Quick-plug type energy storage connector

By using corrugated rubber sleeves, docking mechanisms and locking mechanisms in the quick plug energy storage connector, the sealing of male terminals and sockets is solved, and the existing connector lacks waterproof structure is ensured, ensuring the waterproof performance and service life of the connector.

CN222966396UActive Publication Date: 2025-06-10JIANGSU HECHENG NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421925029.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2025-06-10
Estimated Expiration
2034-08-09

AI Technical Summary

Technical Problem

The lack of waterproof structure in the connection position of the existing connectors leads to water inlet, affecting the service life of the electronic components and possibly causing power outage.

Method used

A quick plug energy storage connector is designed, using a corrugated rubber sleeve, docking mechanism and locking mechanism. The connection between the internal threaded column and the docking hole is combined with the adsorption of the outer space film and the strong magnet sheet to achieve sealing of the male terminal and the socket.

Benefits of technology

Effectively prevent external rainwater from seeping in, ensure the waterproof performance of the connector, thereby extending the service life and improving the stability of equipment docking.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222966396U_ABST
    Figure CN222966396U_ABST
Patent Text Reader

Abstract

The utility model discloses a quick plug type energy storage connector, which relates to the technical field of connectors, and comprises a plug shell and a socket shell, the bottom end of the plug shell is connected with a corrugated rubber sleeve, one side of the plug shell is provided with a butt joint mechanism, the butt joint mechanism is used for quick plug butt joint of the plug shell and the socket shell, and the plug shell is connected with the socket shell through a pin. According to the utility model, the plug shell and the socket shell are arranged in the housing, butt joint can be carried out without observation, the locking mechanism is arranged between the plug shell and the socket shell, and the locking mechanism carries out locking processing on the joint of the plug shell and the socket shell, thereby preventing the joint of the plug shell and the socket shell from loosening, and further preventing the stability of equipment in the butt joint process from being influenced. In the butt joint process, butt joint is carried out through the internal thread columns and the butt joint holes, so that rapid butt joint processing can be carried out on the jacks and the male terminals manually, the plug assembly and the socket assembly are limited and fixed, plugging and use are simple, and use by operators is facilitated.
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Description

Technical Field

[0001] The utility model relates to the technical field of connectors, in particular to a quick-insert energy storage connector. Background Art

[0002] An electrical connector can achieve electrical conduction between two independent electrical structures; an energy storage connector is a common type of electrical connector, which is used to connect an energy storage system (such as a battery) and other electrical devices, and is widely used in fields such as electric vehicles, solar and wind energy systems, and grid energy storage systems.

[0003] The connection position of the existing connector lacks a waterproof structure, so the connector does not have a waterproof function. It is easy for water vapor to enter at the connection position between the male and female ends of the connector, affecting the service life of the internal electronic components of the connector. Unrelated external personnel can easily touch the connector by mistake, which may cause the connector to lose power during operation. Summary of the Invention

[0004] The purpose of the utility model is to provide a quick-insert energy storage connector to solve the above-mentioned defects in the prior art.

[0005] A quick-insert energy storage connector includes a plug housing and a socket housing. A corrugated rubber sleeve is connected to the bottom end of the plug housing. A docking mechanism is arranged on one side of the plug housing. The docking mechanism quickly docks the plug housing and the socket housing without the need for observation. A locking mechanism is arranged between the plug housing and the socket housing. The locking mechanism locks the connection between the plug housing and the socket housing to prevent loosening at the connection between the plug housing and the socket housing, thereby affecting the stability during the equipment docking process.

[0006] Preferably, the docking mechanism includes an outer spacer film, an insertion part, an inner groove, a male terminal, a jack, a cast iron sheet, a strong magnet sheet, and a power supply chamber. The power supply chamber is arranged on one side of the socket housing. A jack is opened on one side of the socket housing. Cast iron sheets are symmetrically arranged on the outer side of the socket housing. Strong magnet sheets are symmetrically arranged on the outer side of the outer spacer film. Insertion parts are symmetrically connected to the bottom end of the socket housing. An inner groove is opened on one side of the power supply chamber, and male terminals are symmetrically arranged inside the inner groove.

[0007] Preferably, the power supply chamber is connected to the jack through the male terminal arranged on one side.

[0008] Preferably, the locking mechanism includes an external rubber block, an external spacer film, a docking hole, an internal threaded column, and a ball screw. An external rubber block is adhesively connected to one side of the power supply chamber. The external threaded columns are symmetrically arranged on the outside of the external rubber block. A ball screw is connected inside the internal threaded column. An external spacer film is arranged on the other side of the external rubber block. Docking holes are symmetrically arranged on the outside of the external spacer film.

