Adapter of track socket
The track socket adapter simplifies operations by using a control mechanism for circular motion to connect and disconnect with track contacts, reducing parts and space while ensuring stable electrical connections and safety.
Patent Information
- Application Number
- CN202420567638.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-22
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-03-22
AI Technical Summary
The adapter structure of existing track sockets is complex, the movement process of internal parts is complicated, the space is occupied, and the connection process is inconvenient.
The conductive components are adopted, including a fixed sleeve and a rotating contact, which drives the rotating contacts to rotate circumferentially, simplify the movement process, reduce part movement, and use shrapnel to provide contact pressure, and combine with the locking assembly to ensure stable connection.
A simple movement process is realized, reducing space occupation, ensuring connection stability and safety, and improving operational convenience.
Smart Images

Figure CN223109420U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electrical equipment, and particularly relates to an adapter for a track socket. Background Art
[0002] A track socket is a socket that can be arbitrarily added, reduced, moved, and repositioned within the range of a track, which solves the drawback that a traditional power socket cannot be moved in its installation position.
[0003] Existing track sockets generally include an adapter and a bar-shaped track. The track is installed on a wall, and the adapter is plugged into a track slot of the track to connect with the conductive sheet of the track. An electrical appliance can be connected to the power supply by being plugged into a jack of the adapter. However, the structure of existing adapters is usually relatively complex, with many parts that need to move inside. During the process of connecting or disconnecting the electrical connection between the adapter and the track, the movement process of the parts is complex and occupies a relatively large space. Summary of the Invention
[0004] The purpose of the utility model is to overcome at least one defect of the prior art and provide an adapter for a track socket.
[0005] To achieve the above purpose, the utility model adopts the following technical solutions:
[0006] The utility model provides an adapter for a track socket, which includes a socket body. One end of the socket body is provided with a jack, and the other end is provided with a connection part for cooperating with the track. A control part and a conductive component are arranged between the jack and the connection part. The conductive component includes a fixed socket and a rotating contact part that are electrically connected to each other. The rotating contact part is arranged inside the socket body and is connected to the control part. The control part is operated to rotate circumferentially around the central axis of the socket body to drive the rotating contact part to rotate circumferentially, so that the contact part of the rotating contact part extends out from the connection part for cooperation to connect with the conductive sheet of the track.
[0007] Further, the contact part rotates between a first position and a second position along with the rotating contact part. A receiving groove is formed in the connection part. In the first position, the contact part is separated from the receiving groove for contacting the conductive sheet inside the track. In the second position, the contact part is separated from the conductive sheet inside the track and is received into the receiving groove.
[0008] Further, a spring piece is assembled and limited inside the socket body. When the contact part rotates to the first position, the spring piece elastically abuts against the rotating contact part to provide a contact pressure for the rotating contact part and the conductive sheet of the track.
[0009] Further, the elastic force provided by the spring piece for the rotating contact part is perpendicular to the central axis of the socket body.
[0010] Furthermore, the conductive component further includes a fixing plate. The fixed socket is limitedly arranged between the fixing plate and the control member. The rotating contact member is arranged on one side of the fixing plate facing away from the control member. The fixing plate is provided with a track groove, and a driving structure arranged between the control member and the rotating contact member passes through the track groove and moves within the track groove.
[0011] Furthermore, the fixing plate is provided with a first wire passing hole and a second wire passing hole. The first wire passing hole is located at the center of the fixing plate, and the second wire passing hole is located on one side of the first wire passing hole. A partial area of the rotating contact member passes through the second wire passing hole and is electrically connected to the fixed socket.
[0012] Furthermore, the rotating contact member includes two connecting bodies. The two connecting bodies form a rotationally symmetric structure with respect to the central axis of the socket body. The two connecting bodies are separately arranged and are respectively connected to the control member. Each connecting body includes a conductive shaft and a rotating member. One end of the conductive shaft is provided with a contact portion, and the contact portion is arranged along a direction perpendicular to the central axis of the conductive shaft. The other end of the conductive shaft is electrically connected to the fixed socket. The rotating member is provided with a mating rod, and the mating rod is inserted and matched with a driving groove opened on the control member to form a driving structure. The rotating member is arranged on the conductive shaft to drive the connecting body to rotate circumferentially around the conductive shaft.
[0013] Furthermore, the conductive shafts are arranged along a direction parallel to the central axis of the socket body, and the two conductive shafts are symmetrically arranged with respect to the central axis of the socket body. The contact portions have the same rotation stroke as the control member, and the rotation angle of the contact portions is greater than the rotation angle of the control member.
[0014] Furthermore, two elastic pieces are arranged between the two connecting bodies. The middle part of each elastic piece protrudes towards the adjacent connecting body and elastically abuts against the connecting body. The contact portion rotates between a first position and a second position along with the rotating contact member. In the first position, the contact portion is used to contact a conductive sheet in the track, and the elastic piece provides a contact pressure for the contact portion of the rotating contact member and the conductive sheet in the track. In the second position, the contact portion is separated from the conductive sheet in the track.
[0015] Furthermore, the rotating member includes a body, and at least an abutting portion protruding outward from one side wall of the body. The abutting portion abuts against the elastic piece. A fitting rod is provided on one side surface of the body, and a limiting portion is provided on the other side surface of the body. The fitting rod and the limiting portion are not collinear. The abutting portion and the fitting rod are respectively located on both sides of the limiting portion. The inside of the limiting portion is a hollow cavity. One end of the conductive shaft facing away from the fixed socket is arranged in the limiting portion, and the contact portion extends from one side of the limiting portion to outside the limiting portion. When the contact portion rotates to the first position, the abutting portion presses the middle of the elastic piece to cause elastic deformation, driving the middle portions of the two elastic pieces to move towards each other. When the contact portion rotates to the second position, the middle of the elastic piece returns to its original state as the abutting portion moves, causing the middle portions of the two elastic pieces to move away from each other.
