Integrated energy storage connector convenient for user to use

By designing an integrated energy storage connector, and using plug and socket housings to enclose the terminal assembly, the problems of sealing performance and transmission efficiency caused by exposed terminals are solved, achieving stable signal transmission and efficient power transmission.

CN223502344UActive Publication Date: 2025-10-31深圳灵科技术有限公司
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Patent Information

Application Number
CN202422927366.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-31
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Exposed terminals of energy storage connectors allow dust to enter, affecting the product's sealing performance and signal transmission stability, and reducing power transmission efficiency.

Method used

The integrated energy storage connector is designed with plug and socket housings to enclose the male and female terminal assemblies respectively. The terminals are further enclosed by plug and socket shields, and combined with sealing rings and bushing structures to achieve full terminal sealing.

Benefits of technology

The sealing performance of the energy storage connector has been improved, ensuring stable signal transmission and efficient power transmission, while reducing manual installation costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of connectors, in particular to an integrated energy storage connector convenient for a user to use, which comprises a plug body and a socket body plugged with the plug body, the plug body comprises a plug shell and a male end terminal assembly arranged on the plug shell, the socket body comprises a socket shell and a female end terminal assembly installed on the socket shell. A plug shielding piece is installed on the side, away from the socket shell, of the plug shell, the male end terminal assembly is arranged on the plug shielding piece in a penetrating mode, a socket shielding piece is installed on the side, away from the plug shell, of the socket shell, and the female end terminal assembly is arranged on the socket shielding piece in a penetrating mode; according to the utility model, the male end terminal assembly and the female end terminal assembly can be wrapped, the terminals are prevented from being exposed, the sealing performance of the product is improved, and the electric energy transmission efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of connector technology, and in particular to an integrated energy storage connector that is easy for users to use. Background Technology

[0002] Energy storage connectors generally include plugs and sockets, and are a type of electrical connector. In use, the plug and socket are installed on two energy storage boxes respectively. Adjacent boxes are connected by plugging and socketing to achieve electrical connection. The male and female terminals are connected synchronously with the plug and socket to realize power supply, signal sensing, and transmission.

[0003] However, because the positive, negative, signal, and ground terminals are not completely covered, some or all of the terminals are exposed, making it easy for dust to enter the plug or socket, affecting the product's sealing performance and causing unstable signal transmission or reduced power transmission efficiency. Utility Model Content

[0004] This utility model addresses the shortcomings of existing technologies by providing an integrated energy storage connector that is easy for users to use. It encloses the male and female terminal assemblies, preventing the terminals from being exposed, improving the product's sealing performance, and increasing the efficiency of power transmission.

[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:

[0006] This utility model provides an integrated energy storage connector that is easy for users to use, including a plug body and a socket body that is plugged into the plug body. The plug body includes a plug housing and a male terminal assembly installed on the plug housing. The socket body includes a socket housing and a female terminal assembly installed on the socket housing.

[0007] The male terminal assembly includes a positive male terminal, a negative male terminal, a ground male terminal, and multiple signal male terminals;

[0008] The female terminal assembly includes a positive female terminal, a negative female terminal, a ground female terminal, and multiple signal female terminals;

[0009] A plug shield is installed on the side of the plug housing away from the socket housing, and the male terminal assembly passes through the plug shield. A socket shield is installed on the side of the socket housing away from the plug housing, and the female terminal assembly passes through the socket shield.

[0010] When the plug body is plugged into the socket body, the male terminal assembly is plugged into the female terminal assembly.

[0011] The plug housing is provided with a plug mounting part and a joint part connected to the plug mounting part, and the male terminal assembly extends into the joint part after passing through the plug mounting part.

[0012] The socket housing is provided with a socket mounting part and a receiving part connected to the socket mounting part. The receiving part is provided with a receiving cavity. The female terminal assembly passes through the socket mounting part and extends into the receiving cavity.

