A lockset with a lock cylinder
By designing an automated lock cylinder installation device, which utilizes a frame, base, feeding assembly, transfer assembly, unloading assembly, lock cylinder installation assembly, and cylinder pin assembly, the device achieves automated installation of lock cylinders and cylinder pins, solving the problem of cumbersome operation in existing technologies and improving operational efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUA YUE WU JIN SHEN ZHEN YOU XIAN GONG SI
- Filing Date
- 2025-05-30
- Publication Date
- 2026-08-04
AI Technical Summary
The existing lock cylinder installation process requires manual operation, which is cumbersome.
A lock cylinder installation device is designed, comprising a frame, a base, a feeding component, a transfer component, a discharging component, a lock cylinder installation component, and a cylinder pin installation component. Through the coordinated work of these components, the installation process of the lock cylinder and cylinder pin is completed automatically.
It reduces manual labor, simplifies operation, and improves work efficiency.
Smart Images

Figure CN224587386U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lock processing technology, and in particular to a lock cylinder mounting device. Background Technology
[0002] During the production of locks, a lock cylinder and a pin need to be installed in the lock body. The outer circumferential surface of the lock cylinder is provided with a limiting groove that extends circumferentially around the lock cylinder. One end of the pin is fixed to the lock body, and the other end is inserted into the limiting groove to limit the rotation angle of the lock cylinder.
[0003] An existing lock cylinder mounting device includes a base and a hammer. The base is placed on a stable workbench, the lock is fixed on the base, and the lock cylinder is installed into the lock hole of the lock body, so that the limiting groove on the lock cylinder is connected to the through hole on the lock body. The through hole is connected to the lock hole. The core pin is placed at the outer opening of the through hole, and the core pin is struck with the hammer to drive the core pin into the through hole, so that the core pin passes into the lock hole and is locked into the limiting groove.
[0004] The existing lock cylinder installation mechanism requires manual operation, which is cumbersome. Summary of the Invention
[0005] This utility model provides a lock cylinder mounting device, which aims to solve the problem that existing lock cylinder mounting devices require manual operation and are cumbersome to operate.
[0006] To address the aforementioned problems, this utility model provides a lock cylinder mounting device, comprising a frame, a base, a feeding assembly, a transfer assembly, a discharging assembly, a lock cylinder mounting assembly, and a cylinder mounting pin assembly. The base is connected to the frame and has a receiving groove for holding the lock body. The feeding assembly transports the lock body to the transfer assembly, which then transports the lock body to the receiving groove. The lock cylinder mounting assembly mounts the lock cylinder into the lock body placed in the receiving groove. The cylinder mounting pin assembly mounts the cylinder pin into the lock body with the installed lock cylinder. The discharging assembly is connected to the frame and removes the lock body with the cylinder pin mounted from the receiving groove.
[0007] Optionally, the feeding assembly includes a feeding bin connected to the frame, the feeding bin having a feeding hole extending in the vertical direction, the top of the feeding bin having a feeding port for the lock to enter the feeding hole, and the bottom of the feeding bin having a discharging port for the lock to fall out of the feeding hole.
[0008] The base is provided with a working port that communicates with the receiving groove;
[0009] The transfer assembly includes a transfer seat and a first drive mechanism. The transfer seat is disposed below the discharge port. The transfer seat has a first blocking part and a first receiving part. The first receiving part is provided with a transfer groove. The transfer seat has a first receiving position and a first feeding position. At the first feeding position, the first blocking part is located below the discharge port, and the upper surface of the first blocking part blocks the discharge port. The transfer groove communicates with the working port. At the first receiving position, the first receiving part is located below the discharge port, and the transfer groove communicates with the discharge port, so that the lock body falls into the transfer groove through the discharge port.
[0010] The transfer seat is connected to the first driving mechanism, which can drive the transfer seat to move between the first feeding position and the first receiving position.
[0011] Optionally, the transfer assembly further includes a first pushing mechanism. The transfer seat is provided with a first pushing port and a second pushing port that communicate with the transfer groove. The first pushing port and the second pushing port are arranged opposite to each other. At the first feeding position of the transfer seat, the second pushing port communicates with the working port.
[0012] The first pushing mechanism can enter the transfer groove through the first pushing port, so as to push the lock body in the transfer groove into the receiving groove through the second pushing port and the working port.
