A track socket adapter with a novel copper piece structure

CN224733110UActive Publication Date: 2026-09-08WENZHOU BAIDIAO ELECTRICAL APPLIANCE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521982235.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-15
Publication Date
2026-09-08
Estimated Expiration
2035-09-15

AI Technical Summary

Technical Problem

然而,现有的轨道适配器连接铜件结构在电力传导和接地方面存在诸多不足,如接地模块连接不稳,容易脱落等问题,影响了使用的安全性和稳定性

Benefits of technology

[0014]本实用新型的有益效果在于:本设计通过设置接地插套部与地线连接部相配合的结构,不仅增强了电力传导的稳定性,还提高了接地效果,有效避免了因接地不良引发的安全隐患。此外,该设计通过精细的卡接结构和过盈配合,确保了地线连接部与接地铜片之间的稳固连接,即使在长时间使用或外力作用下,也能保持良好的连接状态,不易脱落。

✦ Generated by Eureka AI based on patent content.

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Abstract

A track socket adapter with a new copper piece structure, comprising an adapter body, an inner cavity is formed in the adapter body, a copper sheet assembly and a ground wire connecting piece are arranged in the inner cavity, the copper sheet assembly comprises a grounding copper sheet and conductive copper sheets symmetrically arranged on both sides of the grounding copper sheet, the ground wire connecting piece comprises a main body part and a ground wire connecting part, a clamping structure is arranged on the grounding copper sheet, and the ground wire connecting part is clampingly fixed with the clamping structure and is in interference fit. The design cooperates the structure of the grounding plug sleeve part with the ground wire connecting part, not only enhances the stability of power conduction, but also improves the grounding effect, effectively avoids the safety hidden danger caused by poor grounding. In addition, the design cooperates the structure of the grounding plug sleeve part with the ground wire connecting part, not only enhances the stability of power conduction, but also improves the grounding effect, effectively avoids the safety hidden danger caused by poor grounding. In addition, the design cooperates the structure of the grounding plug sleeve part with the ground wire connecting part, not only enhances the stability of power conduction, but also improves the grounding effect, effectively avoids the safety hidden danger caused by poor grounding.
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Description

Technical Field

[0001] This utility model relates to the field of track socket adapters, and specifically to a track socket adapter with a novel copper component structure. Background Technology

[0002] Track socket adapters, as devices used to connect track sockets for power supply, are widely used in modern homes and offices. However, existing track adapter copper connection structures have many shortcomings in terms of power conduction and grounding, such as unstable grounding module connections and easy detachment, affecting the safety and stability of use. Summary of the Invention

[0003] In view of this, the present invention provides a track socket adapter with a novel copper component structure.

[0004] To achieve the above objectives, this utility model provides the following technical solution: A rail socket adapter with a novel copper component structure includes an adapter body with an inner cavity. A copper sheet assembly and a ground wire connector are disposed within the inner cavity. The copper sheet assembly includes a grounding copper sheet and conductive copper sheets symmetrically arranged on both sides of the grounding copper sheet. The ground wire connector includes a main body and a ground wire connection part. A snap-fit ​​structure is provided on the grounding copper sheet, and the ground wire connection part is snap-fitted and fixed to the snap-fit ​​structure with an interference fit.

[0005] Preferably, the grounding copper sheet includes a grounding socket and a grounding connection. The snap-fit ​​structure includes a connecting end and a fixed end disposed on the grounding connection. The connecting end is disposed on both sides of the fixed end. The connecting end is bent outward with the fixed end as the center. The ground wire connector is U-shaped and has a ground wire connection part corresponding to the connecting end. A snap-fit ​​gap is formed between the ground wire connection parts. The connecting ends on the grounding connection part are respectively connected to the opposite end faces of the ground wire connection parts, and the connecting ends and the ground wire connection parts are tightly fitted together.

[0006] Preferably, two opposing clamping arm structures are provided on the side end face of the grounding socket that is away from the ground wire connector. The two clamping arm structures are inclined in opposite directions, and a grounding slot is formed between the two clamping arms and the grounding socket.

[0007] Preferably, the adapter body is further provided with a contact plate, each contact plate having a contact end and a copper plate connection end, the contact end extending out of the adapter body, and the copper plate connection end extending into the conductive copper plate for connection.

