Movably adjustable power socket

By designing a movable-adjusting power socket, using the movable connection components and the torsion spring structure of the buckle plate, the problems of dust accumulation and single function of the traditional power socket during outdoor use are solved, and the flexible adjustment and stable use of the internal socket are achieved.

CN223245954UActive Publication Date: 2025-08-19DONGGUAN AIDUO LIGHTING CO LTD
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Patent Information

Application Number
CN202421563162.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-03
Publication Date
2025-08-19
Estimated Expiration
2034-07-03

AI Technical Summary

Technical Problem

Traditional power sockets are fixed structures, which are prone to dust accumulation during outdoor use, affect performance and have a single function, and cannot flexibly meet the usage needs of different scenarios.

Method used

Design a movable-adjusted power socket, which can realize storage, concealment, opening and pop-up of the inner socket body through the movable connection component. The combination of the buckle plate and torsion spring can achieve reliable adjustment and positioning between the inner socket and the outer shell, thereby enhancing adaptability and convenience.

Benefits of technology

It realizes flexible adjustment of the internal socket, improves the adaptability and convenience of the power socket, ensures the stability of the socket and dust-proof and waterproof function, and meets the needs of different usage scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a power socket capable of being movably adjusted. The power socket comprises an outer shell, an inner socket body and a movable connecting assembly, the movable connecting assembly comprises a first positioning plate, a second positioning plate, a shifting buckle piece, a first torsional spring and a second torsional spring, the first positioning plate is provided with a first rotating shaft, a first limiting piece and a positioning rod, the second positioning plate is rotationally connected to the first rotating shaft, and the second positioning plate is provided with a second limiting piece, a second rotating shaft and a third limiting piece; the first torsional spring abuts against the first limiting piece and the second limiting piece. The shifting and buckling piece is rotationally connected to the second rotating shaft, the other end of the shifting and buckling piece is provided with a buckling guide face, the shifting and buckling piece is provided with a fourth limiting piece, the second torsional spring abuts against the third limiting piece and the fourth limiting piece, the shifting and buckling piece is provided with a lock catch channel and a sliding-out channel, and the end, close to the sliding-out channel, of the lock catch channel is provided with a hooking and stopping piece. According to the utility model, the inner socket body can be accommodated and hidden or can be opened and popped out of the outer shell, and flexible adjustment can be carried out according to different use scenes or spatial layouts.
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Description

Technical Field

[0001] The utility model relates to the field of electrical connection equipment, in particular to a movable adjustable power socket. Background Art

[0002] With the popularization of electronic devices, power sockets have become an indispensable electrical accessory in daily life. A power socket refers to a seat into which one or more circuit wiring can be inserted. Various wiring can be inserted through it to achieve connection with other circuits.

[0003] Traditional power sockets are usually designed as fixed structures, with all socket heads fixed in the shell base, which is embedded in corresponding desktops, walls, etc. For special usage scenarios such as outdoor use, the power sockets are idle for a long time. The socket heads exposed to the external environment for a long time are prone to dust accumulation. Dust entering the socket head from the jack will also affect the performance of the power socket and even cause safety problems. The existing power sockets have a single functional structure and cannot flexibly meet the usage needs of different scenarios. Utility Model Content

[0004] The present invention aims to solve at least one of the technical problems in the prior art. To this end, the present invention provides a movable power socket, which can adjust the inner socket body to be hidden or opened and popped out of the outer socket body, with flexible adjustment and wide applicability.

[0005] According to an embodiment of the present invention, a movable power socket includes an outer shell, an inner socket body, and a movable connection assembly. The inner socket body is disposed within the outer shell. The movable connection assembly connects the outer shell and the inner socket body, respectively. The top surface of the outer shell is provided with a movable clearance hole for making way for the inner socket body.

