Anchoring system, supporting frame body and photovoltaic system

By using a combined design of at least two anchors and spacers in the anchoring system, the problem of slack of a single anchor is solved, and the stability and reliability of the anchoring system are improved, ensuring the stability and maintenance convenience of the support frame.

CN223206793UActive Publication Date: 2025-08-08HEFEI SUNGROW RENEWABLE ENERGY SCI & TECH CO LTD
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Patent Information

Application Number
CN202422399077.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-08-08
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

The tightening reliability of a single anchor is low, and it is easy to relax or dean under long-term load-loading operations of the support frame, which affects the tension of the bearing cable and reduces the structural stability and reliability of the support frame.

Method used

The combination design of at least two anchors and at least one spacer is adopted, and the second end of the anchor is abutted or connected to the anchor structure, and the spacer is arranged between adjacent anchors to ensure that the anchor is stably clamped the load-bearing cable and is detachable and equipped for easy maintenance.

Benefits of technology

It improves the overall structural stability and reliability of the anchoring system, prevents the load-bearing cable from loosening, ensures the stable load-bearing function of the support frame, and facilitates the disassembly and assembly and maintenance of anchors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model discloses an anchoring system, a supporting frame body and a photovoltaic system, and relates to the technical field of cable assembly, the anchoring system comprises an anchoring structure, a bearing cable, at least two anchorage devices and at least one spacer, and the anchoring structure is provided with an anchoring surface; the at least two anchorage devices are sequentially connected to the bearing cable in a sleeving mode at intervals and respectively clamp the bearing cable, and the second end of the anchorage device closest to the anchoring structure abuts against or is connected to the anchoring face; the spacer is detachably connected to the bearing cable in a sleeving mode and arranged between any two adjacent anchorage devices, one side of the spacer abuts against the anti-loosening cap of one anchorage device, and the other side of the spacer abuts against the second end of the other anchorage device. According to the technical scheme, the anchoring effect of the anchoring system in the supporting frame body is enhanced, and the structural stability and reliability of the supporting frame body are improved.
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Description

Technical Field

[0001] The embodiments of the present application relate to the field of cable assembly technology, and in particular to an anchoring system, a support frame and a photovoltaic system. Background Art

[0002] In the related art, the support frame can utilize an anchoring system to keep the load-bearing cables at a certain tension, so that the load-bearing cables can have a good load-bearing capacity and achieve a stable supporting effect of the support frame.

[0003] Anchoring systems typically utilize a single anchor to clamp the load-bearing cable. Once the load-bearing cable is adjusted to the desired tension, the anchor is used to clamp the load-bearing cable and position the second end of the anchor ring against or connected to the anchoring surface of the support structure, achieving a secure installation of the anchoring system. However, a single anchor offers limited fastening reliability. Under prolonged load-bearing conditions on the support frame, the anchor can easily become loose or unanchored, affecting the tension of the load-bearing cable within the anchoring system and reducing the structural stability and reliability of the support frame. Utility Model Content

[0004] Multiple embodiments in this application propose an anchoring system, a support frame, and a photovoltaic system, aiming to enhance the anchoring effect of the anchoring system in the support frame, prevent the anchoring system from loosening, and improve the structural stability and reliability of the support frame.

[0005] An anchoring system proposed in one embodiment of the present application includes an anchoring structure, a load-bearing cable, at least two anchors and at least one spacer, the anchoring structure is provided with an anchoring surface; the load-bearing cable is passed through the anchoring surface; the anchoring structure is provided with an anchoring surface; the load-bearing cable is passed through the anchoring surface; the anchor includes an anchor ring, a clamp and an anti-loosening cap, the anchor ring has a first end and a second end, a limiting hole is provided in the anchor ring for the load-bearing cable to pass through, the inner diameter of the limiting hole gradually decreases from the first end to the second end, and the clamp The plate is inserted into the limiting hole and abuts the inner wall of the limiting hole and the load-bearing cable, the anti-loosening cap is connected to the first end and abuts the clip, at least two of the anchors are sequentially sleeved on the load-bearing cable, wherein the second end of the anchor closest to the anchoring structure abuts or is connected to the anchoring surface; the spacer is detachably sleeved on the load-bearing cable and is provided between any two adjacent anchors, one side of the spacer abuts the anti-loosening cap of one anchor, and the other side of the spacer abuts the second end of the other anchor.

