Transmission type floating lock

By designing a transmission floating lock, the combination of the third transmission and the transmission is used to solve the problem that the floating lock cannot be used in conjunction with the door frameless distribution cabinet, effectively installing and using it in a door frameless environment, and improving the applicability and stability of the lock.

CN223034698UActive Publication Date: 2025-06-27CYG CONTRON
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Patent Information

Application Number
CN202421951068.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-06-27
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

The existing floating locks cannot be used with the door-free distribution cabinet, resulting in difficulty in installation.

Method used

A transmission floating lock is designed, using a third transmission, a first transmission and a second transmission. Through the mutual cooperation of these transmissions, the two-point locking of the floating lock and the cabinet door is realized, avoiding the dependence on the door frame.

Benefits of technology

The effective installation and use of floating locks on the door frameless distribution cabinet is realized, and the problem that traditional locks cannot match the door frameless cabinet body is solved, and the suitability and stability of the locks are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a transmission type floating lock, which belongs to the technical field of locksets and comprises a handle component, a lock body component and a bolt structure, and the bolt structure comprises a first transmission part, a second transmission part and a third transmission part. The first end of the handle assembly is rotationally mounted at the first end of the third transmission part, and the second end of the handle assembly is clamped and matched with the lock body assembly; the third transmission part is rotationally installed in the lock body assembly, the first transmission part and the second transmission part are movably arranged on the lock body assembly and are arranged on the two sides of the third transmission part, and the first transmission part and the second transmission part are both in transmission fit with the second end of the third transmission part; moving paths which are close to each other or far away from each other are arranged between the first transmission part and the second transmission part. The ends of the first transmission part and the second transmission part face the upper end and the lower end of the cabinet body; lock holes are formed in the upper end and the lower end of the cabinet body, the first transmission piece and the second transmission piece are matched with the lock holes, and the cabinet door is opened or closed.
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Description

Technical Field

[0001] The utility model belongs to the technical field of locks, in particular to a transmission floating lock. Background Art

[0002] The power distribution cabinet is a special cabinet for placing control components, which mainly consists of a frame body and a cabinet door. There is a floating lock for locking the cabinet door between the cabinet door and the frame body. Such a floating lock mainly consists of a support frame, a handle assembly, a bolt assembly, and a lock core assembly provided on the handle assembly. The handle assembly is linked with the support frame through the bolt assembly. A placement frame for placing the handle assembly is provided on the support frame. The rotation of the handle assembly drives the bolt assembly to rotate. The steel bolt of the bolt assembly is used to abut against the cabinet door or the door frame, so as to realize opening and closing of the door.

[0003] However, in the upgrading and transformation of the power distribution cabinet, some power distribution cabinets adopt a design without a door frame. When installing a floating lock on such a power distribution cabinet, it will cause the power distribution cabinet to be unable to cooperate with the floating lock. Therefore, it is necessary to design a floating lock that can be installed on a power distribution cabinet without a door frame. Summary of the Invention

[0004] The purpose of the utility model is to improve the problem that the existing floating locks cannot be used in cooperation with some power distribution cabinets without a door frame, and provide a transmission floating lock.

[0005] The technical solutions for realizing the above purpose include the following:

[0006] The transmission floating lock includes: a handle assembly, a lock body assembly, and a bolt structure. The bolt structure includes a first transmission member, a second transmission member, and a third transmission member;

[0007] The first end of the handle assembly is rotatably installed at the first end of the third transmission member, and the second end of the handle assembly is in clamping fit with the lock body assembly;

[0008] The third transmission member is rotatably installed in the lock body assembly. The first transmission member and the second transmission member are movably arranged on the lock body assembly and are arranged on both sides of the third transmission member, and both the first transmission member and the second transmission member are in transmission cooperation with the second end of the third transmission member;

[0009] Wherein, there is a moving path for the first transmission member and the second transmission member to approach or move away from each other.

