Track capable of preventing track socket from sliding during power taking
By setting a limiting structure with blocking plates and blocking holes inside the track, the problem of power slippage in the track socket is solved, achieving a stable connection of the track socket, improving power safety and reliability, extending component life and reducing maintenance costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DEYU INTELLIGENT TECH (ZHEJIANG) CO LTD
- Filing Date
- 2025-05-22
- Publication Date
- 2026-05-26
AI Technical Summary
Existing track sockets are prone to slipping during power extraction, resulting in poor contact between the power extraction head and the metal body of the track, the neutral wire, and the live wire. This poses safety hazards such as power outages, electrical sparks, and short circuits, making it difficult to meet users' needs for safe and reliable power supply.
A blocking plate is installed inside the track, and blocking holes are opened at equal intervals on the blocking plate. The power take-off head of the track socket passes through the blocking hole and is electrically connected to the metal body of the track. The blocking plate and the blocking hole form a limiting structure to prevent the track socket from sliding. It is stably connected to the neutral wire plate, the live wire plate and the metal body of the track through the neutral wire terminal, the live wire terminal and the grounding terminal.
It effectively prevents the track socket from sliding, ensures stable contact between the power tap and the components inside the track, improves power stability and safety, reduces the risk of accidents, extends the life of components, and reduces maintenance costs.
Smart Images

Figure CN224288814U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of track socket technology, specifically to a track that can prevent the track socket from sliding when drawing power. Background Technology
[0002] In modern building electrical systems, track sockets are widely used in commercial spaces, home renovations, and office spaces due to their flexible installation and the ability to add or remove sockets at any time. Track sockets transmit power through conductive plates within the track and the power outlet's connector, allowing users to freely adjust the position of the track socket according to their actual power needs.
[0003] However, existing track sockets have significant drawbacks in their power extraction process. When the track socket is inserted into the track for power extraction, the lack of an effective limiting structure makes it prone to sliding on the track. This can lead to poor contact between the power extraction head and the track's metal components, neutral and live wires, resulting in safety hazards such as power outages, electrical sparks, or even short circuits. This severely limits the safety and stability of track sockets and fails to meet users' demands for a safe and reliable power environment. Therefore, there is an urgent need to design a track structure that prevents track sockets from sliding during power extraction to solve the aforementioned technical problems. Utility Model Content
[0004] To address the shortcomings of the prior art, this utility model provides a track that can prevent the power supply of the track socket from slipping.
[0005] The technical solution adopted by this utility model is: a track that can prevent the power supply of the track socket from slipping, including the track and a track socket adapted to the track. The track is provided with a track metal body, a neutral wire piece and a live wire piece, and also includes a blocking piece stacked on top of the track metal body. A plurality of blocking holes are provided at equal intervals along the length direction of the blocking piece. The power supply head of the track socket can pass through the blocking holes and be electrically connected to the track metal body.
[0006] Furthermore, the blocking hole has a circular, elliptical, or rectangular structure.
[0007] Furthermore, the center distance between the blocking holes is 5-20mm.
[0008] Furthermore, the maximum gap between the power-collecting head and the sidewall of the blocking hole is less than 1 mm.
[0009] Furthermore, it also includes a neutral wire terminal, a live wire terminal, and a grounding terminal. The neutral wire terminal and the live wire terminal are connected to the neutral wire piece and the live wire piece respectively by rivets, or the neutral wire terminal and the live wire terminal are integrally welded to the ends of the neutral wire piece and the live wire piece respectively.
[0010] The grounding terminal is fixed between the blocking plate and the track metal body by rivets, or the grounding terminal is riveted between the blocking plate and the track metal body.
[0011] Furthermore, the neutral wire terminal, the live wire terminal, and the grounding terminal all include a connecting part and a fixing part. The connecting part is provided with a connecting hole, and the fixing part is a cuboid structure with both ends through it. The fixing part is provided with a fixing hole on its side.
