Charging socket

By forming the connecting body through stamping and rolling processes, combined with the design of elastic inserts and fixing bodies, the high cost problem caused by machining is solved, and cost reduction and stability improvement are achieved.

CN224110544UActive Publication Date: 2026-04-10HUIZHOU NISOCO CONNECTION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIZHOU NISOCO CONNECTION TECH CO LTD
Filing Date
2025-07-09
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The connection terminals of existing charging sockets are formed by machining, resulting in high processing costs and thus increasing the overall cost of the charging socket.

Method used

The connector is formed by stamping and the main body is formed by rolling, eliminating the need for machining. Combined with the design of elastic inserts and fixing bodies, current conduction is achieved.

Benefits of technology

It reduces production costs, improves connection stability and lifespan, reduces the precision requirements of the PCB board copper sleeve, and lowers the overall cost of the charging socket.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a charging socket, comprising a carrying member having a first carrying hole and a second carrying hole; the direct current seat comprises a shell, a first connecting assembly and a second connecting assembly, the shell is arranged in the first carrying hole, and the first connecting assembly and the second connecting assembly are both arranged in the shell; the first connecting assembly comprises a connecting main body, a sleeve shell and a first bearing sleeve, the first bearing sleeve is arranged on the shell, the connecting main body and the sleeve shell are both arranged on the first bearing sleeve, and the connecting main body is manufactured by adopting a rolling process; and the alternating current seat is arranged in the second carrying hole. According to the charging socket provided by the utility model, the structure of the connecting body is formed through the stamping process, and then the connecting main body in the final form is formed through the rolling process, so that the link of machining can be omitted, the production cost is reduced, meanwhile, the advantage of reducing the production cost is more prominent along with the increase of the use number of the connecting main bodies, and finally, the overall cost of the charging socket is also reduced.
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Description

Technical Field

[0001] This utility model relates to the field of connector technology, specifically to a charging socket. Background Technology

[0002] The charging function is achieved by the cooperation of the charging gun and the charging base. On the charging base, the current conduction effect is mainly achieved by the connecting terminals. Currently, the connecting terminals are mainly formed by mechanical processing, which directly increases the processing cost of the connecting terminals. Therefore, it also increases the overall cost of the charging socket. Utility Model Content

[0003] In view of the shortcomings of the existing technology, this utility model provides a charging socket.

[0004] The present invention discloses a charging socket, comprising: a mounting member having a first mounting hole and a second mounting hole;

[0005] A DC mounting base includes a housing, a first connecting assembly, and a second connecting assembly. The housing is disposed in a first mounting hole, and both the first and second connecting assemblies are disposed within the housing. The first connecting assembly includes a connecting body, a sleeve, and a first bearing sleeve. The first bearing sleeve is disposed within the housing, and both the connecting body and the sleeve are disposed within the first bearing sleeve. The connecting body is manufactured using a rolling process.

[0006] The communication port is located at the second mounting hole.

[0007] According to one embodiment of the present invention, the connecting body includes a connecting tube, a plurality of connecting pieces and a plurality of elastic inserts. The plurality of connecting pieces are arranged at intervals around one end of the connecting tube, and one end of the plurality of elastic inserts is arranged at intervals at the other end of the connecting tube. The other end of the elastic inserts extends away from the connecting tube, and the elastic inserts can swing back and forth relative to the connecting tube. The sleeve is fitted on the outer surface of the connecting tube and the connecting pieces.

[0008] According to one embodiment of the present invention, the elastic insert also has a protrusion that is opened in a direction away from the connecting tube.

[0009] According to one embodiment of the present invention, the connecting tube has multiple first receiving ports, and multiple elastic inserts are respectively disposed in the multiple first receiving ports.

[0010] According to one embodiment of the present invention, the connecting body further includes a plurality of first support blocks, one end of each of the plurality of first support blocks being connected to one end of a plurality of elastic inserts, and the other end of each of the plurality of first support blocks being connected to the outer surface of the connecting tube.

