Adapter for uncharged sliding of track
By using a rotating engagement structure between the drive ring and the turntable base plate, the unfolding and retraction of the conductive sheet is controlled, thus solving the safety hazards and structural complexity issues associated with the energized sliding of the track adapter and achieving a safe, convenient, and low-cost track adapter design.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-12
- Publication Date
- 2026-04-07
AI Technical Summary
Existing track adapters pose a safety hazard due to electric slippage, and suffer from complex conductive sheet storage structures, long operating strokes, and high costs.
It adopts a rotating engagement structure between the drive ring and the turntable base plate. The drive ring controls the unfolding and retraction of the conductive sheet. The conductive sheet is covered with an insulating shell, which simplifies the structure. The eccentric setting of the conductive sheet shaft shortens the operating stroke.
This technology enables adapters to slide without electricity, improving safety, reducing costs and assembly difficulty, simplifying operation, making it suitable for home and office settings, and facilitating mass production.
Smart Images

Figure CN121813060A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of track socket technology, specifically to an adapter for track sliding without electricity. Background Technology
[0002] In rail-mounted power supply systems, the adapter, as the core component connecting the electrical equipment to the power supply rail, directly impacts the overall user experience of the power supply system due to its ease of use, safety, and structural rationality. Currently, most rail adapters on the market employ a design where the conductive sheet is constantly in contact with the conductive components inside the rail. This means that as the adapter slides on the rail, the conductive sheet remains in contact with the energized parts of the rail, resulting in the adapter being energized while sliding.
[0003] This type of energized sliding structure presents significant safety hazards: Firstly, frictional losses can easily occur between the conductive sheet and the energized body of the track during the sliding process, potentially leading to poor contact and sparking after prolonged use. This could damage the adapter and track, and may also cause electric shock, short circuits, and other safety accidents. Secondly, when adjusting the adapter's installation position on the track, the energized sliding method requires operators to possess corresponding safety awareness and operational skills, making it unsuitable for convenient use in ordinary scenarios such as homes and offices, and also failing to comply with the safety usage specifications for low-voltage power supply systems.
[0004] To address the aforementioned issue of electrified sliding, some existing technologies attempt to design adapters that can retract the conductive sheet. However, these adapters generally suffer from drawbacks such as complex structure, cumbersome operation, and high manufacturing costs. Such adapters typically require multiple drive components (such as gear sets and linkage mechanisms) to control the unfolding and retraction of the conductive sheet. This not only increases the overall size and weight of the adapter but also raises the precision requirements for component processing and assembly difficulty, leading to lower product yield rates, higher production costs, and hindering large-scale production and market promotion.
[0005] In addition, the existing adapters that can store conductive sheets have unreasonable designs for the rotating drive structure of the conductive sheets. Most of them adopt the method of setting the conductive sheet shaft and the center of the turntable coaxially. This means that when the conductive sheet is unfolded from the stored state to the working state, the turntable needs to be rotated by a large angle (usually 90 degrees or more) to fully unfold the conductive sheet. The operating stroke is long and the convenience of use is poor.
[0006] Therefore, in view of the technical defects of existing track adapters, such as safety hazards caused by electric sliding, complex conductive sheet storage structure, long operating stroke and high cost, it is urgent to solve the technical problem of developing a track adapter with simple structure, convenient operation, low cost, and the ability to quickly unfold and store conductive sheets, thereby achieving non-electric sliding of the adapter. Summary of the Invention
[0007] In view of the shortcomings of the prior art, the present invention provides an adapter for track sliding without electricity.
[0008] The technical solution adopted in this invention is: an adapter with a non-electrically slidable track, including a socket body, a guide body and a conductive sheet, and a drive ring for controlling the unfolding and retraction of the conductive sheet relative to the guide body. A turntable base plate is provided on one side of the guide body, and the turntable base plate is rotatably engaged with the socket body. The drive ring is connected to the socket body, and the inner ring of the drive ring is provided with a connecting protrusion. The conductive sheet includes a power-collecting part, a rotating shaft, and a docking part. The rotating shaft is rotatably connected to a rotating hole on the bottom plate of the turntable near the center, and the docking part is connected to a connecting protrusion.