[0013] Optionally, the lock cylinder assembly includes a first vibrating plate, a feeding track, and a first feeding seat;
[0014] The first feeding seat is connected to the transfer seat. The first feeding seat moves with the transfer seat between the first feeding position and the first receiving position. The first feeding seat is provided with a first feeding trough.
[0015] One end of the feeding track is connected to the first vibrating plate. At the first feeding position, the first feeding trough is connected to the other end of the feeding track. The first vibrating plate conveys the lock core stored inside to the first feeding trough through the feeding track by vibration.
[0016] At the first receiving position, the first feeding groove is connected to the receiving groove, and the first pushing mechanism can push the lock cylinder in the first feeding groove into the lock body in the receiving groove.
[0017] Optionally, the lock cylinder assembly further includes a first baffle, which is connected to the first feeding seat and moves with the transfer seat between the first receiving position and the first feeding position.
[0018] During the process of the transfer seat moving from the first feeding position to the first receiving position, the first baffle blocks the feeding track.
[0019] Optionally, the core-loading pin assembly includes a second vibrating plate and a feeding tube;
[0020] The second vibrating disc is connected to the frame and is located above the base;
[0021] The base is provided with a receiving hole that communicates with the receiving groove;
[0022] The upper end of the feeding tube is connected to the second vibrating plate, and the lower end of the feeding tube is connected to the receiving groove. The second vibrating plate conveys the core pin stored inside it through the feeding tube and the receiving hole to the receiving groove by vibration, so that the core pin enters the lock body in the receiving groove.
[0023] Optionally, the core-loading pin assembly further includes a second feeding seat, a transition seat, and a second driving mechanism;
[0024] The transition seat is connected to the frame. The transition seat is provided with a first bearing hole. The transition seat has a first opening and a second opening that communicate with the first bearing hole. The first opening and the second opening are arranged opposite to each other. The first opening communicates with the lower end of the feeding pipe.
[0025] The second feeding seat has a second bearing hole, and the second feeding seat has a third opening and a fourth opening that communicate with the second bearing hole, and the third opening and the fourth opening are arranged opposite to each other;
[0026] The second feeding seat has a second receiving position and a second feeding position. The second feeding seat has a second receiving part and a second blocking part. The second bearing hole is disposed on the second receiving part. At the second receiving position, the third opening communicates with the second opening so that the core pin of the first bearing hole enters the second bearing hole. At the second feeding position, the fourth opening communicates with the receiving hole so that the core pin in the second bearing hole enters the receiving hole.
[0027] The second drive mechanism can drive the second loading seat to move between the second receiving position and the second feeding position.
[0028] Optionally, the core-loading pin assembly further includes a second pusher mechanism;
[0029] The second pushing mechanism can enter the second bearing hole through the third opening to push the core pin in the second bearing hole into the lock hole of the lock body in the receiving groove through the fourth opening.
[0030] Optionally, the unloading assembly includes a third drive mechanism and an unloading rod, the unloading rod being connected to the third drive mechanism, and the third drive mechanism being connected to the frame.
[0031] The receiving tank is also provided with a third push port opposite to the working port;
[0032] The third drive mechanism can drive the feeding rod to move closer to or further away from the base, so that the feeding rod enters the receiving groove through the third push port, and pushes the lock body in the receiving groove out through the working port and the transfer groove.
[0033] Optionally, the feeding assembly further includes a feeding hopper, the higher end of which is connected to the transfer seat to receive the lock body pushed out of the receiving groove and the transfer groove by the feeding rod.
[0034] According to the lock cylinder mounting device provided in this embodiment of the present invention, the feeding component and the transfer component can load the lock body into the receiving groove of the base, the lock cylinder mounting component can load the lock cylinder into the lock body in the receiving groove, and the cylinder pin mounting component can load the core pin into the lock body in the receiving groove. This reduces manual labor and, compared with the prior art, is simple to operate and improves work efficiency. Attached Figure Description
[0035] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments of this utility model will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0036] Figure 1 This is a schematic diagram of the structure of a lock cylinder mounting device provided in an embodiment of the present invention;
[0037] Figure 2 This is a partial structural diagram of a lock cylinder mounting device provided in an embodiment of the present invention;
[0038] Figure 3 This is an assembly diagram of the second mounting bracket, the core pin assembly, and the base;
[0039] Figure 4 for Figure 3 Assembly diagram of the core pin assembly and base;
[0040] Figure 5 for Figure 4 Another perspective;
[0041] Figure 6 This is a schematic diagram of the assembly of the second feeding seat and the second drive mechanism;
[0042] Figure 7 This is a schematic diagram of the transition seat.