[0011] According to one embodiment of the present invention, the second connecting component includes:

[0012] The sleeve body is arranged in the second mounting hole and has a first accommodating hole and a plurality of limiting grooves, the plurality of limiting grooves are arranged on the wall surface of the first accommodating hole in a spaced manner, and the plurality of limiting grooves are all communicated with the first accommodating hole;

[0013] The connecting body is arranged in the first accommodating hole and has a second accommodating hole, and the port of the first accommodating hole is communicated with the port of the second accommodating hole;

[0014] The fixing body is sleeved on the outer surface of the connecting body and has a plurality of limiting pieces extending outward, and the plurality of limiting pieces are respectively arranged in the plurality of limiting grooves; and

[0015] The conducting body is arranged in the second accommodating hole.

[0016] According to an embodiment of the utility model, the fixing body further has a guide piece extending outward, the sleeve body further has a guide groove, and the guide piece is slidably arranged in the guide groove.

[0017] According to an embodiment of the utility model, the fixing body further has a deformation port, a first positioning piece and a second positioning piece, the deformation port is arranged in part of the fixing body in a longitudinal through manner, and the first positioning piece and the second positioning piece are respectively located on the two opposite sides of the deformation port; the connecting body further has a positioning port communicated with the second accommodating hole, and the first positioning piece and the second positioning piece are respectively arranged in the positioning port.

[0018] According to an embodiment of the utility model, one end of the sleeve body is provided with a second supporting block, and one end of the connecting body abuts against the second supporting block; the second supporting block has a socket, and the socket is communicated with the first accommodating hole and the second accommodating hole.

[0019] According to an embodiment of the utility model, the second supporting block is further provided with a plurality of dismounting ports, the plurality of dismounting ports correspond to the plurality of limiting grooves, and the dismounting ports are communicated with the limiting grooves.

[0020] The utility model discloses a charging socket, which comprises a sleeve body, a connecting body, a fixing body and a conducting body. BRIEF DESCRIPTION OF DRAWINGS

[0021] The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiments of the application and serve to explain the principles of the application, and do not limit the application. In the drawings:

[0022] Figure 1 It is a three-dimensional structure schematic view of the charging socket;

[0023] Figure 2 Another perspective view of the charging socket;

[0024] Figure 3 A perspective view of the connection terminal;

[0025] Figure 4 A perspective view of the connection body;

[0026] Figure 5 A perspective view of the cover shell;

[0027] Figure 6 A perspective view of the connection structure;

[0028] Figure 7 A perspective view of the connection structure in a disassembled state;

[0029] Figure 8 A perspective view of a part of the connection structure;

[0030] Figure 9 A side view of the connection structure;

[0031] Figure 10 A perspective view of Figure 9 A sectional view of C-C in FIG. 7;

[0032] Figure 11 A perspective view of Figure 9 A sectional view of A-A in FIG. 8;

[0033] Figure 12 A perspective view of the cover body;

[0034] Figure 13 Another perspective view of the cover body.

[0035] Explanation of Reference Numerals

[0036] 10, mounting member; 101, first mounting hole; 102, second mounting hole;

[0037] 20, DC socket; 201, housing; 202, first connecting assembly; 2021, connecting main body; 20211, connecting pipe; 202111, first containing opening; 202112, first containing hole; 202113, second containing hole; 202114, second containing opening; 20212, connecting piece; 20213, elastic plug; 202131, protrusion; 20214, first supporting block; 2022, sleeve; 20221, sleeve pipe; 20222, first fixing piece; 20223, supporting piece; 20224, third positioning piece; 20225, second fixing piece; 2023, first bearing sleeve; 203, second connecting assembly; 2031, sleeve body; 20311, first containing hole; 20312, limiting groove; 20313, guide groove; 20314, second supporting block; 203141, socket; 203142, dismounting opening; 2032, connecting body; 20321, second containing hole; 20322, positioning opening; 2033, fixing body; 20331, limiting piece; 20332, guide piece; 20333, deformation opening; 20334, first positioning piece; 20335, second positioning piece; 2034, conducting body; 2035, sealing body;

[0038] 30, AC socket. DETAILED DESCRIPTION

[0039] The embodiments of the present application will be described herein below with reference to drawings. Numerous specific details will be set forth in the following description in order to provide a thorough understanding of the application. However, it will be appreciated by those of ordinary skill in the art that the application can be practiced without such specific details. In other instances, well-known methods have not been described in detail in order not to unnecessarily obscure the application. In the drawings, like reference numerals refer to same or similar functionalities throughout the several views.

