Electric control and mechanical two-in-one faucet lock
By introducing a pull-lock slider assembly and a linkage assembly into the electronically controlled steering lock, the problem of unlocking difficulties caused by damage to the drive assembly is solved, achieving reliable and convenient emergency unlocking and ensuring the safe use of electric vehicles or motorcycles.
Patent Information
- Application Number
- CN202423002504.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-05
AI Technical Summary
When the drive component of an existing electric auger lock is damaged, the bolt cannot move, making unlocking difficult and inconvenient to use.
An electromechanical dual-function throttle lock was designed, comprising a pull-lock slider assembly and a linkage assembly. The mechanical pull lock controls the displacement of the bolt, and the pull-lock slider assembly and the linkage assembly work together to achieve emergency unlocking. The lock lock communicates with the mainboard of the electric vehicle or motorcycle via a tactile switch to ensure that the bolt is moved to the unlock position.
In the event of a drive component failure, emergency unlocking can be achieved mechanically, improving reliability and convenience of use and ensuring the safe unlocking of electric vehicles or motorcycles.
Smart Images

Figure CN223577742U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of tap lock used on motorcycle or electric vehicle, concretely relates to a kind of electric control mechanical two-in-one tap lock. BACKGROUND
[0002] Tap lock is generally used for electric vehicle or motorcycle, and it is mainly to lock the tap of electric vehicle or motorcycle after parking, to prevent electric vehicle or motorcycle from being stolen.The existing electric control tap lock includes lock shell, lock cover matched with lock shell, lock tongue for locking tap and driving assembly for driving lock tongue displacement to realize tap locking or unlocking, when driving assembly is damaged, lock tongue cannot displace, and tap cannot be unlocked, so that user is inconvenient to use, therefore, it is necessary to set up emergency mode to control lock tongue displacement to unlock. SUMMARY
[0003] Based on the above problems, the utility model aims at providing a kind of electric control mechanical two-in-one tap lock that can be used for emergency unlocking.
[0004] In view of the above problems, the following technical scheme is provided: a kind of electric control mechanical two-in-one tap lock, including lock shell, lock cover matched with lock shell, lock tongue for locking tap, circuit board in lock shell and driving assembly for driving lock tongue displacement, the lock shell one end is provided with the communication hole for the lock tongue to pass through, the circuit board is connected with the connector of the lock cover, further including linkage assembly linked with lock tongue and zipper slider assembly for emergency unlocking, the side of circuit board towards zipper slider assembly is installed with first microswitch and second microswitch arranged in upper and lower, the first microswitch is triggered by linkage assembly, the zipper slider assembly includes slider support fixed on lock cover, first slider slidingly matched with slider support and push pin installed on one end of first slider, the first slider one side is provided with the first sliding groove of slidingly sleeved on slider support, the first sliding groove is provided with first accommodating groove, the slider support is provided with the first installation port of through, the first installation port is abutted with first return spring, the outer edge of first return spring protrudes first installation port to be provided in first accommodating groove, the push pin is arranged relative to second microswitch, the first slider is provided with connecting block, the connecting block is provided with zipper slot for being connected with zipper, the lock cover is provided with the communication groove corresponding with zipper slot and used for zipper displacement.
