An automobile lock core processing feeding device and its feeding method

By designing the automotive lock core processing and feeding equipment, and using the detection mechanism and the liquid feeding mechanism to position, align and lubricate the lock core, the problem of inconsistent lock hole direction and groove orientation is solved, and the correct assembly and lubrication of the lock core is achieved, and production efficiency and product quality are improved.

CN119566766BActive Publication Date: 2025-06-17WUXI CRYSTAL TECH CO LTD
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Patent Information

Application Number
CN202510079901.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-18
Publication Date
2025-06-17
Estimated Expiration
2045-01-18

AI Technical Summary

Technical Problem

During the production and processing of the lock core, the direction of the lock hole at the top of the lock core and the direction of the through-grooves on the lock shell are inconsistent, which affects the assembly detection of the lock core and the addition of lubricating oil, resulting in inaccurate assembly and inconvenient use.

Method used

A kind of automotive lock core processing and feeding equipment is designed, including a feeding shell, a vibrating plate, a lifting plate and a liquid feeding mechanism. The lock core is positioned and rectified through the detection mechanism, and lubricating oil is input into the lock core using the liquid feeding pipe and solenoid valve to ensure the correct assembly and lubrication of the lock core.

Benefits of technology

The correct assembly and lubrication of the lock core is achieved, the performance and safety of the lock core is ensured, the problem of inconsistent lock hole direction and groove orientation is solved, and the production efficiency and product quality are improved.

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Abstract

The present invention relates to the technical field of automotive lock core processing, and specifically discloses a feeding device and a feeding method for automotive lock core processing. It includes a feeding housing and a vibrating bowl. The feeding housing is connected to the discharging end of the vibrating bowl. Two through grooves are provided on the wall of the lock shell of the lock core. A detection mechanism is provided on the wall of the feeding housing. The detection mechanism includes a displacement column one, a clamping plate one, a displacement column two, and a clamping plate two. The displacement column one is close to one side wall of the feeding housing, and the displacement column two is close to the other side wall of the feeding housing. The displacement column one and the displacement column two are arranged oppositely and have the same installation method. The through groove on the lock shell of the lock core is arranged opposite to the receiving housing. Then, the receiving housing extends into the through groove on the lock shell of the lock core. Then, the solenoid valve is opened, and lubricating oil is input into the lock core through the liquid delivery pipe to lubricate the inside of the lock core. Moreover, if the lubricating oil in the lock core can seep out and fall into the receiving housing, it indicates that the slider and the ball in the lock core are assembled with a clearance fit, and the lock core is assembled correctly.
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Description

Technical Field

[0001] The present invention relates to the technical field of automobile lock core processing, and particularly relates to a feeding device and a feeding method for automobile lock core processing. Background Art

[0002] With the rapid development of the automobile industry and the increasing improvement of people's living standards, automobiles have begun to enter thousands of households. While people have always pursued the safety and reliability of automobiles, they now also pay more attention to the requirements for comfort. The automobile door lock is an important component of the automobile and is a key component that combines safety and craftsmanship. Currently, when producing and processing the lock core, the lock core is usually assembled by an automated production method. When the lock core is transported, the lock core is usually placed in a vibrating bowl for transportation. When it reaches the processing position, it is necessary to detect the assembled lock core and add lubricating oil to the lock core to ensure its use. Since the directions of the lock holes at the top of the lock core are different during the transportation of the lock core, and the through grooves on the lock shell of the lock core also face in different directions, it affects the assembly detection of the lock core. Therefore, a feeding device for automobile lock core processing is needed. Summary of the Invention

[0003] To solve the deficiencies of the prior art, the purpose of the present invention is to provide a feeding device and a feeding method for automobile lock core processing.

[0004] To achieve the above technical purpose, the technical solutions adopted by the present invention are as follows.