[0010] In one embodiment, the third transmission member includes a first rotating seat and a gear plate. In the first direction, the first rotating seat is rotatably connected to the inner wall of the lock body assembly, and the gear plate is sleeved outside the first rotating seat;

[0011] A plurality of tooth grooves are arranged on both the first transmission member and the second transmission member, and the plurality of tooth grooves are distributed along the moving path, and the gear plate is matched with the tooth grooves.

[0012] In one embodiment, the first transmission member includes a first moving plate and a first moving pin, the second transmission member includes a second moving plate and a second moving pin, a plurality of the tooth grooves are formed on the first moving plate and the second moving plate, a first end of the first moving pin is mounted on the first moving plate, and a first end of the second moving pin is mounted on the second moving plate;

[0013] A second end of the first moving pin is for passing through a first end of the cabinet door, a second end of the second moving pin is for passing through a second end of the cabinet door, and the first moving pin and the second moving pin are respectively for slidingly cooperating with two ends of the cabinet door.

[0014] In one embodiment, the third transmission member further has a fastener and a gasket, the first rotating seat has a fixing hole, the gasket has a through hole, the gasket is disposed on the gear plate, a first end of the fastener passes through the through hole and is connected to the fixing hole, and a second end of the fastener abuts against the gasket.

[0015] In one embodiment, the lock body assembly has a first guide groove and a second guide groove which are oppositely arranged, at least a part of the first transmission member is disposed in the first guide groove and slidingly cooperates with the first guide groove;

[0016] At least a part of the second transmission member is disposed in the second guide groove and slidingly cooperates with the second guide groove.

[0017] In one embodiment, the third transmission member further includes a second rotating seat, a pin shaft, and a torsion spring, a first end of the second rotating seat is mounted on the first rotating seat, the pin shaft is mounted on a second end of the second rotating seat, a first end of the handle assembly is sleeved on a second end of the pin shaft and rotatably cooperates with the pin shaft in a second direction;

[0018] The torsion spring is sleeved outside the pin shaft, and two ends of the torsion spring respectively abut against the second rotating seat and the handle assembly.

[0019] In one embodiment, the first transmission member or the second transmission member is bent, the first transmission member has a first mounting hole, the second transmission member has a second mounting hole, and both the first mounting hole and the second mounting hole are disposed on the moving path.

[0020] In one embodiment, the lock body assembly includes a mounting seat and a support frame, the support frame is mounted on the mounting seat, the support frame has a card slot, and a second end of the handle assembly is for being snap-fitted with the card slot.

[0021] In one embodiment, the handle assembly includes a handle, a lock core, and a lock tongue plate. The lock core is installed at the second end of the handle, the lock tongue plate is movably installed on the lock core, and the support frame has a lock groove that cooperates with the lock tongue plate.

[0022] In one embodiment, the mounting seat has a mounting groove and a mounting plate. Bar-shaped notches are formed on both sides of the mounting plate. At least part of the first transmission member and the second rotating member are installed in the mounting groove, and first guide grooves and second guide grooves are formed between the inner walls of both sides of the mounting plate and the inner wall of the mounting groove.

[0023] The technical solution provided by the present utility model has the following advantages and effects:

[0024] When the third transmission member rotates clockwise, the first transmission member and the second transmission member approach each other. When the third transmission member rotates counterclockwise, the first transmission member and the second transmission member move away from each other. Install the floating lock on the cabinet door, the first transmission member and the second transmission member can be arranged vertically, so that the ends of the first transmission member 31 and the second transmission member face the upper and lower ends of the cabinet body; open lock holes at the upper and lower ends of the cabinet body, so that the first transmission member and the second transmission member cooperate with the lock holes, thereby realizing opening or closing of the cabinet door; by driving the first transmission member and the second transmission member to move, the use of a bolt cooperating with a door frame is avoided, and the problem that existing locks cannot be used in conjunction with some distribution cabinets without door frames is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] The drawings herein show specific examples of the technical solution of the present utility model and form part of the description of the specific implementation manner, and are used to explain the technical solution, principle, and effect of the present utility model.