[0009] Furthermore, the docking portion is provided with a "U"-shaped groove that connects with the connecting protrusion.
[0010] Furthermore, the conductive sheet includes an N-polar conductive sheet and an L-polar conductive sheet; There are two connecting protrusions, which are respectively connected to the N-polar conductive sheet and the L-polar conductive sheet; The guide body is provided with a storage groove for storing conductive sheets, and the rotating hole is located at the end of the storage groove away from the center.
[0011] Furthermore, the conductive sheet is covered with an insulating shell, and the power taking part and the docking part are partially exposed outside the insulating shell.
[0012] Furthermore, it also includes a pressure plate and a return spring. The socket body includes a bottom shell, an upper shell connected to the bottom shell, and an upper cover that fits onto the upper shell. The bottom shell is provided with a shaft hole that rotatably engages with the turntable base plate. A circuit board is provided above the pressure plate, and LED beads are provided on the circuit board. A light guide ring is also provided above the circuit board, and the upper cover covers the light guide ring; A light-transmitting gap is left between the upper shell and the upper cover, and a reflective surface is provided on the upper shell around the outer ring of the light-transmitting gap; The reset spring is disposed between the bottom shell and the top shell.
[0013] Furthermore, the light guide ring is provided with fixing holes, the outer edge of the light guide ring is pressed against the upper shell, the bottom shell is provided with fixing screw holes corresponding to the fixing holes, the pressure plate is provided with fixing posts adapted to the fixing holes, and the fixing posts are provided with through holes; A hanging plate is provided on one side of the pressure plate, and a hook is provided on the light guide ring to connect with the hanging plate.
[0014] Furthermore, the upper shell and the bottom shell are provided with spring protrusions, and the spring protrusions are provided with connecting holes for connecting to the end of the return spring. The two sides of the hanging plate are provided with limiting parts that are adapted to the spring protrusions on the upper shell.
[0015] Furthermore, it also includes a positioning mechanism for positioning the conductive sheet in the unfolded state. The positioning mechanism includes a button and a positioning spring for button reset. One end of the positioning spring abuts against a spring plate on the bottom shell, and the other end abuts against a spring step on the button.
[0016] Furthermore, the turntable base plate is provided with elastic hook plates that are connected to the bottom shell at intervals, wherein a positioning groove is formed between two adjacent elastic hook plates, and a guide slope is provided on one side of the elastic hook plate of the positioning groove. The button is provided with a guide step that matches the guide slope and a positioning protrusion on one end of the guide step, and the positioning protrusion matches the positioning groove.
[0017] Furthermore, it also includes a grounding conductive rod, a conductive spring, and a grounding terminal. The elastic clamp of the grounding terminal is held on the grounding conductive rod. The grounding conductive rod is movably engaged with the center hole of the bottom shell. The conductive spring is fitted on the grounding conductive rod, with one end of the conductive spring abutting against the elastic clamp and the other end abutting against the abutting step of the grounding conductive rod.
[0018] The beneficial effects of this invention are: 1. Enables adapter to slide without power, significantly improving safety: The drive ring allows for flexible control of the unfolding and retraction of the conductive sheet relative to the guide body. When the adapter needs to be repositioned on the track, the conductive sheet can be retracted into the guide body, completely disengaging it from the live parts of the track. This allows for smooth sliding of the adapter without power, effectively preventing poor contact and arcing caused by friction between the conductive sheet and the live parts of the track during sliding. This eliminates the risk of electric shock, short circuits, and other safety accidents. It also reduces wear on the conductive sheet and track, extending the lifespan of the adapter and track. Furthermore, it better complies with the safety standards for low-voltage power supply systems and is suitable for convenient use in various common scenarios such as homes and offices.
