Lock cylinder drilling equipment

By designing automated lock cylinder drilling equipment, the problems of cumbersome operation and high safety risks of existing equipment have been solved, and efficient lock cylinder drilling production line production has been realized.

CN223848140UActive Publication Date: 2026-01-30HUA YUE WU JIN SHEN ZHEN YOU XIAN GONG SI
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Patent Information

Application Number
CN202520207132.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-01-30
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

Existing lock cylinder drilling equipment is cumbersome to operate, inefficient, and poses significant safety risks.

Method used

A lock cylinder drilling device was designed, comprising a workbench, mounting base, feeding mechanism, unloading mechanism, transfer mechanism, and drilling mechanism. The device realizes the conveying, installation, drilling, and removal of lock cylinders through an automated production line, and uses multiple power heads and boring tools for drilling and boring operations.

Benefits of technology

It has enabled automated production in the factory, reduced the labor intensity of operators, improved work efficiency, and reduced production costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model belongs to the technical field of lock cylinder hole machining, and particularly relates to lock cylinder drilling equipment which comprises a workbench, an installation base, a feeding mechanism, a discharging mechanism, a transferring mechanism and a drilling mechanism, the installation base, the feeding mechanism, the discharging mechanism, the transferring mechanism and the drilling mechanism are installed on the workbench, and an installation cavity used for installing a lock cylinder and a feeding hole communicated with the installation cavity are formed in the installation base. The feeding mechanism is used for conveying lock cylinders to the transferring mechanism, the transferring mechanism is used for conveying the lock cylinders into the mounting cavity through the feeding hole, the drilling mechanism is used for drilling the lock cylinders in the mounting cavity, and the discharging mechanism is used for taking the lock cylinders out of the mounting cavity. Factory automation is achieved, operation is easy, the labor intensity of operators is reduced, the working efficiency is greatly improved, and the production cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to lock cylinder hole processing technical field especially relates to a lock cylinder drilling equipment. BACKGROUND

[0002] The lock cylinder of the padlock is installed in the installation cavity of the lock body, the lock cylinder is provided with a limiting hole, a snap spring is installed in the limiting hole, one end of the snap spring extends into the limiting hole, and the other end of the snap spring is inserted into the annular clamping groove arranged on the cavity inner wall of the installation cavity to limit the lock cylinder in the axial direction of the lock cylinder.

[0003] An existing lock cylinder drilling equipment includes a workbench, a mounting seat and a drilling machine, the mounting seat is installed on the workbench, the mounting seat is provided with a mounting groove for installing the lock cylinder, and the lock cylinder is placed in the mounting groove when drilling the lock cylinder.

[0004] It can be seen that the existing lock cylinder drilling equipment is troublesome to operate, has low work efficiency, and is large in safety risk when manually holding the lock cylinder. SUMMARY

[0005] The utility model relates to a lock cylinder drilling equipment for solving the problem of troublesome operation of the existing lock cylinder drilling equipment.

[0006] To solve the above technical problems, the utility model embodiment provides a lock cylinder drilling equipment, which comprises a workbench, a mounting seat, a feeding mechanism, a discharging mechanism, a transfer mechanism and a drilling mechanism installed on the workbench, the mounting seat is provided with an installation cavity for installing the lock cylinder, and a feeding hole communicated with the installation cavity.

[0007] The feeding mechanism is used for conveying the lock cylinder to the transfer mechanism, the transfer mechanism is used for conveying the lock cylinder into the installation cavity through the feeding hole, the drilling mechanism is used for drilling the lock cylinder in the installation cavity, and the discharging mechanism is used for taking out the lock cylinder from the installation cavity.

[0008] Optionally, the mounting seat is further provided with a first avoiding hole communicated with the installation cavity.

[0009] The drilling mechanism comprises a first power head and a drill bit, the first power head is installed on the workbench, the drill bit is connected with the first power head, the first power head can drive the drill bit to move towards or away from the mounting seat, the first power head can drive the drill bit to rotate, and the drill bit can drill the lock cylinder through the first avoiding hole.

