Track socket and wainscot system using same
By setting the live conductor copper rod and the neutral conductor copper rod on the top wall of the power track, the ground conductor copper rod on the bottom wall, and a track socket and wall panel system is designed, the problems of large width of the traditional power track, high risk of electric shock and difficulty in matching the wall panel installation are solved, and the width of the power track is shortened and the aesthetics of the space is improved.
Patent Information
- Application Number
- CN202510350569.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-06-20
AI Technical Summary
The overall width of traditional power tracks is large, which leads to a high risk of electric shock in children and is difficult to meet the installation needs of wall panels.
The live conductor copper rod and the neutral conductor copper rod are arranged on the top wall of the power track, and the ground conductor copper rod is arranged on the bottom wall. A track socket and wall panel system are designed to shorten the width of the power track, and the rail socket can be hidden in the wall panel.
It effectively shortens the width of the power track, reduces the risk of electric shock in children, solves the problem that traditional power tracks are difficult to fit wall panel installation, and improves the efficiency and aesthetics of space utilization.
Smart Images

Figure CN120184688A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of track sockets, and in particular to a track socket and a wall panel system using the same. Background Art
[0002] In the current application scenarios of electrical equipment, as a relatively novel power supply device, the track socket has gradually entered people's lives. The basic structure of the traditional track socket includes two core parts: a power track and an adapter. When the adapter is inserted into the power track and the contact point of the adapter abuts against the conductor copper bar of the power track, the circuit can be quickly connected.
[0003] Inside the traditional power track, the live conductor copper bar and the neutral conductor copper bar are respectively arranged on the front and rear sides of the power track, resulting in a relatively large overall width of the power track. Children are likely to put their fingers into the power track, and it is very easy to touch the live wire and the neutral wire simultaneously when moving their fingers back and forth, leading to electric shock accidents.
[0004] In addition, for application scenarios with high requirements for space size and aesthetics such as wall panel installation, the traditional wide power track is difficult to meet the installation requirements of the wall panel. Summary of the Invention
[0005] The purpose of the present invention is to provide a track socket and a wall panel system using the same, in which the live conductor copper bar and the neutral conductor copper bar are arranged on the top wall of the power track, and the ground wire conductor copper bar is arranged on the bottom wall, which can effectively shorten the width of the power track, reduce the space that children's fingers can reach, thereby reducing the risk of children getting an electric shock, and solving the problems of the traditional power track having a relatively large overall width, high electric shock risk, and being difficult to fit the installation of the wall panel.
[0006] The purpose of the present invention is to provide a wall panel system. The wall panel is arranged on the outside of the guiding neck, and the width of the power track is small, so that the track socket of the present solution can be hidden in the wall panel to supply power to devices such as TVs, stereos, and game consoles, avoiding messy wire entanglement, making the space more tidy and orderly, and improving the space utilization efficiency and aesthetics.
[0007] To achieve this purpose, the present invention adopts the following technical solutions:
[0008] A track socket includes an adapter and a power track. The power track is internally provided with a live conductor copper bar, a neutral conductor copper bar, and a ground wire conductor copper bar. The live conductor copper bar and the neutral conductor copper bar are both arranged on the top wall of the inner cavity of the power track, and the ground wire conductor copper bar is arranged on the bottom wall of the power track;
[0009] The adapter includes a socket body and a guiding body. The bottom of the socket body is fixedly connected to the top of the guiding body, and a second rotating cover body is rotatably arranged on the outside of the socket body;
[0010] The guide body is provided with a live wire and a neutral wire power connection module and a ground wire power connection module, the guide body extends into the power track, the ground wire power connection module is in contact with the ground wire conductor copper rod, and the second rotating cover body is connected to the live wire and neutral wire power connection module; when the second rotating cover body is rotated, the live wire and neutral wire power connection modules are in contact with or separated from the live wire conductor copper rod and the neutral wire conductor copper rod respectively.
[0011] Furthermore, a vertical second receiving groove is provided on both sides of the socket body, a power connection groove is provided on both sides of the guide body, the bottom of the second receiving groove is connected to the top of the power connection groove, and the power connection groove runs horizontally through the front and rear sides of the guide body;
[0012] The live and neutral wire power connection module includes a linkage component and a power connection swing arm, the linkage component is rotatably mounted on the second receiving slot, the top of the linkage component passes through the second receiving slot, the second rotating cover body is respectively abutted against the tops of the two linkage components, the bottom of the linkage component is connected to the top of the power connection swing arm, and the power connection swing arm is rotatably mounted on the power connection slot;
[0013] The second rotating cover is rotated, and the linkage assembly drives the bottom of the power connection swing arm to pass through the power connection slot, and the end of the power connection swing arm abuts against the live wire conductor copper rod or the neutral wire conductor copper rod.