[0019] 2. Simple and rational structure, reducing manufacturing costs and assembly difficulty: This adapter only requires the addition of a simple drive ring component. Through the rotational cooperation between the turntable base plate and the socket body, the conductive sheet can be unfolded and retracted. There is no need for complex drive components such as gear sets and linkage mechanisms, significantly simplifying the overall structure of the adapter and reducing the number of parts. At the same time, the simple connection method of each component reduces the precision requirements for component processing and assembly difficulty, which helps to improve product qualification rate, reduce production costs, and facilitate mass production and market promotion.
[0020] 3. Reduced operating stroke, improved ease of use and operational efficiency: By offsetting the rotating shaft of the conductive sheet to one side of the center of the turntable base, the unreasonable design of the existing technology, where the rotating shaft is coaxial with the center of the turntable, is improved. This allows the socket body to rotate less than 90 degrees (usually 20-80 degrees depending on the degree of offset) when rotating the conductive sheet from its retracted state to its fully extended state (e.g., a 90-degree rotation), significantly reducing the operating stroke. Operators can quickly unfold and retract the conductive sheet without spending much time or effort, making it particularly suitable for scenarios requiring frequent adjustments to the adapter's position, effectively improving operational convenience and efficiency.
[0021] 4. Simple operation logic, lowering the barrier to entry: This adapter can drive the drive ring to rotate by rotating the socket body, which in turn drives the conductive sheet to rotate around the axis to unfold or store. The whole operation process is smooth and simple, without complicated operation steps. Operators do not need to have professional safety awareness and operation skills to easily complete the adjustment of the adapter position and power switching, further improving the convenience and versatility of the product.
[0022] In addition to the objectives, features, and advantages described above, the present invention has other objectives, features, and advantages. The invention will now be described in further detail with reference to the accompanying drawings. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the conductive sheet of the present invention in its unfolded state.
[0024] Figure 2 This is a schematic diagram of the conductive sheet being stored in the present invention.
[0025] Figure 3 This is an exploded view of the present invention.
[0026] Figure 4 This is a schematic diagram of the internal structure of the present invention.
[0027] Figure 5 This is a schematic diagram of the guide body and pressure plate.
[0028] Figure 6 This is a partial schematic diagram of the button area.
[0029] Figure 7 This is a cross-sectional schematic diagram of the present invention.
[0030] Figure 8 for Figure 7 Enlarged diagram of point A in the middle.
[0031] Figure 9 This is a schematic diagram of the cross-section of the conductive sheet.
[0032] Figure 10 This is a schematic diagram showing the connection between the terminal and the conductive sheet.
[0033] Figure 11 This is a schematic diagram of another connection method between the terminal and the conductive sheet.
[0034] Figure 12 This is a schematic diagram of the reset spring connection.
[0035] Figure 13 This is a schematic diagram of an explosion of a conductive sheet.
[0036] Figure 14 This is a cross-sectional diagram of the button.
[0037] Figure 15 This is a top-down view of the button area.
[0038] Figure 16 This is a schematic diagram of a light guide ring.
[0039] Figure 17 This is a schematic diagram of the light guide ring connection.
[0040] Figure 1-17 In the middle section: 1. Socket body; 2. Guide body; 3. Conductive sheet; 4. Drive ring; 5. Turntable base plate; 6. Connecting protrusion; 7. Power supply part; 8. Rotating shaft; 9. Connecting part; 10. Rotating hole; 11. "U" shaped groove; 12. N pole conductive sheet; 13. L pole conductive sheet; 14. Storage slot; 15. Insulating shell; 16. Pressure plate; 17. Return spring; 18. Bottom shell; 19. Top shell; 20. Top cover; 21. Shaft hole; 22. Circuit board; 23. Lamp bead; 24. Light guide ring; 25. Light transmission gap; 26. Reflective surface; 27. Fixing hole; 28. Fixing 29. Fixed screw hole; 30. Fixed post; 31. Through hole; 32. Hanging plate; 33. Hook; 34. Button; 35. Positioning spring; 36. Spring plate; 37. Spring step; 38. Elastic hook plate; 39. Positioning groove; 40. Guide slope; 41. Guide step; 42. Positioning protrusion; 43. Grounding conductive rod; 44. Conductive spring; 45. Grounding terminal; 46. Elastic clamp; 47. Center hole; 48. Abutting step; 49. Contact spring; 50. Contact protrusion; 51. Spring protrusion; 52. Connecting hole; 53. Limiting part; 54. Conductive sheet. Detailed Implementation
[0041] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0042] It should be noted that if the embodiments of the present invention 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.