[0016] Furthermore, the conductive assembly further includes a grounding shaft. One end of the grounding shaft is connected to the fixed socket, and the other end of the grounding shaft extends from the through hole formed in the connecting portion to the outside of the socket body.
[0017] Furthermore, the socket body includes a locking assembly for locking the socket body to the track. The locking assembly includes a mounting groove, a locking member, and a card slot. The mounting groove is formed in the socket body. The locking member is slidably arranged inside the socket body. One end of the locking member serves as an operating end and extends from the mounting groove to the outside of the socket body. A locking portion is provided in the middle of the locking member. Pressing the operating end drives the locking member to move radially along the socket body, causing the locking portion to extend out of the connecting portion from the card slot formed in the connecting portion.
[0018] Furthermore, the locking member includes an operating member, a sliding member, and a reset member. The operating member is slidably arranged in the mounting groove. One end of the operating member is the operating end, and the other end is drivingly connected to the sliding member. An avoidance hole and a locking portion are provided in the middle of the sliding member. The locking portion extends along a direction parallel to the central axis of the socket body, and a hook extending from the card slot is provided at the end of the locking portion. The reset member is connected to the sliding member.
[0019] Furthermore, the conductive assembly further includes a limiting member. The connecting portion is provided with a receiving groove. The contact portion and the limiting member are jointly assembled in the receiving groove, and the gap between the receiving groove and the contact portion is filled by the limiting member.
[0020] Further, the socket body includes a cover plate and a base that are spaced apart and fixedly connected to each other. A jack is provided in the middle of the cover plate, and a connecting portion is provided in the middle of the base opposite to the cover plate. A receiving groove and a card slot are provided in the connecting portion. The receiving groove cooperates with the contact portion. The conductive assembly is disposed between the cover plate and the base. The control member is disposed around the outside of the conductive assembly and cooperates with the cover plate and the base to form a hollow and closed outer shell. The two ends of the control member are slidably engaged with the cover plate and the base respectively, so that the control member can rotate around the central axis of the socket body. A spring piece is limited and assembled in the base, and the spring piece is elastically abutted against the rotating contact member.
[0021] Further, the socket body further includes a protection door assembly, and the protection door assembly is disposed inside the socket body between the jack and the fixed socket.
[0022] During the use of the adapter of the track socket of the present invention, only circumferential rotation is performed between the control member and the rotating contact member. The rotating contact member is directly driven by the control member and does not generate axial displacement. There are fewer parts to be moved, the movement process is simple, and the occupied space is less.
[0023] In addition, the fixed disk can separate the fixed socket and the rotating contact member, and the fixed disk can provide an assembly position for the fixed socket to avoid mutual interference between the fixed socket and the rotating contact member.
[0024] In addition, the rotating contact member and the fixed socket are electrically connected through a conductive shaft, which has the advantages of stable connection and small occupied space.
[0025] In addition, a spring piece is disposed inside the socket body, and the cooperation between the spring piece and the rotating contact member can ensure the rotation of the control member and the contact pressure between the rotating contact member and the conductive sheet in the track.
[0026] In addition, the contact portion and the control member have the same rotation stroke, and the rotation angle of the contact portion is greater than the rotation angle of the control member, so that the control member rotates a small angle to drive the contact portion to rotate a large angle, which has the advantage of convenient operation.
[0027] In addition, the locking assembly can lock the adapter on the track, ensuring the use safety.
[0028] In addition, the rotating contact member and the limiting member are jointly assembled in the receiving groove, which is beneficial to ensuring the cooperation stability between the rotating contact member and the receiving groove and the use safety of the adapter. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 is a schematic structural diagram of the track socket in the present invention when it is connected;
[0030] Figure 2 is a schematic structural diagram of the track socket in the present invention when it is disconnected;
[0031] Figure 3 It is a schematic structural diagram of the adapter of the track socket in the present utility model when in the first position;
[0032] Figure 4 It is a schematic structural diagram of the adapter of the track socket in the present utility model when in the second position;
[0033] Figure 5 It is an exploded schematic diagram of the adapter of the track socket in the present utility model;
[0034] Figure 6 It is a cross-sectional view of the adapter of the track socket in the present utility model;
[0035] Figure 7 It is a schematic internal structural diagram of the adapter of the track socket in the present utility model after removing the cover plate and the protection door assembly;
[0036] Figure 8 It is a schematic structural diagram of the control member in the adapter of the track socket in the present utility model;
[0037] Figure 9 It is a schematic diagram of the cooperation of the base, the rotating contact member and the locking assembly of the adapter of the track socket in the present utility model;
[0038] Figure 10 It is a schematic structural diagram of the conductive component of the adapter of the track socket in the present utility model Figure 1 ;
[0039] Figure 11 It is a schematic structural diagram of the conductive component of the adapter of the track socket in the present utility model Figure 2 ;
