Lock body embedding machine

By designing a fully automatic lock body mounting machine, the combination of the first feeding assembly, the second feeding assembly and the pressing assembly is used to solve the problem of cumbersome operation of the existing lock body mounting machine, and the automation and efficient assembly of lock body mounting are realized.

CN222944913UActive Publication Date: 2025-06-06HUA YUE WU JIN SHEN ZHEN YOU XIAN GONG SI
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421790518.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-06-06
Estimated Expiration
2034-07-26

AI Technical Summary

Technical Problem

The existing lock body mounting machines are cumbersome to operate, and each process requires manual discharge and collection of materials, resulting in complex operation and low efficiency.

Method used

A fully automatic lock body mounting machine is designed, including a frame body, a lock body seat, a first feeding assembly, a second feeding assembly, a loading assembly and a pressing assembly. The first feeding assembly automatically connects the beads, the upper beads, the bullet springs and the sealing plate. The second feeding assembly collects and transfers it to the pressing assembly, and the pressing assembly presses the material into the lock body.

Benefits of technology

It realizes full automation of the lock body assembly process, simplifies the operation process, saves manpower, and improves assembly efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222944913U_ABST
    Figure CN222944913U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of locks, and particularly relates to a lock body embedding machine which comprises a frame body, a lock body seat, a first material receiving assembly, a second material receiving assembly, a material loading assembly and a material pressing assembly, and the lock body seat, the first material receiving assembly, the second material receiving assembly, the material loading assembly and the material pressing assembly are connected with the frame body. The loading assembly comprises a lower bead loading mechanism, an upper bead loading mechanism, a marble spring loading mechanism and a sealing piece loading mechanism which are arranged on the frame body side by side, and the first receiving assembly is used for sequentially receiving a lower bead provided by the lower bead loading mechanism, an upper bead provided by the upper bead loading mechanism, a marble spring provided by the marble spring loading mechanism and a sealing piece provided by the sealing piece loading mechanism; the second material receiving assembly is used for receiving the lower bead, the upper bead, the marble spring and the sealing piece on the first material receiving assembly, and the material pressing mechanism is used for pressing the lower bead, the upper bead, the marble spring and the sealing piece on the second material receiving assembly into the lock body. Operation is simple, manpower is saved, and assembling efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of locks, and in particular relates to a lock body assembling machine. Background Art

[0002] When the lock body of the lock is produced, it is necessary to install a lower bead, an upper bead, a pin spring and a sealing plate in the lock body.

[0003] The existing lock body assembling machine comprises a lower bead loading device, an upper bead loading device, a pin spring loading device and a sealing film loading device. The lower bead loading device comprises a lower bead loading platform and a lower bead suction straw. The lock body is mounted on the lower bead loading platform, and then the lower bead suction straw is manually held to put the lower bead in the lower bead suction straw into the lock body. The upper bead loading device comprises an upper bead loading platform and an upper bead suction straw. The lock body is mounted on the upper bead loading platform, and then the upper bead suction straw is manually held to put the upper bead in the upper bead suction straw into the lock body. The pin spring loading device comprises a pin spring loading platform and a pin spring suction straw. The lock body is mounted on the pin spring loading platform, and then the pin spring suction straw is manually held to put the pin spring in the pin spring suction straw into the lock body. The sealing film loading device comprises a sealing film loading platform and a sealing film suction straw. The lock body is mounted on the sealing film loading platform, and then the sealing film suction straw is manually held to put the sealing film in the sealing film suction straw into the lock body.

[0004] In the existing lock body assembly machine, the assembly processes of the lower bead, upper bead, pin spring and sealing piece are dispersed, and each process requires manual feeding and taking of materials, which is cumbersome to operate. Utility Model Content

[0005] The technical problem to be solved by the utility model is: to provide a lock body assembling machine in view of the problem that the existing lock body assembling machine has complicated operation.