[0043] This invention provides an adapter for track sliding without electrical charge.
[0044] In this embodiment, refer to Figure 1-17 The adapter with non-electric sliding track includes a socket body 1, a guide body 2 and a conductive sheet 3, and also includes a drive ring 4 for controlling the expansion and retraction of the conductive sheet 53 relative to the guide body. A turntable base plate 5 is provided on one side of the guide body, and the turntable base plate 5 is rotatably engaged with the socket body. The drive ring is connected to the socket body, and the inner ring of the drive ring is provided with a connecting protrusion 6. The conductive sheet includes a power-taking part 7, a rotating shaft 8, and a docking part 9. The rotating shaft is rotatably connected to a rotating hole 10 on the bottom plate of the turntable near the center, and the docking part is connected to a connecting protrusion.
[0045] In the above technical solution, a control structure for the unfolding / retraction of the conductive sheet is constructed by adding a drive ring, which works in conjunction with the rotational engagement of the turntable base plate and the socket body. The drive ring is connected to the socket body, and its inner connecting protrusion is adapted to the mating part of the conductive sheet. The conductive sheet is rotatably connected to the turntable base plate via a rotating shaft (an eccentrically located rotating hole on one side of the center of the turntable base plate). When the socket body is rotated, the drive ring rotates synchronously. The drive ring pulls the conductive sheet to rotate around the eccentric rotating shaft through the connecting protrusion, thereby realizing the unfolding (power-taking part extends) and retraction (power-taking part retracts) of the conductive sheet relative to the guide body. The rotational engagement of the turntable base plate and the socket body ensures the smoothness of the overall operation.
[0046] This design enables the conductive sheet to be retracted via a drive ring, completely detaching it from the live parts on the track and allowing the adapter to slide without being energized. This eliminates the safety hazard of traditional adapters sliding while still carrying electricity. It eliminates the need for complex gear sets and linkage mechanisms, achieving functionality solely through the cooperation of the drive ring and other components. This reduces the number of parts, lowers processing precision and assembly difficulty, improves product yield, and facilitates mass production. The eccentric design of the conductive sheet's rotating shaft means that when the conductive sheet is unfolded (e.g., rotated 90 degrees), the socket body only needs to rotate 20-80 degrees (adjusted according to the degree of eccentricity), significantly shortening the operating stroke. Operators can quickly complete the unfolding / retraction operations, improving ease of use and efficiency.
[0047] Specifically, the docking part is provided with a "U"-shaped groove 11 that connects with the connecting protrusion.
[0048] In this embodiment, a "U"-shaped groove is provided on the docking part to connect with the connecting protrusion, so that the two can be movably connected. The opening structure of the "U"-shaped groove can limit the docking part, while reserving a certain amount of movement to ensure that when the drive ring rotates, it can stably pull the conductive sheet to rotate around the rotating shaft, and avoid the docking part from separating from or getting stuck with the connecting protrusion.
[0049] Specifically, the conductive sheet includes an N-polar conductive sheet 12 and an L-polar conductive sheet 13; There are two connecting protrusions, which are respectively connected to the N-polar conductive sheet and the L-polar conductive sheet; The guide body is provided with a storage groove 14 for storing conductive sheets, and the rotating hole is located at the end of the storage groove away from the center.
[0050] In this embodiment, the conductive sheet is divided into two groups: N-pole and L-pole. Two connecting protrusions are provided to connect with the docking parts of the two groups of conductive sheets respectively, ensuring that the N-pole and L-pole conductive sheets can be pulled synchronously by the drive ring to achieve synchronous unfolding / retraction. At the same time, a storage groove is provided on the guide body for accommodating the conductive sheet during storage. The rotating hole is located at the end of the storage groove away from the center of the turntable base plate. Therefore, when the N-pole and L-pole conductive sheets are stored in the storage groove, the ends of the N-pole and L-pole conductive sheets will not face the grounding end in the middle, improving safety during use.