[0040] Figure 12 It is a schematic structural diagram of the rotating contact member and the locking assembly of the adapter of the track socket in the present utility model;
[0041] Figure 13 It is a schematic structural diagram of the connecting body of the adapter of the track socket in the present utility model;
[0042] Figure 14 It is a schematic structural diagram of the rotating member of the adapter of the track socket in the present utility model;
[0043] Figure 15 It is a schematic structural diagram of the fixed disk of the adapter of the track socket in the present utility model Figure 1 ;
[0044] Figure 16 It is a schematic structural diagram of the fixed disk of the adapter of the track socket in the present utility model Figure 2 ;
[0045] Figure 17 It is a schematic structural view of the sliding member of the adapter of the track socket in the present utility model;
[0046] Figure 18 It is a schematic structural view of the limiting member of the adapter of the track socket in the present utility model;
[0047] Reference numerals:
[0048] a - Central axis of the socket body, 1 - Outer shell, 11 - Cover plate, 111 - Jack, 12 - Base, 120 - Connecting part, 121 - Receiving groove, 123 - Card slot, 124 - Perforation, 13 - Control member, 131 - Driving groove, 2 - Protection door assembly, 3 - Conductive assembly, 31 - Fixed socket, 32 - Rotating contact member, 32a - Connecting body, 320 - Contact part, 321 - Conductive shaft, 322 - Rotating member, 3221 - Matching rod, 3222 - Abutting part, 3223 - Limiting part, 33 - Grounding shaft, 34 - Fixed disk, 341 - First wire passing hole, 342 - Second wire passing hole, 343 - Trajectory groove, 344 - Socket slot, 345 - Installation groove, 35 - Limiting member, 4 - Locking assembly, 41 - Operating member, 42 - Sliding member, 421 - Avoidance hole, 422 - Locking part, 43 - Reset member, 5 - Elastic piece, 6 - Track, 61 - Conductive sheet. Detailed implementation manners
[0049] The following embodiments given in conjunction with the drawings further illustrate the detailed implementation manners of the adapter of the track socket of the present utility model. The adapter of the track socket of the present utility model is not limited to the description of the following embodiments.
[0050] As Figure 1 、 2 shown, the track socket includes a track 6 and at least one adapter. Each adapter includes a socket body. One end of the socket body is provided with a jack 111, and the other end is provided with a connecting part 120. The adapter is slidably inserted into the track 6 through the connecting part 120; a control member 13 and a conductive assembly 3 are arranged between the jack 111 and the connecting part 120. Both ends of the conductive assembly 3 are respectively matched with the jack and the connecting part 120. By rotating the control member 13, one end of the conductive assembly 3 is made to extend out from the connecting part 120 to be connected with the conductive sheet 61 in the track 6, or one end of the conductive assembly 3 is separated from the conductive sheet 61 in the track 6.
[0051] The improvement of this application lies in that the conductive component 3 includes a fixed socket 31 and a rotating contact 32 which are electrically connected to each other. The rotating contact 32 is arranged inside the socket body and connected to the control member 13. The control member 13 is operated to rotate circumferentially around the central axis a of the socket body to drive the rotating contact 32 to rotate circumferentially, so that the contact portion 320 of the rotating contact 32 extends out from the connection portion 120 in a matching manner for connection with the conductive sheet 61 of the track 6. In this way, during use, only circumferential rotation is performed between the control member 13 and the rotating contact 32. The rotating contact 32 is directly driven by the control member 13 and no axial displacement will occur. There are fewer parts to be moved, the movement process is simple, and the occupied space is less.
[0052] Specifically, the contact portion 320 rotates between the first position and the second position along with the rotating contact 32. As Figure 1 、 3 shown, when the contact portion 320 rotates to the first position, the contact portion 320 extends out from the connection portion 120 for connection with the conductive sheet 61 inside the track 6. Preferably, the conductive sheet 61 and the contact portion 320 are in contact connection. As Figure 2 、 4 shown, when the contact portion 320 rotates to the second position, the contact portion 320 is separated from the conductive sheet 61 inside the track 6, and the contact portion 320 is retracted into the receiving groove 121 of the connection portion 120. At this time, the adapter can be inserted into or pulled out from the track 6.
[0053] Preferably, as Figure 5 、 8 and 11 shown, a spring piece 5 is further arranged inside the socket body. The spring piece 5 is assembled inside in a limiting manner. The spring piece 5 can be elastically abutted against the rotating contact 32. The elastic force provided by the spring piece 5 for the rotating contact 32 is perpendicular to the central axis of the socket body, thereby ensuring the rotation of the rotating control member 13 and the contact pressure between the rotating contact 32 and the conductive sheet 61 in the track 6.
[0054] Preferably, as Figure 5 、 6 、10、11、15 and 16 shown, the conductive component 3 further includes a fixed disk 34. The fixed disk 34 is fixedly arranged inside the socket body for separating the fixed socket 31 from the rotating contact 32. Among them, the fixed socket 31 is fixedly arranged on the fixed disk 34. By separating the fixed socket 31 from the rotating contact 32 through the fixed disk 34, the rotating contact 32 is prevented from interfering with the fixed socket 31 during rotation.
[0055] Preferably, the rotation stroke of the contact portion 320 is the same as that of the control member 13, and the rotation angle of the contact portion 320 is greater than that of the control member 13, so that the control member 13 rotates a small angle to drive the contact portion 320 to rotate a large angle, which has the advantage of convenient operation.
[0056] Furthermore, the socket body is further provided with a locking component 4, and the locking component 4 is used to lock the socket body on the track 6, which is convenient for ensuring the connection stability and use safety between the adapter and the track 6.
