by the utility model;

[0016] Figure 2 is a front view and sectional view structural schematic view of an adjusting connecting piece in the utility model;

[0017] Figure 3 is a front view structural schematic view of an installation plate, a threaded rod and an abutting block in the utility model;

[0018] Figure 4 is Figure 1 is an enlarged structural schematic view of part A shown in the utility model;

[0019] Figure 5 is a three-dimensional structural schematic view of a support plate in the utility model.

[0020] Reference numerals: 1. Outer cylinder; 2. Threaded rod; 3. Abutment block; 4. Mounting plate; 5. Connecting rod; 6. Limiting plate; 7. Outer shell; 8. Rotating shaft; 9. Hanging ring; 10. Steel cable; 11. First spring; 12. Second spring; 13. Limiting telescopic rod; 14. Pressure sensor; 15. Support shaft; 16. Support plate; 17. Metal claw; 18. Threaded section. Detailed Implementation

[0021] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used herein in the specification of the application is for the purpose of describing particular embodiments only and is not intended to limit the application; the terms "comprising" and "having," and any variations thereof, in the specification, claims, and foregoing description of the drawings are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, or foregoing drawings are used to distinguish different objects, not to describe a particular order; the terms "inner," "outer," "left," and "right" indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0022] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0023] This utility model embodiment provides a slope photovoltaic spatial cable net anchoring component, such as... Figures 1-5 As shown, the slope photovoltaic spatial cable net anchoring assembly includes: an outer cylinder 1, with a metal claw 17 installed at the bottom of the outer cylinder 1 to expand the fixing range; a threaded rod 2 threaded onto the outer cylinder 1; an abutment block 3 installed at the bottom of the threaded rod 2 to support the metal claw 17, the abutment block 3 being located inside the outer cylinder 1; a mounting plate 4 fixed to the top of the threaded rod 2, with an adjusting connector installed on the mounting plate 4; and a connecting assembly disposed on the top of the adjusting connector to support the photovoltaic installation cable net.

[0024] In this embodiment, the outer cylinder 1 serves as the main structure of the entire anchoring assembly, and the metal claws 17 installed at the bottom significantly enhance the stability and grip of the anchoring, especially suitable for complex terrains such as slopes, ensuring the stable installation of the assembly on slopes, reducing the risk of bracket loosening caused by uneven terrain or soft soil, and the threaded rod 2 is installed on the outer cylinder 1 through threads, allowing users to adjust the height as needed, and the abutting block 3 rises or falls with the rotation of the threaded rod 2, directly supporting the metal claws 17, achieving precise control of the anchoring depth, providing a flexible adjustment mechanism that can adjust the anchoring depth and tightness according to specific terrain and installation requirements, further enhancing the stability of the anchoring, and the adjustment connector provides additional connection and adjustment functions, facilitating the installation and fine-tuning of the photovoltaic bracket, not only simplifying the installation process of the photovoltaic bracket, but also achieving fine-tuning of the bracket position through the adjustment connector, ensuring the accuracy and stability of the bracket installation, and the connection assembly serves as a bridge between the entire anchoring assembly and the photovoltaic bracket, ensuring the stable connection and reliable support of the photovoltaic bracket, providing a solid foundation for the long-term stable operation of the photovoltaic system.

[0025] In further preferred embodiments of the present application, the connection assembly comprises a rotating shaft 8 rotatably mounted on the top of the adjustment connector; a hanging ring 9 fixed on the top of the rotating shaft 8; and a steel cable 10 wound on the hanging ring 9 for stabilizing the photovoltaic installation cable net, wherein the steel cable 10 is externally coated with a corrosion-resistant coating.