[0006] The movable connection assembly includes a first positioning plate, a second positioning plate, a trigger plate, a first torsion spring, and a second torsion spring. The first positioning plate is connected to the inner side of the outer shell, and the second positioning plate is connected to the outer side of the inner socket body. A first rotating shaft, a first limiting member, and a positioning rod are provided on the side of the first positioning plate close to the second positioning plate. The second positioning plate is rotatably connected to the first rotating shaft. The first torsion spring is sleeved outside the first rotating shaft. A second limiting member, a second rotating shaft, and a third limiting member are provided on the side of the second positioning plate close to the first positioning plate. Two ends of the first torsion spring are respectively abutted against the first limiting member and the second limiting member, so that the inner socket body forms a movement tendency to rotate along the first rotation direction.

[0007] One end of the toggle plate is rotatably connected to the second rotating shaft, and the other end of the toggle plate is provided with a buckling guide surface, and the toggle plate is provided with a fourth limit piece, and the second torsion spring is sleeved outside the second rotating shaft, and the two ends of the second torsion spring respectively abut against the third limit piece and the fourth limit piece, so that the toggle plate forms a tendency to rotate along the second rotation direction, and the toggle plate is provided with a lock channel connected to the buckling guide surface at one end, and the toggle plate is also provided with a slide-out channel connected to the other end of the lock channel at one end, the buckling guide surface is used to guide the positioning rod to the lock channel, and the lock channel is provided with a hook stop piece at one end close to the slide-out channel, and the hook stop piece is used to hook the positioning rod along the second rotation direction, and the two ends of the bottom surface of the slide-out channel are respectively connected to the opposite two side surfaces of the toggle plate, and the slide-out channel is used to guide the positioning rod to the outside of the side of the toggle plate away from the inner socket body.

[0008] In this embodiment, the rotation axes of the first rotation direction and the second rotation direction are parallel, and the first rotation direction and the second rotation direction are the same as or opposite to each other.

[0009] In this embodiment, the inner socket body is provided with adjacent protective surfaces and plugging surfaces, and the protective surfaces and the plugging surfaces are sequentially arranged along the first rotation direction.

[0010] In this embodiment, the projection of the third limiting member on the top surface of the outer shell is located outside the movable clearance hole, so as to limit the extreme position of the inner socket body relative to the outer shell.

[0011] In this embodiment, along the first rotation direction, the trigger piece, the second torsion spring and the second rotation shaft are all located behind the third limiting member.

[0012] In this embodiment, two first limiting members are provided, and one end of the first torsion spring is clamped between the two first limiting members. Two third limiting members are provided, and one end of the second torsion spring is clamped between the two third limiting members.

[0013] In this embodiment, two sets of movable connection components are provided, and the two sets of movable connection components are respectively provided on opposite sides of the inner socket body.

[0014] In this embodiment, a guide sleeve is provided on a side of the second positioning plate close to the first positioning plate, the first rotating shaft is rotatably connected to the guide sleeve, and the first torsion spring is sleeved outside the guide sleeve.

[0015] In this embodiment, the movable connection assembly also includes a gear and a rack curved in an arc shape. The center of the rack is set at the axis of the first rotating shaft. The rack is connected to the second positioning plate. The gear is rotatably connected to the first positioning plate, and the gear is meshed with the rack.

[0016] The embodiments of the present invention have at least the following beneficial effects:

[0017] The relative movement between the inner socket body and the outer shell can be achieved through the movable connection component, so that the inner socket body can be stored and hidden or opened and popped out of the outer shell, and can be flexibly adjusted according to different usage scenarios or space layouts. The power socket has strong adaptability and high convenience; the buckle piece cooperates with the second torsion spring to realize the hooking and releasing of the positioning rod, and the hook stopper can hook the positioning rod to position it so that the inner socket body is stored and positioned in the outer shell. When the positioning rod is released, the first torsion spring can drive the inner socket body to rotate until it protrudes from the outer shell, and the movable connection The relative position between the inner socket body and the outer shell can be reliably adjusted and positioned. A continuous locking channel and a sliding channel are provided in the latch plate, which can effectively improve the smoothness and smoothness of the movable adjustment action. The storage and opening adjustment action is stable and reliable. The storage and opening adjustment action can be achieved by pressing the inner socket body, which can improve the convenience of the user in adjusting the position of the inner socket body. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0019] Figure 1 This is a schematic diagram of the three-dimensional structure of the movable adjustable power socket according to an embodiment of the utility model when it is stored and hidden;