[0010] Optionally, two drilling mechanisms are oppositely arranged, and the drill bit of one of the drilling mechanisms can drill the lock cylinder through the corresponding first avoiding hole, and the drill bit of the other drilling mechanism can drill the lock cylinder through the corresponding first avoiding hole.

[0011] The drill bits of the two drilling mechanisms are coaxial.

[0012] Optionally, the feeding mechanism comprises a vibration disc and a conveying seat, the vibration disc comprises a vibration body and a discharging track, the vibration body is provided with a discharging port, the conveying seat is provided with a long groove, the discharging track is connected with the discharging port, one end of the long groove is connected with the end of the discharging track away from the discharging port, and the other end of the long groove is close to the transferring mechanism.

[0013] The vibration body is used for conveying the lock cylinder stored inside the vibration body to the long groove through the discharging track by vibration.

[0014] Optionally, the transferring mechanism comprises a first driving mechanism, a transferring table and a transferring seat, the transferring seat is provided with a transferring long groove for mounting the lock cylinder, the transferring table is connected with the workbench, the first driving mechanism is connected with the transferring table, and the transferring seat is connected with the first driving mechanism.

[0015] The first driving mechanism can drive the transferring seat to move between a receiving position and a discharging position, at the receiving position, one end of the transferring long groove is communicated with the long groove, and at the discharging position, the other end of the transferring long groove is communicated with the feeding hole.

[0016] Optionally, the transferring mechanism further comprises a first push rod and a second driving mechanism, the second driving mechanism is connected with the workbench, the first push rod is connected with the second driving mechanism, and the second driving mechanism can drive the first push rod to move towards or away from the drilling mechanism, and the first push rod can push the lock cylinder in the transferring long groove into the mounting cavity through the feeding hole.

[0017] Optionally, the transferring mechanism further comprises a first baffle and a second baffle, the first baffle is connected with the transferring table, the transferring seat is located between the first baffle and the conveying seat, the first baffle extends along the moving direction of the transferring seat, the side surface of the first baffle facing the transferring seat is a first stop surface, the side surface of the transferring seat facing the first baffle is in sliding contact with the first stop surface, and the first stop surface is used for blocking the end of the transferring long groove away from the conveying seat.

[0018] The second baffle is connected with the conveying seat, extends along the moving direction of the conveying seat, and has a second stop surface on the side surface facing the conveying seat, and the side surface of the conveying seat away from the first baffle is in sliding contact with the second stop surface, so that the conveying long groove is blocked at the end close to the conveying seat.

[0019] Optionally, the lock core drilling device further comprises a translation unit; the translation unit comprises a third driving mechanism and a translation seat, the third driving mechanism is connected with the workbench, and the mounting seat is connected with the translation seat.

[0020] The third driving mechanism can drive the mounting seat to move towards or away from the drilling machine.

[0021] Optionally, the blanking mechanism comprises a blanking hopper, a second push rod and a fourth driving mechanism, the blanking hopper is connected with the mounting seat, the third driving mechanism is connected with the mounting seat, and the second push rod is connected with the third driving mechanism.

[0022] The mounting seat is further provided with a through hole in communication with the mounting cavity, the through hole is arranged opposite to the feeding hole, and the fourth driving mechanism can drive the second push rod to enter or exit the mounting cavity, so that the lock core can be pushed out of the mounting cavity, and the blanking hopper is used for receiving the lock core falling from the mounting cavity.

[0023] Optionally, the mounting seat is provided with a second avoiding hole in communication with the mounting cavity.

[0024] The lock core drilling device further comprises a boring mechanism, the boring mechanism comprises a second power head and a boring cutter, the second power head is mounted on the workbench, the boring cutter is connected with the second power head, the second power head can drive the boring cutter to move towards or away from the mounting seat, the second power head can drive the boring cutter to rotate, and the boring cutter can bore the lock core through the second avoiding hole.