[0006] In one embodiment, the spacer is provided with a mounting through hole, a circumferential side of the spacer is provided with a disassembly opening communicating with the mounting through hole, and the load-bearing cable is passed through the mounting through hole.

[0007] In one embodiment, the spacer is provided with a limiting structure, and the limiting structure is detachably connected to the spacer to open or close the disassembly opening.

[0008] In one embodiment, the spacer includes a first clamping block, a second clamping block and a fastener, the first clamping block and the second clamping block respectively abut against opposite sides of the load-bearing cable, and the fastener connects the first clamping block and the second clamping block so that the first clamping block and the second clamping block clamp the load-bearing cable.

[0009] In one embodiment, a first receiving groove is provided on a side of the first clamping block facing the second clamping block, a second receiving groove is provided on a side of the second clamping block facing the first clamping block, and the carrying cable is passed through the first receiving groove and the second receiving groove.

[0010] In one embodiment, the first clamping block is provided with a first mounting hole, the second clamping block is provided with a second mounting hole, and the fastener passes through the first mounting hole and is connected to the second mounting hole.

[0011] In one embodiment, the outer circumference of the anchor ring is provided with an external thread, the inner wall of the anti-loosening cap is provided with an internal thread, and the anti-loosening cap is threadedly connected to the anchor ring.

[0012] In one embodiment, the anti-loosening cap is provided with a fixing screw, and the fixing screw connects the anti-loosening cap and the anchor ring.

[0013] An embodiment of the present application further provides a support frame, which includes the above-mentioned anchoring system.

[0014] An embodiment of the present application further provides a photovoltaic system, which includes a photovoltaic component and a support frame. The support frame is the support frame described above, and the photovoltaic component is installed on the support frame.

[0015] In the multiple embodiments provided in the present application, by arranging at least two anchors and at least one spacer on the load-bearing cable, and utilizing the second end of the anchor of the adjacent anchoring structure to cooperate with or connect with the anchoring surface of the anchoring structure, the anchoring system can utilize other anchors to ensure the clamping of the load-bearing cable when the anchor cooperating with the anchoring structure fails and becomes loose, thereby preventing the load-bearing cable from loosening and ensuring the stable load-bearing function of the support frame; at the same time, spacers are arranged between adjacent anchors, and the spacers are detachable and arranged on the load-bearing cable. By removing the spacers on the load-bearing cable, at least two anchors can be stably removed from the load-bearing cable in turn, effectively avoiding at least two anchors being tightly stacked on the load-bearing cable and being unable to properly remove, replace or maintain the failed anchor, thereby ensuring the stable and reliable assembly of the anchoring system and improving the practicality and structural reliability of the anchoring system. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0017] Figure 1 A schematic structural diagram of an embodiment of the anchoring system provided in this application;

[0018] Figure 2 for Figure 1 A cross-sectional view of an embodiment of an anchoring system;

[0019] Figure 3 for Figure 1 A structural disassembly diagram of an embodiment of an anchoring system;

[0020] Figure 4 for Figure 1 A structural disassembly diagram of another embodiment of the anchoring system;

[0021] Figure 5 for Figure 1 A front view of an embodiment of a spacer of an anchoring system;

[0022] Figure 6 for Figure 1 A front view of another embodiment of a spacer of an anchoring system;

[0023] Figure 7 for Figure 1 A front view of another embodiment of a spacer of an anchoring system;

[0024] Figure 8 for Figure 1 A cross-sectional view of an embodiment of a spacer of an anchoring system.