[0057] Combined with Figure 3 - 18 Provide a specific embodiment of an adapter for a track socket.
[0058] As Figure 3 - 6 shown, the adapter of the track socket includes a socket body. The socket body has an approximately cylindrical structure. One end of the socket body is provided with a jack 111, and the jack 111 is a two-phase and / or three-phase jack. The other end of the socket body is provided with a protruding connection portion 120. The connection portion 120 is a convex platform in the shape of an approximate rectangle. The connection portion 120 is communicated with the inside of the socket body. The connection portion 120 can be slidably inserted into the track 6. A receiving groove 121 is opened on the connection portion 120, and the opening of the receiving groove 121 faces the conductive sheet 61 in the track 6.
[0059] In this embodiment, the socket body includes a cover plate 11 and a base 12 that are spaced apart and fixed to each other. Taking the central connection line direction of the cover plate 11 and the base 12 as the central axis direction of the socket body, the jack 111 is opened at the central position of the cover plate 12. The connection portion 120 protrudes along the direction away from the cover plate 11 on the side of the base 12 facing away from the cover plate 11. A control member 13 is rotatably provided between the cover plate 11 and the base 12. The control member 13 has an annular structure. The control member 13 closes the gap between the cover plate 11 and the base 12 to form a closed outer shell 1. The control member 13 can be slidably matched with the cover plate 11 and the base 12 respectively. It can also be understood that the control member 13 is disposed around the outside of the conductive component 3 and cooperates with the cover plate 11 and the base 12 to form a hollow and closed outer shell 1, so that the control member 13 can rotate around the central axis of the socket body relative to the cover plate 11 and the base 12.
[0060] Combined with Figure 3 - 69 provides a base 12 applicable to this embodiment. The base 12 includes a circular groove and a connecting portion 120. An operation hole 122 is formed on the circular side wall of the circular groove. The connecting portion 120 is a rectangular boss. A through hole 124 communicating with the inside of the circular groove is formed in the middle of the connecting portion 120, and the through hole 124 is collinear with the central axis of the socket body. Two storage grooves 121 are formed on the surface of the connecting portion 120. Each storage groove 121 is located on one side surface of the connecting portion 120 and closer to the end position of the connecting portion 120. The two storage grooves 121 form a rotationally symmetric structure with respect to the through hole 124. A clamping groove 123 is formed at the junction of the connecting portion 120 and the bottom of the circular groove. In the figure, two side-by-side clamping grooves 123 are formed in the connecting portion 120, and each clamping groove 123 is located on both sides of the through hole 124 respectively. The clamping groove 123 and the storage groove 121 are both communicated with the inside of the circular groove. The cover plate 11 cooperating with the base 12 can adopt the prior art.
[0061] Combined with Figure 9 9 provides a control member 13 applicable to this embodiment. The control member 13 is an overall annular structure. The inner diameter edge at one end of the control member 13 extends axially to form an annular convex edge. The annular convex edge is used for slidingly fitting with the circumferential inner side wall of the base 12, so that the control member 13 rotates relative to the base 12. The cover plate 11 is located at the end of the control member 13 away from the annular convex edge, and the other end edge of the control member 13 is rotationally fitted with the cover plate 11. A fixing structure is provided between the cover plate 11 and the base 12, and the outer diameter of the figure formed by surrounding the fixing structure is smaller than the inner diameter of the annular convex edge; two trapezoidal bosses protruding radially are provided on the inner surface of the annular convex edge. A driving groove 131 is formed on each trapezoidal boss. The two driving grooves 131 form a rotationally symmetric structure. The driving groove 131 is used to drive the rotating contact member 32.
[0062] As Figure 3 - 7 shown in FIGS. 9-14, the conductive assembly 3 is disposed in the housing 1. The conductive assembly 3 includes a fixed socket 31 and a rotating contact member 32 that are electrically connected to each other. The fixed socket 31 corresponds to the jack 111 and is used for plugging in the plug of an external electrical appliance. The rotating contact member 32 is drivingly connected to the control member 13. A driving structure that cooperates with each other is provided between the control member 13 and the rotating contact member 32. The driving structure is preferably a driving groove 131 and a mating rod 3221 that are in plug-in fit. In this embodiment, the driving groove 131 is formed on the control member 13, and the mating rod 3221 is disposed on the rotating contact member 32. The control member 13 is operated to rotate, so as to drive the contact portion 320 of the rotating contact member 32 to rotate between the first position and the second position. Figure 1 , 3 In FIGS. 9-14, when the contact portion 320 rotates to the first position and separates from the storage groove 121, it can be understood that the rotating contact member 32 is unfolded, and the rotating contact member 32 extends out of the connecting portion 120 for contacting the conductive sheet 61 of the track 6, and the adapter is powered on.Figure 2 , 4 When the contact portion 320 rotates to the second position, the contact portion 320 is received in the receiving groove 121 of the connecting portion 120. At this time, it can be considered that the rotating contact 32 is retracted, and the contact portion 320 is separated from the conductive sheet 61 in the track 6.
[0063] In this embodiment, the fixed socket 31 adopts the prior art. The fixed socket 31 includes a pair of first sockets arranged at intervals. Slots are respectively provided at both ends of the first socket, and the two slots at the same end of the pair of first sockets are spaced opposite to each other. A second socket is arranged between the pair of first sockets. At least one end of the second socket is provided with a slot. The second socket is used for grounding. Figure 6 , 7 As shown in FIGS. 8 and 9, a grounding shaft 33 is connected to the second socket. The other end of the grounding shaft 33 extends from the through hole 124 of the connecting portion 120 to the outside of the socket body for grounding. In this embodiment, the central axis of the grounding shaft 33 is collinear with the central axis a of the socket body.