[0008] Preferably, the conductive copper sheet has a copper sheet insert portion and a copper sheet connecting portion, wherein the side of the copper sheet insert portion away from the power receiving unit protrudes to form a conductive clamping arm, and the conductive slot is formed between the conductive clamping arm and the copper sheet insert portion.

[0009] Preferably, the copper sheet connecting portion is positioned corresponding to the electrical contact piece, the copper sheet connecting portion is bent to form a clamping portion, and the copper sheet connecting end extends into the clamping portion and connects with the copper sheet connecting portion.

[0010] Preferably, the adapter body includes a housing, a base, and a rotating bracket. The rotating bracket is rotatably mounted on the base. The housing and the base are connected to form an inner cavity. The base has a plurality of partitions protruding from one side of the inner cavity. A plurality of copper sheet fixing grooves for fixing copper sheet assemblies are formed between the partitions. The copper sheet assemblies are disposed in the copper sheet fixing grooves, and the copper sheet fixing grooves limit and fix the position of the copper sheet assemblies in the inner cavity.

[0011] Preferably, the inner cavity is further provided with a pressure cover and a safety door. The pressure cover is snapped together with the base. The pressure cover is located at the upper end of the copper sheet fixing groove. The pressure cover has a slot hole corresponding to the position of the copper sheet assembly. The pressure cover is also provided with a fixing groove. The safety door is movably disposed in the fixing groove.

[0012] Preferably, the pressure cap extends into a connecting wall towards the base, the connecting wall has a snap-fit ​​groove, and the side wall of the copper sheet fixing groove has a snap-fit ​​end protruding, the snap-fit ​​end of the copper sheet fixing groove extending into the connecting snap-fit ​​groove for connection.

[0013] Preferably, the inner cavity is also provided with a lamp ring.

[0014] The beneficial effects of this utility model are as follows: By setting a structure in which the grounding socket and the grounding wire connection part cooperate, this design not only enhances the stability of power conduction but also improves the grounding effect, effectively avoiding safety hazards caused by poor grounding. Furthermore, through a precise snap-fit ​​structure and interference fit, this design ensures a stable connection between the grounding wire connection part and the grounding copper sheet, maintaining a good connection even under prolonged use or external force, and preventing it from easily falling off. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Appendix Figure 1 This is a schematic diagram of the structure of this utility model; Appendix Figure 2 This is a schematic diagram of the copper sheet assembly in this utility model; Appendix Figure 3 This is a schematic diagram of the structure of the grounding plate and ground wire connection component in this utility model; Appendix Figure 4 This is a schematic diagram of the grounding copper sheet in this utility model; Appendix Figure 5 This is a schematic diagram of the conductive copper sheet in this utility model; Appendix Figure 6 For the appendix Figure 2 Enlarged view of point A in the middle; Appendix Figure 7 This is a schematic diagram of the structure of the grounding copper sheet and the ground wire connection component in this utility model; Appendix Figure 8 This is a structural schematic diagram of the present invention from another angle; Appendix Figure 9 For the appendix Figure 8 Sectional view at point AA; Appendix Figure 10 This is a schematic diagram of the structure of the pressure cover and safety door in this utility model; Appendix Figure 11 This is a schematic diagram of the structure of the pressure cap in this utility model; Appendix Figure 12 This is a schematic diagram of the base structure in this utility model.

[0017] Figure label: 1. Adapter body; 2. Inner cavity; 3. Copper sheet assembly; 4. Ground wire connector; 5. Grounding copper sheet; 6. Conductive copper sheet; 7. Main body; 8. Grounding connection part; 9. Snap-fit ​​structure; 10. Grounding plug part; 11. Grounding connection part; 12. Connection end; 13. Fixing part; 14. Clamping arm; 15. Grounding slot; 16. Connecting piece; 17. Connecting end; 18. Copper sheet connection end; 19. Copper sheet plug part; 20. Copper sheet connection part; 21. Conductive clamping arm; 22. Conductive slot; 23. Clamping part; 24. Housing; 25. Base; 26. Rotating bracket; 27. Spacer; 28. Copper sheet fixing groove; 29. ​​Pressure cover; 30. Safety door; 31. Slot; 32. Fixing groove; 33. Connecting wall; 34. Snap-fit ​​groove; 35. Snap-fit ​​end; 36. Lamp ring. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0019] The present invention will now be further described with reference to the accompanying drawings.