[0025] Description of Figure Numbers:

[0026] 100. Anchoring system; 10. Load-bearing cable; 30. Anchor; 31. Anchor ring; 311. Limiting hole; 313. First end; 315. Second end; 33. Clip; 35. Anti-loosening cap; 50. Spacer; 50a. Mounting through hole; 50b. Assembly and disassembly port; 50c. Limiting structure; 51. First clamping block; 511. First receiving groove; 513. First mounting hole; 53. Second clamping block; 531. Second receiving groove; 533. Second mounting hole; 55. Fastener; 70. Anchoring structure; 71. Anchoring surface. DETAILED DESCRIPTION

[0027] The following will be combined with the drawings in multiple embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of this application.

[0028] It should be noted that if multiple embodiments of the present application involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the components under a certain specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0029] In addition, if there are descriptions involving "first", "second", etc. in multiple embodiments of the present application, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or suggesting their relative importance or implicitly indicating the number of technical features indicated. Therefore, the features limited to "first" and "second" may explicitly or implicitly include at least one of such features. In addition, if "and / or" or "and / or" appears in the full text, its meaning includes three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or solutions that satisfy both A and B. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of ordinary technicians in this field to implement. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by this application.

[0030] In the related art, the support frame can utilize an anchoring system to maintain a certain tension of the load-bearing cable, so that the load-bearing cable can have a better load-bearing capacity and realize the stable support function of the support frame. The anchoring system can usually utilize a single anchor to clamp the load-bearing cable. When the load-bearing cable is adjusted to the required tension, the anchor is utilized to clamp the load-bearing cable and the second end of the anchor ring is abutted or connected to the anchoring surface of the support structure to realize the stable installation of the anchoring system. However, the fastening reliability of a single anchor is low, and it is easy to cause the anchor to loosen or become unanchored under long-term load-bearing operation of the support frame, thereby affecting the tension of the load-bearing cable in the anchoring system and reducing the structural stability and reliability of the support frame. In response to the above problems, the present application proposes an anchoring system 100.

[0031] See also Figures 1 to 8In one embodiment of the present application, the anchoring system 100 includes an anchoring structure 70, a load-bearing cable 10, at least two anchors 30 and at least one spacer 50. The anchoring structure 70 is provided with an anchoring surface 71; the load-bearing cable 10 is passed through the anchoring surface 71; the anchor 30 includes an anchor ring 31, a clip 33 and an anti-loosening cap 35. The anchor ring 31 has a first end 313 and a second end 315. A limiting hole 311 for passing the load-bearing cable 10 is provided in the anchor ring 31. The inner diameter of the limiting hole 311 gradually decreases from the first end 313 to the second end 315. The clip 33 is inserted In the limiting hole 311, and abut against the inner wall of the limiting hole 311 and the load-bearing cable 10, the anti-loosening cap 35 is connected to the first end 313 and abuts the clip 33, at least two anchors 30 are sequentially sleeved on the load-bearing cable 10, wherein the second end 315 of the anchor 30 closest to the anchoring structure 10 abuts or is connected to the anchoring surface 71; the spacer 50 is detachably sleeved on the load-bearing cable 10, and is provided between any two adjacent anchors 30, one side of the spacer 50 abuts the anti-loosening cap 35 of one anchor 30, and the other side of the spacer 50 abuts the second end 315 of the other anchor 30.

[0032] It can be understood that the support frame can be used in equipment such as photovoltaic systems, and the anchoring structure 70 and the anchor 30 of the anchoring system 100 can be used to provide a certain supporting and anchoring effect on the load-bearing cable 10, so that the load-bearing cable 10 maintains a certain degree of tension, so that the load-bearing cable 10 can have a certain load-bearing capacity, which is conducive to arranging multiple side-by-side load-bearing cables 10 in the support frame to form a load-bearing surface or hanging objects of a certain weight on the load-bearing cables 10 to realize the supporting and load-bearing function of the support frame.