[0025] According to the lock core drilling device provided in the embodiment of the utility model, the feeding mechanism can convey the lock core to the conveying mechanism, the conveying mechanism can load the lock core and convey it to the mounting seat, the driving mechanism can drive the mounting seat to the drilling mechanism for drilling, and after the drilling is completed, the lock core is taken out of the mounting cavity through the blanking mechanism. The factory automation is realized, the operation is simple, the labor intensity of the operator is reduced, the work efficiency is greatly improved, and the production cost is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 The structure schematic view of the lock core drilling device provided in the embodiment of the utility model;

[0027] Figure 2 for Figure 1 Another perspective;

[0028] Figure 3 for Figure 1 Assembly diagram of the loading and unloading mechanism and the transfer mechanism;

[0029] Figure 4 for Figure 1 Assembly diagram of the transfer mechanism, translation unit and mounting base;

[0030] Figure 5 for Figure 1 Schematic diagram of the middle mounting base;

[0031] Figure 6 for Figure 1 Assembly diagram of the drilling mechanism and the boring mechanism.

[0032] The reference numerals in the accompanying drawings are as follows:

[0033] 1. Workbench; 11. First mounting bracket; 111. Mounting plate; 12. Second mounting bracket; 121. First rib; 122. Third rib; 13. Third mounting bracket; 131. Second rib; 14. Fourth mounting bracket; 2. Mounting seat; 21. Mounting cavity; 22. Feed hole; 23. First clearance hole; 24. Through hole; 25. Limiting block; 26. Second clearance hole; 3. Feeding mechanism; 31. Vibrating plate; 311. Vibrating body; 312. Discharge track; 313. Discharge port; 32. Transport seat; 321. Long groove; 4. Unloading mechanism; 41. Unloading hopper; 42. Second push rod; 43. Fourth drive mechanism; 5. Transfer mechanism; 51. First drive mechanism; 52. Transfer platform; 53. Transfer seat; 531. Long transfer groove; 54. First push rod; 55. Second drive mechanism; 551. Second slider; 552. Connecting block; 56. First baffle; 561. First stop surface; 57. Second baffle; 571. Second stop surface; 58. Mounting platform; 6. Drilling mechanism; 61. First power head; 62. Drill bit; 7. Translation unit; 71. Third drive mechanism; 711. Sliding platform; 72. Translation seat; 73. Mounting block; 8. Boring mechanism; 81. Second power head; 82. Boring tool. Detailed Implementation

[0034] 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.

[0035] like Figures 1 to 6The utility model discloses a lock cylinder drilling equipment, including workstation 1, and install the mounting seat 2, feeding mechanism 3, discharging mechanism 4, transfer mechanism 5 and drilling mechanism 6 on the workstation 1, be equipped with the installation cavity 21 for installing lock cylinder on the mounting seat 2, and with installation cavity 21 communicates feed hole 22.

[0036] The feeding mechanism 3 is used for conveying the lock cylinder to the transfer mechanism 5, the transfer mechanism 5 is used for conveying the lock cylinder to the installation cavity 21 through the feed hole 22, the drilling mechanism 6 is used for drilling the lock cylinder in the installation cavity 21, and the discharging mechanism 4 is used for taking out the lock cylinder from the installation cavity 21.

[0037] Specifically, the direction of the lock cylinder placed in the installation cavity 21 on the mounting seat 2 is perpendicular to the movement direction of the drilling mechanism 6, so that the mounting seat 2 can move linearly reciprocatingly away from or close to the drilling mechanism 6; the feeding mechanism 3 is connected with the transfer mechanism 5, and the transfer mechanism 5 can move linearly reciprocatingly between the feeding mechanism 3 and the mounting seat 2; the discharging mechanism 4 is connected with the mounting seat 2, so that the lock cylinder after completing the drilling operation can be smoothly taken out from the installation cavity 21 on the mounting seat 2.

[0038] In an embodiment, the mounting seat 2 is further provided with a first avoiding hole 23 in communication with the installation cavity 21.

[0039] The drilling mechanism 6 includes a first power head 61 and a drill bit 62, the first power head 61 is installed on the workstation 1, the drill bit 62 is connected with the first power head 61, the first power head 61 can drive the drill bit 62 to move towards the mounting seat 2 or away from the mounting seat 2, the first power head 61 can drive the drill bit 62 to rotate, and the drill bit 62 can drill the lock cylinder through the first avoiding hole 23.