[0040] In addition, the terms "first", "second", and the like, as used in the description and the claims, are used for distinguishing between similar elements and not necessarily for describing a sequential or chronological order. It is to be understood that the terms so used are interchangeable under appropriate circumstances such that the embodiments of the application described herein are, for example, capable of use in either order. It is therefore intended that the following detailed description of the application be not limited in scope by the foregoing merely by way of example, as properly understood by those having ordinary skill in the art.

[0041] As shown in Figures 1-2 Figure 1 is a schematic view of a three-dimensional structure of a charging socket.​Figure 2 Another perspective view of the charging socket. The charging socket includes a mounting member 10, a DC socket 20, and an AC socket 30. The mounting member 10 has a first mounting hole 101 and a second mounting hole 102 arranged at intervals. The DC socket 20 is arranged in the first mounting hole 101, and the AC socket 30 is arranged in the second mounting hole 102. A charging gun is inserted into the DC socket 20 or the AC socket 30 according to requirements, and the charging gun is in communication with the DC socket 20 or the AC socket 30 after being inserted, so that current conduction can be performed.

[0042] The DC socket 20 includes a housing 201, a first connecting assembly 202, and a second connecting assembly 203. The housing 201 is arranged in the first mounting hole 101, and the first connecting assembly 202 and the second connecting assembly 203 are arranged on the housing 201 at intervals.

[0043] Referring again to Figures 3-5 , Figure 3 A perspective view of the connecting terminal; Figure 4 A perspective view of the connecting body 2021; Figure 5 A perspective view of the sleeve 2022. The first connecting assembly 202 includes a connecting body 2021, a sleeve 2022, and a first bearing sleeve 2023. The first bearing sleeve 2023 is arranged in the housing 201, and the sleeve 2022 and the connecting body 2021 are arranged in the first bearing sleeve 2023. The sleeve 2022 is sleeved on the connecting body 2021. In use, a pin in the charging gun is connected to the connecting body 2021 by penetrating the first bearing sleeve 2023, and the other end of the connecting body 2021 is connected to a copper sleeve of a PCB.

[0044] In a specific application, the connecting body 2021 comprises a connecting pipe 20211, a plurality of connecting pieces 20212 and a plurality of elastic inserts 20213. The plurality of connecting pieces 20212 are located at one end of the connecting pipe 20211, and the plurality of elastic inserts 20213 are located at the other end of the connecting pipe 20211. Specifically, one end of the plurality of connecting pieces 20212 is connected to one end of the connecting pipe 20211, and the other end of the connecting piece 20212 extends in the length direction. One end of the elastic insert 20213 is connected to the outer surface of the other end of the connecting pipe 20211, and the other end of the elastic insert 20213 extends away from the outer surface of the connecting pipe 20211. At the same time, the elastic insert 20213 can reciprocate relative to the outer surface of the connecting pipe 20211. In this embodiment, the connecting pipe 20211 is cylindrical. Along the length direction of the connecting pipe 20211, the connecting pipe 20211 has a first accommodating hole 202112 and a second accommodating hole 202113, and the plurality of connecting pieces 20212 are distributed around the first accommodating hole 202112. Further, the connecting pipe 20211 has a plurality of first accommodating openings 202111, which are communicated with the second accommodating hole 202113. The plurality of elastic inserts 20213 correspond to the plurality of first accommodating openings 202111, i.e., one elastic insert 20213 is arranged in one first accommodating opening 202111. Through the arrangement of the first accommodating opening 202111, the elastic insert 20213 can move into the second accommodating hole 202113 through the first accommodating opening 202111 when it is under stress during assembly, which can avoid damage to the elastic insert 20213 and reduce the resistance during assembly.