[0006] In order to solve the above technical problems, the embodiment of the utility model provides a lock body assembly machine, including a frame and a lock body seat connected to the frame, a first material receiving assembly, a second material receiving assembly, a material loading assembly and a material pressing assembly;

[0007] The lock body seat is provided with a lock body groove for containing the lock body, the loading assembly comprises a lower bead loading mechanism, an upper bead loading mechanism, a pin spring loading mechanism and a sealing sheet loading mechanism which are arranged side by side on the frame, the first material receiving assembly is used to sequentially receive the lower bead provided by the lower bead loading mechanism, the upper bead provided by the upper bead loading mechanism, the pin spring provided by the pin spring loading mechanism and the sealing sheet provided by the sealing sheet loading mechanism, the second material receiving assembly is used to receive the lower bead, the upper bead, the pin spring and the sealing sheet on the first material receiving assembly, and the material pressing assembly is used to press the lower bead, the upper bead, the pin spring and the sealing sheet on the second material receiving assembly into the lock body.

[0008] Optionally, the first material receiving assembly includes a first material receiving seat and a first driving mechanism, the first driving mechanism is connected to the frame, the first material receiving seat is connected to the first driving mechanism, the first driving mechanism can drive the first material receiving seat to move under the lower bead loading mechanism, the upper bead loading mechanism, the pin spring mechanism and the sealing film loading mechanism, the first material receiving seat is used to sequentially receive the lower bead provided by the lower bead loading mechanism, the upper bead provided by the upper bead loading mechanism, the pin spring provided by the pin spring mechanism and the sealing film provided by the sealing film loading mechanism.

[0009] Optionally, the first material receiving seat includes a first movable plate, a first material receiving plate and a first stopping mechanism, the first movable plate is connected to the first driving mechanism, the first material receiving plate is connected to the first movable plate, a first material receiving channel is provided on the first material receiving plate, the first material receiving channel extends up and down, the first material receiving channel is used to receive the lower bead provided by the lower bead loading mechanism, the upper bead provided by the upper bead loading mechanism, the ball spring provided by the ball spring loading mechanism and the sealing sheet provided by the sealing sheet loading mechanism, the first stopping mechanism is connected to the first movable plate, and the first stopping mechanism is used to block the first material receiving channel.

[0010] Optionally, the first stopping mechanism includes a first baffle and a second driving mechanism, the first baffle is arranged at the upper part of the first material receiving channel, the second driving mechanism is connected to the first movable plate, the first baffle is connected to the second driving mechanism, the first baffle has a first blocking position for blocking the first material receiving channel and a first clearing position for clearing the first material receiving channel, and the second driving mechanism can drive the first baffle to move between the first blocking position and the first clearing position.

[0011] Optionally, a first sensor is provided in the first material receiving channel, and the first sensor is used to detect the material in the first material receiving channel.

[0012] Optionally, the first stopping mechanism also includes a second baffle and a third driving mechanism, the second baffle is arranged at the lower part of the first material receiving channel, the third driving mechanism is connected to the first movable plate, the second baffle is connected to the third driving mechanism, the second baffle has a second blocking position for blocking the first material receiving channel and a second clearing position for clearing the first material receiving channel, and the third driving mechanism can drive the second baffle to move between the second blocking position and the second clearing position.

[0013] Optionally, the second material receiving assembly includes a second material receiving seat and a fourth driving mechanism, the fourth driving mechanism is connected to the frame, and the second material receiving seat is connected to the fourth driving mechanism, the fourth driving mechanism can drive the second material receiving seat to move between below the material pressing assembly and below the first material receiving assembly, and the second material receiving seat is used to receive the lower bead, the upper bead, the pin spring and the sealing sheet on the first material receiving assembly.

[0014] Optionally, the second material receiving seat includes a second movable plate, a second material receiving plate and a second stopping mechanism, the second movable plate is connected to the fourth driving mechanism, the second material receiving plate is connected to the second movable plate, the second material receiving plate is provided with a second material receiving channel, the second material receiving channel extends up and down, the second material receiving channel is used to receive the lower bead, the upper bead, the ball spring and the sealing plate on the first material receiving assembly, the second stopping mechanism is connected to the second movable plate, and the second stopping mechanism is used to block the second material receiving channel.

[0015] Optionally, the pressing assembly includes a pressing rod and a pressing drive mechanism, the pressing drive mechanism is connected to the frame, the pressing rod is connected to the pressing drive mechanism, the pressing drive mechanism can drive the pressing rod to insert into the second material receiving channel, and the pressing drive mechanism can drive the pressing rod to move toward or away from the lock body seat.