[0043] Figure 8 for Figure 7 Another perspective.
[0044] Reference numerals in the accompanying drawings: 1. Frame; 2. Third mounting bracket; 3. Core pin assembly; 4. Second vibratory feeder; 5. Feeding pipe; 6. Lock core assembly; 7. First vibratory feeder; 8. Feeding assembly; 9. Transfer assembly; 10. Feeding bin; 11. Feeding hole; 12. Feeding inlet; 13. Discharge inlet; 14. Transfer seat; 15. First receiving part; 16. First blocking part; 17. Transfer groove; 18. First pushing inlet; 19. Second pushing inlet; 20. Base; 21. Receiving groove; 22. Discharge assembly; 23. Third drive mechanism; 24. Discharge rod; 25. First drive mechanism; 26. First feeding seat; 27. First feeding groove; 28. Feeding track ; 29. Feed hopper; 30. First pushing mechanism; 31. First pushing cylinder; 32. First pushing rod; 33. First mounting frame; 34. Second mounting frame; 35. Second pushing mechanism; 36. Second pushing cylinder; 37. Second pushing rod; 38. Second drive mechanism; 39. Transition seat; 40. Transition frame; 41. Second loading seat; 42. Guide hole; 43. Second bearing hole; 44. Third opening; 45. Third pushing port; 46. Working port; 47. Receiving hole; 48. Fourth opening; 49. First bearing hole; 50. First opening; 52. Second opening; 53. Second blocking part; 54. Second receiving part; 55. First baffle. Detailed Implementation
[0045] To make the technical problems solved, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0046] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0047] like Figures 1 to 8As shown, an embodiment of this utility model provides a lock cylinder mounting device, including a frame 1, a base 20, a feeding assembly 8, a transfer assembly 9, a discharging assembly 22, a lock cylinder mounting assembly 6, and a cylinder mounting pin assembly 3. The base 20 is connected to the frame 1 and has a receiving groove 21 for holding the lock body. The feeding assembly 8 is used to transport the lock body to the transfer assembly 9, and the transfer assembly 9 is used to transport the lock body to the receiving groove 21. The lock cylinder mounting assembly 6 is used to install the lock cylinder into the lock body placed in the receiving groove 21. The cylinder mounting pin assembly 3 is used to install the cylinder pin into the lock body with the lock cylinder already installed. The discharging assembly 22 is connected to the frame 1 and is used to remove the lock body with the cylinder pin installed from the receiving groove 21.
[0048] In this embodiment, the feeding assembly 8 and the transfer assembly 9 can install the lock body into the receiving groove 21 of the base 20, the lock cylinder assembly 6 can install the lock cylinder into the lock body of the receiving groove 21, and the core pin assembly 3 can install the core pin into the lock body of the receiving groove 21, which reduces manual labor, simplifies operation, and improves work efficiency.
[0049] In this embodiment, the lock cylinder assembly 6 is used to install the lock cylinder into the lock body placed in the receiving groove 21, which means that the lock cylinder is installed into the key hole of the lock body.
[0050] In this embodiment, the ability of the core pin assembly 3 to insert the core pin into the lock body of the receiving groove 21 means that the core pin is inserted into the lock body through the through hole on the lock body, so that one end of the core pin is interference-fitted with the through hole, and the other end is locked into the limiting groove of the lock cylinder.
[0051] In one embodiment, the feeding assembly 8 includes a feeding bin 10 connected to the frame 1. The feeding bin 10 has a feeding hole 11 extending in the vertical direction. The top of the feeding bin 10 has a feeding port 12 for the lock to enter the feeding hole 11, and the bottom of the feeding bin 10 has a discharging port 13 for the lock to fall out from the feeding hole 11.
[0052] The base 20 is provided with a working port 46 that communicates with the receiving groove 21.
[0053] The transfer assembly 9 includes a transfer seat 14 and a first drive mechanism 25. The transfer seat 14 is located below the discharge port 13. The transfer seat 14 has a first blocking part 16 and a first receiving part 15. The first receiving part 15 is provided with a transfer groove 17. The transfer seat 14 has a first receiving position and a first feeding position. At the first feeding position, the first blocking part 16 is located below the discharge port 13, and the upper surface of the first blocking part 16 blocks the discharge port 13. The transfer groove 17 is connected to the working port 46. At the first receiving position, the first receiving part 15 is located below the discharge port 13, and the transfer groove 17 is connected to the discharge port so that the lock body falls into the transfer groove 17 through the discharge port 13.