[0020] Figure 2 This is a schematic diagram of the three-dimensional structure of the movable adjustable power socket according to an embodiment of the utility model when it is opened and popped out;

[0021] Figure 3 This is a schematic diagram of the internal structure of the movable adjustable power socket according to an embodiment of the utility model when it is stored and hidden;

[0022] Figure 4 This is a schematic diagram of the internal structure of the movable adjustable power socket according to an embodiment of the utility model when it is opened and popped out;

[0023] Figure 5 This is a schematic diagram of the exploded structure of the movable adjustable power socket according to an embodiment of the present utility model;

[0024] Figure 6 This is a schematic diagram of the exploded structure of the movable adjustable power socket according to an embodiment of the present utility model from another perspective;

[0025] Figure 7 This is a structural schematic diagram of a movable adjustable power socket according to an embodiment of the present utility model.

[0026] Reference numerals:

[0027] Outer shell 100, movable clearance hole 110;

[0028] Inner socket body 200, protective surface 210, and plug surface 220;

[0029] The movable connection assembly 300, the first positioning plate 310, the first rotating shaft 311, the first limiting member 312, the positioning rod 313, the second positioning plate 320, the second limiting member 321, the second rotating shaft 322, the third limiting member 323, the guide sleeve 324, the locking piece 330, the locking guide surface 331, the fourth limiting member 332, the locking channel 333, the sliding channel 334, the hook stopper 335, the first torsion spring 340, the second torsion spring 350, the gear 360, and the rack 370. DETAILED DESCRIPTION

[0030] The following describes in detail embodiments of the present invention. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.

[0031] In the description of the present invention, it should be understood that descriptions involving orientation, such as up, down, left, right, front, back, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on the present invention.

[0032] In the description of this utility model, if there is a description of first and second, it is only for the purpose of distinguishing the technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features or implicitly indicating the order of the indicated technical features.

[0033] In the description of the present invention, unless otherwise clearly defined, terms such as setting, installing, and connecting should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above terms in the present invention based on the specific content of the technical solution.

[0034] Power sockets have become an indispensable electrical accessory in daily life. A power socket is a socket into which one or more circuit wires can be inserted, allowing various wires to be connected to other circuits. Traditional power sockets are typically designed as fixed structures, with all socket heads fixed in a shell, which is embedded in a corresponding desktop, wall, or other place for use. In special usage scenarios such as outdoor use, power sockets are idle for long periods of time. Socket heads exposed to the external environment for long periods of time are prone to dust accumulation. Dust entering the socket head through the jack can also affect the performance of the power socket and even cause safety issues. Existing power sockets have a single functional structure and cannot flexibly meet the needs of different usage scenarios.

[0035] Some adjustable or removable power sockets have emerged on the market, but these products often suffer from complex structures, high manufacturing costs, and poor performance. For example, some products utilize sliding or telescopic mechanisms to store the sockets, but these mechanisms are prone to damage after prolonged use, shortening the product's lifespan. Furthermore, these products' switching operations are inconvenient and fail to meet users' needs for quick plugging and unplugging.

[0036] The following is the attached Figure 1 To the attached Figure 7 , describing the movable adjustable power socket of the embodiment of the utility model, which can adjust the inner socket body to be hidden or opened and popped out of the outer shell, has flexible adjustment and a wide range of applicability.

[0037] Reference Figures 1 to 7 The present invention provides an adjustable power socket, comprising an outer shell 100, an inner socket body 200, and a movable connection assembly 300. The inner socket body 200 is disposed within the outer shell 100. The movable connection assembly 300 connects the outer shell 100 and the inner socket body 200, respectively, so that the inner socket body 200 can move relative to the outer shell 100. The top surface of the outer shell 100 is provided with a movable clearance hole 110 for making way for the inner socket body 200.

