CN210517187U - Socket - Google Patents

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Publication number
CN210517187U
CN210517187U CN201921615143.8U CN201921615143U CN210517187U CN 210517187 U CN210517187 U CN 210517187U CN 201921615143 U CN201921615143 U CN 201921615143U CN 210517187 U CN210517187 U CN 210517187U
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China
Prior art keywords
socket
electrode
state
protective cover
plug
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CN201921615143.8U
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Chinese (zh)
Inventor
邢伟华
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Zhongwuhe Group Co ltd
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Zhongwuhe Group Co ltd
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Priority to CN201921615143.8U priority Critical patent/CN210517187U/en
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Abstract

The utility model discloses a socket, include: the socket comprises a socket shell, wherein a hole used for being matched with a plug is formed in the socket shell; an electrode disposed within a socket housing, the electrode for connection with a power source, the electrode being movable relative to the socket housing to achieve a first state and a second state, the electrode being separable from the plug in the first state and contactable with the plug in the second state to enable the plug to be electrically connected with the power source; the protective cover, the activity sets up on the socket casing and with the electrode is connected, the utility model discloses a socket, it has improved the stability and the reliability of charging.

Description

Socket
Technical Field
The utility model relates to the technical field of electrical apparatus, especially, relate to a socket charges.
Background
In the fields of electric power electricity selling sockets, electric vehicle charging sockets and electric vehicle charging piles, the electric vehicle and the electric vehicle are charged slowly, the charging time is long, and a plug is inserted into the socket and is difficult to watch, so that the electric power socket paying the charging expense is used maliciously by other people, is pulled out maliciously, is in accidental poor contact and the like, and the charging reliability is reduced.
SUMMERY OF THE UTILITY MODEL
The utility model provides a socket, its stability and reliability that improve to charge.
In order to solve the above technical problem, the utility model discloses a socket, include: the socket comprises a socket shell, wherein a hole used for being matched with a plug is formed in the socket shell; an electrode disposed within a socket housing, the electrode for connection with a power source, the electrode being movable relative to the socket housing to achieve a first state and a second state, the electrode being separable from the plug in the first state and contactable with the plug in the second state to enable the plug to be electrically connected with the power source; the protective cover is movably arranged on the socket shell and can be connected with the electrode, the protective cover can move relative to the socket shell to reach a first position and a second position and drive the electrode to move relative to the socket shell to reach a first state and a second state, the protective cover can expose the socket and the plug and enable the electrode to reach the first state in the state of the first position, and the protective cover can close the socket and the plug and enable the electrode to reach the second state in the state of the second position; and the locking component is arranged on the socket shell and can be used for connecting the protective cover with the protective cover in the second position so as to lock and position the protective cover and the socket shell.
Preferably, as above-mentioned technical scheme, the socket further includes a linkage component, the linkage component pass through the guide rail with socket casing sliding connection, the guide rail sets up along the first direction, the first end of linkage component can with the protective cover cooperation is connected, the second end of linkage component can with the electrode is connected, the protective cover can for the socket casing moves in order to drive the linkage component along the guide rail slides, thereby drives the electrode for the socket casing moves in order to reach first state and second state.
Preferably, in the above aspect, the socket further includes an elastic member disposed along the first direction and connected between the linkage member and the socket housing, and the elastic member is configured to apply an elastic force to the linkage member so that the linkage member can slide along the guide rail to an initial position and the electrode reaches the first state.
Preferably, the guide rail includes a support frame and a mounting hole, the support frame is disposed in the socket housing, the mounting hole is disposed on the support frame, and the linkage component is disposed in the mounting hole in a penetrating manner and in sliding fit with the mounting hole.
As above-mentioned technical scheme's preferred, the elastic component is the spring, the linkage part includes first member and second member, the first end of first member can with the protective cover cooperation is connected, the second end of first member with the first end of second member is connected, the second end of second member can with the electrode is connected, first member and second member form and set for the contained angle so that the linkage part is the L shape, first member wears to establish in the mounting hole and with mounting hole sliding fit, the spring housing is established on the first member, the first end of spring with the support frame contact, the second end of spring with the contact of second member.