[0005] A feeding device for automobile lock core processing, which includes:

[0006] A feeding housing and a vibrating bowl. The feeding housing is connected to the discharging end of the vibrating bowl. The feeding housing is used to transport the lock core. The top of the lock core is a lock hole, and two through grooves are provided on the wall of the lock shell of the lock core. The two through grooves are arranged oppositely. A detection mechanism is provided on the wall of the feeding housing. The detection mechanism includes a displacement column one, a clamping plate one, a displacement column two, and a clamping plate two. The displacement column one is close to one side wall of the feeding housing, and the displacement column two is close to the other side wall of the feeding housing. The displacement column one and the displacement column two are arranged oppositely and have the same installation method. One end of the clamping plate one is connected to the wall of the displacement column one, and the other end of the clamping plate one passes through the wall of the feeding housing and is close to the lock core. The clamping plate two has the same installation method as the clamping plate one and is arranged oppositely. The detection mechanism further includes a detection component one and a detection component two. The detection component one and the detection component two are arranged oppositely. The detection component one is arranged on the displacement column one, and the detection component two is arranged on the displacement column two.

[0007] As a further improvement of this technical solution, a lifting plate is arranged above the feeding housing. The lifting plate is horizontally arranged. A lifting mechanism is arranged at the top of the feeding housing. The lifting plate is arranged on the lifting mechanism. The lifting mechanism can drive the lifting plate to move up and down. Guide plates one, guide blocks one, guide plates two, and guide blocks two are arranged at both ends of the lifting plate. Guide plates one and guide blocks one are arranged opposite to guide plates two and guide blocks two. Guide plate one is close to the top edge of the displacement column one. Guide plate one is obliquely arranged. Guide block one is on one side of guide plate one. The bottom of guide block one is obliquely arranged. A connecting sleeve one is horizontally arranged on the wall of the displacement column one. There are two connecting sleeves one and they are arranged in parallel. A connecting column one is horizontally arranged on the wall of the feeding housing. The connecting column one is sleeved in the connecting sleeve one. A spring one is sleeved on the connecting column one and the connecting sleeve one. One end of the spring one is connected to the wall of the displacement column one, and the other end of the spring one is connected to the wall of the feeding housing.

[0008] As a further improvement of this technical solution, the end of the clamping plate one is a concave surface. Ball bearings are arranged in the concave surface at the end of the clamping plate one. A limiting mechanism is arranged at the top of the clamping plate one. The limiting mechanism is close to the end of the clamping plate one. The limiting mechanism includes a support plate, a rubber block, a guide post two, and a pulling plate. The support plate is fixed to the top of the clamping plate one. One end of the guide post two is fixedly connected to the rubber block. The other end of the guide post two passes through the support plate and is fixedly connected to the pulling plate. There are two guide posts two and they are arranged in parallel. The guide posts two are parallel to the clamping direction of the clamping plate one. A spring two is sleeved on the guide posts two. One end of the spring two contacts the plate surface of the support plate, and the other end of the spring two contacts the wall of the rubber block. The rubber block is above the end of the clamping plate one.

[0009] As a further improvement of this technical solution, an oil supply mechanism is arranged on the lifting plate. The oil supply mechanism includes a liquid supply pipe, a liquid supply housing, an electromagnetic valve, a drain pipe, and a collar. The liquid supply housing is below the lifting plate. The liquid supply pipe communicates with the top of the liquid supply housing. The top of the liquid supply pipe extends vertically upward through the plate surface of the lifting plate. The collar is coaxially and fixedly sleeved on the liquid supply pipe. The collar is above the lifting plate. The electromagnetic valve is arranged at the end of the liquid supply pipe. The drain pipe communicates with the bottom of the liquid supply housing. A spring three is sleeved on the liquid supply pipe. One end of the spring three contacts the bottom of the lifting plate, and the other end of the spring three contacts the top of the liquid supply housing. A guide groove one is formed on the circumferential surface of the collar. The guide groove one is a spiral groove. A guide rod one is arranged on the plate surface of the lifting plate. The guide rod one is horizontally arranged. The end of the guide rod one is fitted into the guide groove one. The liquid supply housing is a cuboid housing and is matched with the lock hole at the top of the lock core.