[0054] The transfer seat 14 is connected to the first drive mechanism 25, which can drive the transfer seat 14 to move between the first feeding position and the first receiving position.
[0055] In this embodiment, the feeding bin 10 is mounted on the first mounting frame 33, and the feeding bin 10 extends directly above the moving path of the transfer seat 14.
[0056] In this embodiment, the feeding hole 11 extends in the vertical direction. During operation, the lock body needs to be inserted into the feeding hole 11 from the feeding port 12 to replenish the lock body in the feeding hole 11, so as to ensure the continuous operation of the lock cylinder mounting device.
[0057] In this embodiment, the frame 1 is provided with a first mounting bracket 33 and a second mounting bracket 34, and the first mounting bracket 33 and the second mounting bracket 34 are at the same height.
[0058] In this embodiment, the base 20 has a working port 46 communicating with the receiving groove 21 on the side facing the transfer seat 14.
[0059] In this embodiment, the first drive mechanism 25 is a linear motor, which is mounted on the second mounting bracket 34. The transfer seat 14 is connected to the linear motor, and the linear motor drives the transfer seat 14 to move between the first receiving position and the first feeding position.
[0060] In other embodiments, the first drive mechanism 25 may also be a cylinder or an electric push rod.
[0061] In this embodiment, the first drive mechanism 25 drives the transfer seat 14 to move to the first receiving position. At this time, the top opening of the transfer groove 17 on the first receiving part 15 is connected to the discharge port 13 at the bottom of the feeding bin 10, so that the lock body in the feeding hole 11 falls into the transfer groove 17. The first drive mechanism 25 drives the transfer seat 14 to move to the first feeding position. At this time, the first blocking part 16 blocks the discharge port 13. The transfer groove 17 of the first receiving part 15 moves to the position of the receiving groove 21. The transfer groove 17 is connected to the working port 46 of the receiving groove 21 so that the lock body in the transfer groove 17 can enter the receiving groove 21.
[0062] In this embodiment, the feeding assembly 8 uses a feeding bin 10, which can transport the lock body to the transfer assembly 9 by gravity. The structure is simple and easy to design. The transfer mechanism 25 drives the transfer device to move between the first receiving position and the first feeding position, which is also easy to design.
[0063] In one embodiment, the transfer assembly 9 further includes a first pushing mechanism 30. The transfer seat 14 is provided with a first pushing port 18 and a second pushing port 19 that communicate with the transfer groove 17. The first pushing port 18 and the second pushing port 19 are arranged opposite to each other. At the first feeding position of the transfer seat 14, the second pushing port 19 communicates with the working port 46.
[0064] The first pushing mechanism 30 can enter the transfer groove 17 through the first pushing port 18, so as to push the lock body in the transfer groove 17 into the receiving groove 21 through the second pushing port 19 and the working port 46.
[0065] In this embodiment, the first pushing mechanism 30 includes a first pushing cylinder 31 and a first pushing rod 32. The first pushing cylinder 31 is mounted on the first mounting bracket 33, and the first pushing rod 32 is connected to the first pushing cylinder 31. The end of the first pushing rod 32 points towards the base 20.
[0066] In this embodiment, after the transfer seat 14 moves to the first feeding position, the second push port 19 is connected to the working port 46 of the receiving groove 21. The first push cylinder 31 drives the first pusher to move towards the direction of transfer, so that the first pusher material enters the transfer groove 17, so as to push the lock body in the transfer groove 17 into the receiving groove 21 through the second push port 19 and the working port 46.
[0067] In this embodiment, the lock body is pushed from the transfer groove 17 into the receiving groove 21 by the first pushing mechanism 30, which has a simple structure and is easy to design.
[0068] In one embodiment, the lock cylinder assembly 6 includes a first vibrating disc 7, a feeding track 28, and a first feeding seat 26.
[0069] The first feeding seat 26 is connected to the transfer seat 14. The first feeding seat 26 moves between the first feeding position and the first receiving position with the transfer seat 14. The first feeding seat 26 is provided with a first feeding trough 27.
[0070] One end of the feeding track 28 is connected to the first vibrating plate 7. At the first feeding position, the first feeding trough 27 is connected to the other end of the feeding track 28. The first vibrating plate 7 conveys the lock core stored inside to the first feeding trough 27 through the feeding track 28 by vibration.