Preferably, the electrode includes a clamping electrode, the clamping electrode includes two elastic clamping arms, first ends of the two elastic clamping arms are connected, and the two elastic clamping arms form a set angle so as to be separated from the plug, so that the electrode reaches the first state; the second end of linkage part has seted up the guiding hole, two the elasticity arm lock wears to establish in the guiding hole, the linkage part can follow the guide rail slides so that the inner wall of guiding hole contacts and relative slip with two the elasticity arm lock to the drive is two the second end of elasticity arm lock is close to relatively in order to be able to the centre gripping the plug, makes the electrode reaches the second state.
Preferably, in the above-described aspect, the chucking electrode is a wire electrode.
Preferably, the protective cover is rotatably connected to the socket housing through a rotating shaft, the rotating shaft is disposed along a second direction, the first direction is perpendicular to the second direction, and the protective cover can rotate relative to the socket housing around the rotating shaft to reach the first position and the second position; the first end of linkage part is provided with first couple, be provided with the second couple on the protective cover, first couple with the second couple cooperation is connected.
Preferably as above-mentioned technical scheme, locking part includes drive arrangement and retaining member, retaining member and drive arrangement are connected, the electrode with drive arrangement electricity is connected, drive arrangement is used for the drive under the electrode powered state the retaining member with the protective cover is connected so that protective cover and socket casing locking location.
As above-mentioned technical scheme's preferred, the locking end has on the protective cover, the locking is served and is provided with the locking mouth, the retaining member is the spring bolt, be provided with the jack on the socket casing, the locking end can the protective cover is located stretch into the jack under the state of second position, drive arrangement is used for drive under the electrode on state the spring bolt stretches into the locking mouth, so that protective cover and socket casing locking location, and be used for drive under the electrode off state the spring bolt stretches out the locking mouth, so that protective cover and socket casing release the location.
The utility model provides a socket, it is provided with the protective cover on socket shell, and the protective cover activity sets up and can move between the primary importance and the second place on socket shell, when the protective cover is in the primary importance, the plug can be extracted from the socket, and when the protective cover is in the second place, plug and socket are in the confined space, operating personnel can't touch the plug, and socket shell is still provided with locking means, locking means can be with the protective cover locking position in the second place, therefore plug and socket can be locked in the confined space, in addition, socket shell's inside is provided with the electrode, the electrode can be connected with the protective cover, and the protective cover moves the second place from the primary importance and can drive the electrode from the state of separating with the plug to the state of contacting with the plug, the plug can pass through electrode connection charging circuit, therefore, the plug can be effectively prevented from being maliciously pulled out in the charging process, and the plug can be connected with the charging circuit only when the protective cover is in the locking state, so that accidental contact can be prevented, and the charging stability and reliability under the unattended condition are improved.
The above description is only an overview of the technical solutions of the present invention, and in order to make the technical means of the present invention more clearly understood, the present invention may be implemented according to the content of the description, and in order to make the above and other objects, features, and advantages of the present invention more obvious and understandable, the following detailed description of the present invention is given.
Drawings
Fig. 1 is a schematic structural diagram of a plug according to an embodiment of the present invention in a state that a protection cover is in a first position;
fig. 2 is a schematic structural diagram of a plug according to an embodiment of the present invention in a state that a protective cover is in a second position.
Description of reference numerals: 101. a socket housing; 102. a support frame; 103. a first hook; 104. a second hook; 105. a protective cover; 106. a locking end; 107. a locking port; 108. a plug; 109. a metal sheet; 110. a jack; 111. a drive device; 112. a locking member; 113. a ground-mounted receptacle pipe; 114. a zero line electrode; 115. clamping the electrode; 116. a linkage member; 117. an elastic member; 118. a socket; 119. a guide hole; 120. a locking member; 121. an elastic clamping arm; 122. a rotating shaft; 123. a rain-proof boss; 200. an electrode; 300. a guide rail; 400. and (7) installing holes.