[0020] This utility model provides the following technical solution: As attached Figure 1-12 As shown, this utility model discloses a track socket adapter with a novel copper component structure. The technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.

[0021] The present invention will now be further described with reference to the accompanying drawings.

[0022] This utility model provides the following technical solution: As attached Figure 1-12 As shown, this utility model discloses a rail socket adapter with a novel copper component structure, including an adapter body 1. An inner cavity 2 is formed within the adapter body 1, and a copper sheet assembly 3 and a ground wire connector 4 are disposed within the inner cavity 2. The copper sheet assembly 3 includes a grounding copper sheet 5 and conductive copper sheets 6 symmetrically arranged on both sides of the grounding copper sheet 5. The ground wire connector 4 includes a main body 7 and a ground wire connection part 8. A snap-fit ​​structure 9 is provided on the grounding copper sheet 5, and the ground wire connection part 8 is snapped and fixed with the snap-fit ​​structure 9 with an interference fit. In this embodiment, the function of the ground wire connector 4 is to firmly connect the grounding copper sheet 5 to the external grounding system, ensuring that power can be safely and stably discharged. The design of the main body 7 provides stable support for the ground wire connector 4, while the ground wire connection part 8 tightly cooperates with the snap-fit ​​structure 9 on the grounding copper sheet 5 through the snap-fit ​​structure 9, achieving efficient power transmission. This snap-fit ​​fixing method not only improves the reliability of the connection but also helps to reduce resistance caused by poor connection, ensuring smooth power discharge. Meanwhile, the interference fit design further enhances the stability and durability of the connection, preventing loosening or detachment due to vibration or external forces. The grounding copper plate 5 serves to achieve a tight fit with the external plug, ensuring the stability and reliability of the grounding connection. The snap-fit ​​structure 9 on the grounding copper plate 5 not only facilitates quick connection with the ground wire connection part 8 but also further improves the robustness and safety of the connection through the interference fit. This design not only simplifies the installation process but also helps improve the overall efficiency of the track socket adapter.

[0023] Furthermore, the grounding copper sheet 5 includes a grounding socket portion 10 and a grounding connection portion 11. The snap-fit ​​structure 9 includes a connecting end 12 and a fixed end 13 disposed on the grounding connection portion 11. The connecting end 12 is disposed on both sides of the fixed end 13. The connecting end 12 is bent outward with the fixed end 13 as the center. The ground wire connector 4 is U-shaped and has a ground wire connection portion 8 corresponding to the connecting end 12. A snap-fit ​​gap is formed between the ground wire connection portions 8. The connecting end 12 on the grounding connection portion 11 is respectively connected to the opposite end face of the ground wire connection portion 8, and the connecting end 12 and the ground wire connection portion 8 are tightly fitted. Specifically, in this embodiment, the ground wire connector 4 has two corresponding connecting ends 11 and ground wire connection portions 8, and the connecting end 12 on the grounding connection portion 11 is respectively connected to the opposite end face of the two ground wire connection portions 8. In this embodiment, the snap-fit ​​structure 9 serves to achieve a firm connection between the grounding copper sheet 5 and the ground wire connector 4. The connecting end 12 is bent outwards from the fixed end 13 towards the side away from the ground wire connector 4. This design not only improves the stability of the connection but also helps reduce the resistance at the connection point, ensuring that power can be smoothly conducted from the grounding copper plate 5 to the ground wire connector 4. The ground wire connector 4 is U-shaped and has two ground wire connecting portions 8 corresponding to the connecting end 12. This design allows the ground wire connector 4 to tightly wrap around the connecting end 12 on the grounding connecting portion 11, further enhancing the strength and durability of the connection. At the same time, the snap-fit ​​spacing formed between the ground wire connecting portions 8 provides sufficient space for the connecting end 12, ensuring that the connecting end 12 can achieve an interference fit with the ground wire connecting portion 8, thereby avoiding power transmission interruption or safety hazards caused by poor connection. This combination of snap-fit ​​fixing and interference fit not only improves the power performance and stability of the entire track socket adapter but also enhances its safety and reliability during use.

