Rotary wiring structure for track socket

By designing a rotating wiring structure for the track socket and using a rotating top cover to drive the sliding frame, the problem of existing track sockets being unable to be powered off is solved, thus achieving convenient power on/off control.

CN224305110UActive Publication Date: 2026-05-29浙江锦洋智能科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-24
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

The existing track sockets cannot be disconnected once the power source is connected to the power track. The adapter must be removed from the track to disconnect the power, which is inconvenient.

Method used

A rotating wiring structure for a track socket is designed. By rotating the top cover, the pusher slides, and the pusher drives the live wire and neutral wire conductive plates to swing, thereby realizing the power-on and power-off control of the power tap and simplifying the power-on and power-off operation of the adapter.

Benefits of technology

It enables power on/off without removing the adapter, simplifying the electrical connection control process and improving operational convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rotatory wiring structure of track socket, including adapter and electric power track, the adapter includes adapter body and power taking body, the adapter body includes base and rotates and is established on the upper cover of base, swing is equipped with firewire conductive sheet and zero line conductive sheet on the power taking body, the adapter body base is equipped with the pusher and swing and is equipped with first swing piece and second swing piece on the sliding, first swing piece lower extreme and firewire conductive sheet are matched, second swing piece lower extreme and zero line conductive sheet are matched, the bottom surface eccentricity of upper cover is provided with push rod, the pusher is provided with the matching groove that is matched with push rod, rotates the upper cover, the pusher simultaneously drives first swing piece and second swing piece and respectively drives firewire conductive sheet, zero line conductive sheet swing to one side, make firewire power taking head and zero line power taking head and electric power track electric connection and disconnect, need not to take down the adapter of electric power track, can realize power failure.
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Description

Technical Field

[0001] This utility model relates to the field of socket adapter technology, and more specifically, it relates to a rotating wiring structure for a track socket. Background Technology

[0002] A track socket is a portable socket that includes an adapter and a power track. The adapter can be fitted into different positions on the power track to draw power as needed.

[0003] An adapter typically includes an adapter body with a socket and a power take-off part with a conductive plate, wherein the power take-off part is inserted into a slot in the power rail, and the conductive plate is electrically connected to the power rail.

[0004] Once the power-taking arm of the existing adapter is inserted into the slot, it remains electrically connected to the power rail and cannot be disconnected. The adapter can only be de-energized by removing it from the power rail, which is a cumbersome process. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a rotating wiring structure for a track socket.

[0006] To achieve the above objectives, the present invention provides the following technical solution:

[0007] A rotating wiring structure for a track socket includes an adapter and a power rail. The adapter includes an adapter body and a power receiving element. The power rail is provided with a slot adapted to the power receiving element. The adapter body includes a base and a top cover rotatably mounted on the base. A live wire conductive plate and a neutral wire conductive plate are oscillatingly mounted on the power receiving element. One end of the live wire conductive plate is provided with a live wire power receiving head, and the other end extends into one side of the base. One end of the neutral wire conductive plate is provided with a neutral wire power receiving head, and the other end extends into the other side of the base.

[0008] The base is slidably provided with a push frame and oscillatingly provided with a first oscillating member and a second oscillating member. The lower end of the first oscillating member passes through the first through hole of the push frame and cooperates with the live wire conductive sheet. The lower end of the second oscillating member passes through the second through hole on the push frame and cooperates with the neutral wire conductive sheet.

[0009] A push rod is eccentrically provided on the bottom surface of the top cover, and a mating groove is provided on the push frame to cooperate with the push rod; when the top cover is rotated, the push rod drives the push frame to slide, and the push frame simultaneously drives the first swinging component and the second swinging component to swing the live wire conductive plate and the neutral wire conductive plate to one side respectively, so that the live wire power take-off head and the neutral wire power take-off head are electrically connected to the power rail.