[0026] Unless otherwise specifically stated or defined, in different drawings, the same reference numerals represent the same or similar technical features. For the same or similar technical features, different reference numerals may also be used to represent them.

[0027] Figure 1 is a schematic diagram of a floating lock in an embodiment of the present utility model;

[0028] Figure 2 is an exploded view of a floating lock in an embodiment of the present utility model;

[0029] Figure 3 is a cross-sectional view of a floating lock in an embodiment of the present utility model;

[0030] Figure 4 is an exploded view of a bolt structure in an embodiment of the present utility model;

[0031] Figure 5 is a schematic diagram of a bolt structure in an embodiment of the present utility model Figure 1 ;

[0032] Figure 6 is a schematic diagram of the bolt structure in an embodiment of the present utility model Figure 2 ;

[0033] Figure 7 is a schematic diagram of the state of the floating lock in an embodiment of the present utility model;

[0034] Explanation of reference numerals:

[0035] 100, floating lock;

[0036] 1, handle assembly; 11, lock core; 12, lock tongue plate; 13, handle;

[0037] 2, lock body assembly; 21, mounting seat; 211, mounting groove; 212, mounting plate; 213, first guide groove; 214, second guide groove; 215, notch;

[0038] 22, support frame; 221, lock groove; 222, card slot;

[0039] 3, bolt structure; 31, first transmission member; 311, first moving plate; 312, first mounting hole; 313, first tooth groove; 32, second transmission member; 321, second moving plate; 322, second mounting hole; 323, second tooth groove; 33, third transmission member; 331, first rotating seat; 332, second rotating seat; 333, torsion spring; 334, pin shaft; 335, gear plate; 336, gasket; 337, fastener; 34, first moving bolt; 35, second moving bolt; 36, cabinet door; 4, first direction; 5, second direction. Detailed implementation manners

[0040] For the convenience of understanding the present utility model, the specific embodiments of the present utility model will be described in more detail below with reference to the accompanying drawings of the specification.

[0041] Unless otherwise specified or defined, the "first, second..." used herein is only for differentiating names and does not represent a specific quantity or order.

[0042] Unless otherwise specified or defined, the term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0043] It should be noted that when an element is considered to be "fixed to" another element, it can be directly fixed to the other element or there can be an intermediate element; when an element is considered to be "connected to" another element, it can be directly connected to the other element or there can be an intermediate element at the same time; when an element is considered to be "mounted on" another element, it can be directly mounted on the other element or there can be an intermediate element at the same time. When an element is considered to be "provided in" another element, it can be directly provided in the other element or there can be an intermediate element at the same time.

[0044] The present utility model provides a transmission type floating lock 100, as Figures 1 to 4 shown, which includes: a handle assembly 1, a lock body assembly 2, and a bolt structure 3. The bolt structure 3 includes a first transmission member 31, a second transmission member 32, and a third transmission member 33. The first end of the handle assembly 1 is rotatably mounted on the first end of the third transmission member 33, and the second end of the handle assembly 1 is snap-fitted with the lock body assembly 2. The third transmission member 33 is rotatably mounted in the lock body assembly 2. The first transmission member 31 and the second transmission member 32 are movably arranged on the lock body assembly 2 and are arranged on both sides of the third transmission member 33, and both the first transmission member 31 and the second transmission member 32 are in transmission cooperation with the second end of the third transmission member 33. Wherein, there is a moving path for the first transmission member 31 and the second transmission member 32 to approach or separate from each other. Specifically, after the second end of the handle assembly 1 is separated from the lock body assembly 2, the first end of the handle assembly 1 can drive the third transmission member 33 to rotate, so that the third transmission member 33 can rotate clockwise or counterclockwise. When the third transmission member 33 rotates, it drives the first transmission member 31 and the second transmission member 32 to move. When the third transmission member 33 rotates clockwise, the first transmission member 31 and the second transmission member 32 approach each other, and when the third transmission member 33 rotates counterclockwise, the first transmission member 31 and the second transmission member 32 separate from each other. When the floating lock 100 is installed on a cabinet door, the first transmission member 31 and the second transmission member 32 can be arranged vertically, so that the ends of the first transmission member 31 and the second transmission member 32 face the upper and lower ends of the cabinet body. Lock holes are opened at the upper and lower ends of the cabinet body, so that the first transmission member 31 and the second transmission member 32 are in cooperation with the lock holes, thereby realizing opening or closing of the cabinet door. By driving the first transmission member 31 and the second transmission member 32 to move, the problem that the existing locks cannot be used in cooperation with some distribution cabinets without door frames is solved by avoiding the cooperation between the bolt and the door frame.