[0033] Taking the application of a support frame in a photovoltaic system as an example, the photovoltaic system can arrange and install photovoltaic modules on the support frame's load-bearing cables 10. The load-bearing cables 10 can be used to better support the photovoltaic modules, ensuring the stable operation of the photovoltaic power station. In this case, the support frame assembled using the anchoring system 100 can have a good structural characteristics of large span and high clearance, making it suitable for the construction of photovoltaic power stations in various environments such as lakes and mountainous areas.

[0034] The anchoring system 100 can be used to install the load-bearing cable 10 through the anchoring surface 71 of the anchoring structure 70. The anchoring structure 70 can be a structure such as a bracket or a wall with a certain load-bearing capacity. In this case, by installing an anchor 30 on the load-bearing cable 10, the anchor 30 can be used to clamp the load-bearing cable 10, so that the anchor 30 abuts against the anchoring surface 71 of the anchoring structure 70, or the anchor 30 is connected and fixed to the anchoring surface 71 of the anchoring structure 70. Under the cooperation of the anchor 30 and the anchoring structure 70, the load-bearing cable 10 can be assembled with a certain tension. The anchor 30 can include an anchor ring 31, a clip 33, and a locking cap 35. The anchor ring 31 can be provided with a limiting hole 311 that passes through a first end 313 and a second end 315. In this case, the limiting hole 311 can be provided with a tapered through-hole structure so that the inner diameter of the limiting hole 311 gradually decreases from the first end 313 to the second end 315. The cam 33 is fixed to the cam 31 of the second end portion 313 of the anchor ring 31 so as to be fixed on the cam 31 of the second end portion 313 of the anchor ring 31. During the assembly process of the anchor 30, tensioning equipment such as a tensioning jack can be used to adjust the load-bearing cable 10 to a certain tensioning degree, while the second end 315 of the anchor ring 31 is stably installed on the anchoring surface 71, and the clip 33 and the anti-loosening cap 35 are installed on the anchor ring 31, thereby effectively ensuring that the anchor 30 maintains the tensioning force on the load-bearing cable 10.

[0035] In the present application, by providing at least two anchors 30 arranged at intervals on the load-bearing cable 10, the second end 315 of the anchor 30 closest to the anchoring structure can be mated with or connected to the anchoring surface 71, so that the anchoring system 100 can stably maintain a certain tension in the load-bearing cable 10. By providing a spacer 50 between any two adjacent anchors 30, the spacer 50 can be used to maintain the spacing between the two adjacent anchors 30, preventing the anchors 30 from stacking one after another. In addition, one side of the spacer 50 can be mated with the anti-loosening cap 35 of one anchor 30, and the other side of the spacer 50 can be mated with the second end 315 of the anchor ring of another anchor 30, so that the remaining anchors 30 not installed on the anchoring surface 71 can be clamped and installed on the load-bearing cable 10 one after another. This allows multiple anchors 30 to be more stably and reliably assembled and disassembled from the load-bearing cable 10, thereby improving the overall structural stability and reliability of the anchoring system 100.

[0036] Therefore, by securely mounting at least two anchors 30 on the load-bearing cables 10, if the outermost anchor 30 secured to the anchor structure 70 fails and becomes loose, the remaining anchors 30 can be used to securely clamp the load-bearing cables 10, effectively preventing the load-bearing cables 10 from becoming loose. This allows the support frame to more securely support and secure the photovoltaic modules, further improving the practicality and reliability of the support frame. Furthermore, the spacers 50 can fill the gaps between adjacent anchors 30, preventing the load-bearing cables 10 from shaking when the anchors 30 secured to the anchor structure 70 become loose, thereby ensuring the overall structural stability of the support frame.

