Graphene grounding electrode anti-loosening structure

By setting up components such as rotating bolts, rotating buckles and fastening nuts, the problem of poor connection caused by loose grounding electrodes is solved, the stable connection and anti-loosening effect of the graphene grounding strip is achieved, and the reliability and maintenance convenience of the grounding system are improved.

CN223321498UActive Publication Date: 2025-09-09江苏君耀电气有限公司
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Patent Information

Application Number
CN202422074691.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-09-09
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

Existing grounding electrodes are prone to loosening during use due to soil settlement, water erosion, and tree root squeezing, resulting in poor connection and difficulty in maintenance and replacement.

Method used

The rotating bolt, rotating buckle, rotating cavity, fastening nut, fastening sleeve and other components are used. The rotating bolt drives the rotating buckle to rotate, thereby increasing the contact area of ​​the graphene grounding belt. Multiple fixations are formed through components such as fastening nuts and anchor sleeves to ensure the stable connection of the graphene grounding belt.

Benefits of technology

It effectively reduces transmission problems caused by poor contact, ensures the stable connection of the graphene grounding strap, prevents loosening and damage, and improves the reliability and maintenance convenience of the grounding system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a graphene grounding electrode anti-loosening structure, which comprises an anti-loosening structure upper part, a rotating bolt is in threaded connection with the middle part of the top surface of the anti-loosening structure upper part, rotating buckles are fixedly connected with two sides of the lower end of the rotating bolt, and fixing bolts are arranged at four corners of the top surface of the anti-loosening structure upper part. The lower portion of the anti-loosening structure is arranged below the upper portion of the anti-loosening structure, fixing bolt holes are formed in the four corners of the top face of the lower portion of the anti-loosening structure and are in threaded connection with fixing bolts, and anchoring sleeves are in threaded connection with the two sides of the lower portion of the anti-loosening structure. According to the utility model, the rotating bolt, the rotating buckle, the rotating cavity, the graphene grounding strip and the fastening nut are arranged, the rotating bolt drives the rotating buckle to rotate, the graphene grounding strip can be in full contact in the rotating cavity, the transmission problem caused by poor contact can be reduced, and under the action of the fastening part and the bolt in the structure, the graphene grounding strip can be fastened. The problem of loosening of the graphene grounding strip can be solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of anti-loosening structures, in particular to a graphene grounding electrode anti-loosening structure. Background Art

[0002] A grounding electrode is one or several conductors directly connected to the earth, which are called grounding electrodes. They are used to direct the current of the equipment or the energy in the natural current to the earth. The graphene grounding electrode is composed of graphene, grounding electrodes, and nano-elements. Its discharge conductivity is better than copper-plated steel, copper-clad steel and other materials on the market. It is a high-quality grounding material with the advantages of corrosion resistance, rust resistance, no counterattack under large current impact, high and low temperature resistance, stable grounding resistance, and low price. It is the first choice among grounding materials.

[0003] After the grounding electrode has been underground for a period of time, the grounding strap at the connecting section will become loose due to soil settlement, water erosion, tree root squeezing, etc. Since the grounding electrode is difficult to repair and replace, the connection structure is of paramount importance. The connection structure is used to protect the grounding strap interface connection and ensure it is in a fixed position. The anti-loosening structures on the market only have one anti-loosening measure. Because the structure is buried deep underground, once the structure is damaged, it will face the problem of difficulty in repair and replacement. Utility Model Content

[0004] The purpose of the utility model is to provide a graphene grounding electrode anti-loosening structure, which is provided with a rotating bolt, a rotating buckle, a rotating cavity, a graphene grounding belt, a fastening nut, and a fastening sleeve. The rotating buckle is driven to rotate by the rotating bolt, so that the graphene grounding belt can be fully contacted in the rotating cavity, which can reduce the transmission problem caused by poor contact. The loosening problem of the graphene grounding belt can be solved by the fastening component, and the fastening nut can be used to make the fastening sleeve firmly grip the graphene grounding belt to form a second fixation, and the anchor sleeve and the anchor sleeve can protect the graphene grounding belt to prevent damage.

[0005] To achieve the above-mentioned purpose, a graphene grounding electrode anti-loosening structure is provided, comprising an anti-loosening structure upper part, a rotating bolt is threadedly connected to the middle of the top surface of the anti-loosening structure upper part, and rotating buckles are fixedly connected to both sides of the lower end of the rotating bolt, and fixing bolts are provided at the four corners of the top surface of the anti-loosening structure upper part, and an anti-loosening structure lower part is provided below the anti-loosening structure upper part, and fixing bolt holes are opened at the four corners of the top surface of the anti-loosening structure lower part, and the fixing bolt holes are threadedly connected to the fixing bolts, and anchor sleeves are threadedly connected to both sides of the anti-loosening structure lower part;

[0006] Bolts are threadedly connected to both sides of the bottom of the lower part of the anti-loosening structure, and arc-shaped protrusions are fixedly connected to the upper ends of the bolts. A rotating cavity is provided in the middle of the top surface of the lower part of the anti-loosening structure.