[0010] The present invention further includes: a rolling roller is sleeved on the outer side of both the live wire conductive sheet and the neutral wire conductive sheet, and a rolling groove adapted to the swing roller is provided on the power taking body;

[0011] The rolling roller rolls back and forth in the rolling groove, causing the live wire conductive sheet or the neutral wire conductive sheet to swing back and forth.

[0012] The present invention is further provided in that: the upper ends of the first swing member and the second swing member are both provided with swing shafts;

[0013] The base of the adapter body is provided with a swing hole, wherein the first swing member and the second swing member are both oscillatingly mounted on the corresponding swing hole via a swing shaft.

[0014] The present invention is further provided that: the lower ends of the first swing member and the second swing member are both connected to a pressure rod, and the lower end of the pressure rod is tapered;

[0015] When the first swinging component swings, the live wire conductive sheet is driven to swing to one side by the pressure rod;

[0016] When the second swinging member swings, the neutral wire conductive plate is driven to swing to one side by the pressure rod.

[0017] The present invention is further provided with: a ground wire conductive sheet is provided on the power receiving body, and a ground wire connector is clamped at the front end of the ground wire conductive sheet;

[0018] A contact spring is fitted onto the grounding connector. One end of the contact spring abuts against the power source, and the other end abuts against the grounding connector.

[0019] The beneficial effects of this utility model are as follows: After the power-taking body of the adapter is inserted into the slot of the power rail, rotating the top cover drives the push frame to slide. The push frame simultaneously drives the first and second swinging components to swing the live wire conductive plate and the neutral wire conductive plate to one side, causing the live wire power-taking head and the neutral wire power-taking head to tilt upwards and connect with the power rail, thus energizing the adapter. When it is necessary to de-energize the adapter, simply rotate the top cover in the opposite direction and push the push frame to slide in the opposite direction. The push frame simultaneously drives the first and second swinging components to swing the live wire conductive plate and the neutral wire conductive plate to the other side, causing the live wire power-taking head and the neutral wire power-taking head to swing downwards, disconnecting the electrical connection with the power rail, thus de-energizing the adapter. The adapter can be de-energized without removing it from the power rail, simplifying the power-on and power-off control of the adapter and making it more convenient. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the rotating wiring structure of a track socket according to the present invention;

[0021] Figure 2 This is a schematic diagram of the adapter with a rotating wiring structure for a track socket according to this utility model. Figure 1 ;

[0022] Figure 3 This is a schematic diagram of the adapter with a rotating wiring structure for a track socket according to this utility model. Figure 2 ;

[0023] Figure 4 This is a schematic diagram of the internal structure of an adapter with a rotating wiring structure for a track socket according to this utility model. Figure 1 ;

[0024] Figure 5 This is a schematic diagram of the internal structure of an adapter with a rotating wiring structure for a track socket according to this utility model. Figure 2 ;

[0025] Figure 6 This is a diagram showing the fit between the top cover and the push frame of a rotating wiring structure for a track socket according to this utility model.

[0026] Figure 7 This is a diagram showing the interaction between the push frame, the first swing member, and the second swing member of the rotating wiring structure of a track socket according to this utility model.

[0027] Figure 8 This is a diagram showing the assembly of the first swinging component and the live wire conductive plate, and the second swinging component and the neutral wire conductive plate of the rotating wiring structure of a track socket according to this utility model.

[0028] Figure 9 This is a schematic diagram of the base of a rotating wiring structure for a track socket according to the present invention;

[0029] Explanation of reference numerals in the attached drawings: 1. Adapter; 11. Adapter body; 111. Base; 1111. Push frame; 11111. First through hole; 11112. Second through hole; 11113. Mating groove; 1112. First swinging component; 1113. Second swinging component; 1114. Swinging hole; 112. Top cover; 1121. Push rod; 12. Power take-up body; 121. Live wire conductive sheet; 1211. Live wire power take-up head; 122. Neutral wire conductive sheet; 1221. Neutral wire power take-up head; 123. Rolling groove; 124. Ground wire conductive sheet; 125. Ground wire connector; 126. Contact spring; 2. Power rail; 21. Slot; 3. Rolling roller; 4. Swinging shaft; 5. Pressure rod. Detailed Implementation

[0030] See attached document Figures 1 to 9 The present invention provides a more detailed description of the rotating wiring structure of a track socket.