[0026] In this embodiment, the rotating shaft 8 can rotate to a certain extent to adapt to the angle and position adjustment of the photovoltaic installation cable net during installation, and the introduction of the rotating shaft 8 provides higher flexibility, allowing the photovoltaic bracket to be more accurately positioned and aligned during installation, and also facilitating subsequent maintenance and adjustment work, in addition, it also helps to alleviate stress concentration caused by external factors such as wind and temperature changes, protecting the entire anchoring assembly from damage, the hanging ring 9 as the fixed point of the steel cable 10 not only can bear the weight and tension of the photovoltaic installation cable net, but also can maintain a stable connection state under harsh environmental conditions, thereby ensuring the overall stability of the photovoltaic bracket, the high strength and corrosion resistance (achieved by externally spraying a corrosion-resistant coating) of the steel cable 10 enable it to maintain stable performance in various harsh environments, this design not only improves the load-bearing capacity and stability of the photovoltaic bracket, but also prolongs the service life of the entire anchoring assembly, at the same time, the presence of the corrosion-resistant coating also reduces the risk of failure of the steel cable 10 due to corrosion, further ensuring the safe operation of the photovoltaic system.

[0027] The utility model discloses further preferable embodiment, the adjusting connecting piece is by connecting rod 5, stop plate 6, shell 7 and first spring 11 is constituteed, connecting rod 5 is fixed at the top of mounting panel 4, stop plate 6 is installed at the top of connecting rod 5, shell 7 is movably sleeved in stop plate 6, first spring 11 is fixed at the bottom of stop plate 6 and is sleeved in connecting rod 5, and the bottom of first spring 11 can be contacted with the inner wall of the bottom of shell 7.

[0028] In the embodiment, connecting rod 5 is responsible for connecting mounting panel 4 with upper limit plate 6, shell 7 and other components, forming a whole, and the design of connecting rod 5 ensures the stability and strength of the adjusting connecting piece in the vertical direction, so that the entire anchoring assembly can bear the weight and tension of the photovoltaic support, at the same time, it also provides a mounting base for other components (such as limit plate 6, shell 7), so that the entire adjusting connecting piece structure is compact and functional, and the introduction of limit plate 6 increases the stability and safety of the adjusting connecting piece, and by limiting the movement range of shell 7, it ensures the controllability and accuracy of the adjustment process, avoiding the problem of photovoltaic support loosening or falling due to improper adjustment, and the design of shell 7 not only protects the internal components from the influence of external environment (such as dust, humidity, etc.), but also cooperates with limit plate 6, first spring 11 and other components through the movable sleeving mode to realize the fine adjustment of the installation angle and position of the photovoltaic support, when shell 7 is subjected to external force (such as installing or adjusting the photovoltaic support), first spring 11 will be elastically deformed to absorb impact force and buffer stress, and the introduction of first spring 11 provides good buffering and damping effect for the adjusting connecting piece, which can absorb and disperse external force impact during the installation or adjustment of the photovoltaic support, protecting other components from damage, at the same time, the elasticity of first spring 11 makes the adjustment process more smooth and stable, improving the installation efficiency and accuracy, in addition, it also has a certain self-resetting ability, which can automatically recover to the initial state after the external force disappears, maintaining the stability and reliability of the photovoltaic support.

[0029] In the further preferable embodiment of the utility model, a plurality of second springs 12 are fixed in the shell 7, the plurality of second springs 12 are all fixedly connected with the limit plate 6, a limit telescopic rod 13 is arranged in each of the plurality of second springs 12, a plurality of pressure sensors 14 are installed on the mounting panel 4, and the plurality of pressure sensors 14 can all contact the shell 7.

[0030] In this embodiment, the introduction of the second spring 12 provides a more powerful buffering capability for the anchoring assembly, which can better absorb and disperse stress when the photovoltaic support is impacted by external forces, and this design helps to reduce the problem of support loosening caused by factors such as vibration and wind, thereby prolonging the service life of the photovoltaic system, the addition of the limiting telescopic rod 13 improves the working efficiency and stability of the second spring 12, by limiting the deformation range of the spring, they avoid the risk of spring failure due to excessive deformation, and also make the spring resetting process more rapid and accurate, this design helps to maintain the stable connection and reliable support of the photovoltaic support, the introduction of the pressure sensor 14 realizes the real-time monitoring function of the loosening state of the photovoltaic support, when the support is loose, the pressure between the shell 7 and the mounting plate 4 will change, this change will be captured by the pressure sensor 14 and converted into an electrical signal output, by monitoring the change of these electrical signals, the user can discover and handle the support loosening problem in time, thereby avoiding the damage and safety hazards of the photovoltaic system caused by support loosening, this design not only improves the safety and reliability of the photovoltaic system, but also reduces the maintenance cost and difficulty.