[0007] According to the graphene grounding electrode anti-loosening structure, the internal thread of the anchoring sleeve is connected to the anchoring sleeve, one end of the anchoring sleeve is fixedly connected to the fastening sleeve, and the external thread of the fastening sleeve is connected to the fastening nut.

[0008] According to the graphene grounding electrode anti-loosening structure, a graphene channel is opened inside the lower part of the anti-loosening structure, and is connected with the rotating cavity and the anchor sleeve.

[0009] According to the graphene grounding electrode anti-loosening structure, a graphene grounding belt is provided in the graphene channel, and one end of the graphene grounding belt close to the rotating cavity is plugged into the rotating buckle.

[0010] According to the graphene grounding electrode anti-loosening structure, the arc-shaped protrusion conflicts with the graphene grounding strip, and the arc-shaped protrusion is located at the bottom of the graphene grounding strip.

[0011] Beneficial effects:

[0012] 1. The utility model is provided with a rotating bolt, a rotating buckle, a rotating cavity, and a graphene grounding belt. The rotating buckle is driven to rotate by the rotating bolt, so that the graphene grounding belt can be fully contacted in the rotating cavity, so that the contact area of ​​the graphene grounding belt is large and the contact is close, which effectively reduces the transmission problems caused by poor contact.

[0013] 2. The utility model is provided with a bolt, an arc-shaped protrusion, and a graphene channel. The rotation of the bolt can drive the arc-shaped protrusion to move upward, pushing the graphene grounding strip into the graphene channel to form a fixation, and the force of the bolt pushing forward forms the first fixation.

[0014] 3. The utility model is provided with a fastening nut, a fastening sleeve, an anchoring sleeve and an anchoring sleeve. By screwing the fastening nut, the fastening sleeve firmly grips the graphene grounding belt to form a second fixation, and the anchoring sleeve and the anchoring sleeve protect the graphene grounding belt to prevent damage.

[0015] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments;

[0017] Figure 1 This is a three-dimensional structural diagram of a graphene grounding electrode anti-loosening structure of the utility model;

[0018] Figure 2 This is a three-dimensional structural diagram of the interior of a graphene grounding electrode anti-loosening structure anchor sleeve of the utility model;

[0019] Figure 3 This is a front cross-sectional view of a graphene grounding electrode anti-loosening structure of the utility model;

[0020] Figure 4 This is a top cross-sectional view of a graphene grounding electrode anti-loosening structure of the utility model.

[0021] Legend:

[0022] 1. Upper part of anti-loosening structure; 2. Rotating bolt; 3. Rotating buckle; 4. Fixing bolt; 5. Fixing bolt hole; 6. Lower part of anti-loosening structure; 7. Rotating cavity; 8. Anchoring sleeve; 9. Fastening nut; 10. Fastening sleeve; 11. Anchoring sleeve; 12. Graphene grounding strip; 13. Graphene channel; 14. Bolt; 15. Arc-shaped protrusion. DETAILED DESCRIPTION

[0023] This section will describe in detail the specific embodiments of the present invention. The preferred embodiments of the present invention are shown in the accompanying drawings. The purpose of the accompanying drawings is to supplement the description of the text part of the specification with graphics, so that people can intuitively and vividly understand each technical feature and overall technical solution of the present invention, but it cannot be understood as a limitation on the scope of protection of the present invention.

[0024] Reference Figure 1-4 , the utility model embodiment of a graphene grounding electrode anti-loosening structure, which includes an anti-loosening structure upper part 1, the anti-loosening structure upper part 1 is used to connect and set a rotating bolt 2, the middle part of the top surface of the anti-loosening structure upper part 1 is threadedly connected with a rotating bolt 2, the rotating bolt 2 is used to drive the rotating buckle 3 to rotate, and the lower end of the rotating bolt 2 is fixedly connected with a rotating buckle 3 on both sides, and the rotating buckle 3 is used to fit the two graphene grounding belts 12 together, and the four corners of the top surface of the anti-loosening structure upper part 1 are provided with fixing bolts 4, and the fixing bolts 4 are used to connect the anti-loosening structure upper part 1 and the anti-loosening structure lower part 6, and the anti-loosening structure lower part 6 is provided under the anti-loosening structure upper part 1. The anti-loosening structure lower part 6 is used to set a graphene channel 13, and the four corners of the top surface of the anti-loosening structure lower part 6 are provided with fixing bolt holes 5. The bolt hole 5 is used to connect with the fixing bolt 4, and the fixing bolt hole 5 is threadedly connected to the fixing bolt 4. The connection between the fixing bolt hole 5 and the fixing bolt 4 can connect the upper part 1 of the anti-loosening structure and the lower part 6 of the anti-loosening structure into one. The two sides of the lower part 6 of the anti-loosening structure are threadedly connected with anchor sleeves 8. The anchor sleeves 8 are used to protect the internal fastening nuts 9 and fastening sleeves 10. The bottom two sides of the lower part 6 of the anti-loosening structure are threaded with bolts 14. The bolts 14 are used to push in the arc-shaped protrusions 15. The upper end of the bolt 14 is fixedly connected with the arc-shaped protrusions 15. The arc-shaped protrusions 15 are used to fix the graphene grounding belt 12 in a specified position. A rotation cavity 7 is provided in the middle of the top surface of the lower part 6 of the anti-loosening structure. The rotation cavity 7 is used to reserve space for the rotating buckle 3 to drive the graphene grounding belt 12 to rotate.