[0013] When the plug body is inserted into the socket body, the joint is inserted into the receiving cavity, and the male terminal assembly is inserted into the female terminal assembly.

[0014] The plug shield is provided with a positive male terminal mounting hole, a negative male terminal mounting hole, a ground male terminal mounting hole, multiple signal male terminal mounting holes and a plug notch, wherein the plug notch is connected to the outer end of the signal male terminal mounting hole;

[0015] The positive male terminal, negative male terminal, ground male terminal, and signal male terminal are respectively installed in the positive male terminal mounting hole, negative male terminal mounting hole, ground male terminal mounting hole, and signal male terminal mounting hole.

[0016] The socket shield is provided with a positive female terminal mounting hole, a negative female terminal mounting hole, a ground female terminal mounting hole, multiple signal female terminal mounting holes and a socket notch, wherein the socket notch is connected to the outer end of the signal female terminal mounting hole;

[0017] The positive terminal, negative terminal, ground terminal, and signal terminal are respectively installed in the positive terminal mounting hole, negative terminal mounting hole, ground terminal mounting hole, and signal terminal mounting hole.

[0018] The plug housing is provided with a plug guide groove, the plug shield is slidably fitted in the plug guide groove, the inner side wall of the plug guide groove is provided with a plug slot, the plug shield is provided with a plug elastic buckle, and the plug elastic buckle is engaged in the plug slot.

[0019] The socket housing is provided with a socket guide groove, the socket blocking member slides in the socket guide groove, the inner side wall of the socket guide groove is provided with a socket slot, the socket blocking member is provided with a socket elastic buckle, and the socket elastic buckle is engaged in the socket slot.

[0020] The socket mounting part is provided with a first mounting cylinder, a second mounting cylinder, a third mounting cylinder and a signal mounting body, and the positive female terminal, negative female terminal, ground female terminal and signal female terminal are respectively mounted on the first mounting cylinder, the second mounting cylinder, the third mounting cylinder and the signal mounting body;

[0021] The joint is provided with a first mounting cavity, a second mounting cavity, a third mounting cavity, and a signal mounting cavity that respectively cooperate with the first mounting cylinder, the second mounting cylinder, the third mounting cylinder, and the signal mounting body. The positive male terminal, the negative male terminal, the ground male terminal, and the signal male terminal extend into the first mounting cavity, the second mounting cavity, the third mounting cavity, and the signal mounting cavity, respectively.

[0022] The joint is provided with a guide hole, the socket housing is provided with a guide post that mates with the guide hole, the guide post is located in the receiving cavity, and the joint is provided with a sealing ring.

[0023] When the plug body is inserted into the socket body, the joint and the sealing ring are inserted into the receiving cavity.

[0024] The plug housing is fitted with a bushing, and the socket housing is fitted with a shoulder nut. There is a movable gap between the bushing and the plug housing. The plug housing and the socket housing are respectively connected to external components using a bushing and a shoulder nut.

[0025] The plug housing has a through hole, and the bushing includes a head, a sleeve rod connected to the head, and a retaining ring. One end of the sleeve rod passes through the through hole and is connected to the retaining ring. The outer diameter of the sleeve rod is smaller than the diameter of the through hole, so that there is a horizontal movement gap between the sleeve rod and the through hole. The distance between the retaining ring and the head is greater than the depth of the through hole, so that there is an vertical movement gap between the bushing and the plug housing.

[0026] Wherein, one end of the third mounting cylinder is provided with an end positioning part, and the front end of the ground wire female terminal abuts against the end positioning part;

[0027] The grounding female terminal is provided with an annular limiting groove, the annular limiting groove is fitted with an elastic claw, the elastic claw is provided with an axial notch and a radial locking part, the socket shield is provided with a terminal receiving groove, and the bottom end of the radial locking part abuts against the inner sidewall of the terminal receiving groove.

