CN222015852U - 360-Degree rotary power plug - Google Patents
360-Degree rotary power plug Download PDFInfo
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- CN222015852U CN222015852U CN202420685089.9U CN202420685089U CN222015852U CN 222015852 U CN222015852 U CN 222015852U CN 202420685089 U CN202420685089 U CN 202420685089U CN 222015852 U CN222015852 U CN 222015852U
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- plug
- adapter
- connector
- seat
- contact part
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- 238000005452 bending Methods 0.000 description 3
- 238000000034 method Methods 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000006835 compression Effects 0.000 description 1
- 238000007906 compression Methods 0.000 description 1
- 238000013461 design Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000003780 insertion Methods 0.000 description 1
- 230000037431 insertion Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 238000012423 maintenance Methods 0.000 description 1
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Abstract
The utility model discloses a 360-degree rotary power plug which is arranged on a rotary seat through a first plug-in component and rotates back and forth along with the rotary seat; the second grafting subassembly sets up on the mount pad and upwards stretches out the mount pad to cooperation switching subassembly is including first adaptor, second adaptor and third adaptor, it all sets up on the roating seat and rotates along with the roating seat round trip, and the upper end of first adaptor, second adaptor and third adaptor respectively with the fourth bayonet joint that corresponds, elastic contact between fifth bayonet joint and the sixth bayonet joint, make when socket angle mismatch, only need through rotating first knot subassembly and roating seat, make first grafting subassembly rotate to the angle of suitable grafting, the power cord can be drawn forth from suitable direction after the grafting, thereby avoid appearing the condition that the power cord was bent after the grafting, the use limitation is also less simultaneously, the condition of grafting failure also can not appear, user's use experience is also better.
Description
Technical Field
The utility model relates to the technology of the field of plugs, in particular to a 360-degree rotary power plug.
Background
The connector of the general electronic product and the plug of the electrical appliance are called as plugs. A domestic AC power plug and socket has a male connector with a bar-like or copper-like projection, and a female connector type power socket with a slot or recess physically inserted therein. The size is an important technical requirement concerning whether the plug and socket and the converter can be safely used or not, and whether the general interchangeability requirement is satisfied or not to avoid erroneous insertion. The unqualified size can influence the use of a user or generate hidden dangers such as poor contact, misinsertion and the like, the equipment is damaged if the equipment is light, and fire and electric shock accidents can be generated if the equipment is heavy.
The power plug is required to be externally connected with a power line, so that when the power plug is plugged with a socket, the situation that the power line is bent can occur when the power plug is plugged, the power plug can be damaged after long-time use, even the situation that the power plug cannot be plugged due to smaller space can occur, the use limitation is larger, and the use experience of a user is influenced; accordingly, there is a need for further improvements to existing power plug structures to address the above-described problems.
Disclosure of utility model
In view of the above, the present utility model aims at overcoming the drawbacks of the prior art, and its main objective is to provide a 360 ° rotary power plug, which can effectively solve the problems of easy bending of the power cord, large limitation of use and poor user experience when the existing power plug is plugged.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
A360-degree rotary power plug comprises a mounting seat, a rotary seat, a first plug-in component, a second plug-in component and a switching component; the mounting seat is internally provided with a mounting cavity; the rotary seat can be arranged in the mounting cavity in a back-and-forth rotary manner and is downwards exposed out of the lower surface of the mounting seat; the first plug-in component is arranged on the rotating seat and rotates back and forth along with the rotating seat; the first plug-in assembly comprises a first plug-in connector, a second plug-in connector and a third plug-in connector, and the lower ends of the first plug-in connector, the second plug-in connector and the third plug-in connector extend downwards out of the rotating seat; the second plug-in assembly is arranged on the mounting seat and extends out of the mounting seat upwards, and comprises a fourth plug-in connector, a fifth plug-in connector and a sixth plug-in connector; the switching assembly comprises a first switching piece, a second switching piece and a third switching piece, wherein the first switching piece, the second switching piece and the third switching piece are arranged on the rotating seat and rotate back and forth along with the rotating seat, the lower ends of the first switching piece, the second switching piece and the third switching piece are respectively connected with a corresponding first plug connector, a corresponding second plug connector and a corresponding third plug connector, and the upper ends of the first switching piece, the second switching piece and the third switching piece are respectively in elastic contact with a corresponding fourth plug connector, a corresponding fifth plug connector and a corresponding sixth plug connector.