[0037] Among them, by making the anchor ring 31 adopt the limiting hole 311 structure of the tapered through hole, the anchor ring 31 can be more conveniently separated from the clip 33 when the anchor ring 31 moves from the first end 313 to the second end 315 under the action of external force, so as to avoid the anchor ring 31 and the clip 33 being stuck to each other, so that the anchor 30 can be better disassembled and adjusted or the anchor 30 can be disassembled and replaced. Figure 3 and Figure 4As shown, by detachably arranging the spacer 50 on the load-bearing cable 10, the spacer 50 can be removed from the load-bearing cable 10 when the anchor 30 near the anchor structure 70 fails and becomes loose. At this time, there can be a certain movable gap between the two anchors 30, so that the anchor 30 behind the failed anchor 30 can move the anchor ring 31 toward the anchoring surface 71 by a certain distance, so that the anchor ring 31 and the clip 33 can be better separated to release the clamping fixation of the anchor 30 on the load-bearing cable 10, so that the anchor 30 can be stably removed from the load-bearing cable 10, which is conducive to more conveniently releasing the coordinated fixation between multiple anchors 30 at this time, so that the anchor system 100 can more stably use tensioning equipment such as tensioning jacks to re-adjust and tighten the loose anchor 30, or the loose anchor 30 can be stably removed and replaced from the load-bearing cable 10, thereby realizing reliable inspection and maintenance of the support frame, so that the support frame can be more stably used in equipment such as photovoltaic systems to carry heavy objects, further improving the practicality and reliability of the anchor system 100.

[0038] In one embodiment of the present application, at least two anchors 30 and at least one spacer 50 are provided on the load-bearing cable 10, and the second end portion 315 of the anchor 30 adjacent to the anchoring structure 70 is cooperated with or connected to the anchoring surface 71 of the anchoring structure 70. This allows the anchoring system 100 to use other anchors 30 to clamp the load-bearing cable 10 when the anchor 30 cooperating with the anchoring structure fails and becomes loose, thereby preventing the load-bearing cable 10 from loosening and ensuring the stable load-bearing function of the support frame. At the same time, a spacer 50 is provided between adjacent anchors 30, and the spacer 50 is detachably provided on the load-bearing cable 10. By removing the spacer 50 from the load-bearing cable 10, at least two anchors 30 can be stably removed from the load-bearing cable 10 in sequence, effectively avoiding at least two anchors 30 from being tightly stacked on the load-bearing cable 10 and being unable to properly remove, replace or maintain the failed anchor 30, thereby ensuring the stable and reliable installation of the anchoring system 100 on the anchoring structure and improving the practicality and structural reliability of the anchoring system 100.

[0039] See Figures 5 to 7 In one embodiment of the present application, the spacer 50 is provided with a mounting hole 50a, and the peripheral side of the spacer 50 is provided with a disassembly opening 50b connected to the mounting hole 50a, and the carrying cable 10 is passed through the mounting hole 50a.

[0040] In this embodiment, the spacer 50 can be set up in a block structure. By setting mounting holes 50a that pass through the spacer 50 on opposite sides, and setting a disassembly and assembly port 50b connected to the mounting holes 50a on the circumference of the spacer 50, the size of the disassembly and assembly port 50b can be set to correspond to the size of the load-bearing cable 10, and then the spacer 50 can be aligned with the load-bearing cable 10 from above the load-bearing cable 10 using the disassembly and assembly port 50b, so that the spacer 50 can be sleeved on the load-bearing cable 10 using the mounting holes 50a, thereby achieving stable installation of the spacer 50 on the load-bearing cable 10; and when removing the spacer 50 from the load-bearing cable 10, the load-bearing cable 10 can be passed through the disassembly and assembly port 50b relative to the spacer 50, thereby achieving separation of the load-bearing cable 10 and the spacer 50, and then the spacer 50 can be more conveniently disassembled and assembled on the load-bearing cable 10 by setting a notch on the circumference of the spacer 50, further improving the disassembly and assembly convenience and reliability of the anchoring system 100.