[0064] As Figure 5 , 6 As shown in FIGS. 8, 9, 10, and 12-14, the rotating contact 32 includes two connecting bodies 32a. The two connecting bodies 32a form a rotationally symmetric structure with respect to the central axis of the socket body. The two connecting bodies 32a are separately arranged and are respectively connected to the control member 13. Each connecting body 32a includes a conductive shaft 321 and a rotating member 322. One end of the conductive shaft 321 is provided with a contact portion 320. Figure 10 , 13The middle contact portion 320 is a rod-shaped conductor, and the contact portion 320 is arranged along the central axis direction perpendicular to the conductive axis 321. A contact point for cooperating with the conductive sheet 61 is provided at the end of the conductor. The other end of the conductive axis 321 is rotatably connected to the fixed socket 31 and also realizes electrical connection. The rotating member 322 is provided with a cooperating rod 3221. The cooperating rod 3221 is inserted and cooperated with the driving groove 131 of the control member 13, thereby forming a driving structure. The rotating member 322 is arranged on the conductive axis 321, thereby driving the connecting body 32a to rotate circumferentially around the conductive axis 321. In this embodiment, the conductive axes 321 of the two connecting bodies 32a form a rotationally symmetric structure with respect to the central axis a of the socket body. Each conductive axis 321 is arranged along the direction parallel to the central axis a of the socket body and deviates from the central axis a of the socket body. Each connecting body 32a is driven to rotate around its respective conductive axis 321. During the rotation process, each contact portion 320 keeps consistent with the rotation stroke of the control member 13, and the two contact portions 320 always form a rotationally symmetric structure with respect to the central axis a of the socket body. However, the rotation radius of the contact portion 320 is smaller than the rotation radius of the control member 13, so that the rotation angle of each contact portion 320 is larger than the rotation angle of the control member 13. Thus, operating the control member 13 to rotate a small angle can drive the contact portion 320 to rotate a large angle, which has the advantage of convenient operation. Preferably, the rotating member 322 is sleeved on the conductive axis 321, which can not only save internal space but also enhance the connection stability with the conductive axis 321.
[0065] Combined Figure 13 、 14 A rotating member 322 applied to the rotating contact member 32 in this embodiment is provided. The rotating member 322 includes a body. The body is a sheet-like structure with a certain thickness. At least an abutting portion 3222 protrudes outward from one side wall of the body. A cooperating rod 3221 is provided on one surface of the body, and a limiting portion 3223 is provided on the other surface of the body. The cooperating rod 3221 and the limiting portion 3223 are not collinear. The abutting portion 3222 and the cooperating rod 3221 are respectively on both sides of the limiting portion 3223. Figure 14 In it, the inside of the limiting portion 3223 is a hollow cavity. One end of the conductive axis 321 facing away from the fixed socket 31 is arranged in the limiting portion 3223. The contact portion 320 can extend from one side of the limiting portion 3223 to outside the limiting portion 3223. The limiting portion 3223 can extend a certain distance along the outer surface of the contact portion 320. It can also be understood that the limiting portion 3223 is sleeved on the outside of the conductive axis 321 and the contact portion 320.
[0066] Such as Figure 10 、 15As shown in FIGS. 15 and 16, the conductive assembly 3 further includes a fixing disk 34 which is disposed separately between the fixed socket 31 and the rotating contact member 32, and the rotating contact member 32 is disposed between the base and the fixing disk 34. A conductive hole for electrically connecting the fixed socket 31 and the rotating contact member 32 is provided on the fixing disk 34. The outer diameter of the fixing disk 34 can be set according to actual needs. The outer diameter of the fixing disk 34 can be smaller than the moving track of the driving structure. That is, the driving structure rotates around the outside of the fixing disk 34. In this embodiment, the outer diameter of the fixing disk 34 is larger than the moving track of the driving structure. A track groove 343 for the driving structure to pass through is provided on the fixing disk 34, and the driving structure can rotate along the track groove 343; in this embodiment, the fixing disk 34 is provided with a first wire passing hole 341 and a second wire passing hole 342, wherein the first wire passing hole 341 is located at the center of the fixing disk 34, and the second wire passing hole 342 is located on one side of the second wire passing hole 342. Figure 15 In this case, second wire passing holes 342 are provided on both sides of the first wire passing hole 341, and the two second wire passing holes 342 form a rotationally symmetric structure. A partial area of the rotating contact member 32 passes through the second wire passing hole 342 to be electrically connected to the fixed socket 31. That is, the conductive shaft 321 in the rotating contact member 32 correspondingly passes through the second wire passing hole 342 to be electrically connected to the fixed socket 31.
