Anti-tearing photovoltaic steel cable fixing assembly

By combining tear-resistant connectors, reinforcing pads, and steel cable locking mechanisms, the tearing problem of photovoltaic steel cable fasteners at the connection point with the support beam in areas with high wind speeds was solved, achieving higher connection reliability.

CN223578700UActive Publication Date: 2025-11-21TIANJIN POWER CONSTR NEW ENERGY CONSTR CO LTD
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Patent Information

Application Number
CN202520061006.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2025-11-21
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

Existing photovoltaic steel cable fasteners are prone to tearing at the connection point with the support beam in areas with high wind speeds.

Method used

Tear-resistant connectors, reinforcing pads, and steel cable locks are used, and they are connected by the first bolt to form a three-sided surrounding support beam, which increases the connection area and improves reliability.

Benefits of technology

It effectively prevents tearing at the connection between the cable fixing components and the support beam, enhancing the connection reliability under strong wind conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an anti-tearing photovoltaic steel cable fixing assembly. The anti-tearing photovoltaic steel cable fixing assembly comprises an anti-tearing connecting piece, a first bolt, a reinforcing base plate and a steel cable lock catch. The anti-tearing connecting piece comprises a bottom plate, a side plate and a frame, the bottom plate and the frame are arranged on the two opposite sides of the side plate respectively, and the bottom plate, the side plate and the frame form a supporting beam channel. The steel cable lock catch comprises a fixed fastener and a movable fastener, a photovoltaic steel cable channel is formed in the fixed fastener and the movable fastener, and a mounting screw hole is formed in the top of the fixed fastener; the reinforcing base plate covers the bottom plate, a first screw hole and a second screw hole are formed in the corresponding positions of the reinforcing base plate and the bottom plate respectively, the first bolt penetrates through the first screw hole and the second screw hole from top to bottom, and the tail end of the first bolt is assembled in the mounting screw hole. The utility model aims to provide an anti-tearing photovoltaic steel cable fixing assembly which is suitable for fixing a photovoltaic steel cable and solves the problem that the joint of a cable fixing piece and a supporting beam is torn.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the steel cable fixing part field especially is related to a kind of anti-tear photovoltaic steel cable fixing assembly. BACKGROUND

[0002] Flexible solar panel is made of amorphous silicon encapsulated by resin as main photovoltaic element layer laid on the bottom plate made of flexible material. The flexible solar panel system is usually used for photovoltaic steel cable, and the cable fixing part is usually used for fixing the photovoltaic steel cable. The cable fixing part generally includes a fixed cable clamp, a movable cable cover and a screw. The cable fixing part is connected to the support beam by the screw. The cable fixing part and the movable cable cover form a steel cable channel for the photovoltaic steel cable. The fixed cable clamp and the movable cable cover are connected by the screw. The cable fixing part is connected to the support beam by the screw. In the area with strong wind, the cable fixing part and the support beam are often torn at the connection. SUMMARY

[0003] Therefore, the utility model aims at providing an anti-tear photovoltaic steel cable fixing assembly to fix the photovoltaic steel cable and solve the problem of tearing at the connection between the cable fixing part and the support beam.

[0004] To achieve the above-mentioned purpose, the technical scheme of the utility model is as follows:

[0005] An anti-tear photovoltaic steel cable fixing assembly includes an anti-tear connecting part, a first bolt, a reinforcing gusset plate and a steel cable lock. The anti-tear connecting part includes a bottom plate, a side plate and a frame. The opposite sides of the side plate are connected to the bottom plate and the frame, respectively. The bottom plate, the side plate and the frame form a support beam channel. The steel cable lock includes a fixed buckle and a movable buckle. The inside of the fixed buckle and the movable buckle forms a photovoltaic steel cable channel. A mounting screw hole is formed in the top of the fixed buckle. The reinforcing gusset plate covers the bottom plate. First and second screw holes are formed in the corresponding positions of the reinforcing gusset plate and the bottom plate, respectively. The first bolt passes through the first and second screw holes from top to bottom, and the end of the first bolt is fitted in the mounting screw hole.

