CN206673222U - Modular plug separating mechanism - Google Patents
Modular plug separating mechanism Download PDFInfo
- Publication number
- CN206673222U CN206673222U CN201720224849.6U CN201720224849U CN206673222U CN 206673222 U CN206673222 U CN 206673222U CN 201720224849 U CN201720224849 U CN 201720224849U CN 206673222 U CN206673222 U CN 206673222U
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- Prior art keywords
- ejector pin
- spring
- button
- dop
- separating mechanism
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Abstract
It the utility model is related to plug.A kind of modular plug separating mechanism, including sleeve pipe, the ejector pin being located in sleeve pipe, ejector pin controlling organization and driving ejector pin stretch out the first spring of plug body from side where inserted sheet, the ejector pin controlling organization includes being arranged at the Access Division of ejector pin, coordinate the dop for making ejector pin be maintained at contraction state with Access Division, the second spring that snaps on Access Division of driving dop and driving dop with shackle portion from button, it is characterized in that, described sleeve pipe is provided with holding part, the holding part is connected with inner cap, slide opening is formed between the inner cap and holding part, the button is slidably connected in the slide opening, the ejector pin is suspended in described sleeve pipe.The utility model provides the modular plug separating mechanism that a kind of all parts link together, and solves the problems, such as to scatter after existing plug separating mechanism all parts are in discrete state, plug body disassembles and cause user to assemble plug inconvenience.
Description
Technical field
It the utility model is related to plug, more particularly to a kind of modular plug separating mechanism.
Background technology
Plug is to coordinate part of the power supply to electrical equipment that induce one for same socket.The basic structure of plug include plug body and
It is connected to the inserted sheet of plug body(Also known as latch), one is connected to sleeve after being inserted by inserted sheet during use in the jack of socket
Rise and draw power supply.In order to ensure being reliably connected between sleeve and inserted sheet, sleeve can be designed as with larger chucking power folder
Hold on inserted sheet, do not cause defective socket, it is necessary to which a hand pins socket, another hand catches plug during in order to pull the plug out of the socket
Mode is extracted, cause extract when inconvenience, when especially plug is inserted on mobile socket, must two hands can extract;
If chucking power is very big or when user's strength is smaller, user needs firmly outwards to pull out, while rocking to both sides slotting on one side
Head can extract plug, will so cause the improper decline of sleeve chucking power of socket and coming off for wall socket, be
This has set out the plug with separating mechanism, and the separating mechanism of plug includes sleeve pipe, the ejector pin being located in sleeve pipe, ejector pin control
Mechanism processed and driving ejector pin stretch out the first spring of plug body from side where inserted sheet, and ejector pin controlling organization includes being arranged at ejector pin
Access Division, coordinate the dop for making ejector pin be maintained at contraction state, driving the second bullet for snapping on Access Division of dop with Access Division
Spring and driving dop with shackle portion from button.Existing plug separating mechanism is to be arranged in a manner of discrete piece outside plug
In shell, when plug body disassembles, all parts of plug separating mechanism can scatter, and be re-assemblied after scattering to user
Plug, which makes troubles to set, produces the phenomenon that user's assembling is not returned.
Utility model content
The utility model provides the modular plug separating mechanism that a kind of all parts link together, and solves existing
It can be scattered after some plug separating mechanism all parts are in discrete state, plug body disassembles and cause user's assembling to be inserted
The problem of inconvenient.
Above technical problem is that solved by following technical proposal:A kind of modular plug separating mechanism, including set
The ejector pin, ejector pin controlling organization and the driving ejector pin that manage, are located in sleeve pipe stretch out the first bullet of plug body from side where inserted sheet
Spring, the ejector pin controlling organization include being arranged at the Access Division of ejector pin, ejector pin is maintained at contraction state with Access Division cooperation
Dop, the second spring that snaps on Access Division of driving dop and driving dop with shackle portion from button, it is characterised in that institute
State sleeve pipe and be provided with holding part, the holding part is connected with inner cap, and slide opening is formed between the inner cap and holding part, and the button is slided
Dynamic to be connected in the slide opening, the ejector pin is suspended in described sleeve pipe, first spring be located at the ejector pin and inner cap it
Between, the button and dop link together.The utility model sleeve pipe and inner cap form the fixed housing for limiting other parts, make
Obtaining all parts integrally can remove and install, and modularized design is easy to automated production of the present utility model and applied to one
The plug of body(The plug that i.e. plug body is structure as a whole).