[0005] In the structure, the utility model discloses install on electric motor car or motorcycle, through the joint and the mainboard of electric motor car or motorcycle are connected, realize the switch of power supply and signal, and mechanical zipper lock is connected through zipper lock groove and connecting block.When the drive assembly cannot control the displacement of the lock tongue through the linkage assembly, the linkage assembly displacement can be controlled by pulling the zipper lock to drive the linkage assembly, and then the displacement of the lock tongue is controlled, and the unlocking of the faucet is realized. The first slider is pulled by the zipper, the first slider drives the push pin to displace the slider support towards the second micro switch, the linkage assembly and the push pin abut the first micro switch and the second micro switch respectively to send signals to the mainboard of the electric motor car or motorcycle, and then the displacement of the lock tongue is confirmed to the unlocking position, so that the electric motor car or motorcycle can be safely unlocked. When the first slider displaces towards the second micro switch, the first return spring is compressed by pressure, and then the first slider can be reset by the elastic force of the first return spring after the zipper is released, so as to facilitate the next emergency unlocking. The first mounting port is arranged to facilitate the installation of the first return spring, the first slider and the return spring are matched through the first accommodating groove, the number of springs is reduced, and the assembly convenience of the utility model is improved. The connecting block is arranged to facilitate the connection of the zipper through the connecting groove, and the connecting block is matched with the zipper through the communication groove, the first slider is pulled, and the reliability and assembly convenience of the utility model are improved. When the user cannot unlock the faucet through the drive assembly, the zipper is used to control the displacement of the lock tongue for emergency unlocking, so as to improve the reliability of the user riding the electric motor car or motorcycle.
[0006] The utility model further sets up, first slider's one side towards lock shell is equipped with mounting block, the push groove for installing push pin is seted up on mounting block, and the one end of push pin in push groove inserts and abuts the abutment spring of push groove inner wall.
[0007] In the structure, the push pin can be installed through the push groove, and the structure space can be reasonably utilized through the mounting block, so as to reduce the overall volume of the utility model. The abutment spring is arranged to prolong the abutting stroke of the push pin abutting the second micro switch, so as to compensate for the gap generated after the zipper is pulled and fixed, so that the push pin can still abut the second micro switch, the fault tolerance is reduced, and the reliability of the utility model is improved.
[0008] The utility model further sets up, first slider's one side towards lock cover is equipped with first limit edge, and the second limit edge on the upside of first limit edge is arranged on lock cover.
[0009] The first limiting edge and the second limiting edge are arranged, so that the stability of the displacement of the first sliding block is improved, the first sliding block is limited, the convenience of the assembly of the zipper sliding block assembly is improved, and the reliability of the emergency unlocking is improved.
[0010] The utility model further provides for, the lock shell is equipped with the baffle in, the linkage assembly includes with the linkage piece that the lock tongue is connected and with the second sliding block that the linkage piece is slip cooperation, the second sliding groove that is matched with the second sliding block is seted up on the linkage piece, the second accommodating groove is seted up in the second sliding groove, the second installation mouth that is through is seted up at the position that the second accommodating groove is corresponding on the second sliding block, the second installation mouth is installed with the second reset spring that two ends are respectively abuts in the second installation mouth both ends, the second reset spring's outer edge protrudes the second installation mouth to the second accommodating groove is provided in, the linkage piece is equipped with the push block to the side of push pin one side, the push block is with first touch switch corresponding setting, the linkage piece is located the abutting piece to the side of the connecting block to the lock tongue unlocking direction is equipped with.
[0011] The above structure, drive assembly drive second sliding block control linkage piece drive lock tongue to displace, realize the lock and the unlocking of tap. The second reset spring is arranged, so that after the drive assembly drives the second sliding block to control the linkage piece to drive the lock tongue to displace, the position is avoided to be stuck, the reliability of the unlocking and the locking is improved, and when the drive assembly cannot be normally started, the second sliding block drives the linkage piece to displace relative to the first sliding block, and then the second reset spring is reset, so that the reliability of the emergency unlocking is further improved. The second accommodating groove is arranged, so that the linkage piece and the second reset spring can be abutted and cooperated, the setting of the spring is reduced, and the assembly of the utility model is facilitated.
[0012] The utility model further provides for, the drive assembly includes with the drive motor that circuit board electricity is connected, with drive motor transmission cooperation's drive wheel and with the transmission wheel that drive wheel is engaged cooperation, the convex column that one end of transmission wheel is towards baffle is set up, the engagement tooth is seted up on the outer circumferential wall of convex column, the rack is equipped with to the side of baffle of second sliding block, the baffle is seted up and is given room to the rack for accommodating the let -by groove, the let -by groove is seted up and is used for the communication port of rack and engagement tooth is engaged.