Detailed Description
To make the objects, features and advantages of the present invention more obvious and understandable, the embodiments of the present invention are described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by the skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1 and 2, the present invention provides a socket, including:
a socket shell 101, wherein a socket 118 used for being matched with the plug 108 is arranged on the socket shell 101;
an electrode 200 disposed within the socket housing 101, the electrode 200 for connection with a power source, the electrode 200 being movable relative to the socket housing 101 to achieve a first state and a second state, the electrode 200 being separable from the plug 108 in the first state and contactable with the plug 108 in the second state to enable the plug 108 to be electrically connected with the power source;
the protective cover 105 is movably arranged on the socket shell 101 and can be connected with the electrode, the protective cover 105 can move relative to the socket shell 101 to reach a first position and a second position and drive the electrode to move relative to the socket shell 101 to reach a first state and a second state, the protective cover 105 can expose the socket 118 and the plug 108 in the state of the first position and enable the electrode to reach the first state, and the protective cover 105 can close the socket 118 and the plug 108 in the state of the second position and enable the electrode to reach the second state;
and a locking part 120 disposed on the socket housing 101, wherein the locking part 120 can be connected with the protective cover 105 in a state that the protective cover 105 is at the second position to lock and position the protective cover 105 and the socket housing 101.
In the embodiment, the protective cover 105 is arranged on the socket housing 101, the protective cover 105 is movably arranged on the socket housing 101 and can move between a first position and a second position, when the protective cover 105 is at the first position, the plug 108 can be pulled out from the socket 118, and when the protective cover 105 is at the second position, the plug 108 and the socket 118 are in a closed space, the plug 108 can not be accessed by an operator, the socket housing 101 is also provided with the locking part 120, the locking part 120 can lock the protective cover 105 at the second position, so that the plug 108 and the socket 118 can be locked in the closed space, in addition, the socket housing 101 is internally provided with the electrode, the electrode 200 can be connected with the protective cover 105, and the protective cover 105 can drive the electrode to be in a state of being separated from the plug 108 to be in a state of being in contact with the plug 108 when moving from the first position to the second position, the plug 108 can be connected with the charging circuit through the electrode, so that the plug 108 can be effectively prevented from being maliciously pulled out in the charging process, and the plug 108 can be connected with the charging circuit only when the protective cover 105 is in a locked state, so that accidental contact can be prevented, and the charging stability and reliability under the unattended condition are improved.
Specifically, the plug 108 is provided with a metal sheet 109, an electrode arranged inside the socket housing 101 is in contact with the metal sheet 109 to realize electrical connection, and in addition, the electrode may be a positive electrode or a negative electrode, of course, if a daily household power supply is adopted, the electrode includes a live electrode and a neutral electrode, the live electrode is connected with a live wire of the power supply, and the neutral electrode is connected with a neutral wire of the power supply.
In this embodiment, the protecting cover 105 is in the first position, that is, the protecting cover 105 is in the open state, in which the plug 108 can be pulled out by an operator, and the protecting cover 105 is in the second position, that is, the protecting cover is in the closed state, the plug 108 and the socket 118 are both in the closed space, and the plug 108 cannot be pulled out of the socket 118, and in addition, the locking component 120 in this embodiment may be a locking mechanism with any structure.
In a further implementation manner, the socket further includes a linkage component 116, the linkage component 116 is slidably connected to the socket housing 101 through a guide rail 300, the guide rail 300 is disposed along a first direction, a first end of the linkage component 116 can be cooperatively connected to the protective cover 105, a second end of the linkage component 116 can be connected to the electrode, the protective cover 105 can move relative to the socket housing 101 to drive the linkage component 116 to slide along the guide rail, so as to drive the electrode 200 to move relative to the socket housing 101 to achieve the first state and the second state.
When the protective cover 105 moves relative to the socket housing 101, the protective cover can drive the linkage component 116 to slide along the guide rail, so as to drive the electrode to move relative to the socket housing 101. The protective cover 105 can be directly connected with the linkage component 116 or can be connected with the linkage component 116 in other ways, the linkage component 116 in the embodiment mainly plays a role in transmission, and can transmit the motion process of the protective cover 105 to the electrode positioned in the socket shell 101, so that the electrode can be moved from the first state to the second state, in addition, the linkage component 116 in the embodiment is arranged in the socket shell 101, the linkage component 116 is arranged in the socket shell 101, so that the space can be saved, the overall structure of the socket is more reasonable and compact, and of course, the linkage component 116 can be in any shape.