[0014] Further, the linkage assembly includes a first power-connecting toggle block, a second power-connecting toggle block and a power-connecting spring; the inner wall of the second rotating cover body is provided with a toggle member, the toggle member is provided with a toggle groove, the toggle groove vertically passes through the top and bottom of the toggle member, and the toggle groove is arranged opposite to the second accommodating groove;
[0015] The center of the first power-on toggle block is rotatably mounted on the side wall of the second accommodating groove, the top of the first power-on toggle block extends into the toggle groove, the center of the second power-on toggle block is rotatably mounted on the side wall of the power-on groove, the top of the power-on spring is sleeved on the bottom of the first power-on toggle block, the bottom of the power-on spring is sleeved on the top of the second power-on toggle block, and the second power-on toggle block is connected to the power-on swing arm.
[0016] Furthermore, the power-connecting swing arm includes a connecting part and a butting part, the top of the connecting part is connected to the bottom of the second power-connecting toggle block, the bottom of the connecting part is horizontally connected to the head end of the butting part, and the end of the butting part is movably butted against the live wire conductor copper rod / neutral wire conductor copper rod respectively.
[0017] Further, a first rotary cover is rotatably arranged on the outer side of the socket body, and the first rotary cover is located below the second rotary cover;
[0018] Locking modules are arranged on the left and right sides of the guiding body. Locking grooves are formed on the left and right sides of the guiding body. The top of the locking groove is communicated with the socket body. The locking groove horizontally penetrates through the front and rear sides of the guiding body. The top of the locking module is arranged on the socket body, and the bottom of the locking module is arranged in the locking groove. The inner wall of the first rotary cover is respectively connected to the tops of the two locking modules;
[0019] When the first rotary cover is released, the first rotary cover is in the initial state, the locking module extends out of the locking groove and abuts against the top wall of the power rail; when the first rotary cover is rotated, the locking module contracts into the locking groove.
[0020] Further, a first receiving groove is formed in the bottom of the socket body. The first receiving groove is communicated with the locking groove. Two connecting pieces are arranged on the inner wall of the first rotary cover. The connecting pieces are slidably connected to the inner wall of the first receiving groove. The locking module includes a locking spring and a locking hook. One end of the locking spring is fixedly connected to the connecting piece, and the other end of the locking spring is fixedly connected to the inner wall of the first receiving groove. The bottom of the connecting piece is fixedly connected to the top of the locking hook. The locking hook movably penetrates out of or into the locking groove;
[0021] In the initial state of the locking spring, the locking hook abuts against the top wall of the power rail.
[0022] Further, the power rail includes a rail housing, an insulating conductor seat and a cover;
[0023] A first opening is formed in the top of the rail housing. The first opening is communicated with the inner cavity of the rail housing. An insulating conductor seat is arranged in the inner cavity of the rail housing. A contact groove is arranged inside the insulating conductor seat. A second opening is formed in the top of the insulating conductor seat. The second opening is communicated with the contact groove. The second opening is oppositely arranged and communicated with the first opening;
[0024] On the top walls on the front and rear sides of the contact groove, a live wire conductor copper bar and a neutral wire conductor copper bar are respectively arranged, and on the bottom of the contact groove, a ground wire conductor copper bar is arranged; on both the left and right ends of the track housing, covers are arranged, the covers are used to seal the ends of the track housing, and on the bottom wall of the cover, a live wire terminal, a ground wire terminal and a neutral wire terminal are arranged; both the left and right ends of the live wire conductor copper bar are connected to the live wire terminal, both the left and right ends of the ground wire conductor copper bar are connected to the ground wire terminal, and both the left and right ends of the neutral wire conductor copper bar are connected to the neutral wire terminal.
[0025] Further, two limiting members are arranged on the top of the track housing, and the limiting members are located between the first opening and the second opening; the two limiting members are arranged oppositely to form an insertion slot, the length direction of the insertion slot is the left-right direction, and the insertion slot is respectively communicated with the first opening and the second opening;
[0026] The limiting member includes a mounting portion and a bending portion, the mounting portion and the bending portion are of an integrally formed structure, and the limiting member is made of rubber material;
[0027] A limiting groove is arranged between the first opening and the insulating conductor seat of the track housing, the mounting portion is arranged in the limiting groove, and the bending portion passes through the limiting groove and is located below the first opening.
[0028] Further, two guiding necks are arranged on the top of the track housing, and the two guiding necks are arranged oppositely to form the first opening.