[0013] The above structure, the drive motor controls drive wheel and drives the transmission wheel to rotate, the convex column on the transmission wheel is linked with it, the second sliding block drives the linkage piece to drive the lock tongue to be able to reciprocating displacement through the cooperation of the engagement tooth and the rack, and the unlocking or the locking of the tap is realized.
[0014] The utility model further provides for, the linkage block upper side to the partition one side below the rack is equipped with the guide block, the let place groove below is equipped with the guide groove that is compatible with the guide block, the guide groove is equipped with the pipe column for accommodating the convex column, the guide block is equipped with the stroke mouth for providing the pipe column displacement space.
[0015] In the above structure, the pipe column can be accommodated by setting, and the stability of the second slider displacement and the convenience of assembly can be improved by the cooperation of the guide block and the guide groove. By setting the stroke mouth, displacement space is provided when the first slider drives the linkage block, thereby improving the reliability of the emergency unlocking of the utility model.
[0016] The utility model further provides for, the second slider side to the partition is equipped with the limit slot, the let place groove top forms the limit strip that is compatible with the limit slot.
[0017] In the above structure, the stability of the second slider displacement can be further improved by the cooperation of the limit strip and the limit slot, thereby improving the reliability of the utility model.
[0018] The utility model further provides for, the partition side to the lock shell is equipped with the shell that is compatible with its sealed, the drive assembly is located in the shell, the drive wheel and the transmission wheel are connected in the shell through the pin shaft.
[0019] In the above structure, the drive assembly can be installed by setting the shell, and the sealing property can be improved, thereby improving the reliability of the utility model and prolonging the service life.
[0020] The utility model further provides for, the partition side to the zipper slider assembly is equipped with the installation groove, the first light touch switch, the second light touch switch, the joint are all installed in the installation groove, the circuit board is installed on the other side of the partition relative to the joint, the pin foot of the first light touch switch, the second light touch switch and the joint and the plug-in place of the installation groove are sealed by pouring glue.
[0021] The above structure can further improve the sealing property of the utility model, thereby improving the waterproof and dustproof effect of the utility model and prolonging the service life of the circuit board. DRAWINGS
[0022] Figure 1 It is the structure schematic drawing of the utility model.
[0023] Figure 2 It is the structure schematic drawing of the utility model opening lock cover.
[0024] Figure 3 It is the split structure schematic drawing of the utility model.
[0025] Figure 4 is a schematic diagram of the internal structure of the lock shell in the utility model Figure 1 .
[0026] Figure 5 is a schematic diagram of the internal structure of the lock shell in the utility model Figure 2 .
[0027] Figure 6 is a schematic diagram of the sectional structure of the utility model.
[0028] Figure 7 is a schematic diagram of the structure of the linkage assembly, the pull lock slider assembly and the lock cover in the utility model.
[0029] Figure 8 is a schematic diagram of the structure of the pull lock slider assembly and the lock cover in the utility model.
[0030] Figure 9 is a schematic diagram of the disassembled structure of the pull lock slider assembly in the utility model.
[0031] Figure 10 is a schematic diagram of the disassembled structure of the linkage assembly and the partition plate in the utility model.