In a further embodiment, the socket further includes an elastic member 117, the elastic member 117 is disposed along the first direction and connected between the linkage member 116 and the socket housing 101, and the elastic member 117 is configured to apply an elastic force to the linkage member 116, so that the linkage member 116 can slide along the guide rail to the initial position and drive the protective cover 105 to the first position, so that the electrode reaches the first state.
The elastic member 117 in this embodiment mainly plays a role of resetting, an elastic force is provided between the elastic member 117 and the linking member 116, the linking member 116 is driven to move correspondingly in the process of moving the protecting cover 105 so that the electrode contacts the metal sheet 109 of the plug 108, the protecting cover 105 needs to be opened after charging is completed, at this time, the connection between the locking member 120 and the protecting cover 105 can be released, so as to release the locking and positioning of the protecting cover 105 and the socket housing 101, at this time, the elastic member 117 enables the linking member 116 to return to the initial position through the elastic force acting on the linking member 116, the linking member 116 drives the protecting cover 105 connected thereto to return to the first position in the process of returning to the initial position, and accordingly, the linking member 116 can drive the electrode to return, so that the electrode and the metal sheet 109 are separated and return to a non-contact state. Therefore, the protective cover 105 can be automatically moved to the first position, the electrode can automatically reach the first state, and the operation is simple and convenient. In addition, the elastic member 117 in the present embodiment is provided inside the socket housing 101.
In a further embodiment, the guide rail includes a support frame 102 and a mounting hole 400, the support frame 102 is disposed in the socket housing 101, the mounting hole 400 is opened on the support frame 102, and the linkage member 116 is inserted into the mounting hole 400 and slidably engaged with the mounting hole.
The guide rail in this embodiment is simpler in structure and can save energy space, specifically, the support frame 102 in this embodiment is connected to the inner wall of the socket housing 101, is in a thin plate shape and perpendicular to the inside of the socket housing 101, the mounting hole is a through hole provided on the thin plate, and the size of the mounting hole is in sliding fit with the cross-sectional size of the linkage member 116 corresponding to the stroke, and the size of the mounting hole may be slightly larger than the cross-sectional size of the linkage member 116 in clearance fit with the stroke.
In a further embodiment, the elastic member 117 is a spring, the linkage member 116 includes a first rod and a second rod, a first end of the first rod can be connected to the protective cover in a fitting manner, a second end of the first rod is connected to a first end of the second rod, a second end of the second rod can be connected to the electrode, the first rod and the second rod set an included angle so that the linkage member is L-shaped, the first rod is inserted into the mounting hole and slidably fitted to the mounting hole, the spring is sleeved on the first rod, a first end of the spring contacts the support frame 102, and a second end of the spring contacts the second rod.
Elastic component 117 in this embodiment is the spring, this spring can directly overlap and establish on first member, can save installation space, in addition, linkage part 116 in this embodiment is L shape, this linkage part 116 includes first member and second member, first member forms sliding fit with the mounting hole, and the second member then is connected with the electrode, the linkage part 116 of L shape makes its span bigger, can connect protective cover 105 and electrode better, do benefit to better utilization socket shell inner space, and the second member can form the support to the spring, need not to set up other spacing parts, do benefit to the simplification of structure. In addition, the cross sections of the first rod piece and the second rod piece can be in any shapes, and the cross sections of the first rod piece and the second rod piece can be the same or different.
In a further embodiment, the electrode comprises a clamping electrode 115, the clamping electrode 115 comprises two elastic clamping arms 121, first ends of the two elastic clamping arms 121 are connected, and the two elastic clamping arms form a set angle to be separated from the plug 108, so that the electrode reaches the first state.
The second end of the linkage component 116 is provided with a guide hole 119, the two elastic clamping arms 121 penetrate through the guide hole 119, and the linkage component 116 can slide along the guide rail to enable the inner wall of the guide hole 119 to contact with the two elastic clamping arms 121 and slide relatively, so that the second ends of the two elastic clamping arms 121 are driven to approach relatively to clamp the plug 108, and the electrode is enabled to reach a second state.