[0029] A wall panel system, characterized in that it includes a plurality of wall panels and a track socket, the plurality of wall panels are spliced and connected, and the track socket is arranged between two of the wall panels.
[0030] Compared with the prior art, the technical solution proposed by the present invention can have the following beneficial effects:
[0031] 1. By arranging the live wire conductor copper bar and the neutral wire conductor copper bar on the top wall of the power track and the ground wire conductor copper bar on the bottom wall, the width of the power track can be effectively shortened, the space that a child's finger can reach is reduced, thereby reducing the risk of electric shock to children, and solving the problems of the large overall width of the traditional power track, high electric shock risk and difficulty in fitting the installation of the wall panel.
[0032] 2. When the guide body extends into the power rail, the ground wire connection module is always in contact with the ground wire conductor copper rod to ensure grounding safety. Then, the user only needs to turn the second rotating cover to easily control the live wire and neutral wire connection module to contact or separate with the live wire conductor copper rod and neutral wire conductor copper rod on the top of the power rail, respectively, to realize the power-on and power-off operation of the electrical appliance, without repeatedly plugging and unplugging the plug, which is easy to operate and reduces plug wear. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 is a schematic diagram of a track socket according to one embodiment of the present invention;
[0034] Figure 2 is an exploded view of an adapter according to one embodiment of the present invention;
[0035] Figure 3 is a cross-sectional view of an adapter according to one embodiment of the present invention;
[0036] Figure 4 yes Figure 2 The enlarged view of point A in the middle;
[0037] Figure 5 is a cross-sectional view of a track socket according to one embodiment of the present invention;
[0038] Figure 6 is an exploded view of a track socket according to one embodiment of the present invention;
[0039] Among them, 1, adapter; 11, socket body; 111, second receiving slot; 112, first receiving slot; 12, guide body; 121, power connection slot; 122, locking slot; 13, first rotating cover body; 131, connecting piece; 14, second rotating cover body; 141, toggle piece; 15, live wire and neutral wire power connection module; 151, linkage assembly; 152, power connection swing arm; 153, first power connection toggle block; 154, second power connection toggle block; 155, power connection spring; 156, connection 1. abutment portion; 157; 161; locking spring; 162; locking hook; 2; power rail; 201; live conductor copper rod; 202; neutral conductor copper rod; 203; ground conductor copper rod; 21; rail housing; 211; first opening; 212; limiting groove; 213; guide neck; 22; insulating conductor seat; 221; contact groove; 222; second opening; 23; cover; 24; limiting piece; 240; insertion slot; 241; mounting portion; 242; bending portion. DETAILED DESCRIPTION
[0040] The technical solution of the present invention is further explained below in conjunction with specific implementation methods.
[0041] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by terms such as "length", "middle", "upper", "lower", "left", "right", "top", "bottom", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0042] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise stated, the meaning of "a plurality" is two or more.
[0043] In the description of the present invention, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "splicing", "connection" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0044] The following combines Figures 1 to 6 , and describes a cooling and conveying device for a high-temperature material according to an embodiment of the present invention.
[0045] An orbital socket includes an adapter 1 and a power rail 2. The power rail 2 is internally provided with a live conductor copper bar 201, a neutral conductor copper bar 202, and a ground conductor copper bar 203. Both the live conductor copper bar 201 and the neutral conductor copper bar 202 are arranged on the top wall of the inner cavity of the power rail 2, and the ground conductor copper bar 203 is arranged on the bottom wall of the power rail 2;
[0046] The adapter 1 includes a socket body 11 and a guide body 12. The bottom of the socket body 11 is fixedly connected to the top of the guide body 12, and a second rotating cover 14 is rotatably arranged on the outside of the socket body 11;
[0047] The guide body 12 is provided with a live-neutral power connection module 15 and a ground power connection module. The guide body 12 extends into the power rail 2. The ground power connection module is in contact with the ground conductor copper bar 203, and the second rotating cover 14 is connected to the live-neutral power connection module 15; by rotating the second rotating cover 14, the live-neutral power connection module 15 is respectively in contact with or separated from the live conductor copper bar 201 and the neutral conductor copper bar 202.
[0048] The live wire conductor copper bar 201 and the neutral wire conductor copper bar 202 are arranged on the top wall of the power track 2, and the ground wire conductor copper bar 203 is arranged on the bottom wall, which can effectively shorten the width of the power track 2, reduce the space that children's fingers can reach, thereby reducing the risk of children getting an electric shock, and solving the problems of the large overall width of the traditional power track, high electric shock risk and difficulty in fitting the installation of the wall panel.