[0032] Meaning of reference numerals in the drawing: 1 - lock shell; 2 - lock cover; 3 - lock tongue; 11 - circuit board; 4 - driving assembly; 111 - joint; 5 - linkage assembly; 6 - pull lock slider assembly; 112 - first micro switch; 113 - second micro switch; 61 - slider support; 62 - first slider; 63 - push pin; 621 - first sliding groove; 622 - first accommodating groove; 611 - first mounting port; 64 - first return spring; 623 - connecting block; 624 - pull lock groove; 21 - communication groove; 625 - mounting block; 6251 - push groove; 65 - abutting spring; 626 - first limiting edge; 22 - second limiting edge; 7 - partition plate;
[0033] 51 - linkage block; 52 - second slider; 511 - second sliding groove; 512 - second accommodating groove; 521 - second mounting port; 53 - second return spring; 513 - push block; 514 - abutting block;
[0034] 41 - driving motor; 42 - driving wheel; 43 - transmission wheel; 431 - protruding column; 432 - meshing tooth; 522 - rack; 71 - accommodation groove; 711 - communication port; 515 - guide block; 72 - guide groove; 73 - pipe column; 516 - stroke port; 523 - limiting groove; 74 - limiting strip; 8 - shell; 75 - mounting groove. DETAILED DESCRIPTION
[0035] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.
[0036] It should be noted that all directional indicators (such as up, down, left, right, front, back, back, etc.) in the embodiments of this utility model are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0037] like Figures 1 to 10 The illustrated electromechanical faucet lock includes a lock housing 1, a lock cover 2 that mates with the lock housing 1, a latch 3 for locking the faucet, a circuit board 11 located inside the lock housing 1, and a drive assembly 4 for moving the latch 3. One end of the lock housing 1 has a through hole for the latch 3 to pass through. The circuit board 11 is connected to a connector 111 that passes through the lock cover 2. It also includes a linkage assembly 5 that is linked to the latch 3 and a pull-lock slider assembly 6 for emergency unlocking. The circuit board 11 has a first tactile switch 112 and a second tactile switch 113 mounted vertically on the side facing the pull-lock slider assembly 6. The first tactile switch 112 is triggered by the linkage assembly 5. The pull-lock slider assembly 6 includes a slider bracket 61 fixed to the lock cover 2 and a first tactile switch 113 that slides with the slider bracket 61. The first slider 62 has a slider 62 and a push pin 63 installed at one end of the slider 62. The first slider 62 has a first groove 621 that is slidably sleeved on the slider bracket 61. The first groove 621 has a first receiving groove 622. The slider bracket 61 has a through first mounting port 611. The first mounting port 611 abuts against a first return spring 64. The outer edge of the first return spring 64 protrudes from the first mounting port 611 into the first receiving groove 622. The push pin 63 is positioned opposite the second tactile switch 113. The first slider 62 has a connecting block 623. The connecting block 623 has a zipper groove 624 for connecting with a zipper. The lock cover 2 has a connecting groove 21 that corresponds to the zipper groove 624 and is used for zipper displacement.
[0038] In the structure, the utility model discloses install on electric motor car or motorcycle, through joint 111 with the mainboard of electric motor car or motorcycle is connected, realizes the switching of power supply and signal, and mechanical zipper lock is connected through zipper lock groove 624 and connecting block 623.When the drive assembly 4 cannot control the displacement of the lock tongue 3 through the linkage assembly 5, the linkage assembly 5 can be displaced by pulling the zipper lock control zipper lock slider assembly 6, and then the displacement of the lock tongue 3 is controlled, and the unlocking of the faucet is realized.The first slider 62 is pulled by the zipper lock, the first slider 62 drives the push pin 63 to be opposite the slider support 61 of the linkage assembly 5 towards the second micro switch 113, the linkage assembly 5 and the push pin 63 respectively abut the first micro switch 112, the second micro switch 113 to the mainboard of the electric motor car or motorcycle, and then the displacement of the lock tongue 3 is confirmed to the unlocking position, so that the electric motor car or motorcycle can be safely unlocked.When the first slider 62 is displaced towards the second micro switch 113, the first return spring 64 is compressed by the pressure, and then the first slider 62 can be reset by the elastic force of the first return spring 64 after the zipper lock is released, so as to facilitate the next emergency unlocking.The first mounting hole 611 can facilitate the installation of the first return spring 64, the first slider 62 can be matched with the return spring by setting the first accommodating groove 622, and the number of springs can be reduced, and then the assembly convenience of the utility model is improved.The connecting block 623 can be connected with the zipper lock through the connecting groove, and the zipper lock can be matched with the connecting block 623 through the communication groove 21, the first slider 62 is pulled, and the reliability and assembly convenience of the utility model are improved.The zipper lock slider assembly 6 can be used when the user cannot unlock the faucet through the drive assembly 4, and the displacement of the lock tongue 3 is controlled for emergency unlocking, so as to improve the reliability of the user riding the electric motor car or motorcycle.