[0010] As a further improvement of this technical solution, three sets of detection components I are arranged vertically in sequence. The detection component I includes a material receiving housing, a guide post I, a push plate, and a connecting sleeve II. The material receiving housing is a rectangular parallelepiped housing, which matches the through groove on the lock housing of the lock core. The material receiving housing passes through the wall of the feeding housing. The connecting sleeve II is horizontally arranged at the end of the material receiving housing. There are two connecting sleeves II arranged in parallel. One end of the guide post I is close to the connecting sleeve II, and the other end of the guide post I passes through the displacement post I and is provided with a stop block. There are two guide posts I arranged in parallel. The end of the guide post I is connected with a displacement plate. A connecting post II is arranged on the plate surface of the displacement plate. The connecting post II is sleeved in the connecting sleeve II. A spring IV is sleeved on the connecting post II and the connecting sleeve II. One end of the spring IV is connected with the plate surface of the displacement plate, and the other end of the spring IV is connected with the end of the material receiving housing.

[0011] As a further improvement of this technical solution, a trigger component is arranged at the top of the clamping plate I. The trigger component includes a support plate, a connecting shaft, and a transmission plate. The support plate is vertically arranged at the top of the clamping plate I. The connecting shaft is horizontally and fixedly connected to the plate surface of the support plate. The transmission plate is rotatably sleeved on the connecting shaft. A guide groove II is opened on the wall of the transmission plate. A pulling rod is arranged on the plate surface of the pulling plate. A guide rod II is horizontally arranged at the end of the pulling rod. The guide rod II is matched in the guide groove II. A push plate is arranged on the wall of the material receiving housing at the uppermost position. The push plate is close to the plate surface of the transmission plate.

[0012] As a further improvement of this technical solution, a liquid level sensor is arranged at the inner wall of the material receiving housing.

[0013] As a further improvement of this technical solution, a liquid discharge hole is opened on the wall of the material receiving housing. The liquid discharge hole is close to the plate surface of the displacement plate.

[0014] As a further improvement of this technical solution, a sealing block is arranged on the plate surface of the displacement plate.

[0015] As a further improvement of this technical solution, a collection box is arranged below the feeding housing.

[0016] Compared with the prior art, the progress and advantages of the present invention are as follows: During the use of the present invention, the lock core is conveyed to the feeding housing by the vibrating disk, and then the lock core is conveyed to directly below the lifting plate. Then, the lifting mechanism drives the lifting plate to move downward. When the liquid feeding housing rotates to match the lock hole of the lock core, the elastic force of the spring III drives the liquid feeding housing to move downward, and the liquid feeding housing is matched in the lock hole of the lock core, which can adjust the position of the lock core to make the lock core straighten;

[0017] The through groove on the lock housing of the lock core is arranged opposite to the material receiving housing. Then, the material receiving housing extends into the through groove on the lock housing of the lock core. Next, the solenoid valve is opened, and lubricating oil is input into the lock core through the liquid delivery pipe, so as to lubricate the inside of the lock core. Moreover, if the lubricating oil in the lock core can seep out and fall into the material receiving housing, it indicates that the slider and the ball in the lock core are assembled with a clearance fit, and the lock core is assembled correctly. If the lubricating oil in the lock core cannot seep out, it indicates that the slider and the ball in the lock core are assembled incorrectly, and the lock core cannot be used. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for use in the embodiments of the present invention. Obviously, the following described drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0019] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0020] Figure 2 It is a schematic diagram of the lock core transmission and detection state of the present invention.

[0021] Figure 3 It is a schematic diagram of the detection mechanism of the present invention.

[0022] Figure 4 It is a schematic diagram of the oil delivery mechanism of the present invention.

[0023] Figure 5 It is a schematic diagram of the installation of the limiting mechanism of the present invention.

[0024] Figure 6 It is a schematic diagram of the installation of the material receiving housing of the present invention.

[0025] Figure 7 It is a schematic diagram of the cooperation between the rubber block and the transmission plate of the present invention.

[0026] Figure 8 It is a schematic diagram of the cooperation between the plugging block and the material receiving housing of the present invention.