[0040] Specifically, the first power head 61 is a prior art, which includes a rotation driving mechanism for rotating the power head spindle and a linear driving mechanism for linearly advancing and retreating the power head spindle, the spindle rotation of the first power head 61 is driven by a three-phase motor, the spindle advance and retreat of the first power head 61 is driven by a servo motor, and the drill bit 62 is fixedly connected with the spindle of the first power head 61. The first avoiding hole 23 is a through hole in communication with the installation cavity 21, which can be passed through by the drill bit 62 and can be used for drilling the lock cylinder in the installation cavity 21.

[0041] In one embodiment, there are two drilling mechanisms 6 arranged opposite to each other, and two first clearance holes 23 arranged opposite to each other. The drill bit 62 of one drilling mechanism 6 can pass through the corresponding first clearance hole 23 to drill a lock cylinder hole, and the drill bit 62 of the other drilling mechanism 6 can pass through the corresponding first clearance hole 23 to drill a lock cylinder hole. The drill bits 62 of the two drilling mechanisms 6 are coaxial.

[0042] Specifically, the workbench 1 is provided with a first mounting frame 11 and a second mounting frame 12 arranged at intervals. The mounting base 2 is located between the first mounting frame 11 and the second mounting frame 12. The first mounting frame 11 is provided with a mounting plate 111, and one of the drilling mechanisms 6 is mounted on the mounting plate 111 of the first mounting frame 11. The second mounting frame 12 is provided with a first rib 121. One end of the first rib 121 is fixedly connected to the other drilling mechanism 6, and the other end of the first rib 121 is fixedly connected to the second mounting frame 12. When the mounting base 2 is loaded with a lock cylinder and moves to the preset drilling position, the drill bits 62 of the two drilling mechanisms 6 respectively pass through the corresponding first clearance holes 23 to drill holes in the lock cylinder.

[0043] In one embodiment, the feeding mechanism 3 includes a vibrating plate 31 and a transport seat 32. The vibrating plate 31 includes a vibrating body 311 and a discharge track 312. The vibrating body 311 is provided with a discharge port 313. The transport seat 32 is provided with an elongated groove 321. The discharge track 312 is connected to the discharge port 313. One end of the elongated groove 321 is connected to the end of the discharge track 312 away from the discharge port 313. The other end of the elongated groove 321 is close to the transfer mechanism 5.

[0044] The vibrating body 311 is used to transport the lock cylinder stored inside it to the elongated groove 321 via the discharge track 312 through vibration.

[0045] Specifically, the discharge track 312 is a curved track with grooves. One end of the discharge track 312 is connected to the discharge port 313 of the vibrating plate 31, and the other end of the discharge track 312 is connected to the end of the elongated groove 321 of the transport seat 32 near the vibrating plate 31.

[0046] The third mounting frame 13 is arranged on the workbench 1, and a second rib plate 131 is arranged on the third mounting frame 13. One end of the second rib plate 131 is fixedly connected with the conveying seat 32, and the other end of the second rib plate 131 is fixedly connected with the third mounting frame 13. The long groove 321 of the conveying seat 32 gradually decreases in height in a direction away from the vibration disc 31, so that the lock cylinder is smoothly conveyed to the transfer mechanism 5 under the vibration force of the vibration disc 31. In other embodiments, the long groove 321 of the conveying seat 32 can also be a horizontal structure, and the lock cylinder moves to one end of the long groove 321 away from the discharge track 312 by relying on the inertia of falling from the discharge track 312.

[0047] In an embodiment, the transfer mechanism 5 includes a first driving mechanism 51, a transfer table 52, and a transfer seat 53. The transfer seat 53 is provided with a transfer long groove 531 for mounting the lock cylinder. The transfer table 52 is connected with the workbench 1. The first driving mechanism 51 is connected with the transfer table 52. The transfer seat 53 is connected with the first driving mechanism 51.