[0067] Combined Figure 15 with 16 A fixing disk 34 applied to this embodiment is provided. The fixing disk 34 is a disk structure with a circumferential side wall, and its outer diameter is less than or equal to the inner diameter of the control member 13. A first wire passing hole 341 is provided at the center position of the disk surface of the fixing disk 34. Two track grooves 343 are provided at the disk surface position surrounding the first wire passing hole 341. The two track grooves 343 form a rotationally symmetric structure with respect to the first wire passing hole 341. In this embodiment, the track groove 343 is an arc-shaped groove penetrating the disk surface; two second wire passing holes 342 are provided on the fixing disk 34. Figure 15 In this case, the second wire passing holes 342 are symmetrically disposed on both sides of the first wire passing hole 341, and each second wire passing hole 342 penetrates the fixing disk 34, and the central connection lines of the track groove 343, the first wire passing hole 341, and the second wire passing hole 342 are a diameter of the fixing disk 34; as Figure 16 shown in FIG. 13, an insertion socket groove 344 is provided on one disk surface of the fixing disk 34. The insertion socket groove 344 is located at the central position of the disk surface. The fixed socket 31 is correspondingly assembled in the insertion socket groove 344. In this embodiment, the parts of the first wire passing hole 341 and the second wire passing hole 342 passing through the bottom of the insertion socket groove 344 enable the conductive shaft 321 and the grounding shaft 33 of the rotating contact member 32 to be respectively connected to the fixed socket 31 disposed in the insertion socket groove 344. Specifically, one end of each conductive shaft 321 is connected to a first insertion socket, and one end of the grounding shaft 33 is connected to a second insertion socket.
[0068] Preferably, as Figure 15 shown, an installation groove 345 is further provided at one side edge position of the fixed disk 34, and the installation groove 345 and the socket sleeve groove 344 are respectively located on both sides of the fixed disk 34. The installation groove 345 is used to provide a moving space for the locking component 4 arranged on the socket body. The installation groove 345 corresponds to the operation hole 122 opened on the housing 1, that is, corresponds to the operation hole 122 on the base 12, so as to prevent the locking component 4 from interfering with the rotating contact member 32 during the movement process.
[0069] In this embodiment, the conductive component 3 further includes a limiting member 35. The limiting member 35 and the contact portion 320 are jointly assembled in the receiving groove 121. The limiting member 35 can fill the gap between the receiving groove 121 and the contact portion 320. Preferably, the edge of the limiting groove is slidably inserted into the inner side wall of the receiving groove 121 for convenient disassembly and assembly. The limiting member 35 is preferably Figure 5 、 6 、10 and 18 in the block structure. A protruding sliding portion is provided at one side edge of the limiting groove, and a sliding groove for mating with the sliding portion is opened on the side wall of the receiving groove 121. The sliding direction of the sliding portion and the sliding groove is parallel to the central axis of the socket body.
[0070] A spring piece 5 is arranged inside the socket body. The spring piece 5 is elastically abutted against the rotating contact member 32, as Figure 5 、 9As shown in FIGS. 11 and 12, two elastic pieces 5 are arranged inside the socket body, and the two elastic pieces 5 form a rotationally symmetric structure about the central axis of the socket body. Preferably, the two elastic pieces 5 are arranged between two connecting bodies 32a, and each elastic piece 5 is limited and assembled between the fixed disk 34 and the base 12. In this embodiment, a limiting groove is provided on one side of the base 12 facing the fixed disk 34. Two ends of each elastic piece 5 are respectively clamped in the limiting groove, so that the middle part of the elastic piece 5 bulges towards the direction close to the rotating contact member 32 to form an arc structure. The middle part protruding outwards from the elastic piece 5 elastically abuts against the rotating contact member 32, so as to provide an elastic force for the rotating contact member 32. The direction of this elastic force is perpendicular to the central axis of the socket body. In this embodiment, the middle part of each elastic piece 5 bulges towards the direction close to the adjacent connecting body 32a and elastically abuts against this connecting body 32a. During the rotation of the rotating contact member 32, the elastic piece 5 provides an elastic force perpendicular to the central axis a of the socket body for the rotating contact member 5. When the contact part 320 rotates to the first position, the abutting part 3222 presses the middle part of the elastic piece 5 to generate elastic deformation, driving the middle parts of the two elastic pieces 5 to move towards each other, so that the distance between the middle parts of the two elastic pieces 5 is reduced. Preferably, the distance between the middle parts of the two elastic pieces 5 is the smallest at this time, so as to ensure the contact pressure between the contact part 320 and the conductive sheet 61. When the contact part 320 rotates to the second position, the middle part of the elastic piece 5 returns to its original state as the abutting part 3222 moves, and the middle parts of the two elastic pieces 5 move away from each other, so that the distance between the middle parts of the two elastic pieces 5 is increased. Preferably, the interval between the middle parts of the two elastic pieces 5 is the largest at this time.
[0071] As Figure 5 , 9 , 12 and 17, the socket body is further configured with a locking component 4, and the socket body is locked on the track 6 by the locking component 4. The locking component 4 includes an installation groove 345, a locking member and a card slot 123. The installation groove 345 is opened on the socket body. The locking member is slidably arranged inside the socket body. One end of the locking member serves as an operation end and extends out of the socket body from the installation groove 345. A locking part 422 is provided in the middle of the locking member. The locking part 422 has a certain height in the direction parallel to the central axis of the socket body. Pressing the operation end drives the locking member to move radially along the socket body, so that the locking part 422 extends out of the connecting part 120 from the card slot 123 opened on the connecting part 120.