[0024] Furthermore, two opposing clamping arms 14 protrude from the end face of the grounding socket 10 away from the ground wire connector 4. These two clamping arms 14 are inclined in opposite directions, forming a grounding slot 15 between themselves and the grounding socket 10. In this embodiment, the design of the grounding socket 10 not only achieves a tight fit with the grounding plug but also further improves the stability and reliability of the grounding connection through the clamping arms 14. The inclination of the two clamping arms 14 in opposite directions ensures that the grounding plug is guided and aligned smoothly when inserted into the grounding slot 15, avoiding poor connection due to misalignment. Simultaneously, the clamping arms 14 exert a certain clamping force on the grounding plug, effectively preventing loosening or detachment of the plug due to vibration or external forces, thus ensuring the long-term stability of the grounding connection. In addition, the formation of the grounding slot 15 provides a channel for efficient power output, ensuring the electrical safety of the entire track adapter structure.

[0025] Furthermore, the adapter body 1 also includes a contact piece 16, each of which has a contact end 17 and a copper plate connection end 18. The contact end 17 extends out of the adapter body 1, and the copper plate connection end 18 extends into the conductive copper plate 6 for connection. In this embodiment, the function of the contact piece 16 is to realize the power connection between the external power source and the conductive copper plate 6. In the design of the contact piece 16, the contact end 17 extends out of the adapter body 1 for easy connection with the external power cord, while the copper plate connection end 18 extends into the conductive copper plate 6 for a tight connection. This design not only ensures that power can be smoothly transmitted from the external power source to the conductive copper plate 6, but also enhances the stability and durability of the connection. Through the setting of the contact piece 16, the entire adapter structure can realize power transmission more efficiently and safely, meeting various power needs.

[0026] Furthermore, the conductive copper sheet 6 has a copper sheet insert portion 19 and a copper sheet connecting portion 20. A conductive clamping arm 21 protrudes from the side of the copper sheet insert portion 19 away from the power receiving unit, and a conductive slot 22 is formed between the conductive clamping arm 21 and the copper sheet insert portion 19. In this embodiment, the conductive copper sheet 6 serves to achieve a tight connection with external conductive components and ensure the stability and efficiency of power transmission. The design of the copper sheet insert portion 19 facilitates cooperation with external conductive plugs or components, ensuring smooth power delivery to the conductive copper sheet 6. The conductive clamping arm 21 further improves the reliability and safety of the connection. The conductive clamping arm 21 protrudes from one side of the copper sheet insert portion 19, forming a conductive slot 22 between it and the copper sheet insert portion 19, clamping and fixing the conductive component inserted therein. This design not only avoids power transmission interruption due to loosening or detachment of the connection but also effectively prevents damage to the connection caused by vibration or external forces. Meanwhile, the tight fit between the conductive clamp arm 21 and the copper insert 19 provides a channel for efficient power transmission, ensuring the power performance and stability of the entire rail socket adapter structure. The copper connector 20 is responsible for connecting with other components inside the adapter to achieve power distribution and transmission. This design structure allows the conductive copper sheet 6 to both undertake the task of power transmission and ensure the reliability and safety of the connection, thereby improving the working efficiency and service life of the entire rail socket adapter.

[0027] Furthermore, the copper sheet connecting portion 20 is positioned corresponding to the conductive plate 16. The copper sheet connecting portion 20 is bent to form a clamping portion 23, and the copper sheet connecting end 18 extends into the clamping portion 23 and connects with the copper sheet connecting portion 20. In this embodiment, the function of the clamping portion 23 is to tightly clamp the copper sheet connecting end 18 of the conductive plate 16, ensuring that power can be stably and efficiently transmitted from the conductive plate 16 to the conductive copper sheet 6. The design of the clamping portion 23 is carefully considered, ensuring both the strength of the connection and ease of installation and disassembly, thus improving the maintainability of the entire track socket adapter structure. At the same time, the tight fit between the clamping portion 23 and the copper sheet connecting portion 20 avoids resistance caused by poor connection, ensuring smooth and efficient power transmission. This design structure not only improves the efficiency of power transmission but also enhances the safety and reliability of the entire adapter structure.