[0031] In further preferred embodiments of the present application, the pressure sensor 14 is provided with a rubber protective sleeve, the bottom of the shell 7 is provided with a limiting port, and the limiting port is movably sleeved outside the connecting rod 5.

[0032] In this embodiment, the introduction of the rubber protective sleeve provides additional protection for the pressure sensor 14, which can prevent the sensor from being damaged by external impact, friction or corrosion during installation, use or maintenance, thereby prolonging the service life of the sensor, in addition, the rubber material also has a certain shock absorption effect, which can further reduce the influence of factors such as vibration on the accuracy of the sensor, ensuring the accuracy and reliability of the monitoring data, the design of the limiting port limits the movement range of the shell 7 on the connecting rod 5, ensuring the stability and accuracy of the shell 7 during adjustment, this design avoids problems such as loosening, falling off or damage of the shell 7 due to excessive movement, thereby improving the reliability and durability of the entire anchoring assembly.

[0033] In further preferred embodiments of the present application, the outer cylinder 1 is fixed with a support shaft 15 on both sides, and the same support plate 16 is fixed on the two support shafts 15, the support plate 16 is movably sleeved outside the outer cylinder 1, and the support plate 16 is in contact with the slope surface.

[0034] In this embodiment, the support shaft 15 serves as the mounting base of the support plate 16, which not only provides the necessary structural support, but also ensures that the support plate 16 can be stably mounted on the outer cylinder 1, and the design of the support plate 16 significantly improves the adaptability of the photovoltaic support on the slope, which can effectively disperse and transfer the weight and stress borne by the photovoltaic support through close contact with the slope surface, thereby reducing the pressure on the individual support points, which not only improves the stability of the photovoltaic support, but also prolongs its service life.

[0035] In further preferred embodiments of the present application, a threaded segment 18 is provided on the outer wall of the outer cylinder 1, and a shock-absorbing gasket is mounted on the top of the limiting plate 6, which can be in contact with the inner wall of the top of the shell 7.

[0036] In this embodiment, the design of the threaded segment 18 allows the outer cylinder 1 to be more firmly connected with other threaded components (such as mounting seats, fasteners, etc.), which helps to enhance the stability and load-bearing capacity of the entire support system in the application of photovoltaic supports, in addition, threaded connection also facilitates installation and disassembly, improves construction efficiency, and the introduction of shock-absorbing gaskets significantly reduces the noise and vibration generated by the limiting plate 6 and the shell 7 when they move relative to each other or are subjected to external impact, which not only improves the comfort of the photovoltaic support, but also reduces the risk of component wear and damage caused by long-term vibration, in addition, the shock-absorbing gasket also has a certain buffering effect, which can protect the limiting plate 6 and the shell 7 from external impact to some extent, thereby prolonging the service life of the entire anchoring assembly.

[0037] In further preferred embodiments of the present application, the shell 7 is a hexagonal cylinder, and a protective sleeve is fixedly provided outside the shell 7, and the protective sleeve is made of silica gel.

[0038] In this embodiment, the hexagonal cylindrical shell 7 not only has a more elegant appearance, but also has better stability and load-bearing capacity compared to other shapes, and the protective sleeve made of silica gel provides an additional protective barrier for the shell 7, which can effectively prevent the shell 7 from being eroded and damaged by external environment such as rainwater, dust, ultraviolet rays, etc., at the same time, the elastic properties of silica gel allow the protective sleeve to absorb and disperse energy when subjected to external impact, thereby protecting the shell 7 from damage, and the protective sleeve can also increase the friction between the shell 7 and the hands of the personnel, facilitating the adjustment of the height of the abutting block 3.