[0045] Preferably, the elastic tab 20213 has a protrusion 202131 arranged at the end of the elastic tab 20213 away from the connecting pipe 20211, and the protrusion 202131 is opened away from the connecting pipe 20211. The contact effect of the elastic tab 20213 and the copper sleeve of the PCB board can be improved by arranging the protrusion 202131. In addition, the connecting body 2021 also includes a first supporting block 20214, which is located at the connection between the elastic tab 20213 and the connecting pipe 20211, that is, a part of the first supporting block 20214 is connected to one end of the elastic tab 20213, and the other part of the first supporting block 20214 is connected to the surface of the connecting pipe 20211. By arranging the first supporting block 20214, the elastic tab 20213 can be provided with supporting force. For example, when the elastic tab 20213 is assembled with the copper sleeve of the PCB board, due to the force, one end of the elastic tab 20213 moves towards the first accommodating hole 202112, and the other end of the elastic tab 20213 remains connected to the connecting pipe 20211 and the first supporting block 20214. At this time, the first supporting block 20214 will provide a certain reverse support for the elastic tab 20213, thereby prolonging the service life of the elastic tab 20213. In the embodiment, the number of first supporting blocks 20214 is the same as the number of elastic tabs 20213, that is, there is one elastic tab 20213 in each first accommodating hole 202111, and each elastic tab 20213 is connected with a first supporting block 20214.

[0046] The sleeve 2022 includes a sleeve 20221 and a plurality of first fixing pieces 20222. The sleeve 20221 is sleeved on the outer surface of the connecting piece 20212 and the connecting pipe 20211. The plurality of first fixing pieces 20222 are arranged at one end of the sleeve 20221 and are bent towards the inside of the sleeve 20221 and abut against the connecting piece 20212. That is, the connecting piece 20212 is fixed by the first fixing piece 20222 and the inner wall surface of the sleeve 20221. Further, the sleeve 2022 also includes a plurality of supporting pieces 20223. The plurality of supporting pieces 20223 are arranged on the outer surface of the sleeve 20221 and abut against the plurality of connecting pieces 20212, respectively. The supporting pieces 20223 provide a positive force for the connecting pieces 20212 and support the connecting pieces 20212. In this embodiment, the number of the supporting pieces 20223 is the same as the number of the connecting pieces 20212, that is, one supporting piece 20223 abuts against one connecting piece 20212. The sleeve 2022 also includes a third positioning piece 20224. One end of the third positioning piece 20224 is connected to the outer surface of the sleeve 20221, and the other end of the third positioning piece 20224 extends away from the sleeve 20221 and abuts against the first bearing sleeve 2023. Specifically, the number of the third positioning piece 20224 is two, and the two third positioning pieces 20224 are arranged opposite to each other on the two sides of the sleeve 20221.

[0047] Further, the sleeve 2022 also includes a second fixing piece 20225. The connecting pipe 20211 has a second accommodating opening 202114, which is communicated with the first accommodating hole 202112. The second fixing piece 20225 is clamped in the second accommodating opening 202114 to enhance the stability of the connection between the sleeve 20221 and the connecting pipe 20211. In this embodiment, the number of the second fixing piece 20225 is two, and the two second fixing pieces 20225 are arranged opposite to each other. When in use, the two second fixing pieces 20225 are respectively inserted into the first accommodating hole 202112 and are bent, so that the second fixing piece 20225 abuts against the inner wall surface of the first accommodating hole 202112, thereby realizing the fixed connection between the sleeve 20221 and the connecting pipe 20211.

[0048] Specifically, the connecting piece 20212 and the elastic insert piece 20213 are made of high-conductivity and high-yield strength materials, such as spring materials.

[0049] Therefore, by setting multiple elastic inserts 20213 that can swing relative to the connecting tube 20211, when one end of the connecting tube 20211 with the elastic inserts 20213 is inserted into the copper sleeve on the PCB board, one end of the multiple elastic inserts 20213 is forced to move towards the connecting tube 20211 and maintain contact with the copper sleeve. Replacing the traditional drum spring structure with elastic inserts 20213 can not only reduce the insertion and extraction force, but also facilitate the installation of the copper sleeve by the movement of the elastic inserts 20213. In addition, the multiple elastic inserts 20213 increase the contact points with the copper sleeve, thereby reducing the processing accuracy requirements of the copper sleeve on the PCB board.

[0050] like Figures 6-11 As shown, Figure 6 This is a three-dimensional structural diagram of the second connecting component 203; Figure 7 This is a split state diagram of the second connecting component 203; Figure 8 This is a partial structural schematic diagram of the second connecting component 203; Figure 9 A side view of the second connecting component 203; Figure 10 for Figure 9 Cross-sectional view of CC in the middle; Figure 11 for Figure 9 A cross-sectional view of AA. The second connecting assembly 203 includes a sleeve 2031, a connector 2032, a fixing body 2033, and a conductor 2034. The sleeve 2031 is disposed within the housing 201. The connector 2032 is disposed within the sleeve 2031. The fixing body 2033 is sleeved on the connector 2032, fixing the connector 2032 within the sleeve 2031 to prevent it from sliding out. The conductor 2034 is disposed within the connector 2032. When an external pin is inserted into a designated position and contacts the conductor 2034, current can flow between the connector 2032, the conductor 2034, and the pin.

