CN223771518U - Ultrathin track socket - Google Patents

Ultrathin track socket

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Publication number
CN223771518U
CN223771518U CN202520250220.3U CN202520250220U CN223771518U CN 223771518 U CN223771518 U CN 223771518U CN 202520250220 U CN202520250220 U CN 202520250220U CN 223771518 U CN223771518 U CN 223771518U
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CN
China
Prior art keywords
grounding
track
plug bush
conducting strip
rail
Prior art date
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Active
Application number
CN202520250220.3U
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Chinese (zh)
Inventor
林鹏程
张景先
张龙进
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wenzhou Xinkelan Electric Technology Co ltd
Original Assignee
Wenzhou Xinkelan Electric Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by Wenzhou Xinkelan Electric Technology Co ltd filed Critical Wenzhou Xinkelan Electric Technology Co ltd
Priority to CN202520250220.3U priority Critical patent/CN223771518U/en
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Publication of CN223771518U publication Critical patent/CN223771518U/en
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Abstract

The utility model discloses an ultrathin track socket which comprises a power track and an adapter, wherein one end of the power track is a wiring end, two metal conducting strips are arranged in the power track, two conductive sleeves are arranged on the adapter, an operating mechanism is arranged in the adapter, the conductive sleeves are controlled to be connected with or disconnected from the metal conducting strips through the operating mechanism, a bolt guard plate is arranged below the adapter, an elastic grounding part is arranged in the bolt guard plate, the power track comprises a track shell, a track grounding part is arranged in the track shell, and the bolt guard plate of the adapter is communicated with the track grounding part through the elasticity of the elastic grounding part after being inserted into the power track. Above-mentioned technical scheme, structural design is reasonable, simple structure, earthing pole adopt elastic structure, the plug bush is adopted to fire zero line and is got the conducting strip, can reduce manufacturing cost, reduce thickness and convenient to use and practicality are good.