[0045] In some other embodiments, the third transmission member 33 may also cooperate with the first transmission member 31 or the second transmission member 32. The third transmission member 33 drives the first transmission member 31 or the second transmission member 32 to move, so that the first transmission member 31 or the second transmission member 32 cooperates with the lock hole at the upper end or the lower end of the cabinet body, thus achieving single-point locking of the cabinet door. In such a locking method, only the upper end or the lower end of the cabinet door is locked. When opening the door, applying a force by holding the handle assembly 1 can easily deform the cabinet door, and its stability is poor. Therefore, in the floating lock 100 of this embodiment, cooperating with the lock holes at the upper and lower ends of the cabinet door can improve the use stability of the floating lock 100.

[0046] Preferably, as Figure 4 and Figure 5 shown, the third transmission member 33 includes a first rotating seat 331 and a gear plate 335. In the first direction 4, the first rotating seat 331 is rotatably connected to the inner wall of the lock body assembly 2, and the gear plate 335 is sleeved outside the first rotating seat 331. A plurality of first tooth grooves 313 are provided on the first transmission member 31, and a plurality of second tooth grooves 323 are provided on the second transmission member 32. The plurality of first tooth grooves 313 and the second tooth grooves 323 are both arranged along the movement path, and the gear plate 335 cooperates with the first tooth grooves 313 and the second tooth grooves 323 respectively. Specifically, when the first rotating seat 331 rotates, it will drive the gear plate 335 to rotate clockwise or counterclockwise. The first transmission member 31 and the second transmission member 32 are relatively arranged on both sides of the first rotating seat 331. When the gear plate 335 rotates, it cooperates with the first tooth grooves 313 on the first transmission member 31 and the second tooth grooves 323 on the second transmission member 32 at the same time, so as to drive the first transmission member 31 and the second transmission member 32 to move on both sides of the first rotating seat 331, so that there is a movement path for the first transmission member 31 and the second transmission member 32 to approach or move away from each other, realizing two-point locking of the floating lock 100 with the power distribution cabinet.

[0047] Preferably, as Figures 4 to 6As shown, the first transmission member 31 includes a first moving plate 311 and a first moving pin 34, and the second transmission member 32 includes a second moving plate 321 and a second moving pin 35. The first tooth groove 313 and the second tooth groove 323 are respectively formed on the first moving plate 311 and the second moving plate 321. The mounting seat 21 is mounted on the cabinet door 36. The first end of the first moving pin 34 is mounted on the first moving plate 311, and the first end of the second moving pin 35 is mounted on the first moving plate 311. The second end of the first moving pin 34 is used to penetrate through the first end of the cabinet door 36, and the second end of the second moving pin 35 is used to penetrate through the second end of the cabinet door 36. The first moving pin 34 and the second moving pin 35 are respectively used for sliding cooperation with the two ends of the cabinet door 36. Specifically, through holes are formed at the upper and lower ends of the cabinet door 36, and the second ends of the first moving pin 34 and the second moving pin 35 pass through the through holes, so that the first moving pin 34 and the second moving pin 35 are respectively in sliding cooperation with the two ends of the cabinet door 36, which can improve the stability of the first moving pin 34 and the second moving pin 35 during movement. When unlocking or locking is required, the first rotating seat 331 rotates, and drives the first moving plate 311 and the second moving plate 321 to move, thereby driving the first moving pin 34 and the second moving pin 35 to move up and down, and making the first moving pin 34 and the second moving pin 35 cooperate with the lock hole, so as to realize the floating lock 100 to lock the power distribution cabinet.