[0048] The first driving mechanism 51 can drive the transfer seat 53 to move between a receiving position and a discharging position. In the receiving position, one end of the transfer long groove 531 is in communication with the long groove 321. In the discharging position, the other end of the transfer long groove 531 is in communication with the feeding hole 22.

[0049] Specifically, the transfer mechanism 5 further includes a mounting table 58. The transfer table 52 is mounted on the third mounting frame 13. The transfer table 52 is provided with a first sliding rail. The mounting table 58 is provided with a first sliding block on a side facing the transfer table 52. The transfer seat 53 is mounted on a side of the mounting table 58 away from the transfer table 52. The first sliding block is provided with a first sliding groove on a side facing the transfer table 52. The first sliding groove is in sliding connection with the first sliding rail.

[0050] The first driving mechanism 51 is a first cylinder. A cylinder body of the first cylinder is fixedly connected with the transfer table 52. A piston rod of the first cylinder is connected with the mounting table 58. The first cylinder drives the mounting table 58 to move towards or away from the mounting seat 2, so that the transfer seat 53 mounted on the mounting table 58 moves between the receiving position and the discharging position.

[0051] In other embodiments, the first driving mechanism 51 can also be a hydraulic cylinder or an electric cylinder.

[0052] In an embodiment, the transfer mechanism 5 further comprises a first push rod 54 and a second driving mechanism 55, the second driving mechanism 55 is connected with the workbench 1, the first push rod 54 is connected with the second driving mechanism 55, the second driving mechanism 55 can drive the first push rod 54 to move towards or away from the mounting seat 2, and the first push rod 54 can push the lock cylinder in the transfer long slot 531 into the mounting cavity 21 through the feeding hole 22.

[0053] Specifically, the second driving mechanism 55 is an electric cylinder, the top surface of the shell of the electric cylinder is provided with a second sliding rail, the transfer mechanism 5 further comprises a second sliding block 551 and a connecting block 552, the second sliding block 551 is located above the electric cylinder, and the second sliding rail is in sliding connection with the second sliding block 551. The connecting block 552 comprises a horizontal plate section and a vertical plate section, the horizontal plate section is connected with the second sliding block 551, the vertical plate section is located on the side of the electric cylinder facing the mounting seat 2, the first push rod 54 is mounted on the horizontal plate section, the piston rod of the electric cylinder is connected with the vertical plate section, when the transfer seat 53 moves to the discharging position, the piston rod of the electric cylinder drives the vertical plate section to move towards the mounting seat 2, so that the first push rod 54 pushes the lock cylinder in the transfer long slot 531 of the transfer seat 53 into the mounting cavity 21 through the feeding hole 22 of the mounting seat 2.

[0054] In an embodiment, the transfer mechanism 5 further comprises a first baffle 56 and a second baffle 57, the first baffle 56 is connected with the transfer table 52, the transfer seat 53 is located between the first baffle 56 and the transport seat 32, the first baffle 56 extends along the moving direction of the transfer seat 53, one side surface of the first baffle 56 facing the transfer seat 53 is a first stop surface 561, and one side surface of the transfer seat 53 facing the first baffle 56 is in sliding contact with the first stop surface 561. The first stop surface 561 is used for blocking one end of the transfer long slot 531 away from the transport seat 32.

[0055] The second baffle 57 is connected with the transport seat 32, the second baffle 57 extends along the moving direction of the transfer seat 53, one side surface of the second baffle 57 facing the transfer seat 53 is a second stop surface 571, and one side surface of the transfer seat 53 away from the first baffle 56 is in sliding contact with the second stop surface 571. The second stop surface 571 is used for blocking one end of the transfer long slot 531 close to the transport seat 32.