Description

Ultrathin track socket
Technical Field
The utility model relates to the technical field of track sockets, in particular to an ultrathin track socket.
Background
The track socket is a novel socket product and mainly comprises a power track and an adapter. The power rail, also called a power rail, is usually installed on a wall, a table, a baseboard, etc. The adapter is installed on the power track, gets electricity from the power track, has offered the jack on the adapter for supply consumer to insert gets electricity. The number of adapters mounted on the power rail can be increased or decreased according to the needs, and the position of the adapters on the power rail can be adjusted at will, so that the adapters are popular in the market.
The existing track socket is structurally characterized in that a conductive plug bush and a grounding bus are arranged in a power track of the existing track socket, a conductive plug bush and a copper bar are arranged on an adapter, the conductive plug bush is inserted into the power track through the conductive plug bush on the adapter to take electricity, the conductive plug bush in the power track of the existing track socket is long in length and high in manufacturing cost, when a plurality of adapters are used on the power track, due to the fact that insertion holes of the conductive plug bush are pushed open by the conductive plug bush of the adapter inserted in front, the adapter installed at the rear is unreliable in connection, the adapter is easy to shake and unstable in contact, one end of the copper bar is abutted against the grounding bus, the copper bar and the grounding bus are of rigid contact structure design, the overall thickness is thick, the copper bar is easy to transversely offset, poor contact is easy to occur between the copper bar and the grounding bus, the grounding failure is caused, and a large potential safety hazard exists.
Disclosure of utility model
Aiming at the defects existing in the prior art, the utility model aims to provide the ultrathin track socket which has reasonable structural design, simple structure, elastic structure of the grounding electrode, conductive strip clamping of the fire zero line by the plug bush, low manufacturing cost, reduced thickness and convenient use.
In order to achieve the purpose, the utility model provides the technical scheme that the ultrathin track socket comprises a power track and an adapter, wherein one end of the power track is a wiring terminal, two metal conducting strips are arranged in the power track, two conducting sleeves are arranged on the adapter, an operating mechanism is arranged in the adapter, and the conducting sleeves are controlled to be connected or disconnected with the metal conducting strips through the operating mechanism;
The power rail comprises a rail shell, wherein a rail grounding part is arranged in the rail shell, and the plug pin guard plate of the adapter is communicated with the rail grounding part through the elasticity of the elastic grounding part after being inserted into the power rail.
The utility model is further provided with a track shell, a track grounding part and a track grounding conducting strip, wherein the track shell is made of metal or plastic, when the track shell is made of metal, the track grounding part and the track shell are integrally arranged or the track shell is internally provided with the grounding conducting strip, and the elastic grounding part is directly connected with the track grounding part or connected with the grounding conducting strip and is connected with the grounding electrode of the wiring terminal through the track shell or the grounding conducting strip;
The track grounding part is provided with a single-side grounding structure or a double-side grounding structure according to the size of the load;
When the track grounding part is provided with a single-side grounding structure, the single side of the track grounding part is connected with an elastic grounding part arranged in the bolt guard plate;
When the track grounding part is provided with the double-side grounding structure, the track grounding part comprises a first grounding connecting surface and a second grounding connecting surface which are positioned at the lower port of the guide chute, the elastic grounding part comprises a first grounding metal sheet and a second grounding metal sheet, a first bending part is arranged at the local position of the first grounding metal sheet, a second bending part is arranged at the local position of the second grounding metal sheet, the first grounding metal sheet is electrically connected with the first grounding connecting surface through the first bending part, and the second grounding metal sheet is electrically connected with the second grounding connecting surface through the second bending part.
The utility model is further characterized in that a guide chute is arranged on the upper end surface of the track shell, a track cavity is arranged right below the guide chute, conductive grooves are arranged on two sides of the track cavity, and a track grounding part of the track shell is positioned above or below the conductive grooves;
The track cavity is internally provided with an insulating support, the upper end of the insulating support is provided with a bolt installation groove, the conducting groove comprises a first plug bush installation cavity and a second plug bush installation cavity which are arranged on the left side and the right side of the bolt installation groove, the left end of the first plug bush installation cavity is provided with a first conducting strip installation cavity, the right end of the second plug bush installation cavity is provided with a second conducting strip installation cavity, and the bolt installation groove, the first plug bush installation cavity, the first conducting strip installation cavity, the second plug bush installation cavity and the second conducting strip installation cavity are communicated.
The utility model is further arranged that the metal conducting strip comprises a first conducting strip and a second conducting strip, the left end of the first conducting strip is arranged in a first conducting strip installation cavity, the right end of the first conducting strip extends into a first plug bush installation cavity, the right end of the second conducting strip is arranged in a second conducting strip installation cavity, and the left end of the second conducting strip extends into a second plug bush installation cavity.