[0038] The movable connection assembly 300 includes a first positioning plate 310, a second positioning plate 320, a detent plate 330, a first torsion spring 340 and a second torsion spring 350. The first positioning plate 310 is fixedly connected to the inner side of the outer shell 100, and the second positioning plate 320 is fixedly connected to the outer side of the inner socket body 200. The first positioning plate 310 and the second positioning plate 320 are arranged opposite to each other. A first rotating shaft 311, a first limiting member 312 and a positioning rod 313 are provided on the side of the first positioning plate 310 close to the second positioning plate 320. The second positioning plate 320 is rotatably connected to the first rotating shaft 311. The first torsion spring 340 is sleeved. A second stopper 321, a second rotation axis 322, and a third stopper 323 are provided on the side of the second positioning plate 320 adjacent to the first positioning plate 310 and located outside the first rotation axis 311. The two ends of the first torsion spring 340 abut against the first stopper 312 and the second stopper 321, respectively, to cause the inner socket body 200 to rotate along the first rotation direction, protruding from the movable clearance hole 110 and out of the outer shell 100. In other words, the first torsion spring 340 is used to drive the inner socket body 200 to rotate about the first rotation axis 311 and protrude from the movable clearance hole 110 and out of the outer shell 100 along the first rotation direction.

[0039] The first and second locking cams 330 are configured to lock the locking cam 330 in the locking cam 332 and lock the locking cam 330 in the locking cam 332. The first and second locking cams 330 are configured to lock the locking cam 330 in the locking cam 332. The end is connected to the sliding out channel 334 at the other end of the locking channel 333. The engaging guide surface 331 is used to guide the positioning rod 313 to enter the locking channel 333 from one end. The locking channel 333 is provided with a hook stopper 335 at one end close to the sliding out channel 334. The hook stopper 335 is used to hook the positioning rod 313 along the second rotation direction. The bottom surface of the sliding out channel 334 is inclined and the two ends are respectively connected to the opposite side surfaces of the detent piece 330. The bottom surface of the sliding out channel 334 is inclined from one end close to the locking channel 333 to the other end toward the side away from the inner socket body 200. The sliding out channel 334 is used to guide the positioning rod 313 from the other end of the sliding out channel 334 to the outside of the side of the detent piece 330 away from the inner socket body 200.

[0040] The movable adjustable power socket of the embodiment of the utility model mainly includes the following two usage states:

[0041] When storing and hiding, refer to Figure 1 and Figure 3 As shown, the inner socket body 200 is pressed and rotated about the first rotation axis 311 in a direction opposite to the first rotation direction, and the positioning rod 313 enters the locking channel along the locking guide surface 331. After the inner socket body 200 is released, under the elastic force of the second torsion spring 350, the hook stopper 335 hooks the positioning rod 313 about the second rotation axis 322 in the second rotation direction, and the position between the first positioning plate 310 and the second positioning plate 320 is locked. The outer shell 100 and the inner socket body 200 are relatively stationary, and the inner socket body 200 is stored in the outer shell 100. One of the surfaces of the inner socket member is set flush with the opening plane of the movable clearance hole 110.

[0042] When the popup opens, refer to Figure 2 and Figure 4 As shown, the inner socket body 200 is pressed to rotate around the first rotating shaft 311 in the direction opposite to the first rotation direction, and with the elastic force of the second torsion spring 350, the positioning rod 313 disengages from the hook stopper 335 and enters the slide-out channel 334. The positioning rod 313 disengages from the slide-out channel 334 under the guidance of the bottom surface of the slide-out channel 334 and reaches the outside of the buckle piece 330. The position restriction of the first positioning plate 310 is released. The first positioning plate 310 rotates around the first rotating shaft 311 in the first rotation direction under the elastic force of the first torsion spring 340. The inner socket body 200 protrudes from the movable clearance hole 110 to the outside of the outer shell 100, providing a good foundation for plugging and using for power supply.