[0028] The beneficial effects of this utility model are:

[0029] In practical applications, the plug body and socket body are mated and inserted, and the male terminal assembly and female terminal assembly are inserted to connect adjacent energy storage boxes. The male terminal assembly and female terminal assembly are respectively wrapped by plug shields and socket shields to prevent the terminals from being exposed and allowing dust to enter the plug body or socket body, thereby improving the product's sealing performance, ensuring stable signal transmission, and improving power transmission efficiency. Attached Figure Description

[0030] Figure 1 This is a three-dimensional view of the assembly structure of the integrated energy storage connector, designed for ease of use by users.

[0031] Figure 2 This is an exploded three-dimensional view of the integrated energy storage connector designed for ease of use by users.

[0032] Figure 3 This is a three-dimensional structural diagram of the plug housing.

[0033] Figure 4 This is a three-dimensional structural diagram of the socket housing.

[0034] Figure 5 This is a schematic diagram of the exploded structure of the plug housing.

[0035] Figure 6 This is a schematic diagram of the exploded structure of the socket housing.

[0036] Figure 7 This is a three-dimensional structural diagram showing the plug shield separated from the plug housing.

[0037] Figure 8 A three-dimensional structural diagram showing the socket shielding component separated from the socket housing.

[0038] Figure 9 This is a three-dimensional structural diagram showing the bushing separated from the plug housing.

[0039] Figure 10 This is a sectional view of the bushing mounting structure.

[0040] Figure 11 This is a cross-sectional view of the connection structure between the socket shield and the grounding female terminal.

[0041] Figure 12 This is an exploded view of the socket shield, grounding female terminal, and elastic claw. Detailed Implementation

[0042] To facilitate understanding by those skilled in the art, the present invention will be further described below in conjunction with embodiments and accompanying drawings. Specific embodiments of the present invention will be described below. It should be noted that, in order to provide a concise description of these embodiments, this specification cannot provide a detailed description of all features of the actual embodiments.

[0043] refer to Figures 1 to 12 As shown, this utility model provides an integrated energy storage connector that is easy for users to use, including a plug body 1 and a socket body 2 that plugs into the plug body 1. The plug body 1 includes a plug housing 11 and a male terminal assembly 01 installed on the plug housing 11. The socket body 2 includes a socket housing 21 and a female terminal assembly 02 installed on the socket housing 21. (Reference) Figure 3 , 4As shown, the male terminal assembly 01 includes a positive male terminal 011, a negative male terminal 012, a ground male terminal 013, and multiple signal male terminals 014; the female terminal assembly 02 includes a positive female terminal 021, a negative female terminal 022, a ground female terminal 023, and multiple signal female terminals 024; a plug shield 12 is installed on the side of the plug housing 11 away from the socket housing 21, and the male terminal assembly 01 passes through the plug shield 12; a socket shield 22 is installed on the side of the socket housing 21 away from the plug housing 11, and the female terminal assembly 02 passes through the socket shield 22.

[0044] refer to Figure 1 , 2 As shown, in practical applications, sealing gaskets are provided on the inner sides of both the plug body 1 and the socket body 2. The plug body 1 and the socket body 2 are respectively installed on the outer sides of the two energy storage boxes. The sealing gaskets ensure the sealing performance of the connection between the plug body 1 and the socket body 2 and the corresponding energy storage box. When the two energy storage boxes need to be electrically connected, the plug body 1 and the socket body 2 are mated and plugged in, and the male terminal assembly 01 and the female terminal assembly 02 are plugged in to realize the connection between adjacent energy storage boxes. The plug shield 12 and the socket shield 22 respectively wrap the male terminal assembly 01 and the female terminal assembly 02 to prevent the terminals from being exposed and allowing dust to enter the plug body 1 or the socket body 2, thereby improving the sealing performance of the product, ensuring stable signal transmission, and improving the power transmission efficiency.