The utility model is further arranged that the conductive plug bush comprises a first conductive plug bush and a second conductive plug bush, the operating mechanism comprises a first gear transmission mechanism and a second gear transmission mechanism, the lower end of the first gear transmission mechanism is provided with a first rotating shaft, the lower end of the first rotating shaft is fixedly connected with one end of the first conductive plug bush, the first rotating shaft is driven to rotate through the first gear transmission mechanism, and the first rotating shaft drives the first conductive plug bush to be connected with or disconnected from the first conductive strip;
The lower end of the second gear transmission mechanism is provided with a second rotating shaft, the lower end of the second rotating shaft is fixedly connected with one end of the second conductive plug bush, the second rotating shaft is driven to rotate through the second gear transmission mechanism, and the second rotating shaft drives the second conductive plug bush to be connected with or disconnected from the second conductive strip.
Compared with the prior art, the electric power track has the beneficial effects that the structural design is reasonable, the adapter is provided with the design that the conductive plug bush is combined with the grounding level of the elastic grounding component, the grounding pole adopts the elastic structure and the fire zero line adopts the plug bush to clamp the conductive strip, so that the structure of the electric power track is simpler, the cost of the metal conductive strip adopted in the electric power track is far lower than that of the traditional metal conductive plug bush for the track, the cost of the track is reduced, the overall cost is further reduced, and the overall thickness can also be reduced. In addition, the elastic grounding part replaces the function of an upper locking key of the existing adapter, reduces the structure of the locking key, increases the grounding function, and is more convenient to use and good in practicability.
The utility model is further described below with reference to the drawings and specific examples.
Drawings
FIG. 1 is a schematic diagram of a first embodiment of the present utility model;
FIG. 2 is a partial schematic view of a first embodiment of the present utility model;
FIG. 3 is a schematic view of an adapter according to an embodiment of the present utility model;
FIG. 4 is a schematic view of a partial structure of an adapter according to an embodiment of the present utility model;
FIG. 5 is a schematic diagram of a power rail according to an embodiment of the present utility model;
FIG. 6 is a schematic view of a partial structure of a first embodiment of the present utility model;
FIG. 7 is a schematic diagram of a second embodiment of the present utility model;
FIG. 8 is an enlarged schematic view of section I of FIG. 7;
fig. 9 is a schematic structural diagram of an adapter according to a second embodiment of the present utility model.
Detailed Description
In the description of the present embodiment, it should be noted that, if terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", "front", "rear", and the like are presented, the indicated orientation or positional relationship is based on the orientation or positional relationship shown in the drawings, only for convenience of describing the present utility model and simplifying the description, and does not indicate or imply that the indicated apparatus or element must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," "third," and the like, as used herein, are used for descriptive purposes only and are not to be construed as indicating or implying any relative importance.
Example 1
Referring to fig. 1 to 6, the ultrathin track socket disclosed by the utility model comprises a power track 1 and an adapter 2, wherein one end of the power track 1 is a wiring terminal, two metal conducting strips are arranged in the power track 1, two conducting sleeves are arranged on the adapter 2, an operating mechanism is arranged in the adapter 2, and the conducting sleeves are controlled to be connected or disconnected with the metal conducting strips through the operating mechanism;
The power rail 1 comprises a rail shell 11, a rail grounding part is arranged in the rail shell 11, and after the power rail 1 is inserted into the plug pin guard plate 21 of the adapter 2, the plug pin guard plate 21 is communicated with the rail grounding part through the elasticity of the elastic grounding part.
The design that adapter 2 has conductive plug bush and combines elasticity ground connection part ground level is adopted to this embodiment, can make the orbital structure of electric power simpler, and the metal conducting strip cost that adopts in the electric power track is far lower than traditional track and uses the conductive plug bush of metal to reduce orbital cost, and then reduce overall cost, also can reduce overall thickness. In addition, the elastic grounding component replaces the function of the locking key of the prior adapter, reduces the structure of the locking key, increases the grounding function, and has the following two functions!
In order to make the structural design of the utility model more reasonable, as an optimization, the track shell 11 is made of metal or plastic, when the track shell 11 is made of metal, the track grounding part and the track shell 11 are integrally arranged or a grounding conducting strip is arranged in the track shell 11, the elastic grounding part is directly connected with the track grounding part or connected with the grounding conducting strip, and the elastic grounding part is connected with the grounding electrode of the wiring terminal through the track shell 11 or the grounding conducting strip;
The track grounding part is provided with a double-side grounding structure according to the size of the load;
When the track grounding part is provided with a double-side grounding structure, the track grounding part comprises a first grounding connecting surface 113 and a second grounding connecting surface 114 which are positioned at the lower port position of the guide chute 111, the elastic grounding component comprises a first grounding metal sheet 28 and a second grounding metal sheet 29, a first bending part 281 is arranged at the local position of the first grounding metal sheet 28, a second bending part 291 is arranged at the local position of the second grounding metal sheet 29, the first grounding metal sheet 28 and the first grounding connecting surface 113 are electrically connected through the first bending part 281, and the second grounding metal sheet 29 and the second grounding connecting surface 114 are electrically connected through the second bending part 291.