[0056] Specifically, the first baffle 56 is provided with a long hole, the extension direction of the long hole is perpendicular to the moving direction of the transfer seat 53, the transfer table 52 is provided with a mounting plate, the mounting plate is provided with a connecting hole, the first baffle 56 is fixed on the mounting plate by screwing the screw in the long hole and the connecting hole, so that the distance between the first baffle 56 and the second baffle 57 can be adjusted to adapt to more length models of lock cores. The second baffle 57 is fixedly connected to the transfer seat 32, and the first stop surface 561 of the first baffle 56 is arranged opposite to the second stop surface 571 of the second baffle 57 to prevent the lock core in the transfer long groove 531 from falling during the conveying process.

[0057] In an embodiment, the lock core drilling device further comprises a translation unit 7; the translation unit 7 comprises a third driving mechanism 71 and a translation seat 72, the third driving mechanism 71 is connected with the workbench 1, and the mounting seat 2 is connected with the translation seat 72.

[0058] The third driving mechanism 71 can drive the mounting seat 2 to move towards or away from the drilling mechanism 6.

[0059] Specifically, the workbench 1 is further provided with a fourth mounting frame 14, the fourth mounting frame 14 is located between the first mounting frame 11 and the second mounting frame 12, the upper end of the fourth mounting frame 14 is provided with the third driving mechanism 71, the third driving mechanism 71 is a linear motor, the translation seat 72 is installed on the sliding platform 711 of the linear motor, and the linear motor drives the sliding platform 711 to move towards or away from the drilling mechanism 6 with the translation seat 72.

[0060] The electric cylinder of the transfer mechanism 5 is installed on the translation seat 72 and moves together with the translation seat 72.

[0061] In an embodiment, the blanking mechanism 4 comprises a blanking hopper 41, a second push rod 42 and a fourth driving mechanism 43, the blanking hopper 41 is connected with the mounting seat 2, the fourth driving mechanism 43 is connected with the mounting seat 2, and the second push rod 42 is connected with the fourth driving mechanism 43.

[0062] The mounting seat 2 is further provided with a through hole 24 in communication with the mounting cavity 21, the through hole 24 is arranged opposite to the feeding hole 22, and the fourth driving mechanism 43 can drive the second push rod 42 to enter or exit the mounting cavity 21, so that the lock core can be pushed out of the mounting cavity 21, and the blanking hopper 41 is used for receiving the lock core falling from the mounting cavity 21.

[0063] Specifically, the feeding mechanism 4 further comprises a storage box (not shown in the figure) arranged on the workbench 1, the translation unit 7 further comprises a mounting block 73, the mounting seat 2 is mounted on the top surface of the mounting block 73, the bottom surface of the mounting block 73 is connected with the translation seat 72, the feeding hopper 41 is connected with the side surface of the mounting block 73 facing the third driving mechanism 71, the fourth driving mechanism 43 is a second cylinder, the cylinder body of the second cylinder is connected with the mounting block 73, the second push rod 42 is connected with the piston rod of the second cylinder, and the second cylinder drives the second push rod 42 to enter or exit the mounting cavity 21 through the perforation 24, so that the lock cylinder in the mounting cavity 21 is pushed out and then falls into the storage box through the feeding hopper 41.

[0064] The top surface of the mounting seat 2 is further provided with a limiting block 25 for limiting the lock cylinder from continuing to move towards the drilling mechanism 6 under the pushing of the second driving mechanism 55 and the first push rod 54, so as to avoid the lock cylinder from falling out of the mounting cavity 21.

[0065] In an embodiment, the mounting seat 2 is provided with a second avoiding hole 26 communicating with the mounting cavity 21, and the lock cylinder drilling device further comprises a boring mechanism 8, the boring mechanism 8 comprises a second power head 81 and a boring cutter 82, the second power head 81 is mounted on the workbench 1, the boring cutter 82 is connected with the second power head 81, the second power head 81 can drive the boring cutter 82 to move towards or away from the mounting seat 2, the second power head 81 can drive the boring cutter 82 to rotate, and the boring cutter 82 can bore the lock cylinder through the second avoiding hole 26.

[0066] Specifically, the second mounting frame 12 is provided with a third rib plate 122, one end of the third rib plate 122 is fixed on the second mounting frame 12, and the other end of the third rib plate 122 is connected with the boring mechanism 8, and the boring mechanism 8 is located above the mounting seat 2.