[0028] Furthermore, the adapter body 1 includes a housing 24, a base 25, and a rotating bracket 26. The rotating bracket 26 is rotatably mounted on the base 25. The housing 24 and the base 25 are connected to form an inner cavity 2. A plurality of spacers 27 protrude from one side of the base 25 within the inner cavity 2. A plurality of copper sheet fixing grooves 28 are formed between the spacers 27 for fixing the copper sheet assembly 3. The copper sheet assembly 3 is disposed within the copper sheet fixing grooves 28, which limit and fix its position within the inner cavity 2. In this embodiment, the design of the adapter body 1 fully considers the stability and maintainability of the track socket adapter. The connection between the housing 24 and the base 25 not only provides stable protection for the internal components but also forms the inner cavity 2 for installing and fixing the copper sheet assembly 3. The protruding spacers 27 on the base 25 are cleverly designed; the copper sheet fixing grooves 28 formed between them can accurately position and fix the copper sheet assembly 3, preventing displacement or loosening during operation. This design not only improves the stability of the copper sheet assembly 3, but also helps reduce noise and wear caused by component movement, extending the overall lifespan of the adapter. Simultaneously, the design of the copper sheet fixing groove 28 facilitates the installation and removal of the copper sheet assembly 3, improving the maintainability of the adapter structure. The rotating bracket 26 allows for flexible rotation of the adapter body 1 and enables the contact plate 16 to switch between two states: inside and outside the rotating bracket 26, facilitating both connection and disconnection with the track socket. This comprehensive design structure gives the track socket adapter both efficient and stable power transmission performance, as well as good usability and maintainability, providing users with a more convenient and safer power experience. Other components in this embodiment are common in existing designs and will not be described in detail.

[0029] Furthermore, the inner cavity 2 is also provided with a pressure cap 29 and a safety door 30. The pressure cap 29 is snap-fitted to the base 25. The pressure cap 29 is located at the upper end of the copper sheet fixing groove 28. The pressure cap 29 has a slot 31 corresponding to the position of the copper sheet assembly 3. The pressure cap 29 is also provided with a fixing groove 32. The safety door 30 is movably disposed in the fixing groove 32. In this embodiment, the design of the pressure cap 29 further enhances the stability and safety of the adapter body 1. The snap-fit ​​connection between the pressure cap 29 and the base 25 allows the pressure cap 29 to be firmly fixed to the base 25, preventing it from loosening or falling off during use. At the same time, the pressure cap 29 is located at the upper end of the copper sheet fixing groove 28, providing effective protection for the copper sheet assembly 3 and avoiding damage caused by external factors. The slot 31 on the pressure cap 29 corresponding to the position of the copper sheet assembly 3 allows the pin to pass through the pressure cap 29 and electrically connect with the copper sheet assembly 3. In addition, a fixing groove 32 is provided on the pressure cover 29, and the safety door 30 is movably disposed in the fixing groove 32. A spring is also provided on the safety door 30, which drives the safety door 30 to move within the fixing groove 32. When the pin is inserted, the safety door 30 is pushed downwards, allowing the pin to insert into the slot 31 and connect with the copper sheet assembly 3. When the pin is pulled out, the safety door 30 returns to its original position. The design of the safety door 30 not only prevents external objects or personnel from accidentally touching the copper sheet assembly 3 and causing an electric shock hazard, but also allows for convenient opening for maintenance and repair when needed. This comprehensive design structure not only improves the stability and safety of the adapter body, but also enhances its flexibility and maintainability, providing users with a safer and more reliable power experience.

[0030] Furthermore, the pressure cap 29 extends towards the base 25 with a connecting wall 33. A snap-fit ​​groove 34 is formed on the connecting wall 33, and a snap-fit ​​end 35 protrudes from the side wall of the copper sheet fixing groove 28. The snap-fit ​​end 35 of the copper sheet fixing groove 28 extends into the snap-fit ​​groove 34 of the connecting wall 33 for connection. In this embodiment, the design of the connecting wall 33 further enhances the connection stability between the pressure cap 29 and the base 25. The connecting wall 33 extends towards the base 25, providing additional support for the pressure cap 29, allowing it to be more firmly fixed to the base 25. Simultaneously, the snap-fit ​​groove 34 on the connecting wall 33 and the snap-fit ​​end 35 on the side wall of the copper sheet fixing groove 28 cooperate to form a tight snap-fit ​​connection. This snap-fit ​​connection method not only simplifies the installation process but also helps improve the stability and durability of the entire adapter structure. The tight fit between the latching groove 34 and the latching end 35 prevents the cover 29 from loosening or falling off during use, thus ensuring the safety and stability of the internal components of the adapter body 1. Furthermore, the design of the connecting wall 33 and the latching groove 34 facilitates disassembly and maintenance, improving the maintainability of the adapter structure. The bottom of the cover 29 is also provided with a limiting post and a limiting latch. One end of the limiting post abuts against the copper sheet assembly, limiting the possible movement of the cover 29 towards or away from the copper sheet assembly. Simultaneously, a spacer extends into the limiting latch to limit the vertical movement of the cover 29.