[0027] The labels in the figure are:

[0028] 10. Feeding housing; 110. Collection box; 120. Lifting plate; 130. Lifting mechanism; 140. Guide plate 1; 141. Guide plate 2; 150. Guide block 1; 151. Guide block 2; 160. Oil delivery mechanism; 161. Liquid delivery pipe; 162. Liquid delivery housing; 163. Solenoid valve; 164. Drain pipe; 165. Collar; 166. Guide groove 1; 167. Guide rod 1;

[0029] 20. Vibration disk;

[0030] 30. Detection mechanism; 310. First displacement column; 311. First connecting column; 312. First connecting sleeve; 320. First clamping plate; 321. Ball; 330. Second displacement column; 340. Second clamping plate; 350. First detection component; 351. Material receiving housing; 352. First guide post; 353. Pushing plate; 354. Second connecting column; 355. Second connecting sleeve; 356. Sealing block; 357. Liquid level sensor; 358. Liquid discharge hole; 359. Displacement plate; 360. Second detection component; 370. Limiting mechanism; 371. Support plate; 372. Rubber block; 373. Second guide post; 374. Pulling plate; 375. Pulling rod; 376. Second guiding rod; 380. Support board; 381. Connecting shaft; 382. Transmission plate; 383. Second guiding groove. Detailed implementation manners

[0031] The technical solution of the present invention will be further described below with reference to the accompanying drawings and through specific implementation manners.

[0032] Among them, the accompanying drawings are only for illustrative purposes, showing only schematic diagrams, not physical diagrams, and should not be construed as a limitation to the present invention; in order to better illustrate the embodiments of the present invention, some components in the accompanying drawings will be omitted, enlarged or reduced, which do not represent the dimensions of the actual products; for those skilled in the art, it is understandable that some well-known structures and their descriptions in the accompanying drawings may be omitted.

[0033] In the accompanying drawings of the embodiments of the present invention, the same or similar reference numerals correspond to the same or similar components; in the description of the present invention, it should be understood that if terms such as "upper", "lower", "left", "right", "inner", "outer", etc. are used to indicate the orientation or positional relationship, it is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, so the terms describing the positional relationship in the accompanying drawings are only for illustrative purposes and should not be construed as a limitation to the present invention. For those of ordinary skill in the art, the specific meanings of the above terms can be understood according to specific circumstances.

[0034] In the description of the present invention, unless otherwise clearly defined and limited, if terms such as "connection" are used to indicate the connection relationship between components, this term should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection, an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and can be the communication inside two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0035] Such as Figures 1 - 8As shown, a feeding device for processing an automobile lock core includes:

[0036] A feeding housing 10 and a vibrating disk 20. The feeding housing 10 is connected to the discharging end of the vibrating disk 20. The feeding housing 10 (which is prior art and will not be elaborated too much) is used for conveying the lock core. The top of the lock core is a lock hole, and two through grooves are provided on the wall of the lock shell of the lock core. The two through grooves are arranged oppositely. A detection mechanism 30 is provided on the wall of the feeding housing 10. The detection mechanism 30 includes a shifting column one 310, a clamping plate one 320, a shifting column two 330, and a clamping plate two 340. The shifting column one 310 is close to one side wall of the feeding housing 10, and the shifting column two 330 is close to the other side wall of the feeding housing 10. The shifting column one 310 and the shifting column two 330 are arranged oppositely and have the same installation method. One end of the clamping plate one 320 is connected to the wall of the shifting column one 310, and the other end of the clamping plate one 320 passes through the wall of the feeding housing 10 and is close to the lock core. The clamping plate two 340 has the same installation method as the clamping plate one 320 and is arranged oppositely. The detection mechanism 30 further includes a detection component one 350 and a detection component two 360. The detection component one 350 and the detection component two 360 are arranged oppositely. The detection component one 350 is provided on the shifting column one 310, and the detection component two 360 is provided on the shifting column two 330.