[0012] The beneficial effects of this utility model are:
[0013] First, it effectively solves the problem of easy slippage when drawing power from a track socket. The limiting structure formed by the blocking plate and the blocking hole can stably fix the track socket in a specific position, preventing displacement during power drawing. This ensures good and stable contact between the power drawing head and the track metal body, neutral wire, and live wire inside the track, avoiding power outages, electrical sparks, and short circuits caused by poor contact, greatly improving the stability and reliability of power supply.
[0014] Secondly, it significantly enhances electrical safety. The safety hazards caused by sliding track sockets are eliminated, reducing the risk of electrical fires and other accidents. This provides a safer electrical environment for commercial spaces, homes, and offices, meeting users' urgent need for safe and reliable electricity.
[0015] Furthermore, the stable contact condition reduces wear caused by poor contact, extends the service life of components such as the track, track socket, and conductive sheet, and reduces equipment maintenance and replacement costs. At the same time, the structure is simple and easy to implement, effectively improving product performance without changing the existing basic structure and usage of the track socket, and has good market application prospects and promotion value.
[0016] In addition to the objectives, features and advantages described above, this utility model has other objectives, features and advantages.
[0017] The present invention will now be described in further detail with reference to the accompanying drawings. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of this utility model.
[0019] Figure 2 This is a cross-sectional schematic diagram of the present invention.
[0020] Figure 3 This is an exploded view of the present invention.
[0021] Figure 4 This is a schematic diagram of the grounding terminal.
[0022] Figure 1-4 In the middle: 1. Track; 2. Track socket; 3. Track metal body; 4. Neutral wire piece; 5. Live wire piece; 6. Blocking piece; 7. Blocking hole; 8. Power tap; 9. Neutral terminal; 10. Live terminal; 11. Grounding terminal; 12. Rivet; 13. Connecting part; 14. Fixing part; 15. Connecting hole; 16. Fixing hole. Detailed Implementation
[0023] 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.
[0024] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicators will also change accordingly.
[0025] This invention provides a track that can prevent the power supply of the track socket from slipping.
[0026] In this embodiment, refer to Figure 1-4 The track that prevents the power supply of the track socket from slipping includes a track 1 and a track socket 2 adapted to the track 1. The track is provided with a track metal body 3, a neutral wire piece 4 and a live wire piece 5. It also includes a blocking piece 6 stacked on top of the track metal body. A plurality of blocking holes 7 are provided at equal intervals along the length of the blocking piece 6. The power supply head 8 of the track socket can pass through the blocking holes and be electrically connected to the track metal body.
[0027] In the above technical solution, blocking plates are stacked on top of the track metal body inside the track, and blocking holes are evenly spaced along the length of the blocking plates. The power-taking head of the track socket passes through the blocking holes and is electrically connected to the track metal body. The limiting structure formed by the blocking plates and blocking holes restricts the movement of the track socket on the track to the interval positions of the blocking holes, effectively preventing the track socket from sliding randomly during power taking, ensuring stable contact between the power-taking head and the track metal body, neutral wire, and live wire, avoiding problems such as poor contact and power outages caused by sliding, and improving power stability and safety. At the same time, the standardized interval setting makes it convenient for users to slide the power-taking head out and in the blocking holes when sliding the track socket according to their power needs (the power-taking head adopts an elastic structure, which makes it easier to slide), thereby switching between blocking holes at different positions.
[0028] Specifically, the blocking hole has a circular, elliptical, or rectangular structure.
[0029] In this embodiment, the blocking hole adopts a circular structure, which can better adapt to the power tapping head.
[0030] Specifically, the center distance between the blocking holes is 5-20mm.
[0031] In this embodiment, the reasonable hole spacing makes the layout of the track sockets on the track more scientific. It can not only install multiple track sockets on a limited track length, but also achieve near-linear position adjustment of the track sockets.
[0032] Specifically, the maximum gap between the power-collecting head and the sidewall of the blocking hole is less than 1 mm.