[0043] The movable connection assembly 300 can realize relative movement between the inner socket body 200 and the outer shell 100, so that the inner socket body 200 can be stored and hidden or opened and popped out of the outer shell 100, and can be flexibly adjusted according to different usage scenarios or space layouts. The power socket has strong adaptability and high convenience; the latch piece 330 cooperates with the second torsion spring 350 to realize the hooking and positioning of the positioning rod 313 and the release. The hook stopper 335 can hook the positioning rod 313 to position it so that the inner socket body 200 is stored and positioned in the outer shell 100. When the positioning rod 313 is released, the first torsion spring 340 can drive the inner socket body 200 to rotate until it protrudes from the outer shell 100, and the movable connection The relative position between the inner socket body 200 and the outer shell 100 can be reliably adjusted and positioned. A continuous locking channel 333 and a sliding channel 334 are provided in the latch plate 330, which can effectively improve the smoothness and smoothness of the movable adjustment action. The storage and opening adjustment action is stable and reliable. The storage and opening adjustment action can be achieved by pressing the inner socket body 200 in a direction opposite to the first rotation direction, which can improve the convenience of the user in adjusting the position of the inner socket body 200.

[0044] It can be understood that the rotation axis of the first rotation direction is parallel to the rotation axis of the second rotation direction, and the rotation directions of the first rotation direction and the second rotation direction are the same or opposite. The structure shown in the figure is that the first rotation direction and the second rotation direction are the same rotation direction.

[0045] It can be understood that the inner socket body 200 is provided with adjacent protective surfaces 210 and plug-in surfaces 220, and the protective surfaces 210 and the plug-in surfaces 220 are arranged in sequence along the first rotation direction, that is, when the inner socket body 200 rotates along the first rotation direction, the protective surface 210 and the plug-in surface 220 successively reach the designated positions, so that when the inner socket body 200 rotates along the first rotation direction, the protective surface 210 and the plug-in surface 220 successively pass through the movable clearance hole 110, the protective surface 210 is a smooth and complete plane structure with good dustproof and waterproof functions, and the plug-in surface 220 is provided with a plug-in socket, which can be at least one of a two-pin socket, a three-pin socket or a USB socket.

[0046] When storing and hiding, refer to Figure 1 and Figure 3 As shown, the hook stopper 335 hooks the positioning rod 313, the protective surface 210 is set at the opening of the movable hole 110, and the plug surface 220 is stored and hidden in the outer shell 100; when it is opened and popped out, refer to Figure 2 and Figure 4 As shown, the hook stopper 335 releases the positioning rod 313, and the inner socket body 200 rotates along the first rotation direction under the action of the first torsion spring 340. After the protective surface 210 passes through the movable clearance hole 110, the plug-in surface 220 passes through the movable clearance hole 110 to reach the outside of the outer shell 100, which is convenient for users to connect and use.

[0047] It can be understood that the projection of the third limit member 323 on the top surface of the outer shell 100 is located outside the movable clearance hole 110, so as to limit the extreme position of the inner socket body 200 relative to the outer shell 100, which can effectively prevent the inner socket body 200 from completely passing through the movable clearance hole 110 and detaching from the outer shell 100, and can effectively ensure the reliability of the relative position between the inner socket body 200 and the outer shell 100, and can effectively ensure the reliability of the overall power socket structure.

[0048] Specifically, in addition to setting the projection of the third limit member 323 to be located at the movable clearance hole 110, it can also be set to the following structure: the inner socket body 200 is a prism, the protective surface 210 is the prism side of the inner socket body 200, the shape and size of the protective surface 210 match the shape and size of the movable clearance hole 110, and a gap is formed between the protective surface 210 and the movable clearance hole 110 so that the protective surface 210 can just pass through the movable clearance hole 110.