[0041] Among them, the size of the disassembly and assembly port 50b and the installation through hole 50a can be larger than the wire diameter size of the load-bearing cable 10, so that the load-bearing cable 10 and the spacer 50 can achieve more stable relative disassembly and assembly movement; or, when the spacer 50 is made of a material with a certain elasticity, the size of the disassembly and assembly port 50b can be smaller than the wire diameter size of the load-bearing cable 10, so that the spacer 50 can use its own elasticity to make the spacer 50 clamped and installed on the load-bearing cable 10, which is conducive to better preventing the spacer 50 from falling off after installation, and further improving the overall structural stability of the anchoring system 100.

[0042] See Figures 5 to 7 In one embodiment of the present application, the spacer 50 is provided with a limiting structure 50c, and the limiting structure 50c is detachably connected to the spacer 50 to open the disassembly opening 50b or close the disassembly opening 50b.

[0043] In this embodiment, if Figure 5 As shown, the limiting structure 50c can be a limiting bolt provided on the spacer 50, and the limiting bolt can be used to prevent the load-bearing cable 10 from passing through the disassembly opening 50b at the disassembly opening 50b; or Figure 6 As shown, the limiting structure 50c can be a limiting cap threadedly connected to the installation through hole 50a, and the limiting cap can be used to block the disassembly opening 50b; or, as shown in FIG. Figure 7As shown, the limiting structure 50c can be a cover plate rotatably connected to the outer periphery of the spacer 50, and the cover plate is rotated to cover or open the disassembly opening 50b. Furthermore, by providing the limiting structure 50c on the spacer 50, the disassembly opening 50b can be opened to prevent relative movement between the load-bearing cable 10 and the spacer 50 when the spacer 50 is installed on the load-bearing cable 10 or when it is removed from the load-bearing cable 10. When the spacer 50 is stably installed on the load-bearing cable 10, the limiting structure 50c can be used to cover the disassembly opening 50b, so that the limiting structure 50c prevents the load-bearing cable 10 from separating from the mounting through-hole 50a, thereby better preventing the spacer 50 from separating from the load-bearing cable 10 and further improving the overall structural stability and reliability of the anchoring system 100.

[0044] See Figure 8 In one embodiment of the present application, the spacer 50 includes a first clamping block 51, a second clamping block 53 and a fastener 55. The first clamping block 51 and the second clamping block 53 respectively abut against opposite sides of the load-bearing cable 10. The fastener 55 connects the first clamping block 51 and the second clamping block 53 so that the first clamping block 51 and the second clamping block 53 clamp the load-bearing cable 10.

[0045] In this embodiment, the spacer 50 can be abutted against opposite sides of the load-bearing cable 10 using a first clamping block 51 and a second clamping block 53, respectively. Fasteners 55, such as bolts, latches, and clips, are then used to connect and fasten the first clamping block 51 and the second clamping block 53, so that the first clamping block 51 and the second clamping block 53 can be stably clamped and fixed to the load-bearing cable 10, thereby achieving a stable installation of the spacer 50 on the load-bearing cable 10 and further improving the structural stability and reliability of the anchoring system 100. The use of fasteners 55 to connect and fasten the first clamping block 51 and the second clamping block 53 can further improve the connection stability and reliability of the first clamping block 51 and the second clamping block 53, ensuring the stable installation of the spacer 50 on the load-bearing cable 10. Furthermore, the spacer 50 can be more conveniently assembled and disassembled, further improving the practicality and controllability of the anchoring system 100.

[0046] See Figure 8 In one embodiment of the present application, a first accommodating groove 511 is provided on a side of the first clamping block 51 facing the second clamping block 53, and a second accommodating groove 531 is provided on a side of the second clamping block 53 facing the first clamping block 51, and the carrying cable 10 is passed through the first accommodating groove 511 and the second accommodating groove 531.