[0072] In this embodiment, the locking member includes an operating member 41, a sliding member 42, and a reset member 43. The operating member 41 is slidably disposed in the installation groove 345. One end of the operating member 41 serves as an operating end, and the operating end extends from the operating hole 122 formed in the housing 1 to the outside of the socket body. The other end of the operating member 41 is drivingly connected to the sliding member 42. The operating member 41 can slide in the installation groove 345. The sliding member 42 is slidably disposed in the socket body along a direction perpendicular to the central axis of the socket body, that is, the sliding member 42 is disposed radially along the fixed disk 34 between the fixed disk 34 and the base 12. The middle part of the sliding member 42 corresponds to between the two elastic pieces 5. The middle part of the sliding member 42 is provided with an avoidance hole 421 and a locking portion 422. The inner diameter of the avoidance hole 421 is larger than the outer diameter of the grounding shaft 33, and a certain space is reserved for the inner diameter of the avoidance hole 421 to prevent the sliding member 42 from contacting the grounding shaft 33 during movement. The locking portion 422 extends along a direction parallel to the central axis of the socket body, and a hook extending from the card slot 123 is provided at the end of the locking portion 422. Figure 17 In, two locking portions 422 are provided in the middle part of the sliding member 42. The two locking portions 422 are respectively disposed on both sides of the avoidance hole 421, and each locking portion 422 correspondingly connects to one card slot 123 on the connecting portion 120; the reset member 43 is connected to the sliding member 42 to provide a reset force. In this embodiment, the reset member 43 is a section of spring. One end of the reset member 43 is connected to one end of the sliding member 42 away from the operating member 41, and the other end of the reset member 43 abuts against the fixed disk 34. Press the operating member 41 to move the sliding member 42 and the reset member 43 radially along the fixed disk 34, and the hook extending out of the card slot 123 can cooperate with the track 6, so as to fix the adapter on the track 6.
[0073] As Figure 6 shown, in this embodiment, a protection door assembly 2 is further provided inside the socket body. The protection door assembly 2 is correspondingly disposed between the fixed socket 31 and the jack 111 of the cover plate. The protection door assembly 2 correspondingly shields the slot in the fixed socket 31. When the plug of an external electrical appliance is inserted, it can push the protection door assembly 2 to move and not shield the slot on the fixed socket 31, so that the plug can be inserted into the slot in the fixed socket 31. The protection door assembly 2 can adopt the prior art.
[0074] It should be noted that in the description of the present invention, the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which it is habitually placed during use. It is only for the convenience of description and does not indicate that the indicated device or element must have a specific orientation. Therefore, it should not be construed as a limitation to the present invention. In addition, the terms "first", "second", "third", etc. are only used for distinguishing descriptions and cannot be construed as indicating relative importance.
[0075] The above content is a further detailed description of the present utility model in combination with specific preferred embodiments. It cannot be determined that the specific implementation of the present utility model is only limited to these descriptions. For those of ordinary skill in the technical field to which the present utility model belongs, without departing from the concept of the present utility model, several simple deductions or substitutions can be made, and all should be regarded as belonging to the protection scope of the present utility model.
Claims
1. Adapter for an orbital socket, comprising a socket body, one end of the socket body is provided with a jack (111), the other end is provided with a connecting part (120) for cooperating with an orbit (6), and a control member (13) and a conductive assembly (3) are arranged between the jack (111) and the connecting part (120), characterized in that: The conductive component (3) includes a fixed socket (31) and a rotating contact (32) that are electrically connected to each other. The rotating contact (32) is disposed inside the socket body and connected to the control member (13). The control member (13) is operated to rotate circumferentially around the central axis (a) of the socket body to drive the rotating contact (32) to rotate circumferentially, so that the contact portion (320) of the rotating contact (32) extends out from the mating connection portion (120) for connection with the conductive sheet (61) of the track (6). The conductive component (3) further includes a fixed disk (34). The fixed socket (31) is limitedly disposed between the fixed disk (34) and the control member (13). The rotating contact (32) is disposed on one side of the fixed disk (34) facing away from the control member (13). The fixed disk (34) is provided with a track groove (343). A driving structure disposed between the control member (13) and the rotating contact (32) passes through the track groove (343) and moves within the track groove (343).
2. The adapter of the track socket according to claim 1, characterized in that: The contact portion (320) rotates between a first position and a second position along with the rotating contact (32). The connection portion (120) is provided with a receiving groove (121). In the first position, the contact portion (320) is separated from the receiving groove (121) for contact with the conductive sheet (61) within the track (6). In the second position, the contact portion (320) is separated from the conductive sheet (61) within the track (6) and received into the receiving groove (121).
3. The adapter of the track socket according to claim 2, characterized in that: A spring piece (5) is limitedly assembled inside the socket body. When the contact portion (320) rotates to the first position, the spring piece (5) elastically abuts against the rotating contact (32) to provide a contact pressure for the rotating contact (32) and the conductive sheet (61) of the track (6).
4. The adapter of the track socket according to claim 3, wherein: The elastic force provided by the spring piece (5) for the rotating contact (32) is perpendicular to the central axis of the socket body.
5. The adapter of the track socket according to claim 1, characterized in that: The fixed disk (34) is provided with a first wire passing hole (341) and a second wire passing hole (342). The first wire passing hole (341) is located at the central position of the fixed disk (34). The second wire passing hole (342) is located on one side of the first wire passing hole (341). A partial area of the rotating contact (32) passes through the second wire passing hole (342) and is electrically connected to the fixed socket (31).
6. The adapter of the track socket according to claim 1, wherein: The rotating contact member (32) includes two connecting bodies (32a). The two connecting bodies (32a) form a rotationally symmetric structure about the central axis (a) of the socket body. The two connecting bodies (32a) are separately arranged and are respectively connected to the control member (13). Each connecting body (32a) includes a conductive shaft (321) and a rotating member (322). One end of the conductive shaft (321) is provided with a contact portion (320). The contact portion (320) is arranged along the direction perpendicular to the central axis of the conductive shaft (321). The other end of the conductive shaft (321) is electrically connected to the fixed socket (31). The rotating member (322) is provided with a mating rod (3221). The mating rod (3221) is inserted into and cooperates with a driving groove (131) formed in the control member (13) to form a driving structure. The rotating member (322) is arranged on the conductive shaft (321) to drive the connecting body (32a) to rotate circumferentially around the conductive shaft (321).