[0051] Please refer to the following: Figure 12 and Figure 13 , Figure 12 This is a schematic diagram of the three-dimensional structure of the 20311 housing. Figure 13Another perspective view of the sleeve 2031. The sleeve 2031 has a first accommodating hole 20311 and a plurality of limiting grooves 20312. The first accommodating hole 20311 is longitudinally arranged. The plurality of limiting grooves 20312 are arranged along the outer periphery of the first accommodating hole 20311. The limiting grooves 20312 are communicated with the first accommodating hole 20311. The connecting body 2032 is arranged in the first accommodating hole 20311. Further, the sleeve 2031 has at least one guide groove 20313. The guide groove 20313 is arranged adjacent to the limiting groove 20312. The guide groove 20313 is arranged in the same direction as the limiting groove 20312. The guide groove 20313 is communicated with the first accommodating hole 20311. Further, one end of the sleeve 2031 is provided with a second supporting block 20314. One end of the connecting body 2032 abuts against the second supporting block 20314. Specifically, the second supporting block 20314 has a socket 203141 and a plurality of dismounting openings 203142. The socket 203141 penetrates through the second supporting block 20314. The socket 203141 is communicated with the first accommodating hole 20311. The diameter of the socket 203141 is smaller than the diameter of the first accommodating hole 20311. The plurality of dismounting openings 203142 are arranged around the socket 203141. The plurality of dismounting openings 203142 are communicated with the plurality of limiting grooves 20312, respectively. That is, one dismounting opening 203142 corresponds to one limiting groove 20312. In this embodiment, the sleeve 2031 is in a cylindrical shape. The first accommodating hole 20311, the limiting groove 20312, the guide groove 20313, the socket 203141 and the dismounting opening 203142 are all arranged in the axial direction. That is, the axial direction of the sleeve 2031 is the same as the longitudinal direction.

[0052] Please refer to Figures 6-11 The connecting body 2032 has a second accommodating hole 20321. The second accommodating hole 20321 is longitudinally arranged. The second accommodating hole 20321 is communicated with the socket 203141. The external pin enters the second accommodating hole 20321 through the socket 203141. Further, the connecting body 2032 has a positioning opening 20322. The positioning opening 20322 is communicated with the second accommodating hole 20321. The fixing body 2033 is fixedly connected with the fixing body 2033 through the positioning opening 20322. It should be noted that the positioning opening 20322 is a structure required for electroplating of the connecting body 2032. In other words, the present application makes full use of the structure on the connecting body 2032. Not only the fixing effect of the fixing body 2033 and the connecting body 2032 is improved, but also the cost of additional hole opening is reduced, thereby reducing the cost.

[0053] Please refer to Figures 7-8The fixing body 2033 has a plurality of limiting pieces 20331 which are arranged at intervals around the outer surface of the fixing body 2033 and extend away from the fixing body 2033, and the plurality of limiting pieces 20331 correspond to the plurality of limiting grooves 20312; when the connecting body 2032 is inserted into the first accommodating hole 20311 of the sleeve body 2031, the limiting pieces 20331 are clamped into the limiting grooves 20312 to prevent the connecting body 2032 from being separated from the sleeve body 2031; when it is necessary to take out the connecting body 2032 from the first accommodating hole 20311, an external dismounting tool is inserted into the limiting groove 20312 through the dismounting opening 203142, which causes the limiting piece 20331 to be separated from the limiting groove 20312, that is, the dismounting tool pushes the limiting piece 20331 to deform towards the connecting body 2032, at which time the connecting body 2032 can be directly taken out from the first accommodating hole 20311. In the embodiment, the number of the limiting pieces 20331 is four, and correspondingly, the number of the limiting grooves 20312 and the dismounting opening 203142 is also four. The dismounting tool can be a tool with a certain hardness in the form of a sheet.

