Anti-drop connector for network connection
Through the double-layer fixed structure, the problem of the network connection connector being easily fall off after multiple plug-ins and unplugging is solved, and the stable connection between the socket and the plug is achieved, and the reliability of the connection is improved.
Patent Information
- Application Number
- CN202421951997.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-13
AI Technical Summary
The connectors for existing network connections are easily deformed and fall off after multiple plug-ins and unplugging, resulting in unstable connections.
It adopts a double-layer fixed structure, including a clamping mechanism and a locking mechanism, and the stable connection between the plug and the socket is achieved through the cooperation of the triangular clamp block and the rotating cylinder.
Effectively prevent the socket from deforming and falling off after multiple plugging and unplugging, improving the stability and reliability of network connections.
Smart Images

Figure CN223079491U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of network connection accessories, in particular to a plug for anti - detachment network connection. Background Technique
[0002] With the progress and development of society, the main supporting fields of network - connection plugs and sockets are industry, transportation, communication, network, IT, medical treatment, household appliances, etc. The rapid development of product technology levels in the supporting fields and the rapid growth of their markets strongly drive the development of connector technology. Nowadays, any communication is inseparable from network transmission. Network - connection plugs and sockets are one of the important components of network structures. Existing network - connection plugs and sockets are installed in slots with plugs, and the internal support structure is completed by plastic shrapnel at the upper end of the plugs to prevent the plug - in components from falling out of the slots. This is mainly due to the particularity of their connection method. The plug wiring is connected to the device through plugging and unplugging, and the increase in the number of plug - in and unplugging times will cause deformation of the socket and easy detachment. Therefore, we propose a plug for anti - detachment network connection. Content of the Utility Model
[0003] The technical problem to be solved by the utility model is to overcome the existing defects, provide a plug for anti - detachment network connection, double - layer fixation to ensure the stability of the network - connection plug - in after connection, solve the problem of easy detachment due to socket deformation after multiple plug - ins and unplug - outs, and can effectively solve the problems in the background technique.
[0004] To achieve the above purpose, the utility model provides the following technical scheme: A plug for anti - detachment network connection, comprising a socket, a clamping mechanism and a locking mechanism;
[0005] Socket: A plug is inserted into it. A wire hole one is opened in the middle of the plug. A plug wire row pipe is fixedly installed on the right side of the wire hole one. A wire hole two is opened on the left side of the socket. A socket wire row pipe is fixedly installed on the left side of the wire hole two.
[0006] Clamping mechanism: It is respectively arranged between the front and rear sides of the socket and the plug.
[0007] Locking mechanism: It is arranged between the right end of the plug and the right end of the socket. Double - layer fixation ensures the stability of the network - connection plug - in after connection, solves the problem of easy detachment due to socket deformation after multiple plug - ins and unplug - outs, has a good anti - detachment effect, and can further fix the locking component after the connection of the network - connection plug - in, with strong reliability.
[0008] Further, the clamping mechanism includes a second spring, a first triangular clamping block, a second triangular clamping block, and a third triangular clamping block. Installation grooves are formed at the left ends of the front wall and the rear wall of the socket. The two first triangular clamping blocks are respectively slidably connected inside the two installation grooves. Second springs are arranged between the outer sides of the two first triangular clamping blocks facing away from each other and the inner walls of the installation grooves. Adjusting columns are fixedly connected to the middle parts of the outer sides of the first triangular clamping blocks facing away from each other. The adjusting columns are slidably connected to the sliding holes in the middle of the socket. Second triangular clamping blocks are arranged at the left ends of the front side and the rear side of the plug. Third triangular clamping blocks are fixedly connected to the leftmost ends of the front side and the rear side of the plug. The first triangular clamping blocks are all located between the laterally adjacent second triangular clamping blocks and third triangular clamping blocks, and the plug is clamped into the socket.
[0009] Further, the locking mechanism includes a rotating cylinder, a locking block, and a locking groove. The rotating cylinder is rotatably connected to the outside of the wiring pipe. A locking block is arranged at the left end of the outer surface of the rotating cylinder. The locking block is sleeved on the outer side of the wiring pipe of the plug. A locking groove is formed at the right end of the socket. The locking block and the locking groove are cooperatively installed for further locking.