[0045] refer to Figure 3 , 4 As shown, in this embodiment, the plug housing 11 is provided with a plug mounting portion 111 and a connecting portion 112 connected to the plug mounting portion 111. The male terminal assembly 01 passes through the plug mounting portion 111 and extends into the connecting portion 112. The socket housing 21 is provided with a socket mounting portion 211 and a receiving portion 212 connected to the socket mounting portion 211. The receiving portion 212 is provided with a receiving cavity 213. The female terminal assembly 02 passes through the socket mounting portion 211 and extends into the receiving cavity 213. When the plug body 1 and the socket body 2 are plugged in, the connecting portion 112 is inserted into the receiving cavity 213, and the male terminal assembly 01 and the female terminal assembly 02 are plugged in, thus successfully hiding the plugged portions of the male terminal assembly 01 and the female terminal assembly 02 within the connecting portion 112, making it easy to install, simple in structure, and reliable in connection.

[0046] refer to Figure 1As shown, in this embodiment, the plug shield 12 is provided with a positive male terminal mounting hole 121, a negative male terminal mounting hole 122, a ground male terminal mounting hole 123, multiple signal male terminal mounting holes 124, and a plug notch 125. The plug notch 125 is connected to the outer end of the signal male terminal mounting hole 124. In practical applications, the positive male terminal 011, negative male terminal 012, ground male terminal 013, and signal male terminal 014 are respectively passed through the positive male terminal mounting hole 121, negative male terminal mounting hole 122, ground male terminal mounting hole 123, and signal male terminal mounting hole 124, which can realize the rapid installation of the male terminal assembly 01, facilitate the rapid installation or disassembly of the plug body 1, improve the installation efficiency of the male terminal, and reduce labor costs. The plug notch 125 shortens the installation distance of the signal male terminal 014, making it easier to adapt to shorter signal male terminals 014.

[0047] refer to Figure 2 As shown, in this embodiment, the socket shield 22 is provided with a positive female terminal mounting hole 221, a negative female terminal mounting hole 222, a ground female terminal mounting hole 223, multiple signal female terminal mounting holes 224, and a socket notch 225. The socket notch 225 is connected to the outer end of the signal female terminal mounting hole 224. In practical applications, the positive female terminal 021, negative female terminal 022, ground female terminal 023, and signal female terminal 024 are respectively inserted into the positive female terminal mounting hole 221, negative female terminal mounting hole 222, ground female terminal mounting hole 223, and signal female terminal mounting hole 224, which can realize the rapid installation of the female terminal assembly 02, facilitate the quick installation or disassembly of the socket body 2, improve the installation efficiency of the female terminal, and reduce labor costs. The socket notch 225 shortens the installation distance of the signal female terminal 224, making it easier to adapt to shorter signal female terminal 224s.

[0048] refer to Figure 7 As shown, in this embodiment, the plug housing 11 is provided with a plug guide groove 113, and the plug shield 12 is slidably fitted into the plug guide groove 113 to facilitate the guidance and positioning of the plug shield 12 and the plug housing 11 for easy insertion and removal; the inner side wall of the plug guide groove 113 is provided with a plug slot 1131, and the plug shield 12 is provided with a plug elastic buckle 126, which is engaged in the plug slot 1131 to facilitate the disassembly and assembly of the plug shield 12 and make installation convenient.

[0049] refer to Figure 8As shown, the socket housing 21 is provided with a socket guide groove 214, and the socket shield 22 is slidably fitted into the socket guide groove 214 to facilitate the insertion and positioning of the socket shield 22 into the socket housing 21, making it easy to insert and remove; the inner side wall of the socket guide groove 214 is provided with a socket slot 2141, and the socket shield 22 is provided with a socket elastic buckle 226, which is engaged in the socket slot 2141 to facilitate the disassembly and assembly of the socket shield 22, making installation convenient.