As a preferred scheme, three mounting grooves which are arranged at intervals are formed in the rotating seat, the upper ends of the first plug connector, the second plug connector and the third plug connector extend into the corresponding mounting grooves and are respectively provided with a first mounting hole, the lower ends of the first adapter, the second adapter and the third adapter extend downwards into the corresponding mounting grooves and are provided with second mounting holes matched with the first mounting holes, and a fixing bolt sequentially penetrates through the second mounting holes and the first mounting holes to fixedly mount the first plug connector, the second plug connector, the third plug connector, the first adapter, the second adapter and the third adapter in the corresponding mounting grooves.
As a preferable scheme, the upper end of the first adapter piece integrally extends upwards to form a first elastic contact part which is elastically arranged, and the lower end of the fourth adapter piece is provided with a first annular contact part which is annularly arranged, and the first elastic contact part is elastically contacted with the first annular contact part.
As a preferable scheme, the upper end of the second adapter piece integrally extends upwards to form a second elastic contact part which is elastically arranged, the lower end of the fifth adapter is provided with a second annular contact part which is annularly arranged, the second elastic contact part is elastically contacted with the second annular contact part, and the second annular contact part and the first annular contact part are internally and externally arranged at intervals.
As a preferable scheme, the first elastic contact parts are symmetrically arranged, the two first elastic parts are elastically contacted with the first annular contact part, the second elastic parts are symmetrically arranged, and the two second elastic parts are elastically contacted with the second annular contact part.
As a preferable scheme, the upper end surface of the rotating seat integrally extends upwards to form 3 positioning columns which are arranged at intervals; the rotary seat is provided with a pressing seat, 3 positioning holes matched with the positioning columns are formed in the pressing seat, and the pressing seat is respectively pressed on the first adapter, the second adapter and the third adapter and fixes the positions of the first adapter, the second adapter and the third adapter.
As a preferable scheme, a first contact part integrally extends out of the third adapter, the contact part is positioned at the center of the rotating seat, the lower end of the sixth plug-in component is integrally bent to form a second contact part matched with the first contact part, a spring is clamped between the upper end surface of the second contact part and the inner wall surface of the mounting cavity, and the spring promotes the second contact part to move downwards and contact with the first contact part.
In a preferred embodiment, the mounting base includes a bottom shell and an upper cover, and the bottom shell and the upper cover together enclose a mounting cavity.
Compared with the prior art, the utility model has obvious advantages and beneficial effects, and in particular, the technical scheme can be as follows:
The first plug-in assembly is arranged on the rotating seat and rotates back and forth along with the rotating seat; the second grafting subassembly sets up on the mount pad and upwards stretches out the mount pad to cooperation switching subassembly is including first adaptor, second adaptor and third adaptor, it all sets up on the roating seat and along with the roating seat round trip rotation, and the upper end of first adaptor, second adaptor and third adaptor respectively with the fourth bayonet joint that corresponds, elastic contact between fifth bayonet joint and the sixth bayonet joint, make second grafting subassembly and external power line be connected during the use, when socket angle mismatch, only need through rotating first knot subassembly and roating seat, make first grafting subassembly rotate to the angle of suitable grafting, the power line can be followed suitable direction and drawn forth after the grafting, thereby avoid appearing the condition of pegging graft back power line bending, the damage to the power line of long-time use has been prevented, the use limitation is also less simultaneously, the condition of pegging graft can not appear, user's use experience is also better.
In order to more clearly illustrate the structural features and efficacy of the present utility model, the present utility model will be described in detail below with reference to the accompanying drawings and examples.