[0037] More specifically, a lifting plate 120 is provided above the feeding housing 10. The lifting plate 120 is horizontally arranged. A lifting mechanism 130 (which is prior art and will not be elaborated too much) is provided on the top of the feeding housing 10. The lifting plate 120 is arranged on the lifting mechanism 130. The lifting mechanism 130 can drive the lifting plate 120 to move up and down. Guide plates one 140, guide blocks one 150, guide plates two 141, and guide blocks two 151 are provided at both ends of the lifting plate 120. The guide plates one 140, guide blocks one 150 and the guide plates two 141, guide blocks two 151 are arranged oppositely. The guide plate one 140 is close to the top edge of the shifting column one 310. The guide plate one 140 is inclined. The guide block one 150 is on one side of the guide plate one 140. The bottom of the guide block one 150 is inclined. Two connecting sleeves one 312 are horizontally provided on the wall of the shifting column one 310 and are arranged in parallel. A connecting column one 311 is horizontally provided on the wall of the feeding housing 10. The connecting column one 311 is sleeved in the connecting sleeve one 312. A spring one is sleeved on the connecting column one 311 and the connecting sleeve one 312. One end of the spring one is connected to the wall of the shifting column one 310, and the other end of the spring one is connected to the wall of the feeding housing 10.

[0038] As Figures 5 - 7As shown in the figure, the end of the first clamping plate 320 is a concave surface. Ball bearings 321 are arranged in the concave surface at the end of the first clamping plate 320. A limiting mechanism 370 is arranged at the top of the first clamping plate 320. The limiting mechanism 370 is close to the end of the first clamping plate 320. The limiting mechanism 370 includes a support plate 371, a rubber block 372, a second guide post 373, and a pulling plate 374. The support plate 371 is fixed to the top of the first clamping plate 320. One end of the second guide post 373 is fixedly connected to the rubber block 372, and the other end of the second guide post 373 passes through the support plate 371 and is fixedly connected to the pulling plate 374. There are two second guide posts 373 arranged in parallel. The second guide post 373 is parallel to the clamping direction of the first clamping plate 320. A second spring is sleeved on the second guide post 373. One end of the second spring contacts the plate surface of the support plate 371, and the other end of the second spring contacts the wall of the rubber block 372. The rubber block 372 is located above the end of the first clamping plate 320.

[0039] As Figures 3 - 4 As shown in the figure, an oil supply mechanism 160 is arranged on the lifting plate 120. The oil supply mechanism 160 includes a liquid supply pipe 161, a liquid supply housing 162, a solenoid valve 163, a drain pipe 164, and a collar 165. The liquid supply housing 162 is located below the lifting plate 120. The liquid supply pipe 161 communicates with the top of the liquid supply housing 162. The top of the liquid supply pipe 161 passes through the plate surface of the lifting plate 120 and extends vertically upward. The collar 165 is coaxially and fixedly sleeved on the liquid supply pipe 161. The collar 165 is located above the lifting plate 120. The solenoid valve 163 is arranged at the end of the liquid supply pipe 161. The drain pipe 164 communicates with the bottom of the liquid supply housing 162. A third spring is sleeved on the liquid supply pipe 161. One end of the third spring contacts the bottom of the lifting plate 120, and the other end of the third spring contacts the top of the liquid supply housing 162. A first guiding groove 166 is formed on the circumferential surface of the collar 165. The first guiding groove 166 is a spiral groove. A first guiding rod 167 is arranged on the plate surface of the lifting plate 120. The first guiding rod 167 is arranged horizontally. The end of the first guiding rod 167 is fitted into the first guiding groove 166. The liquid supply housing 162 is a cuboid housing, and the liquid supply housing 162 matches the lock hole at the top of the lock core.

[0040] As Figures 6 - 8As shown in the figure, there are three sets of the first detection components 350 arranged vertically in sequence. The first detection components 350 include a material receiving housing 351, a first guide post 352, a push plate 353, and a second connecting sleeve 355. The material receiving housing 351 is a rectangular parallelepiped housing, which matches the through groove on the lock housing of the lock core. The material receiving housing 351 passes through the wall of the feeding housing 10. The second connecting sleeve 355 is horizontally arranged at the end of the material receiving housing 351. There are two second connecting sleeves 355 arranged in parallel. One end of the first guide post 352 is close to the second connecting sleeve 355, and the other end of the first guide post 352 passes through the first shifting post 310 and is provided with a stop block. There are two first guide posts 352 arranged in parallel. The end of the first guide post 352 is connected to a shifting plate 359. A second connecting column 354 is arranged on the plate surface of the shifting plate 359. The second connecting column 354 is sleeved in the second connecting sleeve 355. A fourth spring is sleeved on the second connecting column 354 and the second connecting sleeve 355. One end of the fourth spring is connected to the plate surface of the shifting plate 359, and the other end of the fourth spring is connected to the end of the material receiving housing 351.