[0050] refer to Figure 4 As shown, in this embodiment, the socket mounting part 211 is provided with a first mounting cylinder 2111, a second mounting cylinder 2112, a third mounting cylinder 2113, and a signal mounting body 2114. (Refer to...) Figure 6 As shown, the positive female terminal 021, negative female terminal 022, ground female terminal 023, and signal female terminal 024 are respectively mounted on the first mounting cylinder 2111, the second mounting cylinder 2112, the third mounting cylinder 2113, and the signal mounting body 2114; the joint portion 112 is provided with a first mounting cavity 1121 and a second mounting cavity 1122 that respectively mate with the first mounting cylinder 2111, the second mounting cylinder 2112, the third mounting cylinder 2113, and the signal mounting body 2114. The third mounting cavity 1123 and the signal mounting cavity 1124, wherein the positive male terminal 011, the negative male terminal 012, the ground male terminal 013 and the signal male terminal 014 extend into the first mounting cavity 1121, the second mounting cavity 1122, the third mounting cavity 1123 and the signal mounting cavity 1124 respectively, so that when the plug body 1 and the socket body 2 are plugged in, the positive, negative, ground and signal terminals are respectively in the corresponding accommodating space, preventing mutual interference between terminals and ensuring connection stability.

[0051] refer to Figure 3 , 4 As shown, in this embodiment, the joint 112 is provided with a guide hole 1125, and the socket housing 21 is provided with a guide post 215 that cooperates with the guide hole 1125. The guide post 215 is located in the receiving cavity 213, and the joint 112 is provided with a sealing ring 1126. In actual application, when the plug body 1 and the socket body 2 are plugged in, the joint 112 and the sealing ring 1126 are inserted into the receiving cavity 213, so that the plug housing 11 and the socket housing 21 are sealed together, thereby improving the waterproof performance.

[0052] refer to Figure 9As shown, in this embodiment, the plug housing 11 is fitted with a bushing 13, and the socket housing 21 is fitted with a shoulder nut 23. A movable gap is provided between the bushing 13 and the plug housing 11. The plug housing 11 and the socket housing 21 are connected to external components using the bushing 13 and the shoulder nut 23, respectively. In practical applications, four bushings 13 and four shoulder nuts 23 are provided and located around the plug housing 11 and the socket housing 21, respectively. Since there is a movable gap between the bushing 13 and the plug housing 11, the connection between the external components and the plug housing 11 does not require precise alignment, ensuring that the plug housing 11 and the socket housing 21 can be positioned within a floating range, thereby achieving rapid connection.

[0053] refer to Figure 10 As shown, in this embodiment, the plug housing 11 is provided with a through hole 1101, and the bushing 13 includes a head 1301, a sleeve rod 1302 connected to the head 1301, and a retaining ring 1303. One end of the sleeve rod 1302 passes through the through hole 1101 and is connected to the retaining ring 1303. The outer diameter of the sleeve rod 1302 is smaller than the diameter of the through hole 1101, so that there is a horizontal movement gap between the sleeve rod 1302 and the through hole 1101, thereby providing a horizontal movement gap between the bushing 13 and the plug housing 11. The distance between the retaining ring 1303 and the head 1301 is greater than the depth of the through hole 1101, so that there is an vertical movement gap between the bushing 13 and the plug housing 11.

[0054] refer to Figure 9 , 10 As shown, in practical applications, the external components are first connected to the shoulder nut 23, so that the socket housing 21 can be smoothly connected to the corresponding energy storage box, which facilitates the positioning of one of the energy storage boxes and improves installation efficiency. Then, the external components are connected to the bushing 13. Since there is a horizontal and vertical movement gap between the bushing 13 and the plug housing 11, the connection between the plug housing 11 and the external components does not require precise alignment, thereby achieving a quick connection and improving the installation efficiency of the plug housing 11 and the socket housing 21.