[0067] The second power head 81 is a prior art, which comprises a rotation driving mechanism for rotating the power head spindle and a linear driving mechanism for linearly advancing and retreating the power head spindle, the spindle rotation of the second power head 81 is driven by a three-phase motor, the spindle advance and retreat of the second power head 81 is driven by a servo motor, and the boring cutter 82 is fixedly connected with the spindle of the second power head 81. The second avoiding hole 26 is a through hole communicating with the mounting cavity 21, and the boring cutter 82 can pass through the second avoiding hole 26 to perform boring operation on the lock cylinder in the mounting cavity 21.

[0068] The working principle of the lock cylinder drilling device in the embodiment of the utility model is as follows:

[0069] In work, the lock cylinder is conveyed from the body of the vibration disc 31 to the discharge track 312, under the vibration of the vibration disc 31, the lock cylinder is conveyed along the discharge track 312 to the conveying seat 32, continues to be conveyed along the long groove 321 to the transfer long groove 531 of the transfer seat 53, the transfer seat 53 is driven to move to the discharge position by the first driving mechanism 51, after reaching the position (discharge position) of the mounting seat 2, the lock cylinder is smoothly entered into the mounting cavity 21 of the mounting seat 2 under the driving of the first push rod 54 and the second driving mechanism 55, then the first driving mechanism 51 drives the transfer seat 53 to return to the receiving position, the mounting seat 2 is moved to the drilling mechanism 6 under the driving of the third driving mechanism 71, after reaching the preset drilling position, the first power head 61 of the two drilling mechanisms 6 respectively drives the drill bit 62 to pass through the first avoiding hole 23 on the mounting seat 2 corresponding thereto to drill the lock cylinder. Meanwhile, the second power head 81 of the boring mechanism 8 drives the boring cutter 82 to pass through the second avoiding hole 26 on the mounting seat 2 to bore the lock cylinder, after completing the drilling and boring operation, the fourth driving mechanism 43 drives the second push rod 42 to push the lock cylinder in the mounting cavity 21 to the discharge hopper 41, and then falls into the storage box.

[0070] According to the lock cylinder drilling equipment provided by the embodiment of the utility model, the feeding mechanism 3 conveys the lock cylinder to the transfer mechanism 5, the transfer mechanism 5 can load the lock cylinder and convey it to the mounting seat 2, the driving mechanism can drive the mounting seat 2 to the drilling mechanism 6 to drill, after drilling, the lock cylinder is taken out from the mounting cavity 21 through the discharging mechanism 4. Realize factory automation, simple operation, reduce the labor intensity of the operator, greatly improve the work efficiency, reduce the production cost.

[0071] The above only describes the preferred embodiment of the utility model, and does not limit the utility model, any modification, equivalent replacement and improvement within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A lock cylinder drilling apparatus, characterized by, The device comprises a workbench, a mounting seat, a feeding mechanism, a discharging mechanism, a transfer mechanism and a drilling mechanism mounted on the workbench, the mounting seat is provided with a mounting cavity for mounting a lock cylinder and a feeding hole communicating with the mounting cavity; The feeding mechanism is used for conveying the lock cylinder to the transfer mechanism, the transfer mechanism is used for conveying the lock cylinder into the mounting cavity through the feeding hole, the drilling mechanism is used for drilling the lock cylinder in the mounting cavity, and the discharging mechanism is used for taking out the lock cylinder from the mounting cavity.

2. The lock cylinder drilling apparatus of claim 1, wherein, The mounting seat is further provided with a first avoiding hole communicating with the mounting cavity; The drilling mechanism comprises a first power head and a drill bit, the first power head is mounted on the workbench, the drill bit is connected with the first power head, the first power head can drive the drill bit to move towards or away from the mounting seat, the first power head can drive the drill bit to rotate, and the drill bit can drill the lock cylinder through the first avoiding hole.