[0025] The internal thread of the anchor sleeve 8 is connected to the anchor sleeve 11, and the anchor sleeve 11 is used to be threadedly fixed to the anchor sleeve 8. One end of the anchor sleeve 11 is fixedly connected to the fastening sleeve 10, and the fastening sleeve 10 is used to fix the graphene grounding belt 12. The external thread of the fastening sleeve 10 is connected to the fastening nut 9, and the fastening nut 9 is used to tighten the fastening sleeve 10. A graphene channel 13 is opened inside the lower part 6 of the anti-loosening structure. The graphene channel 13 is used to set the graphene grounding belt 12 inside, and is connected to the rotating cavity 7 and the anchor sleeve 8. The rotation cavity 7 and the anchor sleeve 8 are connected to each other to enable the graphene to be grounded. The belt 12 is connected uninterruptedly, and a graphene grounding belt 12 is provided in the graphene channel 13. The graphene grounding belt 12 is used to connect to the ground pole. The end of the graphene grounding belt 12 close to the rotating cavity 7 is plugged into the rotating buckle 3. The graphene grounding belt 12 inserted into the rotating buckle 3 can better drive the rotation to prevent separation. The arc-shaped protrusion 15 conflicts with the graphene grounding belt 12. The arc-shaped protrusion 15 conflicts with the graphene grounding belt 12 to fix the position, and the arc-shaped protrusion 15 is located at the bottom of the graphene grounding belt 12. The arc-shaped protrusion 15 at the bottom can push the graphene grounding belt 12 to the top specified position.

[0026] Working principle: When in use, the graphene grounding belt 12 is inserted through the anchoring sleeve 8, passes through the graphene channel 13 and reaches the rotating chamber 7, and one end of the graphene grounding belt 12 is inserted into the hole of the rotating buckle 3. The rotating buckle 3 is driven to rotate by rotating the rotating bolt 2 so that the two sections of the graphene grounding belt 12 are fully in contact. After the rotation is completed, the rotating bolt 14 is rotated to drive the arc-shaped protrusion 15 to support the graphene grounding belt 12 and fix it in the graphene channel 13. Then, the fastening nut 9 is rotated to make the fastening sleeve 10 tightly grip and wrap the graphene grounding belt 12 and no longer loosen. Then, the anchoring sleeve 8 is installed on the anchoring sleeve 11. Finally, the fixing bolt 4 and the fixing bolt hole 5 are threaded together. The upper part 1 of the anti-loosening structure and the lower part 6 of the anti-loosening structure fit together without any gap, which means that the installation is successful.

[0027] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by ordinary technicians in the technical field without departing from the purpose of the present invention.

Claims

1. A graphene grounding electrode anti-loosening structure, comprising an anti-loosening structure upper portion (1), characterized in that: A rotating bolt (2) is threadedly connected to the middle of the top surface of the upper part (1) of the anti-loosening structure, and rotating buckles (3) are fixedly connected to both sides of the lower end of the rotating bolt (2). Fixing bolts (4) are provided at the four corners of the top surface of the upper part (1) of the anti-loosening structure. A lower part (6) of the anti-loosening structure is provided below the upper part (1). Fixing bolt holes (5) are provided at the four corners of the top surface of the lower part (6). The fixing bolt holes (5) are threadedly connected to the fixing bolts (4). Anchor sleeves (8) are threadedly connected to both sides of the lower part (6) of the anti-loosening structure. Bolts (14) are threadedly connected to both sides of the bottom of the lower part (6) of the anti-loosening structure, and the upper ends of the bolts (14) are fixedly connected to arc-shaped protrusions (15); A rotation cavity (7) is provided in the middle of the top surface of the lower part (6) of the anti-loosening structure.

2. The graphene grounding electrode anti-loosening structure according to claim 1, characterized in that: The internal thread of the anchor sleeve (8) is connected to the anchor sleeve (11), one end of the anchor sleeve (11) is fixedly connected to the fastening sleeve (10), and the external thread of the fastening sleeve (10) is connected to the fastening nut (9).

3. The graphene grounding electrode anti-loosening structure according to claim 1, characterized in that: A graphene channel (13) is provided inside the lower portion (6) of the anti-loosening structure and is connected to the rotating cavity (7) and the anchor sleeve (8).

4. The graphene grounding electrode anti-loosening structure according to claim 3, characterized in that: A graphene grounding strip (12) is provided in the graphene channel (13), and one end of the graphene grounding strip (12) close to the rotating cavity (7) is plugged into the rotating buckle (3).

5. The graphene grounding electrode anti-loosening structure according to claim 1 or 4, characterized in that: The arc-shaped protrusion (15) conflicts with the graphene grounding strip (12), and the arc-shaped protrusion (15) is located at the bottom of the graphene grounding strip (12).