[0051] Specifically, the conductive sheet is covered with an insulating shell 15, and the power taking part and the docking part are partially exposed outside the insulating shell.
[0052] In this embodiment, an insulating shell is wrapped around the conductive sheet, exposing only the power-taking part (for contacting the live parts of the track to draw power) and the mating part (for electrical connection with the corresponding terminals (positive and negative terminals). The terminals can be equipped with elastic contact springs 48 that elastically contact and engage with the exposed mating part, such as... Figure 10 As shown, raised contact points 49 can also be provided to achieve electrical connection, such as... Figure 11 As shown in the figure, the insulating properties of the insulating shell are used to isolate the conductive sheet from other metal parts of the adapter, while preventing operators from accidentally touching the live parts of the conductive sheet.
[0053] Specifically, it also includes a pressure plate 16 and a return spring 17. The socket body includes a bottom shell 18, an upper shell 19 connected to the bottom shell, and an upper cover 20 covering the upper shell. The bottom shell is provided with a shaft hole 21 that rotatably engages with the turntable base plate. A circuit board 22 is provided above the pressure plate, and LED beads 23 are provided on the circuit board 22. A light guide ring 24 is also provided above the circuit board, and the upper cover covers the light guide ring 24; A light-transmitting gap 25 is provided between the upper shell and the upper cover, and a reflective surface 26 is provided on the upper shell around the outer ring of the light-transmitting gap 25; The reset spring is disposed between the bottom shell and the top shell.
[0054] In this embodiment, the socket body includes a bottom shell, an upper shell, and a top cover, which are connected in sequence to form a cavity for accommodating accessories. A circuit board is arranged above the pressure plate, and LEDs on the circuit board are used to indicate the adapter's working status (such as power on / off). A light guide ring is arranged above the circuit board, and the top cover covers the light guide ring. A light-transmitting gap is reserved between the upper shell and the top cover. A reflective surface is provided on the outer ring of the upper shell of the light-transmitting gap. After the LEDs emit light, the light is diffused through the light guide ring and then emitted through the light-transmitting gap. The reflective surface can reflect the light into the light-transmitting gap, enhancing the luminous effect. The light-transmitting gap, together with the reflective surface, allows the light from the light guide ring to be emitted evenly, enhancing the brightness and uniformity of the light emission, while also optimizing the adapter's appearance and improving the product's aesthetics and market competitiveness. In addition, a reset spring is arranged between the bottom shell and the upper shell. Utilizing the elastic extension and contraction characteristics of the reset spring, when the upper shell rotates to drive the adapter switch, the reset spring provides a reset force, providing tactile feedback.
[0055] Specifically, the light guide ring is provided with a fixing hole 27, the outer edge of the light guide ring is pressed against the upper shell, the bottom shell is provided with a fixing screw hole 28 corresponding to the fixing hole 27, the pressure plate is provided with a fixing post 29 adapted to the fixing hole, and the fixing post is provided with a through hole 30. A hanging plate 31 is provided on one side of the pressure plate, and a hook 32 is provided on the light guide ring to connect with the hanging plate.
[0056] In this embodiment, a fixing hole is provided on the light guide ring, and a corresponding fixing screw hole is provided on the bottom shell. A fixing post (with a through hole) adapted to the fixing hole is provided on the pressure plate. Fasteners (such as screws) pass through the through hole of the fixing post and the fixing hole of the light guide ring, and are connected to the fixing screw hole of the bottom shell. The outer edge of the light guide ring is pressed against the upper shell, thereby fixing the pressure plate, the light guide ring, and the bottom shell. At the same time, a hanging plate is provided on one side of the pressure plate, and a hook is provided on the light guide ring. The hanging plate and the hook cooperate. This achieves the purpose of not exposing the bolts, optimizes the appearance of the adapter, and improves the product's aesthetics and market competitiveness.