Drawings
FIG. 1 is a schematic perspective view of a preferred embodiment of the present utility model;
FIG. 2 is a schematic view of another perspective view of the preferred embodiment of the present utility model;
FIG. 3 is an exploded view of the preferred embodiment of the present utility model;
FIG. 4 is a schematic cross-sectional view of a preferred embodiment of the present utility model;
FIG. 5 is a partially assembled schematic illustration of a preferred embodiment of the present utility model.
The attached drawings are used for identifying and describing:
10. Mounting base 101 and mounting cavity
11. Bottom shell 12, upper cover
20. Swivel 201 and mounting groove
202. Positioning hole 21 and positioning column
22. Compression seat 30, first plug-in assembly
301. First mounting hole 31, first plug
32. Second plug connector 33, third plug connector
40. Second plug assembly 41 and fourth plug
411. First annular contact portion 42 and fifth plug
421. Second annular contact portion 43 and sixth plug
431. Second contact portion 50, switching assembly
501. Second mounting hole 51, first adapter
511. First elastic contact portion 52, second adapter
521. Second elastic contact portion 53, third adapter
531. First contact portion 54, fixing bolt
55. And (3) a spring.
Detailed Description
Referring to fig. 1 to 5, a specific structure of a preferred embodiment of the present utility model is shown, wherein the specific structure includes a mounting base 10, a rotating base 20, a first plug assembly 30, a second plug assembly 40 and a switching assembly 50.
The mounting base 10 is provided with a mounting cavity 101; in this embodiment, the mounting base 10 includes a bottom shell 11 and an upper cover 12, and the bottom shell 11 and the upper cover 12 together enclose a mounting cavity 101, which facilitates the installation and maintenance process of the power plug.
The rotating seat 20 is rotatably arranged in the mounting cavity 101 back and forth and is downwards exposed out of the lower surface of the mounting seat 10; in this embodiment, three mounting slots 201 are formed on the rotating base 20, which are arranged at intervals; the upper end surface of the rotating seat 20 integrally extends upwards to form 3 positioning columns 21 which are arranged at intervals; the rotating seat 21 is provided with a pressing seat 22, and 3 positioning holes 202 matched with the positioning columns 21 are formed in the pressing seat 22.
The first plug assembly 30 is disposed on the rotating base 20 and rotates back and forth along with the rotating base 20; the first plug assembly 30 includes a first plug 31, a second plug 32 and a third plug 33, and lower ends of the first plug 31, the second plug 32 and the third plug 33 extend downward from the rotating base 20; in this embodiment, the upper ends of the first connector 31, the second connector 32 and the third connector 33 extend into the corresponding mounting slots 201 and are respectively provided with a first mounting hole 301.
The second plug assembly 40 is arranged on the mounting seat 10 and extends out of the mounting seat 10 upwards, the outer end of the second plug assembly 40 is in contact conduction with an external power line, and the second plug assembly 40 comprises a fourth plug connector 41, a fifth plug connector 42 and a sixth plug connector 43; in the present embodiment, the lower end of the fourth connector 41 is provided with a first annular contact 411 disposed in an annular shape; the lower end of the fifth plug 42 is provided with a second annular contact portion 421 which is annularly provided; and the second annular contact portion 421 is arranged at an inner and outer interval from the first annular contact portion 411.
The adaptor assembly 50 comprises a first adaptor 51, a second adaptor 52 and a third adaptor 53, which are all arranged on the rotating base 20 and rotate back and forth along with the rotating base 20, wherein the lower ends of the first adaptor 51, the second adaptor 52 and the third adaptor 53 are respectively connected with the corresponding first adaptor 31, second adaptor 32 and third adaptor 33, and the upper ends of the first adaptor 51, the second adaptor 52 and the third adaptor 53 are respectively in elastic contact with the corresponding fourth adaptor 41, fifth adaptor 42 and sixth adaptor 43, so that the elastic contact mode ensures the stability of contact between the adaptor assembly 50 and the second adaptor assembly 40 during rotation; in this embodiment, the lower ends of the first adapter 51, the second adapter 52 and the third adapter 53 extend downward into the corresponding mounting slots 201 and are provided with second mounting holes 501 matching with the first mounting holes 301, and a fixing bolt 54 passes through the second mounting holes 501 and the first mounting holes 301 in sequence to fixedly mount the first adapter 31, the second adapter 32, the third adapter 33, the first adapter 51, the second adapter 52 and the third adapter 53 in the corresponding mounting slots 201.