[0071] At the first receiving position, the first feeding groove 27 is connected to the receiving groove 21, and the first pushing mechanism 30 can push the lock cylinder in the first feeding groove 27 into the lock body in the receiving groove 21.
[0072] In this embodiment, the first vibrating plate 7 is installed on the frame 1, and the feeding track 28 is connected between the first vibrating plate 7 and the transfer seat 14. The higher end of the feeding track 28 is connected to the first vibrating plate 7 so that the lock core in the first vibrating plate 7 enters the feeding track 28. The lower end of the feeding track 28 is located directly above the first receiving part 15 of the transfer seat 14.
[0073] In this embodiment, the first feeding seat 26 is installed on the upper surface of the first receiving part 15 of the transfer seat 14. When the transfer seat 14 is in the first feeding position, the first feeding groove 27 of the first feeding seat 26 is connected to the feeding track 28. After the first vibrating plate 7 is started, the lock cylinder inside the first vibrating plate 7 will be vibrated to the feeding track 28 by the first vibrating plate 7 and can enter the first feeding groove 27 along the feeding track 28. When the transfer moves to the first receiving position, the first feeding seat 26 is close to the base 20, and the first feeding groove 27 is connected to the receiving groove 21. At this time, the first pushing mechanism 30 pushes the lock cylinder from the first feeding groove 27 into the lock cylinder hole of the lock body in the receiving groove 21 so as to install the lock cylinder into the lock body.
[0074] In one embodiment, the lock cylinder assembly 6 further includes a first baffle 55, which is connected to the first feeding seat 26 and moves with the transfer seat 14 between the first receiving position and the first feeding position.
[0075] During the process of the transfer seat 14 moving from the first feeding position to the first receiving position, the first baffle 55 blocks the feeding track 28.
[0076] In this embodiment, the first baffle 55 extends along the moving direction of the transfer seat 14.
[0077] In this embodiment, the first baffle 55 is connected to the first feeding seat 26. During the process of the transfer seat 14 moving from the first feeding position to the first receiving position, the first baffle 55 always blocks the feeding track 28 to prevent the lock core in the feeding track 28 from falling out.
[0078] In one embodiment, the core-loading pin assembly 3 includes a second vibrating plate 4 and a feeding tube 5.
[0079] The second vibrating plate 4 is connected to the frame 1 and is located above the base 20.
[0080] The base 20 is provided with a receiving hole 47 that communicates with the receiving groove 21.
[0081] The upper end of the feeding pipe 5 is connected to the second vibrating plate 4, and the lower end of the feeding pipe 5 is connected to the receiving groove 21. The second vibrating plate 4 conveys the core pin stored inside it through the feeding pipe 5 and the receiving hole 47 to the receiving groove 21 by vibration, so that the core pin enters the lock body in the receiving groove 21.
[0082] In this embodiment, a third mounting bracket 2 is provided on the frame 1. The third mounting bracket 2 is higher than the second mounting bracket 34, and the second vibrating plate 4 is mounted on the third mounting bracket 2.
[0083] In this embodiment, the base 20 has a receiving hole 47 on one side of the upper material bin 10, and the lower end of the feeding pipe 5 is connected to the receiving hole 47.
[0084] In this embodiment, when the second vibrating plate 4 is started, the core pin inside the second vibrating plate 4 will enter the receiving groove 21 through the feeding pipe 5 and the receiving hole 47.
[0085] In one embodiment, the core-loading pin assembly 3 further includes a second feeding seat 41, a transition seat 39, and a second driving mechanism 38.
[0086] The transition seat 39 is connected to the frame 1. The transition seat 39 is provided with a first bearing hole 49. The transition seat 39 has a first opening 50 and a second opening 52 that communicate with the first bearing hole 49. The first opening 50 and the second opening 52 are arranged opposite to each other. The first opening 50 is connected to the lower end of the feeding pipe.
[0087] The second feeding seat 41 has a second bearing hole 43, and the second feeding seat 41 has a third opening 44 and a fourth opening 48 that communicate with the second bearing hole 43. The third opening 44 and the fourth opening 48 are arranged opposite to each other.