[0006] Further, the bottom plate and the frame are located on the same side of the side plate. The width of the bottom plate is greater than the width of the frame. The width of the side plate corresponds to the width of the support beam.

[0007] Further, the steel cable lock further includes a lower lock groove and a second bolt. The lower lock groove is formed in the lower part of the fixed buckle. One end of the movable buckle can be fitted in the lower lock groove. The other end of the movable buckle is connected to the fixed buckle by the second bolt. The second bolt passes through from bottom to top.

[0008] Further, the second bolt is an internal hexagonal bolt.

[0009] Further, the steel cable lock further comprises an upper lock groove and a third bolt, the upper lock groove is arranged on the upper part of the fixed fastener, one end of the movable fastener is matched with the upper lock groove, and the other end of the movable fastener is connected with the fixed fastener through the third bolt, and the third bolt is arranged on the lower part of the fixed fastener and is arranged in the horizontal direction.

[0010] Further, the third bolt is a hexagonal bolt.

[0011] Further, the first bolt is a hexagonal bolt.

[0012] Further, the first bolt is sleeved with a gasket, and the gasket is arranged on the pad.

[0013] Further, vertical reinforcing plates and horizontal reinforcing plates are arranged between the bottom plate and the side plate, and the bottom plate, the side plate, the vertical reinforcing plates and the horizontal reinforcing plates are connected into an integrated structure.

[0014] Compared with the prior art, the anti-tearing photovoltaic steel cable fixing assembly has the following advantages:

[0015] The anti-tearing photovoltaic steel cable fixing assembly connects the anti-tearing connecting piece, the reinforcing pad and the steel cable lock through the first bolt, the anti-tearing connecting piece and the reinforcing pad increase the connection area, the bottom plate, the side plate and the frame constitute three surrounding support beams, the reliability of the connection with the support beam is improved to cope with the case that the wind is large, and the problem that the cable fixing piece is torn at the connection with the support beam is solved. BRIEF DESCRIPTION OF DRAWINGS

[0016] The accompanying drawings, which form a part of this description, are included to provide a further understanding of the application. The embodiments of the application and its

[0017] Figure 1 The anti-tearing photovoltaic steel cable fixing assembly is shown in the overall structure diagram of the anti-tearing photovoltaic steel cable fixing assembly.

[0018] Figure 2 The fixed assembly is shown in the sectional structure schematic diagram of the fixed assembly.

[0019] Figure 3 The fixed assembly is shown in the sectional structure schematic diagram of the fixed assembly.

[0020] Figure 4 The side structure of the fixed assembly is shown in the side structure schematic diagram of the fixed assembly.

[0021] Explanation of the drawings:

[0022] 1-Support beam; 2-First bolt; 3-Washer; 4-Frame; 5-Side plate; 6-Base plate; 7-Reinforcing pad; 8-Steel cable lock; 9-Photovoltaic steel cable; 10-First screw hole; 11-Second screw hole; 12-Mounting hole; 13-Fixed fastener; 14-Movable fastener; 15-Lower locking groove; 16-Second bolt; 20-Upper locking groove; 21-Third bolt; 22-Support beam channel; 23-Vertical reinforcing plate; 24-Horizontal reinforcing plate. Detailed Implementation

[0023] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments of the present invention can be combined with each other.