[0010] Further, the locking mechanism further includes a torsion spring. The torsion spring is arranged between the left side surface of the locking block and the right side surface of the plug. The torsion spring is sleeved on the outer side of the wiring pipe to achieve automatic locking.
[0011] Further, guiding grooves are formed in both the upper wall and the lower wall of the socket. Guiding blocks are fixedly connected to both the upper side surface and the lower side surface of the plug. The guiding blocks and the vertically adjacent guiding grooves are cooperatively installed for plugging guiding and close cooperation.
[0012] Further, copper contact plates are respectively arranged at the upper end of the left wall of the socket and the lower end of the right wall of the plug. The two copper contact plates are cooperatively installed for network connection.
[0013] Further, first springs are arranged at the four corners of the right wall of the socket to improve stability.
[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows: The anti-detachment network connection connector has the following advantages:
[0015] The installer connects the network cable to the copper contact plate through the inside of the socket wire row pipe and the plug row pipe respectively. Align the guiding block on the plug with the guiding groove, insert the plug into the socket, twist the rotating cylinder, twist the locking block by ninety degrees, the first triangular locking block contacts the third triangular locking block, push the plug further into the socket. The inclined surfaces of the first triangular locking block and the third triangular locking block generate a force away from the plug, respectively pushing the two first triangular locking blocks to slide into the adjacent installation grooves. The spring two in the installation groove is compressed and contracted, the first triangular locking block retracts into the installation groove. After the third triangular locking block passes through, the spring two rebounds, and the first triangular locking block is clamped between the second triangular locking block and the third triangular locking block, clamping the plug in the socket. Release the rotating cylinder, the torsion spring rebounds, and the locking block is clamped into the locking groove, completing the installation of the anti - detachment network connection connector. If you want to remove the plug, twist the rotating cylinder, twist the locking block by ninety degrees, pull the adjusting column, pull the first triangular locking block into the installation groove, push the plug further in. The left side of the plug squeezes the spring one in the socket. Release the thrust of the plug, the spring one rebounds, and ejects the plug. Release the adjusting column, and the installer pulls the right end of the plug to pull the plug out of the socket. The double - layer fixation ensures the stability of the network connection connector after connection, solves the problem of easy detachment due to socket deformation after multiple plug - ins and withdrawals, has a good anti - detachment effect, can further fix the locking component after the connection of the network connection connector, and has strong reliability. Description of the Drawings
[0016] Figure 1 It is a schematic structural diagram of the present utility model;
[0017] Figure 2 It is a schematic exploded structural diagram of the plug and the socket of the present utility model;
[0018] Figure 3 It is a schematic front - view sectional structural diagram of the socket of the present utility model;
[0019] Figure 4 It is a schematic enlarged structural diagram at position A of the present utility model;
[0020] Figure 5 It is a schematic front - view sectional structural diagram of the plug of the present utility model.
[0021] In the figure: 1 socket, 2 plug, 3 socket wire row pipe, 4 plug row pipe, 5 spring one, 6 clamping mechanism, 61 spring two, 62 first triangular locking block, 63 second triangular locking block, 64 third triangular locking block, 7 locking mechanism, 71 rotating cylinder, 72 locking block, 73 locking groove, 74 torsion spring, 8 guiding block, 9 guiding groove, 10 copper contact plate, 11 adjusting column. Detailed Embodiment
[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model.