In use, the mode for making ejector pin be alignd with the ejector pin via of plug body is arranged in plug body, it is assumed that initial
Ejector pin is in stretching state during state, and during inserted sheet inserts socket, jack housing extrudes ejector pin towards receiving in plug body
Contract and cause the first spring energy-storage, top opens dop and continues contraction, second spring generation change when ejector pin is retracted to same dop contact
Shape energy storage;Ejector pin stops contraction after plug insertion in place, now Access Division is alignd with dop(Or positioned at dop away from ejector pin outer end
Side, ejector pin or produce extending action in the presence of the first spring during this state), dop is stretched in the presence of second spring
Blocking ejector pin to Access Division can not be protruding.When needing to pull the plug out of the socket, button, the button driving same clamping of dop are pressed
Part from and second spring energy storage, in the presence of the first spring ejector pin eject, ejector pin eject when to jack housing produce extruding
Power, socket produce reaction force to ejector pin, and the reaction force plays a part of extracting plug from socket, so that extracting
It is laborsaving during plug.
First spring is located in away from the spacer pin in ejector pin one end preferably, being covered with described.It can drop
The first spring produces the possibility axially bent in low extrusion process.
Preferably, the dop and button are distributed in the radially opposite sides of the ejector pin.It is flat structure in plug body
When layout it is convenient, three-terminal polarized plus plug is mostly flat structure.
Preferably, the ejector pin controlling organization also includes barb and the clasp joint being arranged on ejector pin coordinated with barb
Portion, the dop and barb distribution in the both sides of ejector pin, barb be hinged on the plug body or sleeve pipe and by it is described by
Button drives and swung.Provide a kind of new technical scheme of ejector pin clamping mechanism.
Preferably, the dop does translational motion when dop is fixed on button and presses button.If dop is to put
Dynamic mode carries out division with Access Division, then inconvenient when being not only laid out in plug, and due to being connected to card when dop
The first spring is difficult for zero to torque caused by dop, second spring can be caused to need to be designed as the larger bullet of elastic force during socket part
Spring.
Preferably, the ejector pin controlling organization has two, the buttons of two ejector pin controlling organizations is distributed in described
The both sides of ejector pin, described two ejector pin controlling organizations share second spring.It is compact-sized, it is laborsaving during driving.
Preferably, the inner of the button of an ejector pin controlling organization in described two ejector pin controlling organizations is provided with from interior
Chute that end end face starts to extend along the pressing direction of button, the inner of button of another ejector pin controlling organization are slidably connected at
In the chute, the second spring is located in the chute and extended along the bearing of trend of chute, the two of the second spring
End distribution with described two ejector pin controlling organizations button connects together.
Preferably, the inner of the ejector pin is provided with the spring mounting hole extended along ejector pin bearing of trend, first bullet
Spring is located in the spring mounting hole.The height of plug can be maximally utilised(Inserted sheet bearing of trend is the height of plug
Spend direction)Space, to reduce product height, and the installing space of spring can be increased.
The utility model tool has the advantage that:Modularized design is easy to automated production of the present utility model and applied to one
The plug of body(The plug that i.e. plug body is structure as a whole);In preferred scheme, it is same in a manner of translating to be easy to implement dop
Access Division carries out division.
Brief description of the drawings
Fig. 1 is the schematic diagram of the utility model embodiment one.
Fig. 2 is the explosive view of embodiment one.
Fig. 3 is the use state diagram of the utility model embodiment one.
Fig. 4 is the use state diagram of the utility model embodiment two.
Fig. 5 is the explosive view of the utility model embodiment three.
Fig. 6 is the explosive view of the utility model embodiment four.
Fig. 7 is the schematic diagram of the utility model embodiment five.
In figure:Inserted sheet 11, the first half portion 12, ejector pin via 121, the second half portion 13, nut spacing hole 131, button avoid
Hole 15, ejector pin controlling organization 21, button 211, projection 2211, Access Division 212, dop 213, second spring 214, chute 215, hook
Socket part 216, barb 217, hinge 218, sleeve pipe 22, holding part 221, inner cap 222, slide opening 223, spacer pin 224, suspension step
225th, ejector pin 23, spring mounting hole 231, the first spring 24, interior first spring 241, outer first spring 242.
Embodiment
The utility model is further described with embodiment below in conjunction with the accompanying drawings.