[0024] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0025] like Figures 1 to 4 As shown, a tear-resistant photovoltaic steel cable fixing assembly includes a tear-resistant connector, a first bolt 2, a reinforcing pad 7, and a steel cable lock 8. The tear-resistant connector includes a base plate 6, a side plate 5, and a frame 4. The opposite sides of the side plate 5 are respectively connected to the base plate 6 and the frame 4. The base plate 6, the side plate 5, and the frame 4 form a support beam channel 22. The steel cable lock 8 includes a fixed fastener 13 and a movable fastener 14. The fixed fastener 13 and the movable fastener 14 form a photovoltaic steel cable channel inside. The fixed fastener 13 has a mounting screw hole 12 at its top. The reinforcing pad 7 covers the base plate 6. The corresponding positions of the reinforcing pad 7 and the base plate 6 have a first screw hole 10 and a second screw hole 11, respectively. The first bolt 2 passes through the first screw hole 10 and the second screw hole 11 from top to bottom, and the end of the first bolt 2 is fitted into the mounting screw hole 12.

[0026] This utility model aims to provide a tear-resistant photovoltaic steel cable fixing component, applicable to fixing photovoltaic steel cables. During installation, the tear-resistant photovoltaic steel cable fixing component is mounted on a support beam, with the support beam fitted within the support beam channel formed by the base plate 6, side plates 5, and frame 4. The photovoltaic steel cable passes through the photovoltaic steel cable channel formed by the fixed fasteners and movable fasteners, and is secured by the cable locking buckle 8. The tear-resistant connector, reinforcing pad 7, and cable locking buckle 8 are connected by the first bolt 2. The tear-resistant connector and reinforcing pad 7 increase the connection area. The base plate 6, side plates 5, and frame 4 form a three-sided enclosure of the support beam, improving the reliability of the connection with the support beam to cope with strong winds, thereby solving the problem of tearing at the connection between the cable fixing component and the support beam.

[0027] like Figures 1 to 4As shown, the bottom plate and the frame are located on the same side of the side plate, the bottom plate 6 and the frame 4 are located on the same side of the side plate 5, the width of the bottom plate 6 is greater than the width of the frame 4, and the width of the side plate 5 corresponds to the width of the support beam. The bottom plate 6, the side plate 5 and the frame 4 form a three-sided enclosure around the support beam, further improving the reliability of the connection with the support beam.

[0028] As Figure 2 As shown, the fixed assembly cross-section structure schematic view of the embodiment one of the utility model discloses a fixed assembly cross-section structure schematic view. The steel cable lock buckle 8 still includes lower lock buckle groove 15 and second bolt 16, and the lower lock buckle groove 15 is set up in the lower part of the fixed buckle 13, one end of the movable buckle 14 can be fitted in the lower lock buckle groove 15, and the other end of the movable buckle 14 is connected with the upper part of the fixed buckle 13 through the second bolt 16, and the second bolt 16 is arranged from bottom to top. The second bolt 16 is a hexagonal bolt. When installing, one end of the movable buckle can be temporarily fixed in the lower lock buckle groove, the second bolt 16 is inserted from the bottom, and the hand operation is more convenient, so that the installation screw operation is more convenient, and the installation speed is improved.

[0029] As Figure 3 As shown, the fixed assembly cross-section structure schematic view of the embodiment two of the utility model discloses a fixed assembly cross-section structure schematic view. The steel cable lock buckle 8 still includes upper lock buckle groove 20 and third bolt 21, and the upper lock buckle groove 20 is set up in the upper part of the fixed buckle 13, one end of the movable buckle 14 can be fitted in the upper lock buckle groove 20, and the other end of the movable buckle 14 is connected with the fixed buckle 13 through the third bolt 21, and the third bolt 21 is located in the lower part of the fixed buckle 13 and is arranged along the horizontal direction. The third bolt 21 is a hexagonal bolt. When installing, one end of the movable buckle can be temporarily fixed in the lower lock buckle groove, the third bolt is located in the lower part of the fixed buckle and is arranged along the horizontal direction, and the operation is more convenient, so that the installation screw operation is more convenient.

[0030] As Figures 1 to 4 As shown, the first bolt 2 is a hexagonal bolt. The first bolt 2 is further sleeved with a gasket 3, and the gasket 3 is located on the pad 7. The stability of the connection of the first bolt 2 is further improved through the gasket 3.