[0016] Optionally, it further comprises a tooth-testing mechanism, the tooth-testing mechanism is connected to the frame, and the tooth-testing mechanism is used to detect the specifications of the key;

[0017] The lower bead loading mechanism comprises a plurality of lower bead rows, and the specifications of the lower beads in each lower bead row are different;

[0018] The bead loading mechanism comprises a plurality of bead rows, and the specifications of the beads in each bead row are different;

[0019] The pin spring mechanism comprises a plurality of pin spring columns, and the pin springs in each pin spring column have different specifications;

[0020] The sealing sheet loading mechanism comprises a plurality of sealing sheet columns, and the specifications of the sealing sheets in each sealing sheet column are different.

[0021] According to the lock body assembly machine of the embodiment of the utility model, the first material receiving component can automatically receive the lower bead provided by the lower bead installing mechanism, the upper bead provided by the upper bead installing mechanism, the pin spring provided by the pin spring installing mechanism and the sealing sheet provided by the sealing sheet installing mechanism; the second material receiving component can collect the lower bead, upper bead, pin spring and sealing sheet on the first material receiving component; the material pressing component can press the material on the second material receiving component into the lock body; the whole process works automatically, the operation is simple, manpower is saved and the assembly efficiency is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 A schematic diagram of the structure of a lock body assembly machine provided in one embodiment of the utility model;

[0023] Figure 2 for Figure 1 The local structure of Figure 1 ;

[0024] Figure 3 for Figure 2 Schematic diagram of the local structure;

[0025] Figure 4 for Figure 3 The structural diagram of the middle-mounted bead lowering mechanism;

[0026] Figure 5 for Figure 4 Schematic diagram of the local structure;

[0027] Figure 6 for Figure 3 A schematic structural diagram of the first material receiving component;

[0028] Figure 7 for Figure 6 Schematic diagram of the local structure;

[0029] Figure 8 for Figure 3 A schematic structural diagram of the second material receiving assembly;

[0030] Fig. 9 for Figure 8 Schematic diagram of the local structure.

[0031] The accompanying drawings in the specification are marked as follows: 1, frame; 2, safety grating; 3, vibration plate; 4, tooth measuring mechanism; 5, lower bead loading mechanism; 6, lower bead array; 7, upper bead loading mechanism; 8, upper bead array; 9, pin spring loading mechanism; 10, pin spring array; 11, sealing sheet loading mechanism; 12, sealing sheet array; 13, lock body seat; 14, lock body slot; 15, lock body; 16, first material receiving assembly; 17, second material receiving assembly; 18, material pressing assembly; 19, material pressing plate; 20, material pressing rod; 21, material pressing drive mechanism; 22, charging cylinder; 23, charging plate; 24, charging channel; 25, charging baffle; 26, vertical plate; 27. Horizontal plate; 28. Through hole; 29. ​​Loading push rod; 30. First driving mechanism; 31. First receiving seat; 32. First receiving plate; 33. First movable plate; 34. First receiving channel; 35. First stopping mechanism; 36. Second driving mechanism; 37. First baffle plate; 38. First through hole; 39. Mounting hole; 40. First sensor; 41. Third driving mechanism; 42. Second through hole; 43. Second baffle plate; 44. Fourth driving mechanism; 45. Second receiving seat; 46. Second movable plate; 47. Second receiving plate; 48. Second receiving channel; 49. Fifth driving mechanism; 50. Third baffle plate. DETAILED DESCRIPTION

[0032] In order to make the technical problems, technical solutions and beneficial effects solved by the utility model more clear, the utility model is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.

[0033] like Figures 1 to 9 As shown, an embodiment of the utility model provides a lock body assembly machine, including a frame 1 and a lock body seat 13 connected to the frame 1, a first material receiving assembly 16, a second material receiving assembly 17, a material loading assembly and a material pressing assembly 18;

[0034] The lock body seat 13 is provided with a lock body groove 14 for containing the lock body 15. The loading assembly includes a lower bead loading mechanism 5, an upper bead loading mechanism 7, a pin spring loading mechanism 9 and a sealing sheet loading mechanism 11 which are arranged side by side on the frame 1. The first material receiving assembly 16 is used to sequentially receive the lower bead provided by the lower bead loading mechanism 5, the upper bead provided by the upper bead loading mechanism 7, the pin spring provided by the pin spring loading mechanism 9 and the sealing sheet provided by the sealing sheet loading mechanism 11. The second material receiving assembly 17 is used to receive the lower bead, the upper bead, the pin spring and the sealing sheet on the first material receiving assembly 16. The material pressing assembly is used to press the lower bead, the upper bead, the pin spring and the sealing sheet on the second material receiving assembly 17 into the lock body 15.