Embodiment one, referring to Fig. 1, a kind of modular plug separating mechanism, including ejector pin controlling organization 21, the and of sleeve pipe 22
The ejector pin 23 being located in sleeve pipe.Ejector pin controlling organization 21 has two.Two ejector pin controlling organizations 21 are distributed in the two of ejector pin 23
Side.Ejector pin controlling organization 21 includes button 211.One end of sleeve pipe 22 is provided with holding part 221.Holding part 221 has 2.2 holdings
Portion 221 is distributed in the both sides of sleeve pipe 22.Holding part 221 is connected with inner cap 222.Slide opening is formed between inner cap 222 and holding part 221
223.Button 211 is slidably connected in slide opening 223 so that button 211 is slidably connected on holding part 221.
Referring to Fig. 2, also included first spring 24.First spring 24 includes interior first spring 241 and outer first spring
242.Outer first spring 242 is set on interior first spring 241.The inner of ejector pin 23 is provided with the bullet extended along ejector pin bearing of trend
Spring mounting hole 231.Inner cap 222 is provided with spacer pin 224.Ejector pin controlling organization 21 also includes Access Division 212, cooperation protects ejector pin
The second spring 214 that the dop 213 held in contraction state is snapped on Access Division.Access Division 212 is arranged on the top of ejector pin 23
Outer surface.Access Division 212 is bulge-structure.Dop 213 is integrally formed with button 211.Two ejector pin controlling organizations 21 share the
Two springs 214.
The inner of the button of the ejector pin controlling organization positioned at the left side in two ejector pin controlling organizations 21 is provided with from inner end
Face starts the chute 215 along the pressing direction extension of button.
The method that the utility model is fitted together is:
Referring to Fig. 3, the inner surface of the outer end of sleeve pipe 22 is provided with suspension step 225.When ejector pin 23 reaches the hook of Access Division 212
When hanging on step 225, then ejector pin 23 can not continue outer shifting and be suspended in sleeve pipe 22.
Ejector pin 23 is worn in sleeve pipe 22, the first spring 24 is worn in the spring mounting hole 231 of ejector pin 23.It will be located at
The button of ejector pin controlling organization in ejector pin controlling organization 21 positioned at the left side is set aside on holding part 221, dop 213 is located at ejector pin
The right and be located on the right Access Division 212 coordinate.Second spring 214 is shelved in chute 215.By positioned at the top on the right
The button of pin controlling organization is shelved in chute 215 and on holding part, and its dop is located at the left side of ejector pin and is located on the left side
Access Division coordinates.The button connects of the same two ejector pin controlling organizations of both ends distribution of second spring 214 are together.Then by inner cap
222 snap fit onto on holding part 221, and spacer pin 224 is located in the first spring 24 away from ejector pin one end.So far and plug is completed
The assembling of separating mechanism 2, plug separating mechanism 2 form a module to link together.
Plug includes plug body and inserted sheet 11.Plug body from the first half portion 12 and the second half portion 13 by bolt with
Nut is fixed together to surround and formed.Inserted sheet passes from the first half portion 12.
In use, disassembling the first half portion 12 and the second half portion 13, the utility model is with ejector pin 23 with the first half portion 12
Ejector pin via 121 align mode be arranged on plug body 1 in.Finally the first half portion 12 and the second half portion 13 are retightened
Together.After assembling, button 211 stretches out plug body 1 through the button avoid holes 15 on plug body.
It is by the process extracted with plug of the present utility model from socket:Two ejector pin controlling organizations 21 are pressed simultaneously
Button 211, button 211 produces and inside contracts translational motion, and driving dop 213 does direction identical translation fortune together during button motion
Second spring 214 is extruded while dynamic and causes second spring energy storage, and dop 213 is separated with Access Division 212, and the first spring 24 is released
Exoergic amount and drive ejector pin 23 to be stretched out from the first half portion 12, the result of stretching is extruding jack housing, and jack housing is to ejector pin
23 produce reaction forces and inserted sheet 11 are extracted from socket.
Embodiment two, with the difference of embodiment one:
Referring to Fig. 4, ejector pin controlling organization 21 only has one.Now second spring one end abuts together, separately with button 211
One end abuts together with the projection 2211 on holding part 221.
Embodiment three, the difference with embodiment one are:
Referring to Fig. 5, the buttons 211 of two ejector pin controlling organizations 21 perpendicular to the direction that the first spring 24 stretches to splice
Together.It is to be spliced together along the direction of the first telescopic spring in embodiment one.Certain the present embodiment can also be as implementing
As example two, ejector pin controlling organization is only with one.
Example IV, the difference with embodiment three are:
Referring to Fig. 6, button 211, Access Division 212 and the dop 213 of same ejector pin controlling organization 21 are located at ejector pin 23
The same side.The specific design mode of Access Division 212 is to be set on ejector pin 23 and avoid ring 232, avoid the side side wall of ring 232
Form Access Division 212.Dop 213 is located in avoid in ring 232 and coordinated with Access Division during assembling.