In this embodiment, the clamping electrode 115 has two elastic clamping arms 121, the linkage component 116 is provided with a guide hole 119, the two elastic clamping arms 121 are inserted into the guide hole 119, the two elastic clamping arms 121 can be driven to approach each other to clamp the metal sheet 109 on the plug 108 to realize electrical connection in the moving process of the linkage component 116, the metal sheet 109 can be clamped by the clamping manner of the two elastic clamping arms 121 to make contact more tight, and the situation of poor contact during electrical connection is prevented, specifically, the elastic clamping arms 121 in this embodiment are conductors, the first ends of the two elastic clamping arms 121 are connected to each other and to a power line, an included angle is formed between the two elastic clamping arms 121, the parts of the two elastic clamping arms 121 located in the guide hole 119 are in a V shape and are in elastic contact with the inner wall of the guide hole 119, and the parts of the two elastic clamping arms 121 close to the second ends are, the elastic clamping arms can better match with the metal sheet 109 on the plug 108, and the parts of the two elastic clamping arms 121 positioned in the guide holes 119 are in a V shape, so that in the moving process of the linkage part 116, the inner wall of the guide holes 119 acts on the V-shaped parts of the two elastic clamping arms 121, and the two elastic clamping arms are close to each other to clamp the metal sheet 109 on the plug 108.
In a further embodiment, the clamping electrode 115 is a live electrode, specifically, the charging power source in this embodiment is a household power source, the electrodes of which are divided into a live electrode and a neutral electrode, the clamping electrode 115 interconnected with the linkage member 116 in this embodiment is a live electrode, and the neutral electrode is disposed inside the socket housing 101 and is fixed.
In a further embodiment, the protective cover 105 is rotatably connected to the socket housing 101 via a rotation shaft 122, the rotation shaft 122 is disposed along the second direction, and the protective cover 105 can rotate relative to the socket housing 101 with the rotation shaft 122 as a center to reach the first position and the second position.
The first end of linkage part 116 is provided with first couple 103, is provided with second couple 104 on the protective cover 105, first couple 103 with second couple 104 cooperation is connected.
The linkage part 116 and the protective cover 105 in this embodiment are connected in a hook type connection, so that the connection is simpler and more convenient.
In a further embodiment, the locking member 120 comprises an actuating device 111 and a locking member 112, the locking member 112 is connected to the actuating device 111, the electrode is electrically connected to the actuating device 111, and the actuating device 111 is configured to actuate the locking member 112 to connect to the protective cover 105 in a power-on state of the electrode to lock the protective cover 105 and the socket housing 101 in place.
Since the driving device 111 is connected with the electrode, the protective cover 105 can be locked on the socket shell 101 only in the power-on state, so that the electrode can be powered on only when the socket 108 is inserted into the socket 118, especially in the process of charging for paying, the electrode can be powered on only after paying, and the protective cover 105 can be locked when the plug is inserted into the socket and the protective cover 105 is located at the second position, thereby preventing misoperation in the charging process and ensuring that the socket is more stable and reliable in the using process.
In a further embodiment, the protective cover 105 has a locking end 106, the locking end 106 is provided with a locking port 107, the locking member 112 is a locking tongue, the socket housing 101 is provided with an insertion hole 110, the locking end 106 can extend into the insertion hole 110 in a state where the protective cover 105 is located at the second position, and the driving device 111 is configured to drive the locking tongue to extend into the locking port 105 in a power-on state of the electrode, so that the protective cover 105 and the socket housing 101 are locked and positioned, and drive the locking tongue to extend out of the locking port 107 in a power-off state of the electrode, so that the protective cover 105 and the socket housing 101 are unlocked.
The cooperation of the latch tongue and the latch opening 107 is advantageous to improve the reliability of the positioning of the protective cover 105 and the socket housing 101. Because the lock tongue stretches into locking mouth 105 under the on state so that protective cover 105 and socket casing 101 realize the locking location, and under being in the outage state, the lock tongue stretches out locking mouth 105 so that protective cover 105 and socket casing 101's locking state is relieved, protective cover 105 can open, it inserts in the socket at the plug, and under the circumstances that the electrode is electrified, protective cover 105 can only be locked, and only end charging, under the circumstances of electrode outage, the protective cover just can be relieved and locked, it not only can prevent the maloperation of protective cover locking in-process, it can also prevent to touch by mistake or other circumstances in the charging process and lead to the short circuit, the security performance of socket has effectively been promoted.