[0009] Preferably, the internal threaded column is connected to the docking hole through the ball screw arranged on one side.

[0010] Preferably, the external spacer film is connected to the cast iron sheet through symmetrically arranged strong magnet sheets.

[0011] Compared with the prior art, the utility model has the following advantages:

[0012] 1. During the docking process, the internal threaded column is docked with the docking hole, which facilitates the rapid docking of the jack and the male terminal by manual operation, completes the limiting and fixing of the plug assembly and the socket assembly, and is simple to plug and use, which is convenient for the operator. At the same time, the internal threaded column is connected to the docking hole, and the connection between the male terminal and the jack is sealed, effectively preventing external rainwater from directly seeping into the gaps between the jack and the male terminal.

[0013] 2. The ball screw penetrates and connects the two sides of the external spacer film, and then the ball screw is locked to the external spacer film through a nut. The external spacer rubber and the external rubber block seal the connection between the docking hole and the male terminal, preventing water vapor from entering the docking hole and the male terminal through the plugging position, achieving the waterproof effect, and thus ensuring the service life of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a three-dimensional structural schematic diagram of the whole utility model.

[0015] Figure 2 It is a structural schematic diagram of the plug housing itself in the utility model.

[0016] Figure 3 It is a front-view structural schematic diagram of the external spacer film in the utility model.

[0017] Figure 4 It is a side-view structural schematic diagram of the plug housing in the utility model.

[0018] Wherein:

[0019] 1. Plug housing; 2. Corrugated rubber sleeve; 3. External rubber block; 4. Docking mechanism; 5. External separator film; 6. Docking hole; 7. Socket housing; 8. Insertion part; 9. Inner groove; 10. Male terminal; 11. Inner threaded column; 12. Glass bead screw; 13. Cast iron sheet; 14. Jack; 15. Strong magnet sheet; 16. Locking mechanism; 17. Power supply chamber. Detailed implementation manner

[0020] In order to make the technical means, creative features, achieved purposes and functions realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with the specific implementation manners.

[0021] As Figures 1 to 4 shown, a quick-insert energy storage connector includes a plug housing 1 and a socket housing 7. A corrugated rubber sleeve 2 is connected to the bottom end of the plug housing 1. A docking mechanism 4 is arranged on one side of the plug housing 1. The docking mechanism 4 performs quick-insert docking on the plug housing 1 and the socket housing 7, and there is no need to observe before docking. A locking mechanism 16 is arranged between the plug housing 1 and the socket housing 7. The locking mechanism 16 performs locking treatment on the connection part of the plug housing 1 and the socket housing 7 to prevent loosening at the connection part of the plug housing 1 and the socket housing 7, thereby affecting the stability during the equipment docking process.

[0022] In this embodiment, the docking mechanism 4 includes an external separator film 5, an insertion part 8, an inner groove 9, a male terminal 10, a jack 14, a cast iron sheet 13, a strong magnet sheet 15 and a power supply chamber 17. The power supply chamber 17 is arranged on one side of the socket housing 7. A jack 14 is opened on one side of the socket housing 7. Cast iron sheets 13 are symmetrically arranged on the outside of the socket housing 7. Strong magnet sheets 15 are symmetrically arranged on the outside of the external separator film 5. Insertion parts 8 are symmetrically connected to the bottom end of the socket housing 7. An inner groove 9 is opened on one side of the power supply chamber 17. Male terminals 10 are symmetrically arranged inside the inner groove 9.

[0023] In this embodiment, the power supply chamber 17 is connected to the jack 14 through the male terminal 10 arranged on one side. The male terminal 10 is directly inserted into the inside of the jack 14 to prevent misalignment during the plugging process.

[0024] In this embodiment, the locking mechanism 16 includes an external rubber block 3, an external separator film 5, a docking hole 6, an inner threaded column 11, and a glass bead screw 12. An external rubber block 3 is adhesively connected to one side of the power supply chamber 17. Inner threaded columns 11 are symmetrically opened on the outside of the external rubber block 3. A glass bead screw 12 is connected inside the inner threaded column 11. An external separator film 5 is arranged on the other side of the external rubber block 3. Docking holes 6 are symmetrically opened on the outside of the external separator film 5.

[0025] In this embodiment, the internal thread post 11 is connected to the docking hole 6 through the bead screw 12 provided on one side, and the external isolation film 5 is docked through the internal thread post 11, facilitating the locking of the external isolation film 5.