3. The lock cylinder drilling apparatus of claim 2, wherein, The drilling mechanism is oppositely provided with two, the first avoiding hole is oppositely provided with two, the drill bit of one of the drilling mechanisms can drill the lock cylinder through the corresponding first avoiding hole, and the drill bit of the other drilling mechanism can drill the lock cylinder through the corresponding first avoiding hole; The drill bits of the two drilling mechanisms are coaxial.

4. The lock cylinder drilling apparatus of claim 1, wherein, The feeding mechanism comprises a vibration disc and a conveying seat, the vibration disc comprises a vibration body and a discharging track, the vibration body is provided with a discharging port, the conveying seat is provided with a long groove, the discharging track is connected with the discharging port, one end of the long groove is connected with the end of the discharging track away from the discharging port, and the other end of the long groove is close to the transfer mechanism; The vibration body is used for conveying the lock cylinder stored inside through the discharging track into the long groove by vibration.

5. The lock cylinder drilling apparatus of claim 4, wherein, The transfer mechanism comprises a first driving mechanism, a transfer table and a transfer seat, the transfer seat is provided with a transfer long groove for mounting the lock cylinder, the transfer table is connected with the workbench, the first driving mechanism is connected with the transfer table, and the transfer seat is connected with the first driving mechanism; The first driving mechanism can drive the transfer seat to move between a receiving position and a discharging position, at the receiving position, one end of the transfer long groove communicates with the long groove, and at the discharging position, the other end of the transfer long groove communicates with the feeding hole.

6. The lock cylinder drilling apparatus of claim 5, wherein, The transfer mechanism further comprises a first push rod and a second driving mechanism, the second driving mechanism is connected with the workbench, the first push rod is connected with the second driving mechanism, the second driving mechanism can drive the first push rod to move towards or away from the drilling mechanism, and the first push rod can push the lock cylinder in the transfer long groove into the mounting cavity through the feeding hole.

7. The lock cylinder drilling apparatus of claim 6, wherein, The transfer mechanism further comprises a first baffle and a second baffle, the first baffle is connected with the transfer table, the transfer seat is located between the first baffle and the transport seat, the first baffle extends along the moving direction of the transfer seat, the side surface of the first baffle facing the transfer seat is a first stop surface, the side surface of the transfer seat facing the first baffle is in sliding contact with the first stop surface, and the first stop surface is used to block one end of the transfer long groove away from the transport seat; The second baffle is connected with the transport seat, the second baffle extends along the moving direction of the transfer seat, the side surface of the second baffle facing the transfer seat is a second stop surface, the side surface of the transfer seat facing away from the first baffle is in sliding contact with the second stop surface, and the second stop surface is used to block one end of the transfer long groove close to the transport seat.

8. The lock cylinder drilling apparatus of any one of claims 1 to 7, wherein, The lock core drilling device further comprises a translation unit; the translation unit comprises a third driving mechanism and a translation seat, the third driving mechanism is connected with the workbench, and the mounting seat is connected with the translation seat; The third driving mechanism can drive the mounting seat to move towards or away from the drilling machine.

9. The lock cylinder drilling apparatus of any one of claims 1 to 7, wherein, The blanking mechanism comprises a blanking hopper, a second push rod and a fourth driving mechanism, the blanking hopper is connected with the mounting seat, the fourth driving mechanism is connected with the mounting seat, and the second push rod is connected with the fourth driving mechanism; The mounting seat is further provided with a through hole in communication with the mounting cavity, the through hole is arranged opposite to the feeding hole, the fourth driving mechanism can drive the second push rod to enter or exit the mounting cavity, so that the lock core can be pushed out of the mounting cavity, and the blanking hopper is used to receive the lock core falling from the mounting cavity.

10. The lock cylinder drilling apparatus of claim 1, wherein, The mounting seat is provided with a second avoiding hole in communication with the mounting cavity; The lock core drilling device further comprises a boring mechanism, the boring mechanism comprises a second power head and a boring cutter, the second power head is installed on the workbench, the boring cutter is connected with the second power head, the second power head can drive the boring cutter to move towards or away from the mounting seat, the second power head can drive the boring cutter to rotate, and the boring cutter can bore the lock core through the second avoiding hole.