[0048] In some embodiments, as Figure 4 and Figure 5 shown, the third transmission member 33 further has a fastener 337 and a gasket 336. The first rotating seat 331 has a fixing hole, and the gasket 336 has a through hole. The gasket 336 is arranged on the gear plate 335. The first end of the fastener 337 passes through the through hole and is connected to the fixing hole, and the second end of the fastener 337 abuts against the gasket 336. Specifically, after the fastener 337 passes through the through hole of the gear plate 335, it is connected to the fixing hole. The fastener 337 restricts the movement of the gasket 336, so that the gasket 336 abuts against the gear plate 335. The gasket 336 is used to increase the contact area with the gear plate 335 and reduce the local pressure of the gear plate 335, thereby restricting the position of the gear plate 335 on the first rotating seat 331 and improving the stability of the gear plate 335 during rotation.

[0049] Preferably, as Figure 4 shown, at least a part of the first rotating seat 331 is non-circular, so that the gear plate 335 is sleeved on the first rotating seat 331 and rotates synchronously with the first rotating seat 331. In this embodiment, at least a part of the first rotating seat 331 is square.

[0050] In some embodiments, as Figure 1 and Figure 4As shown, the lock body assembly 2 is provided with a first guide groove 213 and a second guide groove 214 which are oppositely arranged. At least a part of the first transmission member 31 is arranged in the first guide groove 213 and is in sliding fit with the first guide groove 213; at least a part of the second transmission member 32 is arranged in the second guide groove 214 and is in sliding fit with the second guide groove 214. Specifically, the first guide groove 213 is used to limit the moving direction of the first transmission member 31, and the second guide groove 214 is used to limit the moving direction of the second transmission member 32, so as to improve the stability of the first transmission member 31 and the second transmission member 32 during movement and improve the accuracy of unlocking or locking the floating lock 100.

[0051] In some embodiments, as Figures 1 to 3 shown, the third transmission member 33 further includes a second rotating seat 332, a pin shaft 334, and a torsion spring 333. The first end of the second rotating seat 332 is installed on the first rotating seat 331, the pin shaft 334 is installed at the second end of the second rotating seat 332, the first end of the handle assembly 1 is sleeved on the second end of the pin shaft 334 and is in rotational fit with the pin shaft 334 in the second direction 5; the torsion spring 333 is sleeved outside the pin shaft 334, and both ends of the torsion spring 333 abut against the second rotating seat 332 and the handle assembly 1 respectively. Specifically, in the second direction 5, the handle assembly 1 is in rotational fit with the second rotating seat 332 through the pin shaft 334. When the second end of the handle assembly 1 is separated from the support frame 22, the handle assembly 1 can drive the second rotating seat 332 to rotate clockwise or counterclockwise, and the second rotating seat 332 drives the first rotating seat 331 to rotate when rotating, realizing the opening or closing of the bolt structure 3. When the second end of the handle assembly 1 is in snap fit with the support frame 22, the handle assembly 1 presses the torsion spring 333, so that the torsion spring 333 has a reverse acting force; when the second end of the handle assembly 1 is separated from the support frame 22, the reverse acting force of the torsion spring 333 drives the second end of the handle assembly 1 to bounce off the support frame 22, facilitating the operation of holding the handle assembly 1.