Preferably, the first grounding metal sheet 28 and the second grounding metal sheet 29 are in an integral structure or a split structure.
A guide chute 111 is arranged on the upper end surface of the rail shell 11, a rail cavity 112 is arranged right below the guide chute 111, conductive grooves are arranged on two sides of the rail cavity 112, and a rail grounding part of the rail shell 11 is positioned above or below the conductive grooves;
An insulating support 3 is arranged in the track cavity 112, a bolt mounting groove 31 is formed in the upper end of the insulating support 3, the conducting groove comprises a first plug bush mounting cavity 32 and a second plug bush mounting cavity 34 which are formed in the left side and the right side of the bolt mounting groove 31, a first conducting strip mounting cavity 33 is formed in the left end of the first plug bush mounting cavity 32, a second conducting strip mounting cavity 35 is formed in the right end of the second plug bush mounting cavity 34, and the bolt mounting groove 31, the first plug bush mounting cavity 32, the first conducting strip mounting cavity 33, the second plug bush mounting cavity 34 and the second conducting strip mounting cavity 35 are communicated.
The metal conducting strip comprises a first conducting strip 4 and a second conducting strip 5, wherein the left end of the first conducting strip 4 is installed in a first conducting strip installation cavity 33, the right end of the first conducting strip 4 stretches into a first plug bush installation cavity 32, the right end of the second conducting strip 5 is installed in a second conducting strip installation cavity 35, and the left end of the second conducting strip 5 stretches into a second plug bush installation cavity 34. Preferably, the second conductive strip 5 is connected to the neutral wire when the first conductive strip 4 is connected to the neutral wire, and the second conductive strip 5 is connected to the neutral wire when the first conductive strip 4 is connected to the neutral wire. The first conductive strip 4 and the second conductive strip 5 are both in L-shaped structures.
The conductive plug bush comprises a first conductive plug bush 22 and a second conductive plug bush 23, the operating mechanism comprises a first gear transmission mechanism 24 and a second gear transmission mechanism 25, a first rotating shaft 26 is arranged at the lower end of the first gear transmission mechanism 24, the lower end of the first rotating shaft 26 is fixedly connected with one end of the first conductive plug bush 22, the first rotating shaft 26 is driven to rotate through the first gear transmission mechanism 24, and the first rotating shaft 26 drives the first conductive plug bush 22 to be connected with or disconnected from the first conductive strip 4;
the lower end of the second gear transmission mechanism 25 is provided with a second rotating shaft 27, the lower end of the second rotating shaft 27 is fixedly connected with one end of the second conductive plug bush 23, the second rotating shaft 27 is driven to rotate by the second gear transmission mechanism 25, and the second rotating shaft 27 drives the second conductive plug bush 23 to be connected with or disconnected from the second conductive strip 5.
When in practical application, the adapter is provided with the design that the conductive plug bush is combined with the grounding level of the elastic grounding component, the grounding pole adopts an elastic structure, the plug bush is adopted for clamping the conductive strip by the fire zero line, so that the structure of the electric power track is simpler, the cost of the metal conductive strip adopted in the electric power track is far lower than that of the traditional metal conductive plug bush for the track, the cost of the track is reduced, the overall cost is further reduced, and the overall thickness can also be reduced. In addition, the elastic grounding part replaces the function of an upper locking key of the existing adapter, reduces the structure of the locking key, increases the grounding function, and has reasonable structural design, more convenient use and good practicability.
The adapter 2 drives the first rotating shaft 26 to rotate through the first gear transmission mechanism 24, the first rotating shaft 26 drives the first conductive plug bush 22 to be connected with or disconnected from the right end of the first conductive strip 4, the second rotating shaft 27 drives the second rotating shaft 27 to rotate through the second gear transmission mechanism 25, the second rotating shaft 27 drives the second conductive plug bush 23 to be connected with or disconnected from the left end of the second conductive strip 5, and when a plurality of adapters are used, each adapter is connected with or disconnected from the metal conductive strip through the respective conductive plug bush, so that the adapter is reliably fixed and is not easy to shake.
Example two
Referring to fig. 7 to 9, the second embodiment is to improve the structure based on the technical solution of the first embodiment:
The second embodiment is different from the first embodiment in the technical scheme that the track grounding part is provided with a single-side grounding structure 100 according to the size of the load, when the track grounding part is provided with the single-side grounding structure, the single side of the track grounding part is connected with an elastic grounding part arranged in the latch guard 21, the end surface of the latch guard 21, which is away from the elastic grounding part, is provided with a plurality of elastic buckles 200, and the latch guard is fixedly clamped with the local position of the track shell 11 through the elastic buckles 200.
The foregoing embodiments are provided for further explanation of the present utility model and are not to be construed as limiting the scope of the present utility model, and some insubstantial modifications and variations of the present utility model, which are within the scope of the utility model, will be suggested to those skilled in the art in light of the foregoing teachings.