In addition, specifically, the driving device 111 in this embodiment is an electromagnetic actuator, which has magnetism in the power-on state and drives the latch to extend through the magnetic force, and in the power-off state, the latch can retract and return to the original state through the driving action of the elastic resetting device when the magnetic force disappears.
In this embodiment, the socket housing 101 is provided with a ground socket tube 113, the ground socket tube 113 is communicated with an internal space of the socket housing 101, and the power line is connected to the inside of the socket housing 101 through the ground socket tube 113, the ground socket tube 113 facilitates the installation of the socket housing 101 and can protect the power line, in addition, the socket housing 101 in this embodiment is further provided with a rain-proof boss 123, specifically, the rain-proof boss 123 is disposed above the protective cover 105, the rain-proof boss 123 mainly prevents rainwater from dropping onto the plug 108 to cause short circuit in the charging process, and can shield rainwater.
The working state of this embodiment is shown in fig. 1 and fig. 2, as shown in fig. 1, in the non-charging state, as shown in fig. 1, the protective cover 105 is in the first position, i.e. it is in the open state, the plug 108 can be inserted into the socket 118, the plug 108 is inserted into the socket 118, the metal sheet 109 on the plug 108 is located between the two elastic clipping arms 121, the protective cover 105 is rotated to the second position, i.e. the position shown in fig. 2, the protective cover 105 is in the closed state, during the rotation, the protective cover 105 drives the linking member 116 to move to the right side, the linking member 116 moves to the right side to drive the two elastic clipping arms 121 to approach each other, when the protective cover 105 is in the position shown in fig. 2, the two elastic clipping arms 121 clip the metal sheet 109 inserted into the socket housing 101 to be clipped to contact with each other, and the elastic clipping arms 121 and the metal sheet 109 are electrically connected, when the plug 108 is inserted into the socket 118, the other metal piece 109 on the plug 108 contacts and electrically connects with the neutral electrode 114, when the protective cover 105 is in the state shown in fig. 2, the plug 108 completes the connection with the internal electrode, the whole circuit can be conducted and the charging can be realized after the electrode is powered, and in addition, because the locking part 120 is connected with the electrode, the locking part 120 can work to lock the protective cover 105 on the socket housing 101 only after the circuit is connected.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, various embodiments or examples and features of different embodiments or examples described in this specification can be combined and combined by one skilled in the art without contradiction.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, "a plurality" means two or more unless specifically limited otherwise.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art can easily think of the changes or substitutions within the technical scope of the present invention, and all should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (10)

1. A socket, comprising:
the socket comprises a socket shell, wherein a socket matched with a plug is arranged on the socket shell;
an electrode disposed within a socket housing, the electrode for connection with a power source, the electrode being movable relative to the socket housing to achieve a first state and a second state, the electrode being separable from the plug in the first state and contactable with the plug in the second state to enable the plug to be electrically connected with the power source;
the protective cover is movably arranged on the socket shell and can be connected with the electrode, the protective cover can move relative to the socket shell to reach a first position and a second position and drive the electrode to move relative to the socket shell to reach a first state and a second state, the protective cover can expose the socket and the plug and enable the electrode to reach the first state in the state of the first position, and the protective cover can close the socket and the plug and enable the electrode to reach the second state in the state of the second position;
and the locking component is arranged on the socket shell and can be used for connecting the protective cover with the protective cover in the second position so as to lock and position the protective cover and the socket shell.
2. The socket of claim 1, further comprising a linkage member slidably coupled to the socket housing via a guide rail, the guide rail being disposed along a first direction, a first end of the linkage member being cooperatively coupled to the cover, a second end of the linkage member being connectable to the electrode, the cover being movable relative to the socket housing to slide the linkage member along the guide rail, thereby moving the electrode relative to the socket housing to achieve the first state and the second state.
3. The socket of claim 2, further comprising a resilient member disposed along the first direction and connected between the linkage member and the socket housing, wherein the resilient member is configured to apply a resilient force to the linkage member so that the linkage member can slide along the guide rail to an initial position and drive the protecting cover to the first position, so that the electrode reaches the first state.