[0047] In this embodiment, by setting a first accommodating groove 511 on the first clamping block 51 and a second accommodating groove 531 on the second clamping block 53, when the spacer 50 is connected and installed on the load-bearing cable 10, the load-bearing cable 10 can be accommodated in the first accommodating groove 511 and the second accommodating groove 531, which is conducive to better reducing the distance between the first clamping block 51 and the second clamping block 53, so that the fastener 55 can be more firmly connected and fixed to the first clamping block 51 and the second clamping block 53, and better avoid the fastener 55 from breaking, so that the spacer 50 can be more firmly installed on the load-bearing cable 10, and at the same time, the contact area between the spacer 50 and the two adjacent anchors 30 can be better increased, further improving the overall structural stability and reliability of the anchoring system 100.

[0048] See Figure 8 In one embodiment of the present application, the first clamping block 51 is provided with a first mounting hole 513 , the second clamping block 53 is provided with a second mounting hole 533 , and the fastener 55 passes through the first mounting hole 513 and is connected to the second mounting hole 533 .

[0049] In this embodiment, the fastener 55 can be a structure such as a bolt or a pin. At this time, by setting a first mounting hole 513 on the first clamping block 51 and setting a second mounting hole 533 on the second clamping block 53, the fastener 55 can be inserted and fixed on the second mounting hole 533 through the first mounting hole 513, thereby achieving a stable installation of the fastener 55 on the first clamping block 51 and the second clamping block 53. The plug-in installation method can then be used to better improve the convenience of disassembly and assembly of the spacer 50, and at the same time, the fastener 55 can be better connected to the first clamping block 51 and the second clamping block 53 to form a whole, further improving the structural strength of the spacer 50, so that the spacer 50 can be more firmly installed on the load-bearing cable 10, further improving the practicality and structural reliability of the anchoring system 100.

[0050] In one embodiment of the present application, the outer periphery of the anchor ring 31 is provided with an external thread, the inner wall of the anti-loosening cap 35 is provided with an internal thread, and the anti-loosening cap 35 is threadedly connected to the anchor ring 31.

[0051] In this embodiment, the anti-loosening cap 35 can be configured in a structure similar to a sleeve. In this case, the anti-loosening cap 35 can be sleeved and installed on the first end portion 313 of the anchor ring 31, so that the anti-loosening cap 35 can stably cover the end surface of the first end portion 313 of the anchor ring 31, ensuring that the anti-loosening cap 35 reliably abuts and fixes the clip 33. In this case, the inner wall of the anti-loosening cap 35 and the outer wall of the anchor ring 31 can be provided with mutually matching internal and external threads, so that the anti-loosening cap 35 can be installed with the anchor ring 31 in a threaded connection manner, realizing a more convenient assembly process of the anti-loosening cap 35 and the anchor ring 31, further improving the assembly convenience and practicality of the anchoring system 100.

[0052] In one embodiment of the present application, the anti-loosening cap 35 is provided with a fixing screw, and the fixing screw connects the anti-loosening cap 35 and the anchor ring 31 .

[0053] In some embodiments, the anti-loosening cap 35 may be provided with a flange structure that fits against the outer periphery of the anchor ring 31. In this case, by providing matching threaded holes on the outer peripheries of the anti-loosening cap 35 and the anchor ring 31, a fixing screw can be passed through the threaded holes on the anti-loosening cap 35 and the outer wall of the anchor ring 1, and the fixing screw is fastened to the anchor ring 31. The nut of the fixing screw is used to press and fix the anti-loosening cap 35, thereby achieving a stable assembly of the anti-loosening cap 35 and the anchor ring 31. Furthermore, under the tightening connection of the fixing screw, the anti-loosening cap 35 can be better pressed against the fixing clip 33, ensuring the stable clamping effect of the anchor 30 on the load-bearing cable 10, preventing the load-bearing cable 10 from loosening in the anchoring system 100, and further improving the structural stability and reliability of the anchoring system 100.

[0054] In other embodiments, the fixing screw can also pass through the end face connecting the anti-loosening cap 35 and the first end 313 of the anchor ring 31 to achieve a fastening connection between the anti-loosening cap 35 and the anchor ring 31 by the fixing screw. At this time, when disassembling and assembling the anchor 30, the spacer 50 can be removed first, and the tool can be used to operate the loosening and tightening of the fixing screw at the gap between the two anchors 30 to ensure the stable disassembly and assembly of the anchor system 100, thereby further improving the practicality and reliability of the anchor system 100.