[0088] The second feeding seat 41 has a second receiving position and a second feeding position. The second feeding seat 41 has a second receiving part 54 and a second blocking part 53. The second bearing hole 43 is provided on the second receiving part 54. At the second receiving position, the third opening 44 communicates with the second opening 52 so that the core pin of the first bearing hole 49 enters the second bearing hole 43. At the second feeding position, the fourth opening 48 communicates with the receiving hole 47 so that the core pin in the second bearing hole 43 enters the receiving hole 47.
[0089] The second drive mechanism 38 can drive the second loading seat 41 to move between the second receiving position and the second feeding position.
[0090] In this embodiment, the transition seat 39 is mounted on the second mounting bracket 34.
[0091] In this embodiment, a transition frame 40 is provided between the transition seat 39 and the base 20. The transition frame 40 is provided with a guide hole 42 extending in the vertical direction. Both sides of the guide hole 42 are open structures. The second feeding seat 41 is slidably assembled in the guide hole 42.
[0092] In this embodiment, the side wall of the transition frame 40 facing the feeding bin 10 forms the groove side wall of the receiving groove 21 of the base 20, and the receiving hole 47 is provided on the transition frame 40.
[0093] In this embodiment, the second driving mechanism 38 is a first cylinder. The cylinder body of the first cylinder is connected to the transition frame 40, and the piston rod of the first cylinder is connected to the top of the first feeding seat 26. The first cylinder drives the first feeding seat 26 to move along the guide hole 42 between the second receiving position and the second feeding position.
[0094] In this embodiment, after the lock cylinder is installed into the lock body, the second vibrating disc 4 is activated, causing the core pin to enter the transition seat 39 through the first hole 50 of the transition seat 39 along the feeding tube 5. At this time, the second driving mechanism 38 drives the second feeding seat 41 to move to the second receiving position, so that the third hole 44 on the second feeding seat 41 communicates with the second hole 52 on the transition seat 39, allowing the core pin to enter the second feeding seat 41. Then, the second driving mechanism 38 drives the second feeding seat 41 to move from the second receiving position to the second feeding position, so that the fourth hole 48 of the second feeding seat 41 communicates with the receiving hole 47 on the base 20, allowing the core pin to enter the receiving hole 47. In addition, during the process of the second feeding seat 41 moving from the second receiving position to the second feeding position, the second blocking part 53 of the second feeding seat 41 blocks the second hole 52 of the transition seat 39 to prevent the core pin from falling off.
[0095] In one embodiment, the core-loading pin assembly 3 further includes a second pusher mechanism 35.
[0096] The second pushing mechanism 35 can enter the second bearing hole 43 through the third opening 44, so as to push the core pin in the second bearing hole 43 into the lock hole of the lock body in the receiving groove 21 through the fourth opening 48.
[0097] In this embodiment, the second pushing mechanism 35 includes a second pushing cylinder 36 and a second pushing rod 37. The second pushing cylinder 36 is mounted on the second mounting bracket 34, and the second pushing rod 37 is connected to the second pushing cylinder 36. The end of the second pushing rod 37 points to the second loading seat 41.
[0098] In this embodiment, after the second feeding seat 41 moves to the second feeding position, the fourth hole 48 of the second feeding seat 41 is connected to the receiving opening of the receiving groove 21. The second pushing cylinder 36 drives the second pushing rod 37 to move towards the second feeding seat 41, so that the second pushing rod enters the second feeding seat 41 through the third hole 44, so as to push the core pin in the second feeding seat 41 into the lock body of the receiving groove 21 through the fourth hole 48 and the fusion hole.
[0099] In one embodiment, the feeding assembly 22 includes a third drive mechanism 23 and a feeding rod 24, the feeding rod 24 being connected to the third drive mechanism 23, and the third drive mechanism 23 being connected to the frame 1.
[0100] The receiving tank 21 is also provided with a third push port 45 opposite to the working port 46.
[0101] The third drive mechanism 23 can drive the feed rod 24 to move closer to or further away from the base 20, so that the feed rod 24 enters the receiving groove 21 through the third push port 45, so that the lock body in the receiving groove 21 is pushed out through the working port 46 and the transfer groove 17.
[0102] In this embodiment, the third drive mechanism 23 is a third cylinder, which is connected to the second mounting bracket 34. The feeding rod 24 is connected to the third cylinder, and the end of the feeding rod 24 points towards the base 20. The third cylinder drives the feeding rod 24 to move closer to the base 20, so that the feeding rod 24 enters the receiving groove 21 through the third push port 45, so as to push the lock body in the receiving groove 21 out through the working port 46 and the transfer groove 17. The structure is simple and easy to design.