Claims (5)

1. The ultrathin track socket comprises a power track (1) and an adapter (2), wherein one end of the power track (1) is a wiring terminal, and the ultrathin track socket is characterized in that two metal conducting strips are arranged in the power track (1), two conducting inserts are arranged on the adapter (2), an operating mechanism is arranged in the adapter (2), and the conducting inserts are controlled to be connected with or disconnected from the metal conducting strips through the operating mechanism;
The utility model discloses a power track, including adapter (2), power track (1), adapter (2) are provided with bolt backplate (21) below, be provided with elastic grounding part in bolt backplate (21), power track (1) include track casing (11), be provided with track ground connection portion in track casing (11), after inserting power track (1) bolt backplate (21) of adapter (2), through elastic grounding part's elasticity and track ground connection portion intercommunication.
2. The ultrathin rail socket of claim 1, wherein the rail shell (11) is made of metal or plastic, when the rail shell (11) is made of metal, the rail grounding part is integrally arranged with the rail shell (11) or a grounding conducting strip is arranged in the rail shell (11), the elastic grounding part is directly connected with the rail grounding part or connected with the grounding conducting strip, and the rail grounding conducting strip is arranged in the rail shell (11) when the rail shell (11) is made of plastic, and the elastic grounding part is connected with the rail grounding conducting strip;
The track grounding part is provided with a single-side grounding structure or a double-side grounding structure according to the size of the load;
when the track grounding part is provided with a single-side grounding structure, the single side of the track grounding part is connected with an elastic grounding part arranged in the bolt guard plate (21);
When the track grounding part is provided with a double-side grounding structure, the track grounding part comprises a first grounding connecting surface (113) and a second grounding connecting surface (114) which are positioned at the lower port position of the guide chute (111), the elastic grounding part comprises a first grounding metal sheet (28) and a second grounding metal sheet (29), a first bending part (281) is arranged at the local position of the first grounding metal sheet (28), a second bending part (291) is arranged at the local position of the second grounding metal sheet (29), the first grounding metal sheet (28) is electrically connected with the first grounding connecting surface (113) through the first bending part (281), and the second grounding metal sheet (29) is electrically connected with the second grounding connecting surface (114) through the second bending part (291).
3. The ultrathin rail socket of claim 2, wherein the upper end face of the rail shell (11) is provided with a guide chute (111), the rail shell (11) is positioned right below the guide chute (111) and provided with a rail cavity (112), two sides of the rail cavity (112) are provided with conductive grooves, and the rail grounding part of the rail shell (11) is positioned above or below the conductive grooves;
The novel electric wire connector is characterized in that an insulating support (3) is arranged in the track cavity (112), a bolt mounting groove (31) is formed in the upper end of the insulating support (3), the conducting groove comprises a first plug bush mounting cavity (32) and a second plug bush mounting cavity (34) which are formed in the left side and the right side of the bolt mounting groove (31), a first conducting strip mounting cavity (33) is formed in the left end of the first plug bush mounting cavity (32), a second conducting strip mounting cavity (35) is formed in the right end of the second plug bush mounting cavity (34), and the bolt mounting groove (31), the first plug bush mounting cavity (32), the first conducting strip mounting cavity (33), the second plug bush mounting cavity (34) and the second conducting strip mounting cavity (35) are communicated.
4. The ultrathin rail socket of claim 3, wherein the metal conducting strip comprises a first conducting strip (4) and a second conducting strip (5), the left end of the first conducting strip (4) is arranged in a first conducting strip installation cavity (33), the right end of the first conducting strip (4) stretches into a first plug bush installation cavity (32), the right end of the second conducting strip (5) is arranged in a second conducting strip installation cavity (35), and the left end of the second conducting strip (5) stretches into a second plug bush installation cavity (34).
5. The ultrathin rail socket of claim 4, wherein the conductive plug bush comprises a first conductive plug bush (22) and a second conductive plug bush (23), the operating mechanism comprises a first gear transmission mechanism (24) and a second gear transmission mechanism (25), a first rotating shaft (26) is arranged at the lower end of the first gear transmission mechanism (24), the lower end of the first rotating shaft (26) is fixedly connected with one end of the first conductive plug bush (22), the first rotating shaft (26) is driven to rotate by the first gear transmission mechanism (24), the first rotating shaft (26) is driven to connect or disconnect the first conductive plug bush (22) with the first conductive strip (4), a second rotating shaft (27) is arranged at the lower end of the second gear transmission mechanism (25), the lower end of the second rotating shaft (27) is fixedly connected with one end of the second conductive plug bush (23), the second rotating shaft (27) is driven to rotate by the second gear transmission mechanism (25), and the second rotating shaft (27) is driven to connect or disconnect the second conductive plug bush (23) with the second conductive strip (5).
CN202520250220.3U 2025-02-17 2025-02-17 Ultrathin track socket Active CN223771518U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520250220.3U CN223771518U (en) 2025-02-17 2025-02-17 Ultrathin track socket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520250220.3U CN223771518U (en) 2025-02-17 2025-02-17 Ultrathin track socket

Publications (1)

Publication Number Publication Date
CN223771518U true CN223771518U (en) 2026-01-06

Family

ID=98244872

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520250220.3U Active CN223771518U (en) 2025-02-17 2025-02-17 Ultrathin track socket

Country Status (1)

Country Link
CN (1) CN223771518U (en)

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