7. The adapter of the track socket according to claim 6, characterized in that: The conductive shaft (321) is arranged along the direction parallel to the central axis (a) of the socket body, and the two conductive shafts (321) are symmetrically arranged about the central axis (a) of the socket body. The contact portion (320) has the same rotation stroke as the control member (13), and the rotation angle of the contact portion (320) is greater than the rotation angle of the control member (13).
8. The adapter of the track socket according to claim 7, characterized in that: Two elastic pieces (5) are arranged between the two connecting bodies (32a). The middle part of each elastic piece (5) protrudes towards the adjacent connecting body (32a) and elastically abuts against the connecting body (32a). The contact portion (320) rotates with the rotating contact member (32) between a first position and a second position. In the first position, the contact portion (320) is used to contact the conductive sheet (61) in the track (6). The elastic piece (5) provides contact pressure for the contact portion (320) of the rotating contact member (32) and the conductive sheet (61) in the track (6). In the second position, the contact portion (320) is separated from the conductive sheet (61) in the track (6).
9. The adapter of the track socket according to claim 8, characterized in that: The rotating member (322) includes a body. At least an abutting portion (3222) protrudes outward from one side wall of the body. The abutting portion (3222) abuts against the elastic piece (5). A mating rod (3221) is provided on one side surface of the body. A limiting portion (3223) is provided on the other side surface of the body. The mating rod (3221) and the limiting portion (3223) are not collinear. The abutting portion (3222) and the mating rod (3221) are respectively located on both sides of the limiting portion (3223). The inside of the limiting portion (3223) is a hollow cavity. One end of the conductive shaft (321) facing away from the fixed socket (31) is arranged in the limiting portion (3223). The contact portion (320) extends from one side of the limiting portion (3223) to outside the limiting portion (3223). When the contact part (320) rotates to the first position, the abutting part (3222) presses the middle part of the elastic sheet (5) to cause elastic deformation, driving the middle parts of the two elastic sheets (5) to move towards each other. When the contact part (320) rotates to the second position, the middle part of the elastic sheet (5) returns to its original state following the movement of the abutting part (3222), causing the middle parts of the two elastic sheets (5) to move away from each other.
10. The adapter of the track socket according to claim 1, characterized in that: The conductive component (3) further includes a grounding shaft (33). One end of the grounding shaft (33) is connected to the fixed socket (31), and the other end of the grounding shaft (33) extends from the through hole (124) formed in the connecting part (120) to the outside of the socket body.
11. The adapter of the track socket according to claim 1, characterized in that: The socket body includes a locking component (4). The locking component (4) is used to lock the socket body on the track (6). The locking component (4) includes an installation groove (345), a locking member, and a card slot (123). The installation groove (345) is formed in the socket body. The locking member is slidably disposed inside the socket body. One end of the locking member serves as an operation end and extends from the installation groove (345) to the outside of the socket body. A locking portion (422) is provided in the middle of the locking member. Pressing the operation end drives the locking member to move radially along the socket body, so that the locking portion (422) extends out of the connecting part (120) from the card slot (123) formed in the connecting part (120).
12. The adapter of the track socket according to claim 11, characterized in that: The locking member includes an operating member (41), a sliding member (42), and a reset member (43). The operating member (41) is slidably disposed in the installation groove (345). One end of the operating member (41) is the operation end, and the other end is drivingly connected to the sliding member (42). An avoidance hole (421) and a locking portion (422) are provided in the middle of the sliding member (42). The locking portion (422) extends along a direction parallel to the central axis (a) of the socket body, and a hook extending from the card slot (123) is provided at the end of the locking portion (422). The reset member (43) is connected to the sliding member (42).
13. The adapter of the track socket according to claim 1, characterized in that: The conductive component (3) further includes a limiting member (35). The connecting part (120) is provided with a receiving groove (121). The contact part (320) and the limiting member (35) are jointly assembled in the receiving groove (121), and the gap between the receiving groove (121) and the contact part (320) is filled by the limiting member (35).
14. The adapter of the track socket according to claim 1, characterized in that: The socket body includes a cover plate (11) and a base (12) that are spaced apart and fixed to each other. A jack (111) is provided in the middle of the cover plate (11). A connecting portion (120) is provided in the middle of the base (12) opposite to the cover plate (11). The connecting portion (120) is provided with a receiving groove (121) and a card slot (123). The receiving groove (121) cooperates with the contact portion (320). The conductive component (3) is disposed between the cover plate (11) and the base (12). The control member (13) is disposed around the outside of the conductive component (3) and cooperates with the cover plate (11) and the base (12) to form a hollow and closed outer shell (1). The two ends of the control member (13) are slidably engaged with the cover plate (11) and the base (12) respectively, so that the control member (13) can rotate around the central axis (a) of the socket body. A spring piece (5) is limited and assembled in the base (12), and the spring piece (5) is elastically abutted against the rotating contact member (32).
15. The adapter of the track socket according to claim 1, characterized in that: The socket body further includes a protection door assembly (2), and the protection door assembly (2) is disposed inside the socket body between the jack (111) and the fixed socket (31).