[0035] Specifically, the first material receiving component 16 can move below the lower bead loading mechanism 5, the upper bead loading mechanism 7, the pin spring mechanism 9 and the sealing sheet loading mechanism 11. The first material receiving component 16 can automatically receive the lower bead provided by the lower bead loading mechanism 5, the upper bead provided by the upper bead loading mechanism 7, the pin spring provided by the pin spring mechanism 9 and the sealing sheet provided by the sealing sheet loading mechanism 11. The second material receiving component 17 is located between the first material receiving component 16 and the lock body seat 13. The second material receiving component 17 moves below the first material receiving component 16 and the material pressing component 18. The second material receiving component 17 can collect the lower bead, upper bead, pin spring and sealing sheet on the first material receiving component 16. The material pressing component 18 can press the material on the second material receiving component 17 into the lock body 15. The whole process is automatic, the operation is simple, manpower is saved, and the assembly efficiency is improved.

[0036] In one embodiment, the first material receiving assembly 16 includes a first material receiving seat 31 and a first driving mechanism 30, the first driving mechanism 30 is connected to the frame 1, and the first material receiving seat 31 is connected to the first driving mechanism 30. The first driving mechanism 30 can drive the first material receiving seat 31 to move below the lower bead loading mechanism 5, the upper bead loading mechanism 7, the ball spring mechanism 9 and the sealing film loading mechanism 11, and the first material receiving seat 31 is used to sequentially receive the lower bead provided by the lower bead loading mechanism 5, the upper bead provided by the upper bead loading mechanism 7, the ball spring provided by the ball spring mechanism 9 and the sealing film provided by the sealing film loading mechanism 11.

[0037] Specifically, the first driving mechanism 30 is connected to the frame 1, and the first material receiving seat 31 is arranged below the lower bead loading mechanism 5, the upper bead loading mechanism 7, the pin spring mechanism 9 and the sealing film loading mechanism 11. The first material receiving seat 31 is connected to the first driving mechanism 30. The first driving mechanism 30 drives the first material receiving seat 31 to move from below the lower bead loading mechanism 5 to below the sealing film loading mechanism 11. The first material receiving seat 31 sequentially receives the lower bead provided by the lower bead loading mechanism 5, the upper bead provided by the upper bead loading mechanism 7, the pin spring provided by the pin spring mechanism 9 and the sealing film provided by the sealing film loading mechanism 11. The first driving mechanism 30 drives the first material receiving seat 31 to move, and no manual participation is required. The operation is simple.

[0038] In one embodiment, the first material receiving seat 31 includes a first movable plate 33, a first material receiving plate 32 and a first stopping mechanism 35, the first movable plate 33 is connected to the first driving mechanism 30, the first material receiving plate 32 is connected to the first movable plate 33, the first material receiving plate 32 is provided with a first material receiving channel 34, the first material receiving channel 34 extends up and down, the first material receiving channel 34 is used to receive the lower bead provided by the lower bead loading mechanism 5, the upper bead provided by the upper bead loading mechanism 7, the ball spring provided by the ball spring loading mechanism 9 and the sealing sheet provided by the sealing sheet loading mechanism 11, the first stopping mechanism 35 is connected to the first movable plate 33, and the first stopping mechanism is used to block the first material receiving channel 34.

[0039] Specifically, the first driving mechanism 30 is a first cylinder, which is connected to the frame 1, and the first movable plate 33 is connected to the first cylinder. The first cylinder drives the first movable plate 33 to move from under the lower bead loading mechanism 5 to under the sealing film loading mechanism 11. The first material receiving plate 32 is connected to the first movable plate 33, and the first movable plate 33 drives the first material receiving plate 32 to move. The first material receiving channel 34 is extended up and down inside the first material receiving plate 32. The material enters the first material receiving channel 34 from the upper port of the first material receiving channel 34 and is released from the lower port of the first material receiving channel 34 to the second material receiving assembly 17, which can collect the four materials of lower beads, upper beads, pin springs and sealing films together, and then transport them to the second material receiving assembly 17 together, which can improve the assembly efficiency.