[0031] Furthermore, the inner cavity 2 is also provided with a light ring 36. In this embodiment, the light ring 36 is connected to the base 25, and the light ring is provided to the user with an intuitive visual indication. This design allows the user to clearly understand the working status and position of the adapter at a glance.

[0032] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A track outlet adapter with a novel copper piece structure, comprising an adapter body, an inner cavity is formed in the adapter body, a copper piece assembly and a ground wire connecting piece are arranged in the inner cavity, the copper piece assembly comprises a grounding copper piece and conductive copper pieces symmetrically arranged on both sides of the grounding copper piece, characterized in that: The grounding connector includes a main body and a grounding connection part. A snap-fit ​​structure is provided on the grounding copper sheet, and the grounding connection part is snapped and fixed to the snap-fit ​​structure and tightly fitted.

2. The track outlet adapter with a new copper piece structure according to claim 1, characterized in that: The grounding copper sheet includes a grounding socket and a grounding connection. The snap-fit ​​structure includes a connecting end and a fixed end disposed on the grounding connection. The connecting end is disposed on both sides of the fixed end. The connecting end is bent outward with the fixed end as the center. The ground wire connector is U-shaped and has a ground wire connection part corresponding to the connecting end. A snap-fit ​​gap is formed between the ground wire connection parts. The connecting ends on the grounding connection part are respectively connected to the opposite end faces of the ground wire connection part, and the connecting ends and the ground wire connection parts are tightly fitted together.

3. The track outlet adapter with a new structure of copper pieces according to claim 2, characterized in that: Two opposing clamping arm structures protrude from the end face of the grounding socket part away from the ground wire connector. The two clamping arm structures are inclined in opposite directions, and a grounding slot is formed between the two clamping arms and the grounding socket part.

4. The track outlet adapter with a new structure of copper pieces according to claim 3, characterized in that: The adapter body is also provided with a contact plate, each of which has a contact end and a copper plate connection end. The contact end extends out of the adapter body, and the copper plate connection end extends into the conductive copper plate for connection.

5. The track outlet adapter with a new structure of copper pieces according to claim 1, characterized in that: The conductive copper sheet has a copper sheet insert portion and a copper sheet connecting portion. The side of the copper sheet insert portion away from the power receiving unit protrudes to form a conductive clamping arm, and a conductive slot is formed between the conductive clamping arm and the copper sheet insert portion.

6. The track outlet adapter with a new structure of copper pieces according to claim 5, characterized in that: The copper sheet connecting part is provided at the position of the corresponding electrical sheet, the copper sheet connecting part is bent to form a clamping part, and the copper sheet connecting end extends into the clamping part and connects with the copper sheet connecting part.

7. The track outlet adapter with a new structure of copper pieces according to claim 1, characterized in that: The adapter body includes a housing, a base, and a rotating bracket. The rotating bracket is rotatably mounted on the base. The housing and the base are connected to form an inner cavity. The base has several partitions protruding from one side of the inner cavity. Several copper sheet fixing grooves are formed between the partitions for fixing copper sheet assemblies. The copper sheet assemblies are placed in the copper sheet fixing grooves, and the copper sheet fixing grooves limit and fix the position of the copper sheet assemblies in the inner cavity.

8. The track outlet adapter with a new structure of copper pieces according to claim 7, characterized in that: The inner cavity is also provided with a pressure cover and a safety door. The pressure cover is snapped together with the base. The pressure cover is located at the upper end of the copper sheet fixing groove. The pressure cover has a slot hole corresponding to the position of the copper sheet assembly. The pressure cover is also provided with a fixing groove. The safety door is movably installed in the fixing groove.

9. The track outlet adapter with a new structure of copper pieces according to claim 8, characterized in that: The pressure cap extends into a connecting wall towards the base, and a snap-fit ​​groove is formed on the connecting wall. A snap-fit ​​end protrudes from the side wall of the copper sheet fixing groove, and the snap-fit ​​end of the copper sheet fixing groove extends into the connecting snap-fit ​​groove for connection.

10. The track outlet adapter with a new structure of copper pieces according to claim 8, characterized in that: The inner cavity is also equipped with a light ring.