[0039] In the embodiment, the first slider 62 is provided with a mounting block 625 on one side of the lock shell 1, the mounting block 625 is provided with a push groove 6251 for mounting the push pin 63, and the end of the push pin 63 in the push groove 6251 is provided with an abutting spring 65 abutting with the inner wall of the push groove 6251.
[0040] In the structure, the push pin 63 can be installed through the push groove 6251, and the mounting block 625 can be reasonably utilized to utilize the structure space and reduce the overall volume of the utility model. The abutting spring 65 can extend the abutting stroke of the push pin 63 to the second micro switch 113, and can compensate for the gap generated after the zipper lock is pulled and fixed, so that the push pin 63 can still abut the second micro switch 113, the fault tolerance is reduced, and the reliability of the utility model is improved.
[0041] In the embodiment, the first sliding block 62 is provided with a first limiting edge 626 on the side facing the lock cover 2, and the lock cover 2 is provided with a second limiting edge 22 located on the upper side of the first limiting edge 626.
[0042] In the above structure, the first limiting edge 626 and the second limiting edge 22 can improve the stability of the displacement of the first sliding block 62, and can limit the first sliding block 62, thereby improving the convenience of assembling the zipper sliding block assembly 6 and improving the reliability of the emergency unlocking of the utility model.
[0043] In the embodiment, the lock shell 1 is provided with a partition plate 7, the linkage assembly 5 includes a linkage block 51 connected with the lock tongue 3 and a second sliding block 52 in sliding cooperation with the linkage block 51, the linkage block 51 is provided with a second sliding groove 511 matched with the second sliding block 52, the second sliding groove 511 is provided with a second accommodating groove 512, the second sliding block 52 is provided with a through second mounting port 521 at the position corresponding to the second accommodating groove 512, the second mounting port 521 is provided with a second reset spring 53 with two ends abutting against the two ends of the second mounting port 521, the outer edge of the second reset spring 53 protrudes into the second accommodating groove 512 from the second mounting port 521, the linkage block 51 is provided with a pushing block 513 on the side facing the pushing pin 63, the pushing block 513 is arranged corresponding to the first micro switch 112, and the linkage block 51 is provided with an abutting block 514 on the side facing the unlocking direction of the lock tongue 3.
[0044] In the above structure, the driving assembly 4 drives the second sliding block 52 to control the linkage block 51 to drive the lock tongue 3 to displace, so as to realize the locking and unlocking of the faucet. After the zipper pulls the connecting block 623, the connecting block 623 abuts against the abutting block 514, drives the linkage block 51 to displace relative to the second sliding block 52, the linkage block 51 drives the lock tongue 3 to displace, and the pushing block 513 abuts against the first micro switch 112, so as to realize the transmission of signals. The second reset spring 53 can avoid position jamming after the driving assembly 4 drives the second sliding block 52 to control the linkage block 51 to drive the lock tongue 3 to displace, thereby improving the reliability of the unlocking and locking of the utility model, and the second reset spring 53 can also reset after the second sliding block 52 drives the linkage block 51 to displace relative to the first sliding block 62 when the driving assembly 4 cannot normally start, thereby further improving the reliability of the emergency unlocking of the utility model. The second accommodating groove 512 can facilitate the abutting cooperation of the linkage block 51 and the second reset spring 53, thereby reducing the setting of the spring and facilitating the assembly of the utility model.