[0039] In summary, compared with the related art, the device can slow down the stress generated by the photovoltaic installation cable net in a harsh environment by setting the adjusting connecting piece, the direction of the steel cable 10 is more convenient to adjust by the rotating shaft 8 and the stable hanging ring 9, the device is suitable for photovoltaic installation cable nets with different positions and installation requirements, the outer cylinder 1 can be more fitted with the slope surface by setting the support plate 16, thereby increasing the stability of the device, the metal claw 17 can be opened by the abutting block 3, thereby gripping the slope surface and increasing the stability of the device installation, when the steel cable 10 is loose, the first spring 11 and the second spring 12 extend, the shell 7 abuts against the pressure sensor 14, so that the personnel can know the loosening condition of the steel cable 10 in time, so as to make corresponding treatment in time.

[0040] In several embodiments provided in the present application, it should be understood that the disclosed device can be implemented by other ways.

[0041] The above embodiments are only used to illustrate the technical solutions of the present application, and not to limit the protection scope of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments. Based on these embodiments, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application. Although the present application has been described in detail with reference to the above embodiments, those skilled in the art can combine, add or delete the features in the embodiments of the present application according to the circumstances without creative labor, so as to obtain different, but essentially not deviating from the concept of the present application, other technical solutions. These technical solutions also belong to the scope of the present application.

Claims

1. A sloped land photovoltaic space cable net anchoring assembly, characterized in that, The utility model relates to a photovoltaic installation cable net support device, including: The bottom of outer tube (1) is equipped with metal claw (17) for expanding fixed range; Threaded rod (2) is installed on the outer tube (1); The bottom of threaded rod (2) is equipped with the resistance block (3) for supporting metal claw (17), and the resistance block (3) is located in the outer tube (1); The mounting plate (4) is fixed on the top of threaded rod (2), and the adjusting connecting piece is installed on the mounting plate (4); The connecting assembly for supporting photovoltaic installation cable net is arranged on the top of adjusting connecting piece.

2. The sloped land photovoltaic space cable net anchoring assembly of claim 1, wherein, The connecting assembly includes: The rotating shaft (8) is rotatably installed on the top of adjusting connecting piece; The hanging ring (9) is fixed on the top of rotating shaft (8); The steel cable (10) for stabilizing photovoltaic installation cable net is wound on the hanging ring (9), and the steel cable (10) is externally sprayed with anticorrosive coating.

3. The sloped land photovoltaic space cable net anchoring assembly of claim 1, wherein, The adjusting connecting piece is composed of connecting rod (5), limiting plate (6), shell (7) and first spring (11), the connecting rod (5) is fixed on the top of mounting plate (4), the limiting plate (6) is installed on the top of connecting rod (5), the shell (7) is movably sleeved outside the limiting plate (6), the first spring (11) is fixed on the bottom of limiting plate (6) and is sleeved outside connecting rod (5), and the bottom of first spring (11) can be in contact with the inner wall of the bottom of shell (7).

4. The sloped land photovoltaic space cable net anchoring assembly of claim 3, wherein, A plurality of second springs (12) are fixed in the shell (7), the plurality of second springs (12) are fixedly connected with the limiting plate (6), the plurality of second springs (12) are provided with limiting telescopic rods (13) inside, a plurality of pressure sensors (14) are installed on the mounting plate (4), and the plurality of pressure sensors (14) can be in contact with the shell (7).

5. The sloped land photovoltaic space cable net anchoring assembly of claim 4, wherein, The pressure sensor (14) is externally fixedly sleeved with a rubber protective sleeve, the bottom of shell (7) is provided with a limiting opening, the limiting opening is movably sleeved outside connecting rod (5), and connecting rod (5) is in contact with the inner wall of the limiting opening.

6. The hillside photovoltaic space cable net anchoring assembly of claim 1, wherein, Both sides of outer tube (1) are fixed with support shafts (15), and the same support plate (16) is fixed on the two support shafts (15), the support plate (16) is movably sleeved outside the outer tube (1), and the support plate (16) is in contact with the slope surface.

7. The sloped land photovoltaic space cable net anchoring assembly of claim 3, wherein, Threaded section (18) is arranged on the outer wall of outer tube (1), damping gasket is installed on the top of limiting plate (6), and the damping gasket can be in contact with the inner wall of the top of shell (7).

8. The sloped land photovoltaic space cable net anchoring assembly of claim 3, wherein, The shell (7) is a hexagonal column, a protective sleeve is fixedly sleeved outside the shell (7), and the protective sleeve is made of silica gel.