[0052] In some embodiments, as Figure 4 and Figure 5 shown, the first transmission member 31 or the second transmission member 32 is bent. The first transmission member 31 has a first mounting hole 312, and the second transmission member 32 has a second mounting hole 322. Both the first mounting hole 312 and the second mounting hole 322 are arranged on the moving path. Specifically, the first moving plate 311 of the first transmission member 31 or the second moving plate 321 of the second transmission member 32 is arranged to be bent, so that the first mounting hole 312 and the second mounting hole 322 move in the vertical direction. In this way, when drilling holes at the upper and lower ends of the cabinet body, holes can be drilled along the plumb line direction, which is convenient for positioning and processing. At the same time, the first mounting hole 312 and the second mounting hole 322 can also be arranged to move on the plumb line, so as to improve the accuracy of unlocking or locking the floating lock 100.

[0053] Preferably, asFigure 1 and Figure 7 As shown in Figure 7 , the lock body assembly 2 includes a mounting base 21 and a support frame 22. The support frame 22 is mounted on the mounting base 21. The support frame 22 has a card slot 222, and the second end of the handle assembly 1 is used to be snap-fitted with the card slot 222. Specifically, the mounting base 21 is used to mount the bolt structure 3, and the support frame 22 is used to mount on the handle assembly 1. During assembly, the mounting base 21 is arranged on the outer side of the cabinet door, and the support frame 22 is mounted on the mounting base 21; the handle assembly 1 is used to be snap-fitted with the card slot 222 to form a floating lock.

[0054] Preferably, as Figure 3 shown, the handle assembly 1 includes a handle 13, a lock core 11, and a lock tongue plate 12. The lock core 11 is mounted at the second end of the handle 13, and the lock tongue plate 12 is movably mounted on the lock core 11. The support frame 22 has a lock slot 221 that cooperates with the lock tongue plate 12. Specifically, the lock core 11 is used to identify the identity of the key. After the key identity is correct, the key drives the lock tongue plate 12 to rotate, so that the lock tongue plate 12 cooperates with the lock slot 221 to realize the unlocking or locking of the floating lock 100.

[0055] Preferably, as Figure 1 、 Figure 4 、 Figure 5 shown, the mounting base 21 has a mounting groove 211 and a mounting plate 212. Both sides of the mounting plate 212 are provided with strip-shaped notches 215. At least part of the first transmission member 31 and the second rotating member 32 are mounted in the mounting groove 211. First guide grooves 213 and second guide grooves 214 are formed between the inner walls of both sides of the mounting plate 212 and the inner wall of the mounting groove 211. Specifically, the first transmission member 31 and the second transmission member 32 are arranged in the mounting groove 211, and then the opening of the mounting groove 211 is covered by the mounting plate 212 to improve the stability of the first transmission member 31 and the second transmission member 32 in the mounting groove 211. By providing notches 215 on the side walls of the mounting plate 212, the first guide grooves 213 and the second guide grooves 214 are formed on both sides of the mounting plate 212.

[0056] It should be noted that the floating lock 100 is applicable to be installed in a distribution cabinet without a door frame, and is applicable to the scenario where the floating lock 100 cannot be locked with the side wall of the distribution cabinet. The floating lock 100 cooperates with the lock holes of the cabinet body from the upper and lower directions to realize unlocking the cabinet door from the upper and lower directions. In other floating locks 100, the function of locking the upper and lower ends of the cabinet door by moving the first transmission member 31 and the second transmission member 32 up and down is within the protection scope of this application.

[0057] When referring to the drawings for explanation, new features that appear are described; in order to avoid repeated reference to the drawings resulting in insufficiently concise descriptions, for features that have been described clearly, the drawings are not cited one by one.

[0058] The purpose of the above embodiments is to exemplarily reproduce and deduce the technical solutions of the present utility model, and to completely describe the technical solutions, purposes and effects of the present utility model. The purpose is to enable the public to understand the disclosed content of the present utility model more thoroughly and comprehensively, and it does not limit the protection scope of the present utility model hereby.

[0059] The above embodiments are not exhaustive listings based on the present utility model. In addition, there may be multiple other embodiments not listed. Any substitution and improvement made on the basis of not violating the concept of the present utility model fall within the protection scope of the present utility model.