[0045] In the embodiment, the driving assembly 4 comprises a driving motor 41 electrically connected with the circuit board 11, a driving wheel 42 in transmission cooperation with the driving motor 41, and a transmission wheel 43 in meshing cooperation with the driving wheel 42, the transmission wheel 43 is provided with a protruding column 431 protruding towards one end of the partition plate 7, the outer circumferential wall of the protruding column 431 is provided with meshing teeth 432, one side of the second sliding block 52 towards the partition plate 7 is provided with a rack 522, the partition plate 7 is provided with a let-go slot 71 for accommodating the rack 522, and the let-go slot 71 is provided with a communication port 711 for the rack 522 to mesh with the meshing teeth 432.
[0046] In the above structure, the driving motor 41 controls the driving wheel 42 to drive the transmission wheel 43 to rotate, the protruding column 431 on the transmission wheel 43 is linked with it, and the second sliding block 52 drives the linkage block 51 to drive the lock tongue 3 to reciprocate by the cooperation of the meshing teeth 432 and the rack 522, so as to realize the unlocking or locking of the faucet.
[0047] In the embodiment, the linkage block 51 is provided with a guide block 515 below the rack 522 towards one side of the partition plate 7, the let-go slot 71 is provided with a guide groove 72 matched with the guide block 515 below, the guide groove 72 is provided with a pipe column 73 for accommodating the protruding column 431, and the guide block 515 is provided with a stroke port 516 for providing displacement space for the pipe column 73.
[0048] In the above structure, the pipe column 73 can accommodate the protruding column 431, and the cooperation of the guide block 515 and the guide groove 72 can improve the stability of the displacement of the second sliding block 52 and the convenience of assembly. The stroke port 516 can provide displacement space when the first sliding block 62 drives the linkage block 51, thereby improving the reliability of the emergency unlocking of the utility model.
[0049] In the embodiment, the second sliding block 52 is provided with a limiting slot 523 towards one side of the partition plate 7, and the limiting slot 523 is matched with a limiting strip 74 formed above the let-go slot 71.
[0050] In the above structure, the cooperation of the limiting strip 74 and the limiting slot 523 can further improve the stability of the displacement of the second sliding block 52, thereby improving the reliability of the utility model.
[0051] In the embodiment, the partition plate 7 is provided with a shell 8 matched and sealed towards one side of the lock shell 1, the driving assembly 4 is located in the shell 8, and the driving wheel 42 and the transmission wheel 43 are connected in the shell 8 through a pin shaft.
[0052] In the above structure, the shell 8 can facilitate the installation of the driving assembly 4, and can improve the sealing performance, thereby improving the reliability of the utility model and prolonging the service life.
[0053] In the embodiment, the partition plate 7 is provided with a mounting groove 75 on one side of the zipper slider assembly 6, the first touch switch 112, the second touch switch 113 and the connector 111 are mounted in the mounting groove 75, the circuit board 11 is mounted on the other side of the partition plate 7 opposite to the connector 111, and the pins of the first touch switch 112, the second touch switch 113 and the connector 111 are sealed by glue injection at the plug-in part of the mounting groove 75.
[0054] By adopting the above structure, the sealing property of the utility model can be further improved, thereby improving the waterproof and dustproof effect of the utility model, and prolonging the service life of the circuit board 11.
[0055] The above is only the preferred embodiment of the utility model, and it should be pointed out that, for ordinary skilled in the art, without departing from the technical principles of the utility model, a number of improvements and modifications can be made, and the above-mentioned improvements and modifications should be regarded as the protection scope of the utility model.