[0023] Please refer to Figures 1-5 , this embodiment provides a technical solution: a detachable connector for network connection, including a socket 1, a clamping mechanism 6 and a locking mechanism 7;
[0024] Socket 1: A plug 2 is inserted therein. A wire hole 1 is provided in the middle of the plug 2. A plug wire row tube 4 is fixedly installed on the right side of the wire hole 1. A wire hole 2 is provided on the left side surface of the socket 1. A socket wire row tube 3 is fixedly installed on the left side of the wire hole 2. Guide grooves 9 are provided on both the upper wall and the lower wall of the socket 1. Guide blocks 8 are fixedly connected to both the upper side surface and the lower side surface of the plug 2. The guide blocks 8 are fitted and installed with the vertically adjacent guide grooves 9. Copper contact plates 10 are respectively provided at the upper end of the left wall of the socket 1 and the lower end of the right wall of the plug 2. The two copper contact plates 10 are fitted and installed. Springs 1 5 are provided at the four corners of the right wall of the socket 1. Workers connect the network cables to the copper contact plates 10 through the inside of the socket wire row tube 3 and the plug wire row tube 4 respectively. Align the guide blocks 8 on the plug 2 with the guide grooves 9, and insert the plug 2 into the socket 1;
[0025] Snap connection mechanism 6: It is respectively arranged between the front and rear sides of the socket 1 and the plug 2. The snap connection mechanism 6 includes a second spring 61, a first triangular latch 62, a second triangular latch 63, and a third triangular latch 64. Installation grooves are provided at the left ends of the front wall and the rear wall of the socket 1. The two first triangular latches 62 are respectively slidably connected to the interiors of the two installation grooves. A second spring 61 is arranged between the outer sides of the two first triangular latches 62 facing away from each other and the inner walls of the installation grooves. Adjusting columns 11 are fixedly connected to the middle parts of the outer sides of the first triangular latches 62 facing away from each other. The adjusting columns 11 are slidably connected to the sliding holes in the middle of the socket 1. The left ends of the front side and the rear side of the plug 2 are respectively provided with second triangular latches 63. The leftmost ends of the front side and the rear side of the plug 2 are fixedly connected with third triangular latches 64. The first triangular latches 62 are all located between the laterally adjacent second triangular latches 63 and third triangular latches 64. The first triangular latches 62 are in contact with the third triangular latches 64. When the plug 2 is further pushed into the socket 1, the inclined surfaces of the first triangular latches 62 and the inclined surfaces of the third triangular latches 64 generate forces away from the plug 2, respectively pushing the two first triangular latches 62 to slide into the adjacent installation grooves. The second springs 61 in the installation grooves are compressed and contracted. The first triangular latches 62 retract into the installation grooves. After the third triangular latches 64 pass through, the second springs 61 rebound, and the first triangular latches 62 are snapped into the space between the second triangular latches 63 and the third triangular latches 64, clamping the plug 2 in the socket 1. By pulling the adjusting columns 11, the first triangular latches 62 are pulled into the installation grooves, and the plug 2 is further pushed in. The left side surface of the plug 2 presses the first spring 5 in the socket 1. When the pushing force of the plug 2 is released, the first spring 5 rebounds, ejecting the plug 2. When the adjusting columns 11 are released, the installer pulls the right end of the plug 2 to pull the plug 2 out of the socket 1;
[0026] Locking mechanism 7: It is arranged between the right end of the plug 2 and the right end of the socket 1. The locking mechanism 7 includes a rotating cylinder 71, a locking block 72, and a locking groove 73. The rotating cylinder 71 is rotatably connected to the outside of the cable duct 4. A locking block 72 is provided at the left end of the outer surface of the rotating cylinder 71. The locking block 72 is sleeved on the outer side surface of the plug cable duct 4. A locking groove 73 is provided at the right end of the socket 1. The locking block 72 and the locking groove 73 are fitted and installed. The locking mechanism 7 further includes a torsion spring 74. The torsion spring 74 is arranged between the left side surface of the locking block 72 and the right side surface of the plug 2. The torsion spring 74 is sleeved on the outer side surface of the cable duct 4. By twisting the rotating cylinder 71, the locking block 72 is twisted by 90 degrees. When the rotating cylinder 71 is released, the torsion spring 74 rebounds, snapping the locking block 72 into the locking groove 73. The double-layer fixation ensures the stability of the network connection after the connection of the connector, solves the problem of easy detachment due to the deformation of the socket after multiple pluggings and unplugging, has a good anti-detachment effect, and can further fix the locking component after the connection of the network connection connector, with strong reliability.