[0055] refer to Figure 11 , 12As shown, in this embodiment, one end of the third mounting cylinder 2113 is provided with an end positioning part 21131, and the front end of the ground wire female terminal 023 abuts against the end positioning part 21131; the ground wire female terminal 023 is provided with an annular limiting groove 0231, and the annular limiting groove 0231 is fitted with an elastic claw 03, the elastic claw 03 is provided with an axial notch 031 and a radial engaging part 032, the socket shield 22 is provided with a terminal receiving groove 227, and the bottom end of the radial engaging part 032 abuts against the inner sidewall of the terminal receiving groove 227; in practical applications, the end positioning part 21131 and the terminal receiving groove 227 are used to position the two ends of the ground wire female terminal 023 respectively, thereby improving the installation accuracy of the ground wire female terminal 023; Reference Figure 12 As shown, when the elastic claw 03 needs to be replaced, the two ends of the axial notch 031 are widened until the elastic claw 03 is disengaged from the ground wire female terminal 023. It is easy to disassemble and install, and it is convenient to replace or maintain the elastic claw 03, so that the ground wire female terminal 023 is stably connected.

[0056] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some changes or modifications to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes, and modifications made to the above embodiments based on the present utility model without departing from the scope of the present utility model shall fall within the scope of the present utility model.

Claims

1. An integrated energy storage connector that is easy for users to use, characterized in that, The device includes a plug body (1) and a socket body (2) that is plugged into the plug body (1). The plug body (1) includes a plug housing (11) and a male terminal assembly (01) installed on the plug housing (11). The socket body (2) includes a socket housing (21) and a female terminal assembly (02) installed on the socket housing (21). The male terminal assembly (01) includes a positive male terminal (011), a negative male terminal (012), a ground male terminal (013), and multiple signal male terminals (014). The female terminal assembly (02) includes a positive female terminal (021), a negative female terminal (022), a ground female terminal (023), and multiple signal female terminals (024). A plug shield (12) is installed on the side of the plug housing (11) away from the socket housing (21), and the male terminal assembly (01) passes through the plug shield (12). A socket shield (22) is installed on the side of the socket housing (21) away from the plug housing (11), and the female terminal assembly (02) passes through the socket shield (22). When the plug body (1) is plugged into the socket body (2), the male terminal assembly (01) is plugged into the female terminal assembly (02).

2. The user-friendly integrated energy storage connector according to claim 1, characterized in that, The plug housing (11) is provided with a plug mounting part (111) and a joint part (112) connected to the plug mounting part (111). The male terminal assembly (01) passes through the plug mounting part (111) and extends into the joint part (112). The socket housing (21) is provided with a socket mounting part (211) and a receiving part (212) connected to the socket mounting part (211). The receiving part (212) is provided with a receiving cavity (213). The female terminal assembly (02) passes through the socket mounting part (211) and extends into the receiving cavity (213). When the plug body (1) is plugged into the socket body (2), the joint (112) is inserted into the receiving cavity (213), and the male terminal assembly (01) is plugged into the female terminal assembly (02).

3. The user-friendly integrated energy storage connector according to claim 1, characterized in that, The plug shield (12) is provided with a positive male terminal mounting hole (121), a negative male terminal mounting hole (122), a ground male terminal mounting hole (123), multiple signal male terminal mounting holes (124) and a plug notch (125), and the plug notch (125) is connected to the outer end of the signal male terminal mounting hole (124); The positive male terminal (011), negative male terminal (012), ground male terminal (013) and signal male terminal (014) are respectively installed in the positive male terminal mounting hole (121), negative male terminal mounting hole (122), ground male terminal mounting hole (123) and signal male terminal mounting hole (124).

4. The user-friendly integrated energy storage connector according to claim 1, characterized in that, The socket shield (22) is provided with a positive female terminal mounting hole (221), a negative female terminal mounting hole (222), a ground female terminal mounting hole (223), multiple signal female terminal mounting holes (224) and a socket notch (225), and the socket notch (225) is connected to the outer end of the signal female terminal mounting hole (224); The positive female terminal (021), negative female terminal (022), ground female terminal (023) and signal female terminal (024) are respectively installed in the positive female terminal mounting hole (221), negative female terminal mounting hole (222), ground female terminal mounting hole (223) and signal female terminal mounting hole (224).