4. The socket of claim 3, wherein the guide rail comprises a support frame and a mounting hole, the support frame is disposed in the socket housing, the mounting hole is formed in the support frame, and the linkage member is inserted into the mounting hole and slidably engaged with the mounting hole.
5. The socket of claim 4, wherein the elastic member is a spring, the linkage member includes a first rod and a second rod, a first end of the first rod is connected to the protective cover in a fitting manner, a second end of the first rod is connected to a first end of the second rod, a second end of the second rod is connected to the electrode, the first rod and the second rod form a predetermined included angle, so that the linkage member is L-shaped, the first rod is inserted into the mounting hole and slidably fitted to the mounting hole, the spring is sleeved on the first rod, a first end of the spring is in contact with the supporting frame, and a second end of the spring is in contact with the second rod.
6. The socket of claim 2, wherein the electrode comprises a clamping electrode, the clamping electrode comprising two resilient clip arms, first ends of the two resilient clip arms being connected, the two resilient clip arms being angled to be separable from the plug to bring the electrode to the first state;
the second end of linkage part has seted up the guiding hole, two the elasticity arm lock wears to establish in the guiding hole, the linkage part can follow the guide rail slides so that the inner wall of guiding hole contacts and relative slip with two the elasticity arm lock to the drive is two the second end of elasticity arm lock is close to relatively in order to be able to the centre gripping the plug, makes the electrode reaches the second state.
7. The socket of claim 6 wherein said clamping electrode is a fire wire electrode.
8. The receptacle of claim 2, wherein:
the protective cover is rotatably connected with the socket shell through a rotating shaft, the rotating shaft is arranged along a second direction, the first direction is vertical to the second direction, and the protective cover can rotate relative to the socket shell by taking the rotating shaft as a center so as to reach a first position and a second position;
the first end of linkage part is provided with first couple, be provided with the second couple on the protective cover, first couple with the second couple cooperation is connected.
9. The socket according to any one of claims 1 to 8, wherein the locking member comprises an actuating device and a locking member, the locking member is connected to the actuating device, the electrode is electrically connected to the actuating device, and the actuating device is configured to actuate the locking member to connect to the protecting cover when the electrode is in the power-on state, so as to lock and position the protecting cover and the socket housing.
10. The socket of claim 9, wherein the protection cover has a locking end, the locking end has a locking opening, the locking member is a locking tongue, the socket housing has an insertion hole, the locking end can extend into the insertion hole when the protection cover is located at the second position, and the driving device is configured to drive the locking tongue to extend into the locking opening in the power-on state of the electrode, so as to lock and position the protection cover and the socket housing, and to drive the locking tongue to extend out of the locking opening in the power-off state of the electrode, so as to unlock and position the protection cover and the socket housing.
CN201921615143.8U 2019-09-26 2019-09-26 Socket Active CN210517187U (en)

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Application Number Priority Date Filing Date Title
CN201921615143.8U CN210517187U (en) 2019-09-26 2019-09-26 Socket

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Application Number Priority Date Filing Date Title
CN201921615143.8U CN210517187U (en) 2019-09-26 2019-09-26 Socket

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CN210517187U true CN210517187U (en) 2020-05-12

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111952773A (en) * 2020-08-25 2020-11-17 宁波变雪电子科技有限公司 One-key starting and stopping device for triangular jack on wall
CN112531412A (en) * 2020-12-02 2021-03-19 南京邦得电子科技有限公司 Automobile wire harness connector and machining process thereof

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111952773A (en) * 2020-08-25 2020-11-17 宁波变雪电子科技有限公司 One-key starting and stopping device for triangular jack on wall
CN111952773B (en) * 2020-08-25 2021-05-07 张亦军 One-key starting and stopping device for triangular jack on wall
CN112531412A (en) * 2020-12-02 2021-03-19 南京邦得电子科技有限公司 Automobile wire harness connector and machining process thereof
CN112531412B (en) * 2020-12-02 2024-05-10 南京邦得电子科技有限公司 Automobile wire harness connector and processing technology thereof

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