[0103] In one embodiment, the feeding assembly 22 further includes a feeding hopper 29, the higher end of which is connected to the transfer seat 14 to receive the lock body pushed out of the receiving groove 21 and the transfer groove 17 by the feeding rod 24.
[0104] In this embodiment, the hopper 29 is used to receive the lock body that falls from the transfer trough 17, and the frame 1 is also provided with a receiving box or conveyor belt for receiving the lock body below the hopper 29.
[0105] The lock cylinder loading device provided in this embodiment of the utility model first loads the lock body into the loading bin 10 during operation. Then, the transfer component 9 carries the lock body in the loading bin 10 and transports the lock body to the receiving groove 21 of the base 20. Then, the lock cylinder loading component 6 loads the lock cylinder into the lock body in the receiving groove 21. Then, the core pin loading component 3 loads the core pin into the lock body. Then, the unloading component 22 pushes the lock body with the lock cylinder and core pin loaded out of the receiving groove 21 through the transfer groove 17, so that the lock body falls onto the unloading hopper 29.
[0106] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0107] According to the lock cylinder mounting device provided in this embodiment of the present utility model, the feeding component 8 and the transfer component 9 can load the lock body into the receiving groove 21 of the base 20, the lock cylinder mounting component 6 can load the lock cylinder into the lock body of the receiving groove 21, and the cylinder pin mounting component 3 can load the core pin into the lock body of the receiving groove 21. This reduces manual labor and, compared with the prior art, simplifies operation and improves work efficiency.
[0108] The above-described embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model, and should all be included within the protection scope of this utility model.
Claims
1. A lock cylinder mounting device, characterized in that, The system includes a frame (1), a base (20), a loading assembly (8), a transfer assembly (9), a unloading assembly (22), a lock cylinder mounting assembly (6), and a core pin mounting assembly (3). The base (20) is connected to the frame (1) and has a receiving groove (21) for holding the lock body. The loading assembly (8) is used to transport the lock body to the transfer assembly (9), and the transfer assembly (9) is used to transport the lock body to the receiving groove (21). The lock cylinder mounting assembly (6) is used to install the lock cylinder into the lock body placed in the receiving groove (21). The core pin mounting assembly (3) is used to install the core pin into the lock body with the lock cylinder installed. The unloading assembly (22) is connected to the frame (1) and is used to remove the lock body with the core pin installed from the receiving groove (21).
2. The lock cylinder mounting device according to claim 1, characterized in that, The feeding assembly (8) includes a feeding bin (10) connected to the frame (1). The feeding bin (10) has a feeding hole (11) extending in the vertical direction. The top of the feeding bin (10) has a feeding port (12) for the lock to enter the feeding hole (11). The bottom of the feeding bin (10) has a discharging port (13) for the lock to fall out from the feeding hole (11). The base (20) is provided with a working port (46) that communicates with the receiving groove (21); The transfer assembly (9) includes a transfer seat (14) and a first drive mechanism (25). The transfer seat (14) is located below the discharge port (13). The transfer seat (14) has a first blocking part (16) and a first receiving part (15). The first receiving part (15) is provided with a transfer groove (17). The transfer seat (14) has a first receiving position and a first feeding position. At the first feeding position, the first blocking part (16) is located below the discharge port (13). The upper surface of the first blocking part (16) blocks the discharge port (13). The transfer groove (17) is connected to the working port (46). At the first receiving position, the first receiving part (15) is located below the discharge port (13). The transfer groove (17) is connected to the discharge port (13) so that the lock body falls into the transfer groove (17) through the discharge port (13). The transfer seat (14) is connected to the first drive mechanism (25), and the first drive mechanism (25) can drive the transfer seat (14) to move between the first feeding position and the first receiving position.
3. The lock cylinder mounting device according to claim 2, characterized in that, The transfer assembly (9) further includes a first pushing mechanism (30). The transfer seat (14) is provided with a first pushing port (18) and a second pushing port (19) communicating with the transfer groove (17). The first pushing port (18) and the second pushing port (19) are arranged opposite to each other. At the first feeding position of the transfer seat (14), the second pushing port (19) is connected to the working port (46). The first pushing mechanism (30) can enter the transfer groove (17) through the first pushing port (18) to push the lock body in the transfer groove (17) into the receiving groove (21) through the second pushing port (19) and the working port (46).