Claims
1. A combination electromechanical faucet lock, comprising a lock housing, a lock cover cooperating with the lock housing, a latch for locking the faucet, a circuit board located inside the lock housing, and a drive assembly for driving the latch displacement, wherein one end of the lock housing has a through hole for the latch to pass through, and the circuit board is connected to a connector passing through the lock cover, characterized in that: It also includes a linkage component that is linked to the latch and a zipper slider assembly for emergency unlocking or locking. The circuit board has a first tactile switch and a second tactile switch mounted vertically on the side facing the zipper slider assembly. The first tactile switch is triggered by the linkage component. The zipper slider assembly includes a slider bracket fixed to the lock cover, a first slider that slides with the slider bracket, and a push pin mounted on one end of the first slider. The first slider has a first sliding groove that slides onto the slider bracket. A first receiving groove is formed in the first sliding groove. The slider bracket has a through first mounting port. A first return spring abuts in the first mounting port. The outer edge of the first return spring protrudes from the first mounting port into the first receiving groove. The push pin is positioned opposite the second tactile switch. The first slider has a connecting block. The connecting block has a zipper groove for connecting with the zipper. The lock cover has a connecting groove corresponding to the zipper groove and for zipper displacement.
2. The electromechanical dual-function faucet lock according to claim 1, characterized in that: The first slider has a mounting block on the side facing the lock housing. The mounting block has a push groove for mounting the push pin. The end of the push pin located in the push groove is inserted with a stop spring that abuts against the inner wall of the push groove.
3. The electromechanical dual-function faucet lock according to claim 2, characterized in that: The first slider has a first limiting edge on the side facing the lock cover, and the lock cover has a second limiting edge located above the first limiting edge.
4. The electromechanical dual-function faucet lock according to claim 1, characterized in that: The lock housing is provided with a partition. The linkage component includes a linkage block connected to the lock tongue and a second slider that slides and cooperates with the linkage block. The linkage block has a second sliding groove adapted to the second slider. The second sliding groove has a second receiving groove. The second slider has a through second mounting port at a position corresponding to the second receiving groove. A second return spring is installed in the second mounting port, with its two ends respectively abutting against the two ends of the second mounting port. The outer edge of the second return spring protrudes from the second mounting port into the second receiving groove. The linkage block has a pushing block on the side facing the pushing pin. The pushing block is correspondingly arranged with the first tactile switch. The linkage block has an abutting block on the side of the connecting block facing the lock tongue unlocking direction.
5. The electromechanical dual-function faucet lock according to claim 4, characterized in that: The drive assembly includes a drive motor electrically connected to the circuit board, a drive wheel that drives the drive motor, and a transmission wheel that meshes with the drive wheel. The transmission wheel has a protruding post at one end facing the partition, and meshing teeth are formed on the outer circumferential wall of the protruding post. The second slider has a rack on one side facing the partition. The partition has a relief groove for accommodating the rack, and a communication port for meshing between the rack and the meshing teeth is formed in the relief groove.
6. The electromechanical dual-function faucet lock according to claim 5, characterized in that: The linkage block is provided with a guide block on the side facing the partition plate below the rack. A guide groove adapted to the guide block is provided below the clearance groove. A tube column for accommodating the protruding column is provided in the guide groove. A stroke port for providing displacement space for the tube column is provided on the guide block.
7. The electromechanical dual-function faucet lock according to claim 6, characterized in that: The second slider has a limiting groove on one side facing the partition, and a limiting strip is formed above the limiting groove to match the limiting groove.
8. The electromechanical dual-function faucet lock according to claim 7, characterized in that: The partition has a housing that is adapted to and sealed to the lock housing on the side facing it. The drive assembly is located inside the housing, and the drive wheel and the transmission wheel are connected inside the housing by a pin.
9. A combination electromechanical faucet lock according to claim 8, characterized in that: The partition has a mounting groove on the side facing the zipper slider assembly. The first tactile switch, the second tactile switch, and the connector are all installed in the mounting groove. The circuit board is installed on the other side of the partition opposite to the connector. The pins of the first tactile switch, the second tactile switch, and the connector are sealed with glue at the insertion points of the mounting groove.