[0054] Further, the fixing body 2033 also has a guide piece 20332 which also extends outwardly and is slidably connected with the guide groove 20313 in the sleeve body 2031; in use, the guide piece 20332 on the fixing body 2033 is first placed in the guide groove 20313, and then the connecting body 2032 is pushed into the first accommodating hole 20311, and through the cooperation of the guide piece 20332 and the guide groove 20313, the accuracy and stability of the assembly process of the connecting body 2032 can be ensured. In the embodiment, the number of the guide pieces 20332 is two, and the two guide pieces 20332 are oppositely arranged, which further improves the stability of the connecting body 2032 in the assembly process.

[0055] Further, the fixing body 2033 also has a deformation opening 20333, a first positioning piece 20334 and a second positioning piece 20335, the deformation opening 20333 is formed along the longitudinal direction of the fixing body 2033 and penetrates part of the area of the fixing body 2033, and through the arrangement of the deformation opening 20333, the fixing body 2033 can be deformed within a certain range to facilitate assembly and disassembly. The first positioning piece 20334 and the second positioning piece 20335 are respectively located on the two sides of the deformation opening 20333 and are clamped in the positioning opening 20322, and the parts of the first positioning piece 20334 and the second positioning piece 20335 in the second accommodating hole 20321 are bent away from each other to realize the fixed connection of the fixing body 2033 and the connecting body 2032.

[0056] In another embodiment, in order to improve the stability of the connection between the fixed body 2033 and the connecting body 2032, a plurality of first positioning pieces 20334 and a plurality of second positioning pieces 20335 are arranged in the positioning opening 20322. The plurality of first positioning pieces 20334 are arranged on the same side and spaced apart in the longitudinal direction, and the plurality of second positioning pieces 20335 are arranged on the same side and spaced apart in the longitudinal direction.

[0057] In the embodiment, the fixed body 2033 is made of metal material. During charging, the connecting body 2032 generates a large amount of heat. If the fixed body 2033 is made of plastic material, the plastic material will be brittle after being heated for a long time, which will easily break and increase the maintenance cost in the later period. If the fixed body 2033 is made of metal material, the brittleness phenomenon is avoided, the service life is prolonged, and the cost is reduced.

[0058] Please refer to Figure 7 , Figure 8 and Figure 10 The conducting body 2034 is located in the second accommodating hole 20321. After the external pin is inserted into the second accommodating hole 20321, the conducting body 2034 is wrapped around the outer surface of the pin to facilitate the conduction of current. Specifically, the conducting body 2034 is made of high-conductivity and high-yield strength material, such as copper material. The conducting body 2034 of the embodiment is a product of existing torsion spring, crown spring, etc.

[0059] Preferably, the second connecting assembly 203 further comprises a sealing body 2035, which is sleeved on the outer surface of the connecting body 2032. When the connecting body 2032 is inserted into the first accommodating hole 20311, the sealing body 2035 is located in the first accommodating hole 20311, and the outer surface of the sealing body 2035 abuts against the wall surface of the first accommodating hole 20311. The arrangement of the sealing body 2035 can reduce the risk of liquid entering the first accommodating hole 20311, and has a protective effect on the second connecting assembly 203.

[0060] As can be seen, through the cooperation of the plurality of limiting pieces 20331 on the fixed body 2033 and the plurality of limiting grooves 20312 on the sleeve body 2031, there are multiple different direction limits between the fixed body 2033 and the sleeve body 2031, thereby realizing the fixed connection of the connecting body 2032 and the sleeve body 2031. This kind of mode can guarantee the stability of the connection between the connecting body 2032 and the sleeve body 2031 for a long time, and avoid affecting the reliability and service life of the entire charging device.

[0061] It should be further noted that the AC socket 30 has the same structure as the existing charging socket, and therefore will not be described. In addition, the shell 201, the first bearing sleeve 2023 and the sleeve body 2031 can be an integrally formed structure, and the number of the first connecting assembly 202 and the second connecting assembly 203 can be multiple.

[0062] In summary, the structure of the connecting body 2032 is first formed by a stamping process, and then a rolling process is used to form the final form of the connecting body 2021, so that the mechanical processing link can be omitted, the production cost is reduced, and the advantage of reducing the production cost is more prominent with the increase of the number of the connecting body 2021, and finally the overall cost of the charging socket is also reduced.