[0057] Specifically, the upper shell and the bottom shell are provided with spring protrusions 50, the spring protrusions 50 are provided with connecting holes 51 that connect to the two ends of the return spring, and the two sides of the hanging plate are provided with limiting parts 52 that are adapted to the spring protrusions on the upper shell.
[0058] In this embodiment, a dedicated spring protrusion is provided, and connecting holes are provided on the spring protrusion to connect with both ends of the return spring, facilitating the assembly and disassembly of the return spring. Additionally, it provides the stroke for rotating the upper shell relative to the bottom shell.
[0059] Specifically, it also includes a positioning mechanism for positioning the conductive sheet in the unfolded state. The positioning mechanism includes a button 33 and a positioning spring 34 for button reset. One end of the positioning spring abuts against the spring plate 35 on the bottom shell, and the other end abuts against the spring step 36 on the button.
[0060] In this embodiment, a positioning mechanism (including a button and a positioning spring) is added. One end of the positioning spring abuts against the spring plate on the bottom shell, and the other end abuts against the spring step on the button. The elastic extension and contraction characteristics of the positioning spring are used to realize the automatic reset of the button. When the conductive sheet is unfolded to the working position, the button is locked into the corresponding positioning structure (positioning groove) under the action of the positioning spring, locking the conductive sheet in the unfolded state. When the button is pressed, the positioning spring is compressed, the button is disengaged from the positioning structure, the lock is released, and the conductive sheet can be retracted with the assistance of the reset spring.
[0061] Specifically, the turntable base plate is provided with elastic hook plates 37 that are connected to the bottom shell at intervals, wherein a positioning groove 38 is formed between two elastic hook plates 37, and a guide slope 39 is provided on one side of the elastic hook plate of the positioning groove 38. The button is provided with a guide step 40 that is adapted to the guide slope and a positioning protrusion 41 on one end of the guide step 40, and the positioning protrusion is adapted to the positioning groove.
[0062] In this embodiment, elastic hook plates (for connection to the bottom shell) are spaced apart on the turntable base plate. A positioning groove is formed between two adjacent elastic hook plates, and a guide slope is provided on one side of the elastic hook plate of the positioning groove. The button is provided with a guide step adapted to the guide slope and a positioning protrusion adapted to the positioning groove. When the conductive sheet is unfolded, the button moves under the action of the positioning spring, and the guide step slides along the guide slope, guiding the positioning protrusion to be embedded in the positioning groove to achieve locking. When the button is pressed, the positioning protrusion disengages from the positioning groove, and the guide step resets along the guide slope. The elastic hook plates not only connect the turntable base plate and the bottom shell, but also form the positioning groove and guide slope, simplifying the structure, reducing the number of parts, lowering costs, and improving structural compactness.
[0063] Specifically, it also includes a grounding conductive rod 43, a conductive spring 43, and a grounding terminal 44. The elastic clamp 45 of the grounding terminal 44 is clamped on the grounding conductive rod. The grounding conductive rod is movably engaged with the center hole 46 of the bottom shell. The conductive spring is fitted on the grounding conductive rod, with one end of the conductive spring abutting against the elastic clamp and the other end abutting against the abutting step 47 of the grounding conductive rod.
[0064] In this embodiment, the elastic clamp of the grounding terminal is held on the grounding conductive rod to achieve a conductive connection between the two; the grounding conductive rod is movably engaged with the center hole of the bottom shell and can move up and down along the center hole; the conductive spring is fitted on the grounding conductive rod, with one end abutting against the elastic clamp and the other end abutting against the abutting step of the grounding conductive rod. Utilizing the elasticity of the conductive spring, the grounding conductive rod always has a downward elastic force, ensuring that the grounding conductive rod can be in close contact with the track grounding end when the adapter is installed.
[0065] Please note to all technical personnel: Although the present invention has been described according to the specific embodiments above, the ideas of the present invention are not limited to this invention. Any modifications that utilize the ideas of the present invention will be included within the scope of protection of this patent.