[0049] At the same time, the ground wire conductor copper bar 203 is separately arranged on the bottom wall. When an electrical appliance leaks electricity, it can quickly conduct the current into the ground, forming a perfect grounding protection, avoiding electric shock casualties of the human body, and effectively improving the electrical safety.
[0050] When the guiding body 12 extends into the power track 2, the ground wire power connection module is always in contact with the ground wire conductor copper bar 203 to ensure grounding safety. Then, the user only needs to rotate the second rotary cover body 14 to easily control the live wire and neutral wire power connection modules 15 to be in contact with or separated from the live wire conductor copper bar 201 and the neutral wire conductor copper bar 202 at the top of the power track 2 respectively, realizing the power-on and power-off operations of the electrical appliance, without repeatedly plugging and unplugging the plug, the operation is simple, and the wear of the plug is reduced.
[0051] Vertical second accommodation grooves 111 are formed on both the left and right sides of the socket body 11. Power connection grooves 121 are formed on both sides of the guiding body 12. The bottom of the second accommodation groove 111 communicates with the top of the power connection groove 121, and the power connection groove 121 horizontally penetrates through the front and rear sides of the guiding body 12;
[0052] The live wire and neutral wire power connection module 15 includes a linkage assembly 151 and a power connection swing arm 152. The linkage assembly 151 is rotatably installed in the second accommodation groove 111. The top of the linkage assembly 151 penetrates out of the second accommodation groove 111. The second rotary cover body 14 abuts against the tops of the two linkage assemblies 151 respectively. The bottom of the linkage assembly 151 is connected to the top of the power connection swing arm 152. The power connection swing arm 152 is rotatably installed in the power connection groove 121;
[0053] When the second rotary cover body 14 is rotated, the linkage assembly 151 drives the bottom of the power connection swing arm 152 to penetrate out of the power connection groove 121, and the end of the power connection swing arm 152 abuts against the live wire conductor copper bar 201 or the neutral wire conducting copper bar 202.
[0054] In the initial state, the power-connecting swing arm 152 is stored in the power-connecting slot 121. At this time, the power-connecting swing arm 152 is separated from the live conductor copper rod 201 / neutral conductor copper rod, effectively avoiding accidental contact. When the user rotates the second rotating cover 14, the second rotating cover 14 abuts against the top of the linkage assembly 151, so that the second rotating cover 14 drives the linkage assembly 151 to operate, and the linkage assembly 151 drives the power-connecting swing arm 152 to swing, so that the power-connecting swing arm 152 passes through the power-connecting slot 121 and contacts the live conductor copper rod 201 / neutral conductor copper rod 202.
[0055] Among them, the second rotating cover body 14 is respectively abutted against the top of the two linkage components 151, so rotating the second rotating cover body 14 can synchronously drive the two live and neutral wire power connection modules 15 of the socket body 11 to move, so that the left and right power connection swing arms 152 are respectively in contact with the live wire conductor copper rod 201 and the neutral wire conductor copper rod 202, thereby quickly connecting the circuit and improving the user experience.
[0056] The linkage assembly 151 includes a first power-connecting toggle block 153, a second power-connecting toggle block 154 and a power-connecting spring 155; a toggle member 141 is disposed on the inner wall of the second rotating cover 14, and the toggle member 141 is provided with a toggle groove, which vertically passes through the top and bottom of the toggle member 141, and the toggle groove is disposed opposite to the second receiving groove 111;
[0057] The center of the first power-on toggle block 153 is rotatably mounted on the side wall of the second accommodating groove 111, the top of the first power-on toggle block 153 extends into the toggle groove, the center of the second power-on toggle block 154 is rotatably mounted on the side wall of the power-on groove 121, the top of the power-on spring 155 is sleeved on the bottom of the first power-on toggle block 153, the bottom of the power-on spring 155 is sleeved on the top of the second power-on toggle block 154, and the second power-on toggle block 154 is connected to the power-on swing arm 152.
[0058] The combination of the first power-connecting toggle block 153, the second power-connecting toggle block 154 and the power-connecting spring 155 in the linkage assembly 151, together with the toggle member 141 and the toggle groove design on the inner wall of the second rotating cover body 14, provides the user with accurate operation feedback. When the user rotates the second rotating cover body 14, the toggle member 141 drives the top of the first power-connecting toggle block 153 to rotate, and the user can clearly feel the damping during the rotation process, so that the user can clearly perceive the operation progress. The elastic effect of the power-connecting spring 155 makes the operation feel comfortable, neither too loose nor difficult to rotate due to excessive resistance, which greatly improves the accuracy and comfort of the user's operation and further optimizes the operation experience.