[0040] In one embodiment, the first stopping mechanism 35 includes a first baffle 37 and a second driving mechanism 36, the first baffle 37 is arranged on the upper part of the first material receiving channel 34, the second driving mechanism 36 is connected to the first movable plate 33, the first baffle 37 is connected to the second driving mechanism 36, the first baffle 37 has a first blocking position for blocking the first material receiving channel 34 and a first clearing position for clearing the first material receiving channel 34, and the second driving mechanism 36 can drive the first baffle 37 to move between the first blocking position and the first clearing position.

[0041] A first sensor 40 is disposed in the first material receiving channel 34 , and the first sensor 40 is used to detect the material in the first material receiving channel 34 .

[0042] Specifically, the second driving mechanism 36 is a second cylinder, which is mounted on the first movable plate 33. One side of the first baffle 37 is connected to the second cylinder, and the other side of the first baffle 37 enters the first material receiving channel 34 through the first through hole 38 on the first material receiving plate 32. A mounting hole 39 is provided on the inner wall of the first material receiving channel 34, and the mounting hole 39 is located above the first baffle 37. The first sensor 40 is installed in the mounting hole 39. The material entering the first material receiving channel 34 will first fall on the first baffle 37. When the first sensor 40 detects that there is material in the first material receiving channel 34, the second cylinder drives the first baffle 37 to withdraw from the first material receiving channel 34, so that the material in the first material receiving channel 34 falls. When the first sensor 40 detects that there is no material in the first material receiving channel 34, the second cylinder drives the first baffle 37 to keep blocking the first material receiving channel 34 to wait for maintenance personnel to repair the equipment.

[0043] In one embodiment, the first stopping mechanism 35 also includes a second baffle 43 and a third driving mechanism 41, the second baffle 43 is arranged at the lower part of the first material receiving channel 34, the third driving mechanism 41 is connected to the first movable plate 33, the second baffle 43 is connected to the third driving mechanism 41, the second baffle 43 has a second blocking position for blocking the first material receiving channel 34 and a second clearing position for clearing the first material receiving channel 34, and the third driving mechanism 41 can drive the second baffle 43 to move between the second blocking position and the second clearing position.

[0044] Specifically, the third driving mechanism 41 is a third cylinder, which is mounted on the first moving plate 33, the second baffle 43 is located below the first baffle 37, one side of the second baffle 43 is connected to the third cylinder, and the other side of the second baffle 43 enters the first material receiving channel 34 through the second through hole 42 on the first material receiving plate 32, the second baffle 43 is used to block the first material receiving channel 34, and the material falling from the first material receiving channel 34 is blocked in the first material receiving channel 34 by the second baffle 43. When the second material receiving assembly 17 moves to below the first material receiving plate 32, the third cylinder drives the second baffle 43 to withdraw from the first material receiving channel 34, so that the material in the first material receiving channel 34 falls on the second material receiving assembly 17. The materials can be collected and enter the second material receiving assembly 17 together, thereby improving efficiency.

[0045] In one embodiment, the second material receiving assembly 17 includes a second material receiving seat 45 and a fourth driving mechanism 44, the fourth driving mechanism 44 is connected to the frame 1, and the second material receiving seat 45 is connected to the fourth driving mechanism 44. The fourth driving mechanism 44 can drive the second material receiving seat 45 to move between below the pressing assembly 18 and below the first material receiving assembly 16, and the second material receiving seat 45 is used to receive the lower bead, the upper bead, the pin spring and the sealing sheet on the first material receiving assembly 16.

[0046] Specifically, the fourth driving mechanism 44 is a fourth cylinder, which is connected to the frame 1. The second material receiving seat 45 is arranged below the lower bead loading mechanism 5, the upper bead loading mechanism 7, the ball loading spring mechanism 9 and the sealing film loading mechanism 11. The second material receiving seat 45 is connected to the fourth cylinder. The fourth cylinder drives the second material receiving seat 45 to move from under the first material receiving plate 32 to under the material pressing assembly 18. No manual intervention is required and the operation is simple.

[0047] In one embodiment, the second material receiving seat 45 includes a second movable plate 46, a second material receiving plate 47 and a second stopping mechanism, the second movable plate 46 is connected to the fourth driving mechanism 44, the second material receiving plate 47 is connected to the second movable plate 46, the second material receiving plate 47 is provided with a second material receiving channel 48, the second material receiving channel 48 extends up and down, the second material receiving channel 48 is used to receive the lower bead, the upper bead, the ball spring and the sealing plate on the first material receiving assembly 16, the second stopping mechanism is connected to the second movable plate 46, and the second stopping mechanism is used to block the second material receiving channel 48.