[0055] The present application also proposes a support frame, which includes an anchoring system 100. The specific structure of the anchoring system 100 refers to the above embodiment. Since the present support frame adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought by the technical solutions of the above embodiments, which will not be repeated here.

[0056] The present application also proposes a photovoltaic system, which includes photovoltaic components and a support frame. The specific structure of the support frame refers to the above-mentioned embodiment. Since the present photovoltaic system adopts all the technical solutions of all the above-mentioned embodiments, it has at least all the beneficial effects brought by the technical solutions of the above-mentioned embodiments, which will not be described one by one here.

[0057] The above description is merely an exemplary embodiment of the present application and does not limit the patent scope of the present application. Any equivalent structural transformation made using the contents of the present application specification and drawings under the technical concept of the present application, or directly / indirectly applied in other related technical fields, is included in the patent protection scope of the present application.

Claims

1. An anchoring system, characterized in that: include: An anchoring structure, wherein the anchoring structure is provided with an anchoring surface; A load-bearing cable, the load-bearing cable being passed through the anchoring surface; At least two anchors, each anchor comprising an anchor ring, a clip and an anti-loosening cap, the anchor ring having a first end and a second end, a limiting hole for the load-bearing cable to pass through being provided in the anchor ring, the inner diameter of the limiting hole gradually decreasing from the first end to the second end, the clip being inserted into the limiting hole and abutting against the inner wall of the limiting hole and the load-bearing cable, the anti-loosening cap being connected to the first end and abutting against the clip, at least two anchors being sequentially sleeved on the load-bearing cable at intervals, wherein the second end of the anchor closest to the anchoring structure abuts or is connected to the anchoring surface; At least one spacer is detachably sleeved on the carrying cable and is arranged between any two adjacent anchors, one side of the spacer abuts the anti-loosening cap of one anchor, and the other side of the spacer abuts the second end of the other anchor.

2. The anchoring system according to claim 1, wherein: The spacer is provided with a mounting through hole, and a detachment opening communicating with the mounting through hole is provided on a peripheral side of the spacer, and the load-bearing cable is passed through the mounting through hole.

3. The anchoring system according to claim 2, wherein: The spacer is provided with a limiting structure, and the limiting structure is detachably connected to the spacer to open or close the disassembly opening.

4. The anchoring system according to claim 1, wherein: The spacer includes a first clamping block, a second clamping block and a fastener. The first clamping block and the second clamping block respectively abut against opposite sides of the load-bearing cable. The fastener connects the first clamping block and the second clamping block so that the first clamping block and the second clamping block clamp the load-bearing cable.

5. The anchoring system according to claim 4, characterized in that A first accommodating groove is provided on a side of the first clamping block facing the second clamping block, a second accommodating groove is provided on a side of the second clamping block facing the first clamping block, and the carrying cable is passed through the first accommodating groove and the second accommodating groove.

6. The anchoring system according to claim 4, characterized in that The first clamping block is provided with a first mounting hole, the second clamping block is provided with a second mounting hole, and the fastener passes through the first mounting hole and is connected to the second mounting hole.

7. The anchoring system according to claim 1, wherein: The outer periphery of the anchor ring is provided with an external thread, the inner wall of the anti-loosening cap is provided with an internal thread, and the anti-loosening cap is thread-matched with the anchor ring.

8. The anchoring system according to claim 1, wherein: The anti-loosening cap is provided with a fixing screw, and the fixing screw connects the anti-loosening cap and the anchor ring.

9. A support frame, characterized in that: The support frame comprises an anchoring system according to any one of claims 1 to 8.

10. A photovoltaic system, characterized in that: The photovoltaic system includes a photovoltaic component and a support frame, the support frame is the support frame according to claim 9, and the photovoltaic component is installed on the support frame.