[0059] Since the top of the first power - connection toggle block 153 moves within the toggle slot, the toggle slot restricts the movement range of the first power - connection toggle block 153, preventing the abnormal extension or retraction of the power - connection swing arm 152 caused by excessive rotation of the first power - connection toggle block 153 and reducing the risk of accidental power - on or power - off.
[0060] Next, when the first power - connection toggle block 153 rotates, it can drive the power - connection spring 155 to move, and the power - connection spring 155 can drive the second power - connection toggle block 154 to rotate, so that the end of the power - connection swing arm 152 moves out of the power - connection slot 121 to contact the live - wire conductor copper bar 201 / neutral - wire conductor copper bar 202.
[0061] Among them, the power - connection spring 155 has good elastic deformation. During frequent operations, it can effectively buffer the impact force and reduce the fatigue damage of each component caused by repeated stress. Moreover, when the socket body 11 is vibrated or slightly displaced during daily use, the power - connection spring 155 can also adjust through its own elasticity to maintain good contact between the power - connection swing arm 152 and the live - wire conductor copper bar 201 / neutral - wire conductor copper bar 202, effectively reducing the phenomenon of poor contact, ensuring the stability of power transmission, and extending the service life of the socket and electrical equipment.
[0062] The power - connection swing arm 152 includes a connecting portion 156 and an abutting portion 157. The top of the connecting portion 156 is connected to the bottom of the second power - connection toggle block 154, the bottom of the connecting portion 156 is horizontally connected to the head end of the abutting portion 157, and the end of the abutting portion 157 is movably abutted against the live - wire conductor copper bar 201 / neutral - wire conductor copper bar 202 respectively.
[0063] When the second power - connection toggle block 154 rotates, the connecting portion 156 stably transmits the action of the second power - connection toggle block 154 to the abutting portion 157. The end of the abutting portion 157 is movably abutted against the live - wire conductor copper bar 201 / neutral - wire conductor copper bar 202, ensuring that current can be continuously and stably transmitted from the live - wire conductor copper bar 201 / neutral - wire conductor copper bar 202 to the power - connection swing arm 152, and then providing stable power supply for various electrical equipment connected to the track socket.
[0064] A first rotary cover 13 is rotatably arranged on the outer side of the socket body 11, and the first rotary cover 13 is located below the second rotary cover 14;
[0065] Locking modules are provided on the left and right sides of the guiding body 12. Locking grooves 122 are formed on the left and right sides of the guiding body 12. The top of the locking groove 122 communicates with the socket body 11. The locking groove 122 horizontally penetrates the front and rear sides of the guiding body 12. The top of the locking module is arranged on the socket body 11, and the bottom of the locking module is arranged in the locking groove 122. The inner walls of the first rotating cover body 13 are respectively connected to the tops of the two locking modules;
[0066] Release the first rotating cover body 13. The first rotating cover body 13 is in the initial state. The locking module extends out of the locking groove 122 and abuts against the top wall of the power rail 2. Rotate the first rotating cover body 13, and the locking module contracts into the locking groove 122.
[0067] When the first rotating cover body 13 is in the initial state, the locking module extends out of the locking groove 122 and tightly abuts against the top of the power rail 2, firmly fixing the adapter 1 in a specific position and providing a reliable guarantee for the normal operation of electrical equipment.
[0068] The user only needs to gently rotate the first rotating cover body 13. The first rotating cover body 13 drives the two locking modules to quickly contract into the corresponding locking grooves 122. At this time, the adapter 1 can be easily slid on the power rail 2 to an ideal position. Then release the first rotating cover body 13, and the first rotating cover body 13 returns to the initial state, and the locking module automatically extends out to complete the fixation, greatly improving the convenience for the user to adjust the position of the socket.
[0069] A first receiving groove 112 is formed at the bottom of the socket body 11. The first receiving groove 112 communicates with the locking groove 122. Two connecting members 131 are arranged on the inner wall of the first rotating cover body 13. The connecting members 131 are slidably connected to the inner wall of the first receiving groove 112. The locking module includes a locking spring 161 and a locking hook 162. One end of the locking spring 161 is fixedly connected to the connecting member 131, and the other end of the locking spring 161 is fixedly connected to the inner wall of the first receiving groove 112. The bottom of the connecting member 131 is fixedly connected to the top of the locking hook 162. The locking hook 162 movably penetrates or extends into the locking groove 122;
[0070] In the initial state of the locking spring 161, the locking hook 162 abuts against the top wall of the power rail 2.
[0071] One end of the locking spring 161 is fixed to the connecting member 131, and the other end is fixed to the inner wall of the first receiving groove 112. When the first rotating cover 13 rotates, the connecting member 131 slides in the first receiving groove 112, compresses the locking spring 161 and drives the locking hook 162 to extend into the locking groove 122, so that the locking hook 162 is separated from the power rail 2. At this time, the adapter 1 can slide freely in the power rail 2 to an ideal position.