[0048] Specifically, the second moving plate 46 is connected to the fourth cylinder, the second stop mechanism includes a fifth driving mechanism 49 and a third baffle 50, the fifth driving mechanism 49 is a fifth cylinder, the fifth cylinder is mounted on the second moving plate 46, one side of the second baffle 43 is connected to the fourth cylinder, the other side of the second baffle 43 enters the second material receiving channel 48 through the third perforation on the second material receiving plate 47, the second baffle 43 is used to block the second material receiving channel 48, the material falling from the second material receiving channel 48 is blocked in the second material receiving channel 48 by the third baffle 50, when the second material receiving assembly 17 moves to the bottom of the material pressing assembly 18, the fifth cylinder drives the second baffle 43 to withdraw from the second material receiving channel 48, so that the material in the second material receiving channel 48 falls into the lock body 15. It is possible to collect materials so that the materials enter the second material receiving assembly 17 together, thereby improving efficiency.

[0049] In one embodiment, the pressing assembly 18 includes a pressing rod 20, a pressing plate 19 and a pressing drive mechanism 21, the pressing drive mechanism 21 is connected to the frame 1, the pressing plate 19 is connected to the pressing drive mechanism 21, the pressing rod 20 is connected to the pressing plate 19, the pressing drive mechanism 21 can drive the pressing rod 20 to insert into the second material receiving channel 48, and the pressing drive mechanism 21 can drive the pressing rod 20 to move toward or away from the lock body seat 13.

[0050] Specifically, the material pressing driving mechanism 21 is a material pressing cylinder, which is connected to the frame 1, and the material pressing rod 20 is connected to the material pressing cylinder. The material pressing cylinder drives the material to move up and down. When the second material receiving plate 47 moves to below the material pressing rod 20, the material pressing cylinder drives the material pressing rod 20 to move downward into the second material receiving channel 48 to press the material in the second material receiving channel 48 into the lock body 15 below.

[0051] In one embodiment, it further includes a tooth detection mechanism 4, which is connected to the frame 1 and is used to detect the specifications of the key. The lower bead installation mechanism 5 includes a plurality of lower bead columns 6, and the specifications of the lower beads in each lower bead column 6 are different. The upper bead installation mechanism 7 includes a plurality of upper bead columns 8, and the specifications of the upper beads in each upper bead column 8 are different. The pin spring installation mechanism 9 includes a plurality of pin spring columns 10, and the specifications of the pin springs in each pin spring column 10 are different. The sealing sheet installation mechanism 11 includes a plurality of sealing sheet columns 12, and the specifications of the sealing sheets in each sealing sheet column 12 are different. Each mechanism is provided with multiple columns, and can provide materials of various specifications and can adapt to lock bodies 15 of various specifications.

[0052] In this embodiment, the lower bead loading mechanism 5, the upper bead loading mechanism 7, the ball loading spring mechanism 9 and the sealing film loading mechanism 11 have the same working distance and similar structure. In this embodiment, the lower bead loading mechanism 5 is taken as an example for description.

[0053] The lower bead loading mechanism 5 includes a loading plate 23, a loading cylinder 22, a loading push rod 29 and a loading baffle 25. The loading plate 23 is provided with a loading channel 24, and the lower bead array 6 is inserted into the loading channel 24. The multiple lower bead arrays 6 are connected to the multiple vibration disks 3 arranged on the frame 1. The specifications of the lower beads in each vibration disk 3 are inconsistent. During the vibration of the vibration disk 3, the lower beads are shaken into the loading channel 24 through the lower bead array 6. One side of the loading baffle 25 is connected to the loading cylinder 22, and the other side extends into the loading channel 24. A through hole 28 is provided on the horizontal plate 27 of the loading baffle 25. The loading push rod 29 is installed on the vertical plate 27 of the loading baffle 25. On the plate 26, the overhanging end of the loading push rod 29 must pass over the top of the through hole 28. During operation, the materials will be stacked up and down in the loading channel 24 and blocked by the loading baffle 25. When the loading cylinder 22 drives the loading baffle 25 to move forward, the loading push rod 29 will first push the second lower bead from bottom to top. At this time, the loading cylinder 22 continues to drive the loading baffle 25 to move forward, so that the through hole 28 moves to the bottom of the first lower bead, and the first lower bead falls from the through hole 28. Then the loading cylinder 22 drives the loading baffle 25 to move backward, so that the second lower bead falls on the loading baffle 25, and then repeats the previous process.