[0049] When storing and hiding, refer to Figure 1 and Figure 3 As shown, the protective surface 210 is closed in the movable hole 110; when it is opened and popped out, refer to Figure 2 and Figure 4 As shown, the protective surface 210 passes through the movable clearance hole 110 to reach the outside of the outer shell 100, and the plug surface 220 then passes through the movable clearance hole 110 to reach the outside of the outer shell 100. Since the shape and size of the movable clearance hole 110 match the shape and size of the protective surface 210, the end face diagonal size of the inner socket body 200 is larger than the size of the movable clearance hole 110 in the same dimension. The inner socket body 200 rotating around the first rotating axis 311 cannot completely pass through the movable clearance hole 110 and completely detach from the outer shell 100, which can effectively ensure the reliability of the relative position between the inner socket body 200 and the outer shell 100, and can effectively ensure the reliability of the overall power socket structure.

[0050] It can be understood that along the first rotation direction, the trigger piece 330, the second torsion spring 350 and the second rotating shaft 322 are all located behind the rotation of the third limit piece 323, that is, when the inner socket body 200 rotates along the first rotation direction, the third limit piece 323 reaches the specified position first, and then the trigger piece 330, the second torsion spring 350 and the second rotating shaft 322 arrive, which can effectively prevent the trigger piece 330, the second torsion spring 350 and the second rotating shaft 322 from detaching from the movable yield hole 110 from the outer shell 100, and can effectively ensure the stability of the power socket structure.

[0051] It can be understood that there are two first limiting members 312, and the end of the first torsion spring 340 away from the second limiting member 321 is clamped between the two first limiting members 312, and there are two third limiting members 323, and the end of the second torsion spring 350 away from the fourth limiting member 332 is clamped between the two third limiting members 323. By setting two first limiting members 312 and two third limiting members 323, the position stability of the first torsion spring 340 and the second torsion spring 350 can be effectively improved, thereby effectively improving the reliability of the action when the first positioning plate 310 and the buckle piece 330 rotate.

[0052] It can be understood that there are two groups of movable connection components 300, and the two groups of movable connection components 300 are respectively arranged on opposite sides of the inner socket body 200. The two movable connection components 300 are respectively used to movably connect the opposite sides of the inner socket body 200 to the opposite sides of the inner wall of the outer shell 100, which can effectively balance the interaction force between the inner socket body 200 and the outer shell 100, thereby effectively improving the smoothness of the movable movement and significantly reducing problems such as jamming during the movement.

[0053] It can be understood that a guide sleeve 324 is provided on the side of the second positioning plate 320 close to the first positioning plate 310, the first rotating shaft 311 is passed through the guide sleeve 324 and is rotatably connected, and the first torsion spring 340 is sleeved outside the guide sleeve 324. The setting of the guide sleeve 324 and the first rotating shaft 311 can effectively improve the reliability of the movable connection structure between the second positioning plate 320 and the first positioning plate 310, and can effectively extend the service life of the movable connection component 300 in the power socket.

[0054] It can be understood that the movable connection assembly 300 also includes a gear 360 and a rack 370 curved in an arc shape. The center of the rack 370 is set at the axis of the first rotating shaft 311. The rack 370 is fixedly connected to the second positioning plate 320, and the gear 360 is rotatably connected to the first positioning plate 310. The gear 360 is meshed with the rack 370. Through the guiding and limiting action of the gear 360 and the rack 370, the stability of the relative movement between the first positioning plate 310 and the second positioning plate 320 can be effectively improved, thereby effectively improving the reliability of the movable adjustment action.

[0055] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and purpose of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.