[0072] Release the first rotating cover 13, the locking spring 161 resumes deformation, drives the connecting member 131 to move, so that the connecting member 131 and the locking hook 162 can pass through the locking groove 122 and tightly abut against the top of the power rail 2, thereby locking the adapter 1 at a specific position on the power rail 2.
[0073] It should be noted that under the action of the locking spring 161, the locking hook 162 always abuts against the top of the power rail 2. Even if the first rotating cover 13 is impacted by an external force, the locking spring 161 can buffer the impact force, prevent the locking hook 162 from accidentally retracting, effectively avoid the adapter 1 from falling off the power rail 2, and reduce the occurrence probability of serious safety accidents such as electric shock and short circuit caused by the socket falling.
[0074] The power rail 2 includes a rail housing 21, an insulating conductor seat 22 and a cover 23;
[0075] The top of the rail housing 21 is provided with a first opening 211, the first opening 211 is communicated with the inner cavity of the rail housing 21, the inner cavity of the rail housing 21 is provided with an insulating conductor seat 22, the inside of the insulating conductor seat 22 is provided with a contact groove 221, the top of the insulating conductor seat 22 is provided with a second opening 222, the second opening 222 is communicated with the contact groove 221, and the second opening 222 is arranged opposite to and communicated with the first opening 211;
[0076] The top walls on the front and rear sides of the contact groove 221 are respectively provided with the live conductor copper bar 201 and the neutral conductor copper bar 202, and the bottom of the contact groove 221 is provided with the ground wire conductor copper bar 203; Sealing covers 23 are arranged at both the left and right ends of the rail housing 21, the sealing covers 23 are used to seal the ends of the rail housing 21, and the bottom walls of the sealing covers 23 are provided with a live wire terminal, a ground wire terminal and a neutral wire terminal; The left and right ends of the live conductor copper bar 201 are respectively connected to the live wire terminal, the left and right ends of the ground wire conductor copper bar 203 are respectively connected to the ground wire terminal, and the left and right ends of the neutral conductor copper bar 202 are respectively connected to the neutral wire terminal.
[0077] The track housing 21 wraps components such as the internal conductor copper bar, effectively preventing foreign objects from directly contacting the live parts and reducing the risk of electric shock. The live conductor copper bar 201 and the neutral conductor copper bar 202 are arranged on the top wall of the contact groove 221, and the ground wire conductor copper bar 203 is arranged on the bottom wall of the contact groove 221, which can effectively shorten the width of the power track 2, reduce the space that a child's finger can reach, and further reduce the risk of electric shock to children.
[0078] The cover 23 seals the end of the track housing 21, not only preventing impurities such as dust and water vapor from entering, but also avoiding the safety hazards caused by the exposure of the end of the conductor copper bar, and comprehensively ensuring the electrical safety of users in various environments.
[0079] The live conductor copper bar 201, the neutral conductor copper bar 202 and the ground wire conductor copper bar 203 are respectively connected to the corresponding terminal blocks, ensuring the stability of the line connection and the stability of current transmission. Even under long-term use or certain vibrations, the connection between the conductor copper bar and the terminal block is still reliable, providing a solid power foundation for the stable operation of electrical equipment and extending the service life of the power track 2 and the electrical equipment connected thereto.
[0080] Two limit members 24 are provided at the top of the track housing 21, and the limit members 24 are located between the first opening 211 and the second opening 222; the two limit members 24 are arranged oppositely to form an insertion slot 240, the length direction of the insertion slot 240 is the left-right direction, and the insertion slot 240 is respectively communicated with the first opening 211 and the second opening 222;
[0081] The limit member 24 includes a mounting portion 241 and a bending portion 242, the mounting portion 241 and the bending portion 242 are integrally formed structures, and the limit member 24 is made of rubber material;
[0082] A limit groove 212 is provided between the first opening 211 and the insulating conductor seat 22 of the track housing 21, the mounting portion 241 is arranged in the limit groove 212, and the bending portion 242 passes through the limit groove 212 and is located below the first opening 211.
[0083] When a foreign object accidentally approaches the area between the first opening 211 and the second opening 222, the insertion slot 240 plays a blocking role. Since the bending portion 242 of the limit member 24 is located below the first opening 211, it can effectively prevent foreign objects from directly falling into the area where the conductor copper bar is located, further reducing the risk of electric shock caused by foreign objects contacting the live parts, comprehensively ensuring the electrical safety of users, and is especially suitable for family environments with children or pets.