5. The user-friendly integrated energy storage connector according to claim 1, characterized in that, The plug housing (11) is provided with a plug guide groove (113), the plug shield (12) is slidably fitted in the plug guide groove (113), the inner side wall of the plug guide groove (113) is provided with a plug slot (1131), the plug shield (12) is provided with a plug elastic buckle (126), and the plug elastic buckle (126) is engaged in the plug slot (1131). The socket housing (21) is provided with a socket guide groove (214), the socket shield (22) is slidably fitted in the socket guide groove (214), the inner side wall of the socket guide groove (214) is provided with a socket slot (2141), the socket shield (22) is provided with a socket elastic buckle (226), and the socket elastic buckle (226) is engaged in the socket slot (2141).

6. The user-friendly integrated energy storage connector according to claim 2, characterized in that, The socket mounting part (211) is provided with a first mounting cylinder (2111), a second mounting cylinder (2112), a third mounting cylinder (2113), and a signal mounting body (2114). The positive female terminal (021), the negative female terminal (022), the ground female terminal (023), and the signal female terminal (024) are respectively mounted on the first mounting cylinder (2111), the second mounting cylinder (2112), the third mounting cylinder (2113), and the signal mounting body (2114). The joint (112) is provided with a first mounting cavity (1121), a second mounting cavity (1122), a third mounting cavity (1123), and a signal mounting cavity (1124) that respectively cooperate with the first mounting cylinder (2111), the second mounting cylinder (2112), the third mounting cylinder (2113), and the signal mounting body (2114). The positive male terminal (011), the negative male terminal (012), the ground male terminal (013), and the signal male terminal (014) respectively extend into the first mounting cavity (1121), the second mounting cavity (1122), the third mounting cavity (1123), and the signal mounting cavity (1124).

7. The user-friendly integrated energy storage connector according to claim 2, characterized in that, The joint (112) is provided with a guide hole (1125), the socket housing (21) is provided with a guide post (215) that mates with the guide hole (1125), the guide post (215) is located in the accommodating cavity (213), and the joint (112) is provided with a sealing ring (1126). When the plug body (1) is plugged into the socket body (2), the joint (112) and the sealing ring (1126) are inserted into the receiving cavity (213).

8. The user-friendly integrated energy storage connector according to claim 1, characterized in that, The plug housing (11) is fitted with a bushing (13), and the socket housing (21) is fitted with a shoulder nut (23). There is a movable gap between the bushing (13) and the plug housing (11). The plug housing (11) and the socket housing (21) are connected to external components by the bushing (13) and the shoulder nut (23), respectively.

9. The user-friendly integrated energy storage connector according to claim 8, characterized in that, The plug housing (11) is provided with a through hole (1101). The bushing (13) includes a head (1301), a sleeve rod (1302) connected to the head (1301), and a retaining ring (1303). One end of the sleeve rod (1302) passes through the through hole (1101) and is connected to the retaining ring (1303). The outer diameter of the sleeve rod (1302) is smaller than the diameter of the through hole (1101) so that there is a horizontal movement gap between the sleeve rod (1302) and the through hole (1101). The distance between the retaining ring (1303) and the head (1301) is greater than the depth of the through hole (1101) so that there is an up-down movement gap between the bushing (13) and the plug housing (11).

10. The user-friendly integrated energy storage connector according to claim 6, characterized in that, One end of the third mounting cylinder (2113) is provided with an end positioning part (21131), and the front end of the ground wire female terminal (023) abuts against the end positioning part (21131). The grounding female terminal (023) is provided with an annular limiting groove (0231), the annular limiting groove (0231) is fitted with an elastic claw (03), the elastic claw (03) is provided with an axial notch (031) and a radial locking part (032), the socket shield (22) is provided with a terminal receiving groove (227), and the bottom end of the radial locking part (032) abuts against the inner sidewall of the terminal receiving groove (227).