[0063] The above merely describes the embodiments of the present application and is not intended to limit the present application. The present application can be variously changed and modified by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the scope of the claims of the present application.

Claims

1. A charging socket, characterized by, include: Mounting member (10) has a first mounting hole (101) and a second mounting hole (102). A DC mounting base (20) includes a housing (201), a first connecting component (202), and a second connecting component (203). The housing (201) is disposed in a first mounting hole (101), and both the first connecting component (202) and the second connecting component (203) are disposed in the housing (201). The first connecting component (202) includes a connecting body (2021), a sleeve (2022), and a first bearing sleeve (2023). The first bearing sleeve (2023) is disposed in the housing (201), and both the connecting body (2021) and the sleeve (2022) are disposed in the first bearing sleeve (2023). The connecting body (2021) is manufactured using a rolling process. The communication socket (30) is located at the second mounting hole (102).

2. The charging outlet of claim 1, wherein, The connecting body (2021) includes a connecting tube (20211), multiple connecting pieces (20212) and multiple elastic inserts (20213). The multiple connecting pieces (20212) are spaced around one end of the connecting tube (20211), and one end of the multiple elastic inserts (20213) is spaced at the other end of the connecting tube (20211). The other end of the elastic inserts (20213) extends away from the connecting tube (20211), and the elastic inserts (20213) can swing back and forth relative to the connecting tube (20211). The sleeve (2022) is fitted on the outer surface of the connecting tube (20211) and the connecting pieces (20212).

3. The charging outlet of claim 2, wherein, The flexible insert (20213) also has a protrusion (202131) which is opened in a direction away from the connecting tube (20211).

4. The charging outlet of claim 3, wherein, The connecting tube (20211) has multiple first receiving ports (202111), and multiple elastic inserts (20213) are respectively disposed in multiple first receiving ports (202111).

5. The charging outlet of claim 2, wherein, The connecting body (2021) also includes a plurality of first support blocks (20214), one end of the plurality of first support blocks (20214) is connected to one end of a plurality of elastic inserts (20213), and the other end of the plurality of first support blocks (20214) is connected to the outer surface of the connecting tube (20211).

6. The charging station of any one of claims 1-5, wherein, The second connection component (203) includes: The sleeve (2031) is disposed in the second mounting hole (102), and has a first receiving hole (20311) and a plurality of limiting grooves (20312). The plurality of limiting grooves (20312) are spaced around the wall of the first receiving hole (20311), and the plurality of limiting grooves (20312) are all connected to the first receiving hole (20311). A connector (2032) is disposed in a first receiving hole (20311) and has a second receiving hole (20321), wherein the port of the first receiving hole (20311) communicates with the port of the second receiving hole (20321); The fixing body (2033) is sleeved on the outer surface of the connecting body (2032), and has a plurality of outwardly extending limiting pieces (20331), which are respectively arranged in the plurality of limiting grooves (20312); and The conducting body (2034) is arranged in the second accommodating hole (20321).

7. The charging outlet of claim 6, wherein, The fixing body (2033) further has an outwardly extending guiding piece (20332), and the sleeve body (2031) further has a guiding groove (20313), the guiding piece (20332) being slidably arranged in the guiding groove (20313).

8. The charging outlet of claim 6, wherein, The fixing body (2033) further has a deformation opening (20333), a first positioning piece (20334) and a second positioning piece (20335), the deformation opening (20333) being longitudinally arranged through part of the fixing body (2033), the first positioning piece (20334) and the second positioning piece (20335) being respectively located on the opposite sides of the deformation opening (20333); the connecting body (2032) further has a positioning opening (20322) communicating with the second accommodating hole (20321), the first positioning piece (20334) and the second positioning piece (20335) being respectively arranged in the positioning opening (20322).

9. The charging outlet of claim 6, wherein, One end of the sleeve body (2031) is provided with a second supporting block (20314), and one end of the connecting body (2032) abuts against the second supporting block (20314); the second supporting block (20314) has an insertion opening (203141) communicating with the first accommodating hole (20311) and the second accommodating hole (20321).

10. The charging outlet of claim 9, wherein, The second supporting block (20314) further has a plurality of dismounting openings (203142) corresponding to the plurality of limiting grooves (20312), and the dismounting openings (203142) communicate with the limiting grooves (20312).