[0026] In this embodiment, the external isolation film 5 is connected to the cast iron sheet 13 through the symmetrically arranged strong magnet sheets 15, and the external isolation film 5 is adsorbed through the adsorption of the strong magnet sheets 15 and the cast iron sheet 13, facilitating the docking and adsorption of the external isolation film 5.

[0027] When this quick-insert energy storage connector is actually applied, it includes the following working contents:

[0028] Step 1: The operator first inserts the power connection wires into the inside of the plug housing 1 and the inside of the insertion part 8 provided at the bottom end of the socket housing 7 respectively, and covers the outside of the wires with the corrugated rubber sleeve 2 to prevent external moisture from seeping into the plug housing 1 and the wire access end. The operator holds the plug housing 1 to align the external connection rubber block 3 on the outside of the plug housing 1 with the external isolation film 5.

[0029] Step 2: The operator moves the plug housing 1 to one side, so that the male terminal 10 provided inside the plug housing 1 is inserted into the jack 14, connecting the plug housing 1 and the socket housing 7. During the installation process, the internal thread post 11 and the bead screw 12 are inserted into the docking hole 6, and the outside of the external isolation film 5 is positioned through the internal thread post 11 and the bead screw 12. The operator installs the nut inside the bead screw 12 to lock the external isolation film 5.

[0030] Step 3: When the operator inserts the male terminal 10 into the jack 14 for connection, the cast iron sheet 13 provided on the outside of the external connection rubber block 3 is aligned with the symmetrically arranged strong magnet sheets 15 on the outside of the external isolation film 5, and the strong magnet sheets 15 and the cast iron sheet 13 are adsorbed to complete the connection between the external connection rubber block 3 and the external isolation film 5, thereby positioning the male terminal 10 and preventing the male terminal 10 from loosening or separating from the jack 14.

[0031] Therefore, the above-disclosed embodiments are illustrative in all aspects and not exclusive. All changes within the scope of the present invention or equivalent to the present invention are encompassed by the present invention.

Claims

1. A quick-plug energy storage connector, characterized in that: The invention comprises a plug housing (1) and a socket housing (7), wherein the bottom end of the plug housing (1) is connected to a corrugated rubber sleeve (2), and a docking mechanism (4) is arranged on one side of the plug housing (1), wherein the docking mechanism (4) performs quick plug docking of the plug housing (1) and the socket housing (7) without the need for observation, and a locking mechanism (16) is arranged between the plug housing (1) and the socket housing (7), wherein the locking mechanism (16) performs a locking process on the connection between the plug housing (1) and the socket housing (7), thereby preventing the connection between the plug housing (1) and the socket housing (7) from loosening, thereby affecting the stability of the device during docking.

2. A quick-plug energy storage connector according to claim 1, characterized in that: The docking mechanism (4) comprises an outer spacer (5), an insertion portion (8), an inner groove (9), a male terminal (10), a plug hole (14), a cast iron sheet (13), a strong magnet sheet (15) and a power supply chamber (17); the power supply chamber (17) is arranged on one side of the socket housing (7); the plug hole (14) is provided on one side of the socket housing (7); the cast iron sheet (13) is symmetrically provided on the outer side of the socket housing (7); the strong magnet sheet (15) is symmetrically provided on the outer side of the outer spacer (5); the insertion portion (8) is symmetrically connected to the bottom end of the socket housing (7); the power supply chamber (17) is provided with an inner groove (9) on one side; and the male terminal (10) is symmetrically provided inside the inner groove (9).

3. A quick-plug energy storage connector according to claim 2, characterized in that: The power supply chamber (17) is connected to the socket (14) via a male terminal (10) arranged on one side.

4. The quick-plug energy storage connector according to claim 1, characterized in that: The locking mechanism (16) comprises an external rubber block (3), an external spacer rubber sheet (5), a docking hole (6), an internal thread column (11), and a glass bead screw (12); one side of the power supply chamber (17) is glued and connected to the external rubber block (3); the outer side of the external rubber block (3) is symmetrically provided with an internal thread column (11); the interior of the internal thread column (11) is connected with a glass bead screw (12); the other side of the external rubber block (3) is provided with an external spacer rubber sheet (5); the outer side of the external spacer rubber sheet (5) is symmetrically provided with a docking hole (6).

5. A quick-plug energy storage connector according to claim 4, characterized in that: The internal thread column (11) is connected to the docking hole (6) via a glass bead screw (12) arranged on one side.

6. A quick-plug energy storage connector according to claim 4, characterized in that: The outer spacer film (5) is connected to the cast iron sheet (13) via symmetrically arranged strong magnet sheets (15).