[0054] In one embodiment, a safety grating 2 is also provided on the frame 1. The safety grating 2 plays a protective role. When an object blocks the grating light curtain, all the moving mechanisms in the machine will stop moving, thereby protecting the safety of the operator. When the object leaves the light curtain area, the machine will operate normally.

[0055] The working principle of the lock body assembly machine of the present utility model embodiment is as follows:

[0056] During operation, the materials will be stacked up and down in the loading channel 24 and blocked by the loading baffle 25. When the loading cylinder 22 drives the loading baffle 25 to move forward, the loading push rod 29 will first push the second lower bead from bottom to top. At this time, the loading cylinder 22 continues to drive the loading baffle 25 to move forward, so that the through hole 28 moves to the bottom of the first lower bead, and the first lower bead falls from the through hole 28, thereby entering the first material receiving channel 34, and then the first material receiving plate 32 successively receives the lower bead, the upper bead, the pin spring and the sealing plate, and then the second material receiving plate 47 moves to the bottom of the first material receiving plate 32, so that each material enters the second material receiving channel 48, and then the second material receiving plate 47 moves with each material to the bottom of the pressing rod 20, and the pressing rod 20 pushes each material into the seat body of the lock body seat 13.

[0057] According to the lock body assembly machine provided by the embodiment of the utility model, the first material receiving component 16 can automatically receive the lower bead provided by the lower bead installing mechanism 5, the upper bead provided by the upper bead installing mechanism 7, the pin spring provided by the pin spring installing mechanism 9 and the sealing sheet provided by the sealing sheet installing mechanism 11; the second material receiving component 17 can collect the lower bead, upper bead, pin spring and sealing sheet on the first material receiving component 16; the material pressing component 18 can press the material on the second material receiving component 17 into the lock body 15; the whole process is automatic, the operation is simple, manpower is saved and the assembly efficiency is improved.

[0058] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A lock body assembly machine, characterized in that: It comprises a frame (1), a lock body seat (13) connected to the frame (1), a first material receiving assembly (16), a second material receiving assembly (17), a material loading assembly and a material pressing assembly (18); The lock body seat (13) is provided with a lock body groove (14) for containing the lock body (15); the loading assembly comprises a lower bead loading mechanism (5), an upper bead loading mechanism (7), a pin spring loading mechanism (9) and a sealing sheet loading mechanism (11) which are arranged side by side on the frame (1); the first material receiving assembly (16) is used to sequentially receive the lower bead provided by the lower bead loading mechanism (5), the upper bead provided by the upper bead loading mechanism (7), the pin spring provided by the pin spring loading mechanism (9) and the sealing sheet provided by the sealing sheet loading mechanism (11); the second material receiving assembly (17) is used to receive the lower bead, the upper bead, the pin spring and the sealing sheet on the first material receiving assembly (16); and the material pressing assembly is used to press the lower bead, the upper bead, the pin spring and the sealing sheet on the second material receiving assembly (17) into the lock body (15).

2. The lock body assembly machine according to claim 1, characterized in that: The first material receiving assembly (16) comprises a first material receiving seat (31) and a first driving mechanism (30), wherein the first driving mechanism (30) is connected to the frame (1), and the first material receiving seat (31) is connected to the first driving mechanism (30), and the first driving mechanism (30) can drive the first material receiving seat (31) to move below the lower bead loading mechanism (5), the upper bead loading mechanism (7), the ball spring loading mechanism (9) and the sealing film loading mechanism (11), and the first material receiving seat (31) is used to sequentially receive the lower bead provided by the lower bead loading mechanism (5), the upper bead provided by the upper bead loading mechanism (7), the ball spring provided by the ball spring loading mechanism (9) and the sealing film provided by the sealing film loading mechanism (11).