[0031] A rotating wiring structure for a track socket includes an adapter 1 and a power rail 2. The adapter 1 includes an adapter body 11 and a power take-off body 12. The power rail 2 is provided with a slot 21 adapted to the power take-off body 12. The adapter body 11 includes a base 111 and a top cover 112 rotatably disposed on the base 111. A live wire conductive plate 121 and a neutral wire conductive plate 122 are oscillatingly disposed on the power take-off body 12. One end of the live wire conductive plate 121 is provided with a live wire take-off head 1211, and the other end extends into one side of the base 111. One end of the neutral wire conductive plate 122 is provided with a neutral wire take-off head 1221, and the other end extends into the other side of the base 111.

[0032] The base 111 is slidably provided with a pusher frame 1111 and oscillatingly provided with a first oscillating member 1112 and a second oscillating member 1113. The lower end of the first oscillating member 1112 passes through the first through hole 11111 of the pusher frame 1111 and cooperates with the live wire conductive sheet 121. The lower end of the second oscillating member 1113 passes through the second through hole 11112 on the pusher frame 1111 and cooperates with the neutral wire conductive sheet 122.

[0033] The bottom surface of the upper cover 112 is eccentrically provided with a push rod 1121, and the push frame 1111 is provided with a mating groove 11113 that cooperates with the push rod 1121; when the upper cover 112 is rotated, the push rod 1121 drives the push frame 1111 to slide, and the push frame 1111 simultaneously drives the first swing member 1112 and the second swing member 1113 to swing the live wire conductive plate 121 and the neutral wire conductive plate 122 to one side, so that the live wire power take-off head 1211 and the neutral wire power take-off head 1221 are electrically connected to the power rail 2;

[0034] After inserting the power take-off part 12 of adapter 1 into the slot 21 of the power rail 2, by rotating the top cover 112, the push rod 1121 engages with the side wall of the mating groove 11113, causing the push frame 1111 to slide. The push frame 1111 simultaneously drives the first swing member 1112 and the second swing member 1113 to swing the live wire conductive piece 121 and the neutral wire conductive piece 122 to one side, so that the live wire take-off head 1211 and the neutral wire take-off head 1221 simultaneously tilt upwards and connect to the power rail 2, thus enabling adapter 1 to be powered on. When it is necessary to disconnect adapter 1 from the power, simply rotate the top cover 112 in the opposite direction. 12. The push rod 1121 engages with the other side wall of the mating groove 11113, pushing the push frame 1111 to slide in the opposite direction. This causes the push frame 1111 to simultaneously drive the first swing member 1112 and the second swing member 1113 to swing the live wire conductive plate 121 and the neutral wire conductive plate 122 to the other side, causing the live wire power take-off head 1211 and the neutral wire power take-off head 1221 to swing downwards simultaneously, disconnecting the electrical connection with the power rail 2 and realizing the power off of the adapter 1. The adapter 1 can be powered off without removing it from the power rail 2, simplifying the power on / off control of the adapter 1 and making it more convenient.

[0035] The live wire conductive sheet 121 and the neutral wire conductive sheet 122 are both fitted with rolling rollers 3 on their outer sides, and the power taking body 12 is provided with a rolling groove 123 adapted to the swing roller; the rolling roller 3 rolls back and forth in the rolling groove 123, driving the live wire conductive sheet 121 or the neutral wire conductive sheet 122 to swing back and forth; so that the live wire conductive sheet 121 and the neutral wire conductive sheet 122 swing more smoothly.

[0036] The upper ends of the first swing member 1112 and the second swing member 1113 are both provided with swing shafts 4; the base 111 of the adapter body 11 is provided with swing holes 1114, wherein the first swing member 1112 and the second swing member 1113 are both oscillatingly mounted on the corresponding swing holes 1114 via the swing shafts 4; the lower ends of the first swing member 1112 and the second swing member 1113 are both connected with pressure rods 5, and the lower end of the pressure rods 5 is tapered.