[0033] In this embodiment, the smaller gap can greatly limit the wobbling space of the power tap within the blocking hole, allowing the track socket to be accurately positioned when drawing power, and preventing the track socket from undergoing slight displacement and sliding due to excessive gap.
[0034] Specifically, it also includes a neutral terminal 9, a live terminal 10, and a ground terminal 11. The neutral terminal and the live terminal are connected to the neutral piece and the live piece respectively by rivets, or the neutral terminal and the live terminal are integrally welded to the ends of the neutral piece and the live piece respectively.
[0035] The grounding terminal is fixed between the blocking plate and the track metal body by rivet 12, or the grounding terminal is riveted between the blocking plate and the track metal body.
[0036] In this embodiment, a neutral wire terminal, a live wire terminal, and a grounding terminal are provided, which are connected to the neutral wire piece, the live wire piece, and the track metal body by riveting or integral welding, respectively. Integral welding can form a firm and stable electrical connection, ensuring the stability and reliability of current transmission; the grounding terminal is fixed between the blocking piece and the track metal body, and is clamped and fixed by the blocking piece and the track metal body to ensure the stability of the grounding connection.
[0037] Specifically, the neutral wire terminal, the live wire terminal, and the grounding terminal each include a connecting part 13 and a fixing part 14. The connecting part is provided with a connecting hole 15, and the fixing part is a cuboid structure that extends through both ends. The fixing part is provided with a fixing hole 16 on its side.
[0038] In this embodiment, the neutral wire terminal, the live wire terminal, and the grounding terminal are all designed to include a connecting part and a fixing part. The connecting hole on the connecting part is used to make electrical connections with the neutral wire piece, the live wire piece, and the track metal body by means of rivets or welding to realize the transmission of current. The fixing part is a cuboid structure with openings at both ends and fixing holes on the side, which can be fixedly connected to the wire by screws or other connectors.
[0039] Attention all technical personnel: Although this utility model has been described according to the specific embodiments above, the concept of this utility model is not limited to this utility model. Any modification that utilizes the concept of this utility model will be included within the scope of protection of this patent right.
Claims
1. A track capable of preventing slippage of a track socket for power supply, comprising a track and a track socket adapted to the track, wherein the track contains a track metal body, a neutral wire piece, and a live wire piece, characterized in that: It also includes a blocking plate stacked on top of the track metal body, with a plurality of blocking holes evenly spaced along the length of the blocking plate, and the power take-off head of the track socket can pass through the blocking holes to make an electrical connection with the track metal body.
2. The track according to claim 1, capable of preventing slippage of the track socket for power supply, characterized in that: The blocking hole can be circular, elliptical, or rectangular.
3. The track according to claim 1 or 2, capable of preventing slippage of the track socket for power supply, characterized in that: The center distance between the blocking holes is 5-20mm.
4. The track according to claim 1, capable of preventing slippage of the track socket for power supply, characterized in that: The maximum gap between the power-collecting head and the sidewall of the blocking hole is less than 1 mm.
5. The track according to claim 1, capable of preventing slippage of the track socket for power supply, characterized in that: It also includes a neutral wire terminal, a live wire terminal, and a grounding terminal. The neutral wire terminal and the live wire terminal are connected to the neutral wire piece and the live wire piece respectively by rivets, or the neutral wire terminal and the live wire terminal are integrally welded to the ends of the neutral wire piece and the live wire piece respectively. The grounding terminal is fixed between the blocking plate and the track metal body by rivets, or the grounding terminal is riveted between the blocking plate and the track metal body.
6. The track according to claim 5, capable of preventing slippage of the track socket for power supply, characterized in that: The neutral wire terminal, live wire terminal, and grounding terminal each include a connecting part and a fixing part. The connecting part is provided with a connecting hole, and the fixing part is a cuboid structure with two through ends. The fixing part is provided with a fixing hole on its side.