3. The lock body assembly machine according to claim 2, characterized in that: The first material receiving seat (31) comprises a first movable plate (33), a first material receiving plate (32) and a first stopping mechanism (35); the first movable plate (33) is connected to the first driving mechanism (30); the first material receiving plate (32) is connected to the first movable plate (33); a first material receiving channel (34) is provided on the first material receiving plate (32); the first material receiving channel (34) extends up and down; the first material receiving channel (34) is used to receive the lower bead provided by the lower bead loading mechanism (5), the upper bead provided by the upper bead loading mechanism (7), the ball spring provided by the ball spring loading mechanism (9) and the sealing sheet provided by the sealing sheet loading mechanism (11); the first stopping mechanism (35) is connected to the first movable plate (33); the first stopping mechanism is used to block the first material receiving channel (34).

4. The lock body assembly machine according to claim 3, characterized in that: The first blocking mechanism (35) comprises a first baffle (37) and a second driving mechanism (36); the first baffle (37) is arranged on the upper part of the first material receiving channel (34); the second driving mechanism (36) is connected to the first movable plate (33); the first baffle (37) is connected to the second driving mechanism (36); the first baffle (37) has a first blocking position for blocking the first material receiving channel (34) and a first clearing position for clearing the first material receiving channel (34); the second driving mechanism (36) can drive the first baffle (37) to move between the first blocking position and the first clearing position.

5. The lock body assembly machine according to claim 4, characterized in that: A first sensor (40) is provided in the first material receiving channel (34), and the first sensor (40) is used to detect the material in the first material receiving channel (34).

6. The lock body assembly machine according to claim 4, characterized in that: The first blocking mechanism (35) further comprises a second baffle plate (43) and a third driving mechanism (41); the second baffle plate (43) is arranged at the lower part of the first material receiving channel (34); the third driving mechanism (41) is connected to the first movable plate (33); the second baffle plate (43) is connected to the third driving mechanism (41); the second baffle plate (43) has a second blocking position for blocking the first material receiving channel (34) and a second clearing position for clearing the first material receiving channel (34); the third driving mechanism (41) is capable of driving the second baffle plate (43) to move between the second blocking position and the second clearing position.

7. The lock body assembly machine according to claim 1, characterized in that: The second material receiving assembly (17) comprises a second material receiving seat (45) and a fourth driving mechanism (44), wherein the fourth driving mechanism (44) is connected to the frame (1), and the second material receiving seat (45) is connected to the fourth driving mechanism (44), and the fourth driving mechanism (44) can drive the second material receiving seat (45) to move between below the material pressing assembly (18) and below the first material receiving assembly (16), and the second material receiving seat (45) is used to receive the lower bead, the upper bead, the pin spring and the sealing sheet on the first material receiving assembly (16).

8. The lock body assembly machine according to claim 7, characterized in that: The second material receiving seat (45) includes a second movable plate (46), a second material receiving plate (47) and a second stopping mechanism, the second movable plate (46) is connected to the fourth driving mechanism (44), the second material receiving plate (47) is connected to the second movable plate (46), the second material receiving plate (47) is provided with a second material receiving channel (48), the second material receiving channel (48) extends up and down, the second material receiving channel (48) is used to receive the lower bead, the upper bead, the pin spring and the sealing plate on the first material receiving assembly (16), the second stopping mechanism is connected to the second movable plate (46), and the second stopping mechanism is used to block the second material receiving channel (48).

9. The lock body assembly machine according to claim 8, characterized in that: The pressing assembly (18) comprises a pressing rod (20) and a pressing drive mechanism (21), wherein the pressing drive mechanism (21) is connected to the frame (1), and the pressing rod (20) is connected to the pressing drive mechanism (21), and the pressing drive mechanism (21) can drive the pressing rod (20) to be inserted into the second material receiving channel (48), and the pressing drive mechanism (21) can drive the pressing rod (20) to move in a direction close to or away from the lock body seat (13).

10. The lock body assembly machine according to claim 1, characterized in that: It also includes a tooth detection mechanism (4), the tooth detection mechanism (4) is connected to the frame (1), and the tooth detection mechanism (4) is used to detect the specifications of the key; The lower bead loading mechanism (5) comprises a plurality of lower bead rows (6), and the specifications of the lower beads in each of the lower bead rows (6) are different; The bead loading mechanism (7) comprises a plurality of bead loading rows (8), and the specifications of the beads in each bead loading row (8) are different; The ball spring mechanism (9) comprises a plurality of ball spring columns (10), and the specifications of the ball springs in each of the ball spring columns (10) are different; The sealing sheet loading mechanism (11) comprises a plurality of sealing sheet rows (12), and the specifications of the sealing sheets in each sealing sheet row (12) are different.