[0031] As Figure 4 As shown, the vertical reinforcing plate 24 and the horizontal reinforcing plate 23 are further arranged between the bottom plate 6 and the side plate 5, and the bottom plate 6, the side plate 5, the vertical reinforcing plate 24 and the horizontal reinforcing plate 23 are connected into an integrated structure. Through the above structure, the stability of the overall structure can be improved, and the tearing resistance is further improved.

[0032] The above merely describes preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A tear resistant photovoltaic steel cable securing assembly, characterized by: The utility model provides a photovoltaic cable locking device, including anti -tear connecting piece, first bolt (2), reinforcing backing plate (7) and steel cable lock (8), the anti -tear connecting piece includes bottom plate (6), side plate (5) and frame (4), and the opposite two sides of side plate (5) are connected bottom plate (6) and frame (4) respectively, and bottom plate (6), side plate (5) and frame (4) constitute a support beam passage, the steel cable lock (8) includes fixed fastener (13) and movable fastener (14), and the inside of fixed fastener (13) and movable fastener (14) constitutes photovoltaic steel cable passage, and the top of fixed fastener (13) is provided with mounting screw hole (12), the reinforcing backing plate (7) covers on bottom plate (6), and reinforcing backing plate (7) is set along the length direction of bottom plate (6), the corresponding position of reinforcing backing plate (7), bottom plate (6) is provided with first screw hole (10) and second screw hole (11) respectively, and first bolt (2) is arranged in first screw hole (10) and second screw hole (11) from top to bottom, and the tail end of first bolt (2) is equipped in the mounting screw hole (12).

2. The tear-resistant photovoltaic cable fixation assembly according to claim 1, characterized in that: The bottom plate (6) and the frame (4) are located on the same side of the side plate (5), the width of the bottom plate (6) is greater than the width of the frame (4), and the width of the side plate (5) corresponds to the width of the support beam.

3. The tear-resistant photovoltaic cable fixation assembly of claim 1, wherein: The steel cable lock (8) further comprises a lower lock groove (15) and a second bolt (16), the lower lock groove (15) is formed in the lower part of the fixed fastener (13), one end of the movable fastener (14) is detachably arranged in the lower lock groove (15), and the other end of the movable fastener (14) is connected to the upper part of the fixed fastener (13) by the second bolt (16), and the second bolt (16) is arranged from bottom to top.

4. The tear-resistant photovoltaic cable fixation assembly according to claim 3, characterized in that: The second bolt (16) is an internal hexagonal bolt.

5. The tear-resistant photovoltaic cable fixation assembly of claim 1, wherein: The steel cable lock (8) further comprises an upper lock groove (20) and a third bolt (21), the upper lock groove (20) is formed in the upper part of the fixed fastener (13), one end of the movable fastener (14) is detachably arranged in the upper lock groove (20), and the other end of the movable fastener (14) is connected to the fixed fastener (13) by the third bolt (21), the third bolt (21) is located in the lower part of the fixed fastener (13) and is arranged in a horizontal direction.

6. The tear-resistant photovoltaic cable fixation assembly according to claim 5, characterized in that: The third bolt (21) is an internal hexagonal bolt.

7. The tear-resistant photovoltaic cable tie-down assembly of claim 1, wherein: The first bolt (2) is an external hexagonal bolt.

8. The tear-resistant photovoltaic cable tie-down assembly of claim 1, wherein: A gasket is further sleeved on the first bolt (2), and the gasket is located on the backing plate (7).

9. The tear-resistant photovoltaic cable fixation assembly according to any of claims 1 to 8, characterized in that: A vertical reinforcing plate (24) and a horizontal reinforcing plate (23) are further arranged between the bottom plate (6) and the side plate (5), and the bottom plate (6), the side plate (5), the vertical reinforcing plate (24) and the horizontal reinforcing plate (23) are connected to form an integrated structure.