[0084] When the adapter 1 is inserted into the power rail 2, the limiting member 24 made of rubber has a certain buffering and fixing effect on the adapter 1, reducing the possibility of damage to the adapter 1 or the power rail 2 caused by improper plugging and unplugging, and extending the service life of both. At the same time, during daily use, the impact force generated by the plugging and unplugging of the adapter 1 and the acting force brought by external factors such as vibration are absorbed by the limiting member 24 made of rubber, reducing the damage to the connecting part 156 of the rail housing 21 and the insulating conductor seat 22, and reducing the occurrence probability of problems such as loosening and wear caused by long-term stress, thereby extending the service life of the entire power rail 2 and reducing the maintenance cost.
[0085] Two guiding necks 213 are provided at the top of the rail housing 21, and the two guiding necks 213 are oppositely arranged to form the first opening 211.
[0086] When the user inserts the adapter 1 into the power rail 2, the shape and position of the guiding neck 213 can effectively guide the guiding body 12 of the adapter 1 to accurately align with the first opening 211, and then smoothly connect with the internal conductor copper bar. Compared with the track socket without a guiding structure, this design greatly improves the success rate of the adapter 1 access, reduces the problems of docking failure or poor contact caused by the deviation of the insertion angle, ensures the rapid and stable establishment of power transmission, and improves the user experience.
[0087] The guiding neck 213 forms a protective barrier at the first opening 211, reducing the possibility of foreign objects entering the interior of the power rail 2 from the side and contacting the conductor copper bar. The guiding neck 213 and other safety structures such as the limiting member 24 work together to further reduce the electric shock risk and provide a safer and more reliable power usage environment for users.
[0088] A wall panel system, characterized in that it includes a plurality of wall panels and a track socket, and the plurality of wall panels are spliced and connected, and the track socket is arranged between the two wall panels.
[0089] The track socket can be flexibly installed along the wall panel without the need to additionally drill multiple socket holes on the wall, saving wall space. Among them, the wall panel is arranged outside the guiding neck 213, and the width of the power rail 2 is small, so that the track socket of this solution can be hidden in the wall panel to supply power to devices such as televisions, stereos, and game consoles, avoiding messy wire entanglement, making the space more tidy and orderly, and improving the space utilization efficiency and aesthetics.
[0090] The technical principle of the present invention is described above in conjunction with specific embodiments. These descriptions are only for explaining the principle of the present invention and cannot be interpreted as limiting the scope of protection of the present invention in any way. Based on the explanations herein, those skilled in the art can associate other specific implementations of the present invention without paying creative labor, and these methods will fall within the scope of protection of the present invention.
Claims
1. A track socket, characterized in that: It comprises an adapter and a power track, wherein a live conductor copper rod, a neutral conductor copper rod and a ground conductor copper rod are arranged in the power track, the live conductor copper rod and the neutral conductor copper rod are both arranged on the top wall of the inner cavity of the power track, and the ground conductor copper rod is arranged on the bottom wall of the power track; The adapter comprises a socket body and a guide body, the bottom of the socket body is fixedly connected to the top of the guide body, and a second rotating cover body is rotatably arranged on the outer side of the socket body; The guide body is provided with a live wire and a neutral wire power connection module and a ground wire power connection module, the guide body extends into the power track, the ground wire power connection module is in contact with the ground wire conductor copper rod, and the second rotating cover body is connected to the live wire and neutral wire power connection module; when the second rotating cover body is rotated, the live wire and neutral wire power connection modules are in contact with or separated from the live wire conductor copper rod and the neutral wire conductor copper rod respectively.
2. A rail socket according to claim 1, characterized in that: The left and right sides of the socket body are provided with vertical second receiving grooves, the two sides of the guide body are provided with power connection grooves, the bottom of the second receiving groove is connected to the top of the power connection groove, and the power connection groove runs horizontally through the front and rear sides of the guide body; The live and neutral wire power connection module includes a linkage component and a power connection swing arm, the linkage component is rotatably mounted on the second receiving slot, the top of the linkage component passes through the second receiving slot, the second rotating cover body is respectively abutted against the tops of the two linkage components, the bottom of the linkage component is connected to the top of the power connection swing arm, and the power connection swing arm is rotatably mounted on the power connection slot; The second rotating cover is rotated, and the linkage assembly drives the bottom of the power connection swing arm to pass through the power connection slot, and the end of the power connection swing arm abuts against the live wire conductor copper rod or the neutral wire conductor copper rod.