Claims
1. An adapter with a non-electrically sliding track, comprising a socket body, a guide body, and a conductive sheet, characterized in that: It also includes a drive ring for controlling the unfolding and retraction of the conductive sheet relative to the guide body, and a turntable base plate is provided on one side of the guide body, which is rotatably engaged with the socket body; The drive ring is connected to the socket body, and the inner ring of the drive ring is provided with a connecting protrusion. The conductive sheet includes a power-collecting part, a rotating shaft, and a docking part. The rotating shaft is rotatably connected to a rotating hole on the bottom plate of the turntable near the center, and the docking part is connected to a connecting protrusion.
2. The adapter for non-electrically sliding tracks according to claim 1, characterized in that: The docking part is provided with a "U"-shaped groove that connects with the connecting protrusion.
3. The adapter for non-electrically sliding tracks according to claim 1, characterized in that: The conductive sheet includes an N-polar conductive sheet and an L-polar conductive sheet; There are two connecting protrusions, which are respectively connected to the N-polar conductive sheet and the L-polar conductive sheet; The guide body is provided with a storage groove for storing conductive sheets, and the rotating hole is located at the end of the storage groove away from the center.
4. The adapter for non-electrically sliding tracks according to claim 1, characterized in that: The conductive sheet is covered with an insulating shell, and the power taking part and the docking part are partially exposed outside the insulating shell.
5. The adapter for non-electrically sliding tracks according to claim 1, characterized in that: It also includes a pressure plate and a return spring. The socket body includes a bottom shell, an upper shell connected to the bottom shell, and an upper cover that covers the upper shell. The bottom shell is provided with a shaft hole that rotatably engages with the turntable base plate. A circuit board is provided above the pressure plate, and LED beads are provided on the circuit board. A light guide ring is also provided above the circuit board, and the upper cover covers the light guide ring; A light-transmitting gap is left between the upper shell and the upper cover, and a reflective surface is provided on the upper shell around the outer ring of the light-transmitting gap; The reset spring is disposed between the bottom shell and the top shell.
6. The adapter for non-electrically sliding tracks according to claim 5, characterized in that: The light guide ring is provided with a fixing hole, and the outer edge of the light guide ring is pressed against the upper shell. The bottom shell is provided with a fixing screw hole corresponding to the fixing hole. The pressure plate is provided with a fixing post adapted to the fixing hole, and the fixing post is provided with a through hole. A hanging plate is provided on one side of the pressure plate, and a hook is provided on the light guide ring to connect with the hanging plate.
7. The adapter for non-electrically sliding tracks according to claim 6, characterized in that: The upper and lower shells are provided with spring protrusions, and the spring protrusions are provided with connecting holes for connecting to the end of the return spring. The two sides of the hanging plate are provided with limiting parts that are adapted to the spring protrusions on the upper shell.
8. The adapter for non-electrically sliding tracks according to claim 7, characterized in that: It also includes a positioning mechanism for positioning the conductive sheet in the unfolded state. The positioning mechanism includes a button and a positioning spring for button reset. One end of the positioning spring abuts against a spring plate on the bottom shell, and the other end abuts against a spring step on the button.
9. The adapter for non-electrically sliding tracks according to claim 8, characterized in that: The turntable base plate is provided with elastic hook plates that are connected to the bottom shell at intervals. A positioning groove is formed between two adjacent elastic hook plates. A guide slope is provided on one side of the elastic hook plate of the positioning groove. The button is provided with a guide step that matches the guide slope and a positioning protrusion on one end of the guide step. The positioning protrusion matches the positioning groove.
10. The adapter for non-electrically sliding tracks according to claim 8, characterized in that: It also includes a grounding conductive rod, a conductive spring, and a grounding terminal. The elastic clamp of the grounding terminal is held on the grounding conductive rod. The grounding conductive rod is movably engaged with the center hole of the bottom shell. The conductive spring is fitted on the grounding conductive rod, with one end of the conductive spring abutting against the elastic clamp and the other end abutting against the abutting step of the grounding conductive rod.