Claims

1. A movable adjustable power socket, characterized in that: The invention comprises an outer shell (100), an inner socket body (200) and a movable connection assembly (300), wherein the inner socket body (200) is arranged in the outer shell (100), the movable connection assembly (300) is respectively connected to the outer shell (100) and the inner socket body (200), and the top surface of the outer shell (100) is provided with a movable clearance hole (110) for making way for the inner socket body (200); The movable connection assembly (300) includes a first positioning plate (310), a second positioning plate (320), a detent plate (330), a first torsion spring (340) and a second torsion spring (350), wherein the first positioning plate (310) is connected to the inner side of the outer shell (100), and the second positioning plate (320) is connected to the outer side of the inner socket body (200), and a first rotating shaft (311), a first limiting member (312) and a positioning rod (313) are provided on a side of the first positioning plate (310) close to the second positioning plate (320), and the second The positioning plate (320) is rotatably connected to the first rotating shaft (311), the first torsion spring (340) is sleeved outside the first rotating shaft (311), and the second positioning plate (320) is provided with a second limiting member (321), a second rotating shaft (322) and a third limiting member (323) on a side close to the first positioning plate (310), and the two ends of the first torsion spring (340) are respectively in contact with the first limiting member (312) and the second limiting member (321), so that the inner socket body (200) forms a movement tendency to rotate along the first rotation direction; One end of the detent plate (330) is rotatably connected to the second rotating shaft (322), the other end of the detent plate (330) is provided with a locking guide surface (331), the detent plate (330) is provided with a fourth limiting member (332), the second torsion spring (350) is sleeved outside the second rotating shaft (322), the two ends of the second torsion spring (350) are respectively in contact with the third limiting member (323) and the fourth limiting member (332), so that the detent plate (330) forms a tendency to rotate along the second rotation direction, the detent plate (330) is provided with a locking channel (333) with one end connected to the locking guide surface (331), and the detent plate (330) is also provided with one end. A slide-out channel (334) is connected to the other end of the locking channel (333), and the engaging guide surface (331) is used to guide the positioning rod (313) to the locking channel (333). A hook stopper (335) is provided at one end of the locking channel (333) close to the slide-out channel (334). The hook stopper (335) is used to hook the positioning rod (313) along the second rotation direction. The two ends of the bottom surface of the slide-out channel (334) are respectively connected to the opposite two side surfaces of the detent plate (330), and the slide-out channel (334) is used to guide the positioning rod (313) to the outside of the side of the detent plate (330) away from the inner socket body (200).

2. The movable adjustable power socket according to claim 1, characterized in that: The first rotation direction and the second rotation direction have rotation axes parallel to each other, and the first rotation direction is the same as or opposite to the second rotation direction.

3. The movable adjustable power socket according to claim 1, characterized in that: The inner socket body (200) is provided with adjacent protective surfaces 2 (10) and a plug-in surface (220), and the protective surfaces (210) and the plug-in surface (220) are arranged in sequence along the first rotation direction.

4. The movable adjustable power socket according to claim 1, characterized in that: The projection of the third limiting member (323) on the top surface of the outer shell (100) is located outside the movable clearance hole (110) to limit the extreme position of the inner socket body (200) relative to the outer shell (100).

5. The movable adjustable power socket according to claim 4, characterized in that: Along the first rotation direction, the detent plate (330), the second torsion spring (350) and the second rotating shaft (322) are all located behind the third limiting member (323).

6. The movable adjustable power socket according to claim 1, characterized in that: Two first limiting members (312) are provided, and one end of the first torsion spring (340) is clamped between the two first limiting members (312). Two third limiting members (323) are provided, and one end of the second torsion spring (350) is clamped between the two third limiting members (323).

7. The movable adjustable power socket according to claim 1, characterized in that: The movable connection components (300) are provided in two groups, and the two groups of movable connection components (300) are respectively provided on two opposite sides of the inner socket body (200).

8. The movable adjustable power socket according to claim 1, characterized in that: A guide sleeve (324) is provided on one side of the second positioning plate (320) close to the first positioning plate (310), the first rotating shaft (311) is rotatably connected to the guide sleeve (324), and the first torsion spring (340) is sleeved outside the guide sleeve (324).

9. The movable adjustable power socket according to claim 1, characterized in that: The movable connection assembly (300) further includes a gear (360) and a rack (370) curved in an arc shape, wherein the center of the rack (370) is located at the axis of the first rotating shaft (311), the rack (370) is connected to the second positioning plate (320), the gear (360) is rotatably connected to the first positioning plate (310), and the gear (360) is meshedly connected to the rack (370).