[0027] The working principle of a plug - in connector for anti - detachment network connection provided by the present utility model is as follows: The installer connects the network cable to the copper contact plate 10 through the inside of the socket wire row tube 3 and the plug wire row tube 4 respectively. The guide block 8 on the plug 2 is aligned with the guide groove 9, and the plug 2 is inserted into the socket 1. Twist the rotating cylinder 71, and twist the locking block 72 by ninety degrees. The first triangular block 62 contacts the third triangular block 64. The plug 2 is further pushed into the socket 1. The inclined surfaces of the first triangular block 62 and the third triangular block 64 generate a force away from the plug 2, respectively pushing the two first triangular blocks 62 to slide into the adjacent installation grooves. The spring two 61 in the installation groove is compressed and contracted, and the first triangular block 62 retracts into the installation groove. After the third triangular block 64 passes through, the spring two 61 rebounds, and the first triangular block 62 is stuck between the second triangular block 63 and the third triangular block 64, locking the plug 2 in the socket 1. Loosen the rotating cylinder 71, and the torsion spring 74 rebounds, locking the locking block 72 into the locking groove 73, completing the installation of the plug - in connector for anti - detachment network connection. If the plug 2 needs to be removed, twist the rotating cylinder 71, twist the locking block 72 by ninety degrees, pull the adjusting column 11, pull the first triangular block 62 into the installation groove, further push the plug 2 in. The left side of the plug 2 squeezes the spring one 5 in the socket 1. Release the pushing force of the plug 2, and the spring one 5 rebounds, ejecting the plug 2. Release the adjusting column 11, and the installer pulls the right end of the plug 2 to pull the plug 2 out of the socket 1.
[0028] The above are only the embodiments of the present utility model, and do not limit the patent scope of the present utility model. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, shall be included in the patent protection scope of the present utility model by the same token.
Claims
1. A detachable connector for network connection, characterized in that: It includes a socket (1), a clamping mechanism (6) and a locking mechanism (7); Socket (1): A plug (2) is inserted therein. A first wire hole is provided in the middle of the plug (2). A plug wire row pipe (4) is fixedly installed on the right side of the first wire hole. A second wire hole is provided on the left side surface of the socket (1). A socket wire row pipe (3) is fixedly installed on the left side of the second wire hole; Clamping mechanism (6): It is respectively arranged between the front and rear side surfaces of the socket (1) and the plug (2); Locking mechanism (7): It is arranged between the right end of the plug (2) and the right end of the socket (1).
2. The detachable network connection plug according to claim 1, wherein: The clamping mechanism (6) includes a second spring (61), a first triangular clamping block (62), a second triangular clamping block (63) and a third triangular clamping block (64). Installation grooves are provided at the left ends of the front wall and the rear wall of the socket (1). The two first triangular clamping blocks (62) are respectively slidably connected inside the two installation grooves. Second springs (61) are arranged between the outer sides facing away from each other of the two first triangular clamping blocks (62) and the inner walls of the installation grooves. Adjusting columns (11) are fixedly connected to the middle of the outer sides facing away from each other of the first triangular clamping blocks (62). The adjusting columns (11) are slidably connected to the sliding holes in the middle of the socket (1). Second triangular clamping blocks (63) are provided at the left ends of the front side surface and the rear side surface of the plug (2). Third triangular clamping blocks (64) are fixedly connected to the leftmost ends of the front side surface and the rear side surface of the plug (2). The first triangular clamping blocks (62) are all located between the laterally adjacent second triangular clamping blocks (63) and third triangular clamping blocks (64).
3. The plug-in connector for anti-disconnection network connection according to claim 1, characterized in that: The locking mechanism (7) includes a rotating cylinder (71), a locking block (72) and a locking groove (73). The rotating cylinder (71) is rotatably connected to the outside of the wire row pipe (4). A locking block (72) is provided at the left end of the outer surface of the rotating cylinder (71). The locking block (72) is sleeved on the outer side surface of the plug wire row pipe (4). A locking groove (73) is provided at the right end of the socket (1). The locking block (72) and the locking groove (73) are cooperatively installed.
4. The detachable network connection plug-in according to claim 3, characterized in that: The locking mechanism (7) further includes a torsion spring (74). The torsion spring (74) is arranged between the left side surface of the locking block (72) and the right side surface of the plug (2). The torsion spring (74) is sleeved on the outer side surface of the wire row pipe (4).
5. The plug-in connector for anti-disconnection network connection according to claim 1, characterized in that: Guide grooves (9) are provided on both the upper wall and the lower wall of the socket (1). Guide blocks (8) are fixedly connected to both the upper side surface and the lower side surface of the plug (2). The guide blocks (8) and the vertically adjacent guide grooves (9) are cooperatively installed.
6. The plug-in connector for anti-disconnection network connection according to claim 1, characterized in that: Copper contact plates (10) are respectively arranged at the upper end of the left wall of the socket (1) and the lower end of the right wall of the plug (2). The two copper contact plates (10) are cooperatively installed.
7. The plug-in connector for anti-disconnection network connection according to claim 1, wherein: First springs (5) are arranged at the four corners of the right wall of the socket (1).