The upper end of the first adapter 51 integrally extends upwards to form a first elastic contact portion 511, and the first elastic contact portion 511 is elastically contacted with the first annular contact portion 411; a second elastic contact part 521 which is elastically arranged is integrally extended upwards from the upper end of the second adapter 52; the second elastic contact portion 521 is elastically contacted with the second annular contact portion 421, and the first elastic portion 511 and the second elastic portion 521 are provided to realize elastic contact between the first adapter 51 and the second adapter 52 and the fourth adapter 41 and the fifth adapter 42, respectively; the first elastic contact portions 511 are two symmetrically arranged, the two first elastic portions 511 are in elastic contact with the first annular contact portion 411, the two second elastic portions 521 are also two symmetrically arranged, and the two second elastic portions 521 are in elastic contact with the second annular contact portion 421; the pressing seat 22 presses the first adaptor 51, the second adaptor 52 and the third adaptor 53 respectively and fixes the positions of the first adaptor 51, the second adaptor 52 and the third adaptor 53, thereby preventing; the first adapter 51, the second adapter 52 and the third adapter 53 slide in the rotating process, so that the stability of the structure is ensured; the third adapter 53 integrally extends with a first contact portion 531, the contact portion 531 is located at the center of the rotary seat 20, the lower end of the sixth connector 43 is integrally bent to form a second contact portion 431 that is matched with the first contact portion 531, a spring 55 is sandwiched between the upper end surface of the second contact portion 431 and the inner wall surface of the mounting cavity 101, and the spring 55 urges the second contact portion 431 to move downward and contact with the first contact portion 531, so as to realize elastic contact between the third adapter 53 and the sixth connector 43.
The design focus of the utility model is that: the first plug-in assembly is arranged on the rotating seat and rotates back and forth along with the rotating seat; the second grafting subassembly sets up on the mount pad and upwards stretches out the mount pad to cooperation switching subassembly is including first adaptor, second adaptor and third adaptor, it all sets up on the roating seat and along with the roating seat round trip rotation, and the upper end of first adaptor, second adaptor and third adaptor respectively with the fourth bayonet joint that corresponds, elastic contact between fifth bayonet joint and the sixth bayonet joint, make second grafting subassembly and external power line be connected during the use, when socket angle mismatch, only need through rotating first knot subassembly and roating seat, make first grafting subassembly rotate to the angle of suitable grafting, the power line can be followed suitable direction and drawn forth after the grafting, thereby avoid appearing the condition of pegging graft back power line bending, the damage to the power line of long-time use has been prevented, the use limitation is also less simultaneously, the condition of pegging graft can not appear, user's use experience is also better.
The foregoing description is only a preferred embodiment of the present utility model, and is not intended to limit the technical scope of the present utility model, so any minor modifications, equivalent changes and modifications made to the above embodiments according to the technical principles of the present utility model are still within the scope of the technical solutions of the present utility model.
Claims (8)
1. A 360 rotatory power plug, its characterized in that: comprises a mounting seat, a rotating seat, a first plug-in component, a second plug-in component and a switching component; the mounting seat is internally provided with a mounting cavity; the rotary seat can be arranged in the mounting cavity in a back-and-forth rotary manner and is downwards exposed out of the lower surface of the mounting seat; the first plug-in component is arranged on the rotating seat and rotates back and forth along with the rotating seat; the first plug-in assembly comprises a first plug-in connector, a second plug-in connector and a third plug-in connector, and the lower ends of the first plug-in connector, the second plug-in connector and the third plug-in connector extend downwards out of the rotating seat; the second plug-in assembly is arranged on the mounting seat and extends out of the mounting seat upwards, and comprises a fourth plug-in connector, a fifth plug-in connector and a sixth plug-in connector; the switching assembly comprises a first switching piece, a second switching piece and a third switching piece, wherein the first switching piece, the second switching piece and the third switching piece are arranged on the rotating seat and rotate back and forth along with the rotating seat, the lower ends of the first switching piece, the second switching piece and the third switching piece are respectively connected with a corresponding first plug connector, a corresponding second plug connector and a corresponding third plug connector, and the upper ends of the first switching piece, the second switching piece and the third switching piece are respectively in elastic contact with a corresponding fourth plug connector, a corresponding fifth plug connector and a corresponding sixth plug connector.