Claims

1. Transmission type floating lock, characterized in that: It comprises: a handle assembly, a lock body assembly, and a bolt structure, wherein the bolt structure comprises a first transmission member, a second transmission member, and a third transmission member; The first end of the handle assembly is rotatably mounted on the first end of the third transmission member, and the second end of the handle assembly is engaged with the lock body assembly; The third transmission member is rotatably mounted in the lock body assembly, the first transmission member and the second transmission member are movably arranged on the lock body assembly and arranged on both sides of the third transmission member, and the first transmission member and the second transmission member are both transmission-coordinated with the second end of the third transmission member; Wherein, the first transmission member and the second transmission member have a moving path that moves them closer to each other or farther away from each other.

2. The transmission type floating lock according to claim 1, characterized in that: The third transmission member comprises a first rotating seat and a gear plate. In a first direction, the first rotating seat is rotatably connected to the inner wall of the lock body assembly, and the gear plate is sleeved outside the first rotating seat. The first transmission member and the second transmission member are both provided with a plurality of tooth grooves, the plurality of tooth grooves are distributed along the moving path, and the gear plate cooperates with the tooth grooves.

3. The transmission type floating lock according to claim 2, characterized in that: The first transmission member includes a first moving plate and a first moving latch, the second transmission member includes a second moving plate and a second moving latch, a plurality of tooth grooves are provided on the first moving plate and the second moving plate, a first end of the first moving latch is mounted on the first moving plate, and a first end of the second moving latch is mounted on the second moving plate; The second end of the first movable latch is used to penetrate the first end of the cabinet door, and the second end of the second movable latch is used to penetrate the second end of the cabinet door. The first movable latch and the second movable latch are respectively used to slide with the two ends of the cabinet door.

4. The transmission type floating lock according to claim 2, characterized in that: The third transmission member also has a fastener and a gasket, the first rotating seat has a fixing hole, the gasket has a through hole, the gasket is arranged on the gear plate, the first end of the fastener passes through the through hole and is connected to the fixing hole, and the second end of the fastener abuts against the gasket.

5. The transmission type floating lock according to claim 2, characterized in that: The lock body assembly has a first guide groove and a second guide groove arranged opposite to each other, and the first transmission member is at least partially arranged in the first guide groove and slidably cooperates with the first guide groove; The second transmission member is at least partially disposed in the second guide groove and slidably engaged with the second guide groove.

6. The transmission type floating lock according to claim 2, characterized in that: The third transmission member further comprises a second rotating seat, a pin shaft, and a torsion spring, wherein the first end of the second rotating seat is mounted on the first rotating seat, the pin shaft is mounted on the second end of the second rotating seat, and the first end of the handle assembly is sleeved on the second end of the pin shaft and rotates with the pin shaft in the second direction; The torsion spring is sleeved outside the pin shaft, and two ends of the torsion spring are respectively against the second rotating seat and the handle assembly.

7. The transmission type floating lock according to any one of claims 1 to 6, characterized in that: The first transmission member or the second transmission member is in a bent shape, the first transmission member has a first mounting hole, the second transmission member has a second mounting hole, and the first mounting hole and the second mounting hole are both arranged on the moving path.

8. The transmission type floating lock according to any one of claims 1 to 6, characterized in that: The lock body assembly comprises a mounting seat and a support frame, wherein the support frame is mounted on the mounting seat and has a card slot, and the second end of the handle assembly is used for card connection with the card slot.

9. The transmission type floating lock according to claim 8, characterized in that: The handle assembly comprises a handle, a lock core and a lock tongue plate. The lock core is mounted on the second end of the handle, the lock tongue plate is movably mounted on the lock core, and the support frame has a lock groove matched with the lock tongue plate.

10. The transmission type floating lock according to claim 8, characterized in that: The mounting seat has a mounting groove and a mounting plate, and strip-shaped gaps are opened on both sides of the mounting plate. At least part of the first transmission member and the second rotating member are installed in the mounting groove, and a first guide groove and a second guide groove are formed between the two side walls of the mounting plate and the inner wall of the mounting groove.