Embodiment five, the difference with various embodiments above are:
Referring to Fig. 7, although only setting an ejector pin controlling organization 21, ejector pin controlling organization 21 also includes barb 217
The clasp joint portion 216 coordinated with same barb.Clasp joint portion 216 is arranged on ejector pin 23.Dop 213 and barb 217 are distributed in ejector pin 23
Both sides.Barb 217 is be hinged on casing 22 and by button driving and swing by hinge 218.
Dop and button are located at the same side, barb and the button of ejector pin and are located at the both sides of ejector pin in the present embodiment, certainly
It can be designed as dop and button be located at both sides, barb and the button of ejector pin and be located at the same side of ejector pin.
Claims (8)
1. a kind of modular plug separating mechanism, including sleeve pipe, the ejector pin being located in sleeve pipe, ejector pin controlling organization and driving
Ejector pin stretches out the first spring of plug body from side where inserted sheet, and the ejector pin controlling organization includes being arranged at the clamping of ejector pin
Portion, coordinate the dop for making ejector pin be maintained at contraction state, the driving second spring that snaps on Access Division of dop and drive with Access Division
Dynamic dop with shackle portion from button, it is characterised in that described sleeve pipe is provided with holding part, and the holding part is connected with inner cap,
Slide opening is formed between the inner cap and holding part, the button is slidably connected in the slide opening, and the ejector pin is suspended on described
In sleeve pipe, between the ejector pin and inner cap, the Access Division, dop and second spring are all located at covering first spring
In the space that pipe, holding part and inner cap are surrounded.
2. modular plug separating mechanism according to claim 1, it is characterised in that be covered with described and be located in institute
The first spring is stated away from the spacer pin in ejector pin one end.
3. modular plug separating mechanism according to claim 1 or 2, it is characterised in that the dop and button point
Radially opposite sides of the cloth in the ejector pin.
4. modular plug separating mechanism according to claim 1 or 2, it is characterised in that the ejector pin controlling organization
Also include barb and the clasp joint portion being arranged on ejector pin coordinated with barb, the dop and barb distribution in the both sides of ejector pin,
Barb is hinged on the plug body or sleeve pipe and driven by the button to swing.
5. modular plug separating mechanism according to claim 1 or 2, it is characterised in that dop is fixed on button
And the dop does translational motion during pressing button.
6. modular plug separating mechanism according to claim 1 or 2, it is characterised in that the ejector pin controlling organization
There are two, the button of two ejector pin controlling organizations is distributed in the both sides of the ejector pin, and described two ejector pin controlling organizations are total to
Use second spring.
7. modular plug separating mechanism according to claim 6, it is characterised in that described two ejector pin controlling organizations
In an ejector pin controlling organization button the inner be provided with since inner end face along button pressing direction extension chute,
The inner of the button of another ejector pin controlling organization is slidably connected in the chute, and the second spring is located in the chute
And extend along the bearing of trend of chute, the both ends of the second spring are distributed the button connects with described two ejector pin controlling organizations
Together.
8. modular plug separating mechanism according to claim 1 or 2, it is characterised in that the inner of the ejector pin is set
There is the spring mounting hole extended along ejector pin bearing of trend, first spring is located in the spring mounting hole.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201720224849.6U CN206673222U (en) | 2017-03-09 | 2017-03-09 | Modular plug separating mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201720224849.6U CN206673222U (en) | 2017-03-09 | 2017-03-09 | Modular plug separating mechanism |
Publications (1)
Publication Number | Publication Date |
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CN206673222U true CN206673222U (en) | 2017-11-24 |
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ID=60377069
Family Applications (1)
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CN201720224849.6U Active CN206673222U (en) | 2017-03-09 | 2017-03-09 | Modular plug separating mechanism |
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CN (1) | CN206673222U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2018161909A1 (en) * | 2017-03-09 | 2018-09-13 | 宁波鸥创电器科技有限公司 | Pop-up plug provided with modularized plug separation mechanism |
-
2017
- 2017-03-09 CN CN201720224849.6U patent/CN206673222U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2018161909A1 (en) * | 2017-03-09 | 2018-09-13 | 宁波鸥创电器科技有限公司 | Pop-up plug provided with modularized plug separation mechanism |
US10826239B1 (en) | 2017-03-09 | 2020-11-03 | Ningbo Ouchuang Electric Appliance Technology Co., Ltd | Pop-up plug having a modularized plug separation mechanism |
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