4. The lock cylinder mounting device according to claim 3, characterized in that, The lock cylinder assembly (6) includes a first vibrating plate (7), a feeding track (28), and a first feeding seat (26). The first feeding seat (26) is connected to the transfer seat (14). The first feeding seat (26) moves between the first feeding position and the first receiving position along with the transfer seat (14). The first feeding seat (26) is provided with a first feeding groove (27). One end of the feeding track (28) is connected to the first vibrating plate (7). At the first feeding position, the first feeding trough (27) is connected to the other end of the feeding track (28). The first vibrating plate (7) conveys the lock core stored inside to the first feeding trough (27) through the feeding track (28) by vibration. At the first receiving position, the first feeding groove (27) is connected to the receiving groove (21), and the first pushing mechanism (30) can push the lock cylinder in the first feeding groove (27) into the lock body in the receiving groove (21).
5. The lock cylinder mounting device according to claim 4, characterized in that, The lock cylinder assembly (6) further includes a first baffle (55), which is connected to the first feeding seat (26). The first baffle (55) moves with the transfer seat (14) between the first receiving position and the first feeding position. During the process of the transfer seat (14) moving from the first feeding position to the first receiving position, the first baffle (55) blocks the feeding track (28).
6. The lock cylinder mounting device according to claim 2, characterized in that, The core-loading pin assembly (3) includes a second vibrating plate (4) and a feeding tube (5); The second vibrating disc (4) is connected to the frame (1), and the second vibrating disc (4) is located above the base (20); The base (20) is provided with a receiving hole (47) that communicates with the receiving groove (21). The upper end of the feeding pipe (5) is connected to the second vibrating plate (4), and the lower end of the feeding pipe (5) is connected to the receiving groove (21). The second vibrating plate (4) conveys the core pin stored inside it through the feeding pipe (5) and the receiving hole (47) to the receiving groove (21) so that the core pin enters the lock body in the receiving groove (21).
7. The lock cylinder mounting device according to claim 6, characterized in that, The core pin assembly (3) also includes a second loading seat (41), a transition seat (39) and a second drive mechanism (38). The transition seat (39) is connected to the frame (1). The transition seat (39) is provided with a first bearing hole (49). The transition seat (39) has a first opening (50) and a second opening (52) that communicate with the first bearing hole (49). The first opening (50) and the second opening (52) are arranged opposite to each other. The first opening (50) communicates with the lower end of the feeding pipe (5). The second loading seat (41) has a second bearing hole (43), and the second loading seat (41) has a third opening (44) and a fourth opening (48) communicating with the second bearing hole (43). The third opening (44) and the fourth opening (48) are arranged opposite to each other. The second feeding seat (41) has a second receiving position and a second feeding position. The second feeding seat (41) has a second receiving part (54) and a second blocking part (53). The second bearing hole (43) is disposed on the second receiving part (54). At the second receiving position, the third opening (44) communicates with the second opening (52) so that the core pin of the first bearing hole (49) enters the second bearing hole (43). At the second feeding position, the fourth opening (48) communicates with the receiving hole (47) so that the core pin in the second bearing hole (43) enters the receiving hole (47). The second drive mechanism (38) can drive the second loading seat (41) to move between the second receiving position and the second feeding position.
8. The lock cylinder mounting device according to claim 7, characterized in that, The core-loading pin assembly (3) also includes a second pusher mechanism (35); The second pusher mechanism (35) can enter the second bearing hole (43) through the third hole (44) to push the core pin in the second bearing hole (43) into the lock hole of the lock body in the receiving groove (21) through the fourth hole (48).
9. The lock cylinder mounting device according to claim 2, characterized in that, The feeding assembly (22) includes a third drive mechanism (23) and a feeding rod (24), the feeding rod (24) being connected to the third drive mechanism (23), and the third drive mechanism (23) being connected to the frame (1); The receiving groove (21) is also provided with a third push port (45) opposite to the working port (46); The third drive mechanism (23) can drive the feed rod (24) to move closer to or further away from the base (20) so that the feed rod (24) enters the receiving groove (21) through the third push port (45) so that the lock body in the receiving groove (21) is pushed out through the working port (46) and the transfer groove (17).
10. The lock cylinder mounting device according to claim 9, characterized in that, The feeding assembly (22) also includes a feeding hopper (29), the higher end of which is connected to the transfer seat (14) to receive the lock body pushed out of the receiving groove (21) and the transfer groove (17) by the feeding rod (24).