[0037] When the first swing member 1112 swings, the pressure rod 5 drives the live wire conductive piece 121 to swing to one side; when the second swing member 1113 swings, the pressure rod 5 drives the neutral wire conductive piece 122 to swing to one side. This allows the pressure rod 5 at the lower end of the first swing member 1112 and the second swing member 1113 to press down on one side of the live wire conductive piece 121 and the neutral wire conductive piece 122, thereby causing the live wire power take-off head 1211 and the neutral wire power take-off head 1221 at the other end of the live wire conductive piece 121 and the neutral wire conductive piece 122 to swing up and down, resulting in better power connection and disconnection effects.

[0038] The power taking body 12 is provided with a ground wire conductive plate 124, and the front end of the ground wire conductive plate 124 holds a ground wire connector 125; the ground wire connector 125 is fitted with an anti-contact spring 126, one end of the anti-contact spring 126 abuts against the power taking body 12, and the other end abuts against the ground wire connector 125; the anti-contact spring 126 ensures that the ground wire connector 125 is always in contact with the ground wire in the power rail 2.

[0039] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.

Claims

1. A rotating wiring structure for a track socket, comprising an adapter and a power rail, wherein the adapter includes an adapter body and a power receiving element, and the power rail is provided with a slot adapted to the power receiving element; characterized in that: The adapter body includes a base and a top cover rotatably mounted on the base. A live wire conductive plate and a neutral wire conductive plate are oscillatingly mounted on the power-collecting body. One end of the live wire conductive plate is provided with a live wire power-collecting head, and the other end extends into one side of the base. One end of the neutral wire conductive plate is provided with a neutral wire power-collecting head, and the other end extends into the other side of the base. The base is slidably provided with a push frame and oscillatingly provided with a first oscillating member and a second oscillating member. The lower end of the first oscillating member passes through the first through hole of the push frame and cooperates with the live wire conductive sheet. The lower end of the second oscillating member passes through the second through hole on the push frame and cooperates with the neutral wire conductive sheet. A push rod is eccentrically provided on the bottom surface of the top cover, and a mating groove is provided on the push frame to cooperate with the push rod; when the top cover is rotated, the push rod drives the push frame to slide, and the push frame simultaneously drives the first swinging component and the second swinging component to swing the live wire conductive plate and the neutral wire conductive plate to one side respectively, so that the live wire power take-off head and the neutral wire power take-off head are electrically connected to the power rail.

2. The rotating wiring structure of a track socket according to claim 1, characterized in that: Both the live wire conductive sheet and the neutral wire conductive sheet are fitted with rolling rollers on their outer sides, and the power taking body is provided with a rolling groove adapted to the swing rollers. The rolling roller rolls back and forth in the rolling groove, causing the live wire conductive sheet or the neutral wire conductive sheet to swing back and forth.

3. The rotating wiring structure of a track socket according to claim 2, characterized in that: Both the first and second swing members have a swing shaft at their upper ends; The base of the adapter body is provided with a swing hole, wherein the first swing member and the second swing member are both oscillatingly mounted on the corresponding swing hole via a swing shaft.

4. The rotating wiring structure of a track socket according to claim 3, characterized in that: The lower ends of both the first and second swing members are connected to pressure rods, and the lower ends of the pressure rods are tapered. When the first swinging component swings, the live wire conductive sheet is driven to swing to one side by the pressure rod; When the second swinging member swings, the neutral wire conductive plate is driven to swing to one side by the pressure rod.

5. A rotating wiring structure for a track socket according to claim 1, 2, 3, or 4, characterized in that: The power-taking body is provided with a ground wire conductive sheet, and the front end of the ground wire conductive sheet is clamped with a ground wire connector; a contact spring is sleeved on the ground wire connector, one end of the contact spring abuts against the power-taking body, and the other end abuts against the ground wire connector.