2. A 360 ° rotary power plug as claimed in claim 1, wherein: the rotary seat is provided with three mounting grooves which are arranged at intervals, the upper ends of the first plug connector, the second plug connector and the third plug connector extend into the corresponding mounting grooves and are respectively provided with a first mounting hole, the lower ends of the first adapter, the second adapter and the third adapter extend downwards into the corresponding mounting grooves and are provided with second mounting holes matched with the first mounting holes, and a fixing bolt sequentially penetrates through the second mounting holes and the first mounting holes to fixedly mount the first plug connector, the second plug connector, the third plug connector, the first adapter, the second adapter and the third adapter in the corresponding mounting grooves.
3. A 360 ° rotary power plug as claimed in claim 1, wherein: the upper end of the first adapter piece integrally extends upwards to form a first elastic contact part which is elastically arranged, the lower end of the fourth adapter piece is provided with a first annular contact part which is annularly arranged, and the first elastic contact part is elastically contacted with the first annular contact part.
4. A 360 ° rotary power plug according to claim 3, wherein: the upper end of the second adapter piece integrally extends upwards to form a second elastic contact part which is elastically arranged, the lower end of the fifth adapter piece is provided with a second annular contact part which is annularly arranged, the second elastic contact part is elastically contacted with the second annular contact part, and the second annular contact part and the first annular contact part are arranged at intervals inside and outside.
5. The 360 ° rotary power plug of claim 4 wherein: the first elastic contact parts are symmetrically arranged, the two first elastic parts are in elastic contact with the first annular contact parts, the second elastic parts are symmetrically arranged, and the two second elastic parts are in elastic contact with the second annular contact parts.
6. A 360 ° rotary power plug as claimed in claim 1, wherein: the upper end face of the rotating seat integrally extends upwards to form 3 positioning columns which are arranged at intervals; the rotary seat is provided with a pressing seat, 3 positioning holes matched with the positioning columns are formed in the pressing seat, and the pressing seat is respectively pressed on the first adapter, the second adapter and the third adapter and fixes the positions of the first adapter, the second adapter and the third adapter.
7. A 360 ° rotary power plug as claimed in claim 1, wherein: the third adapter piece is integrally extended with a first contact part, the contact part is positioned at the center of the rotating seat, the lower end of the sixth plug piece is integrally bent and formed with a second contact part matched with the first contact part, a spring is clamped between the upper end surface of the second contact part and the inner wall surface of the mounting cavity, and the spring promotes the second contact part to move downwards and contact with the first contact part.
8. A 360 ° rotary power plug as claimed in claim 1, wherein: the mounting seat comprises a bottom shell and an upper cover, and the bottom shell and the upper cover jointly enclose a mounting cavity.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420685089.9U CN222015852U (en) | 2024-04-03 | 2024-04-03 | 360-Degree rotary power plug |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420685089.9U CN222015852U (en) | 2024-04-03 | 2024-04-03 | 360-Degree rotary power plug |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222015852U true CN222015852U (en) | 2024-11-15 |
Family
ID=93428114
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202420685089.9U Active CN222015852U (en) | 2024-04-03 | 2024-04-03 | 360-Degree rotary power plug |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222015852U (en) |
-
2024
- 2024-04-03 CN CN202420685089.9U patent/CN222015852U/en active Active
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| Date | Code | Title | Description |
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| GR01 | Patent grant | ||
| GR01 | Patent grant |