3. A rail socket according to claim 2, characterized in that: The linkage assembly includes a first power-connecting toggle block, a second power-connecting toggle block and a power-connecting spring; the inner wall of the second rotating cover is provided with a toggle member, the toggle member is provided with a toggle groove, the toggle groove vertically passes through the top and bottom of the toggle member, and the toggle groove is arranged opposite to the second accommodating groove; The center of the first power-on toggle block is rotatably mounted on the side wall of the second accommodating groove, the top of the first power-on toggle block extends into the toggle groove, the center of the second power-on toggle block is rotatably mounted on the side wall of the power-on groove, the top of the power-on spring is sleeved on the bottom of the first power-on toggle block, the bottom of the power-on spring is sleeved on the top of the second power-on toggle block, and the second power-on toggle block is connected to the power-on swing arm.
4. A rail socket according to claim 3, characterized in that: The power-connecting swing arm includes a connecting portion and a butting portion, the top of the connecting portion is connected to the bottom of the second power-connecting toggle block, the bottom of the connecting portion is horizontally connected to the head end of the butting portion, and the end of the butting portion is movably butted against the live wire conductor copper rod / neutral wire conductor copper rod respectively.
5. The rail socket according to claim 1, characterized in that: A first rotating cover body is rotatably disposed on the outer side of the socket body, and the first rotating cover body is located below the second rotating cover body; The left and right sides of the guide body are provided with locking modules, the left and right sides of the guide body are provided with locking grooves, the top of the locking grooves are connected with the socket body, the locking grooves horizontally penetrate the front and rear sides of the guide body, the top of the locking module is arranged on the socket body, the bottom of the locking module is arranged on the locking grooves, and the inner wall of the first rotating cover body is respectively connected with the tops of the two locking modules; The first rotating cover is released, the first rotating cover is in an initial state, the locking module extends out of the locking slot and abuts against the top wall of the power rail; the first rotating cover is rotated, and the locking module is retracted to the locking slot.
6. A rail socket according to claim 5, characterized in that: A first receiving groove is provided at the bottom of the socket body, the first receiving groove is communicated with the locking groove, two connecting pieces are provided on the inner wall of the first rotating cover body, the connecting pieces are slidably connected with the inner wall of the first receiving groove, the locking module comprises a locking spring and a locking hook, one end of the locking spring is fixedly connected with the connecting piece, the other end of the locking spring is fixedly connected with the inner wall of the first receiving groove, the bottom of the connecting piece is fixedly connected with the top of the locking hook, and the locking hook movably passes through or extends into the locking groove; When the locking spring is in an initial state, the locking hook abuts against the top wall of the power rail.
7. The rail socket according to claim 1, characterized in that: The electric track comprises a track housing, an insulating conductor seat and a cover; The top of the track housing is provided with a first opening, the first opening is communicated with the inner cavity of the track housing, the inner cavity of the track housing is provided with an insulating conductor seat, the interior of the insulating conductor seat is provided with a contact groove, the top of the insulating conductor seat is provided with a second opening, the second opening is communicated with the contact groove, and the second opening is arranged opposite to the first opening and communicated with each other; The top walls on the front and rear sides of the contact groove are respectively provided with the live wire conductor copper rod and the neutral wire conductor copper rod, and the bottom of the contact groove is provided with the ground wire conductor copper rod; the left and right ends of the track shell are provided with covers, and the covers are used to seal the ends of the track shell, and the bottom wall of the covers is provided with live wire terminals, ground wire terminals and neutral wire terminals; the left and right ends of the live wire conductor copper rod are connected to the live wire terminals, the left and right ends of the ground wire conductor copper rod are connected to the ground wire terminals, and the left and right ends of the neutral wire conductor copper rod are connected to the neutral wire terminals.
8. The rail socket according to claim 7, characterized in that: Two limiting members are arranged on the top of the track housing, and the limiting members are located between the first opening and the second opening; the two limiting members are arranged opposite to each other to form an insertion slot, and the length direction of the insertion slot is the left-right direction, and the insertion slot is respectively connected to the first opening and the second opening; The limiting member comprises a mounting portion and a bending portion, the mounting portion and the bending portion are an integrally formed structure, and the limiting member is made of rubber material; The rail housing is provided with a limiting groove between the first opening and the insulating conductor seat, the mounting portion is provided in the limiting groove, and the bent portion passes through the limiting groove and is located below the first opening.
9. The rail socket according to claim 7, characterized in that: Two guide necks are arranged on the top of the track housing, and the two guide necks are arranged opposite to each other to form the first opening.
10. A wall panel system, characterized in that: It comprises a plurality of wall panels and a track socket as described in any one of claims 1 to 9, wherein the plurality of wall panels are spliced and connected, and the track socket is arranged between two of the wall panels.