[0041] As Figure 7 shown, a triggering component is arranged at the top of the first clamping plate 320. The triggering component includes a support plate 380, a connecting shaft 381, and a transmission plate 382. The support plate 380 is vertically arranged at the top of the first clamping plate 320. The connecting shaft 381 is horizontally and fixedly connected to the plate surface of the support plate 380. The transmission plate 382 is rotatably sleeved on the connecting shaft 381. A second guiding groove 383 is formed in the wall of the transmission plate 382. A pulling rod 375 is arranged on the plate surface of the pulling plate 374. A second guiding rod 376 is horizontally arranged at the end of the pulling rod 375. The second guiding rod 376 is matched in the second guiding groove 383. A push plate 353 is arranged on the wall of the material receiving housing 351 at the uppermost position. The push plate 353 is close to the plate surface of the transmission plate 382.

[0042] More specifically, a liquid level sensor 357 is arranged at the inner wall of the material receiving housing 351.

[0043] More specifically, a liquid discharge hole 358 is formed in the wall of the material receiving housing 351. The liquid discharge hole 358 is close to the plate surface of the shifting plate 359.

[0044] More specifically, a blocking block 356 is arranged on the plate surface of the shifting plate 359.

[0045] More specifically, a collection box 110 is arranged below the feeding housing 10.

[0046] Working principle:

[0047] During the use of the present invention, the lock core is conveyed to the feeding housing 10 by the vibrating disk 20, and then the lock core is conveyed to directly below the lifting plate 120. Then, the lifting mechanism 130 drives the lifting plate 120 to move downward, thereby driving the guide plate one 140 to move downward. Then, it drives the displacement column one 310 to move towards the feeding housing 10, thereby driving the clamping plate one 320 to move towards the lock core. The lock core is located between the clamping plate one 320 and the clamping plate two 340. Then, the rubber block 372 abuts against the lock core, thereby limiting the position of the lock core. When the lifting plate 120 moves downward, the drain pipe 164 extends into the lock hole at the top of the lock core, and the bottom of the liquid supply housing 162 abuts against the top of the lock core. When the lifting plate 120 continues to move downward, the guide rod one 167 drives the collar 165 to rotate, thereby driving the liquid supply housing 162 to rotate. When the liquid supply housing 162 rotates to match the lock hole of the lock core, the elastic force of the spring three drives the liquid supply housing 162 to move downward, and the liquid supply housing 162 is fitted into the lock hole of the lock core. During the process of the lifting plate 120 continuing to move downward, the bottom inclined surface of the guide block one 150 abuts against the stop block at the end of the guide post one 352, thereby driving the receiving housing 351 to move towards the lock core. Then, the push plate 353 pushes the transmission plate 382 to deflect, thereby driving the holding plate 374 to move away from the support plate 371, so that the rubber block 372 is separated from the lock core, canceling the rotational limit of the lock core. The elastic force of the spring three drives the collar 165 and the liquid supply housing 162 to reset, thereby adjusting the position of the lock core to make the lock core straight. The through groove on the lock shell of the lock core is arranged opposite to the receiving housing 351. Then, the receiving housing 351 extends into the through groove on the lock shell of the lock core. Then, the solenoid valve 163 is opened, and lubricating oil is input into the lock core through the liquid supply pipe 161, thereby lubricating the inside of the lock core. Moreover, if the lubricating oil in the lock core can seep out and fall into the receiving housing 351, it indicates that the slider and the ball in the lock core are assembled with clearance fit, and the lock core is assembled correctly. If the lubricating oil in the lock core cannot seep out, it indicates that the slider and the ball in the lock core are assembled incorrectly, and the lock core cannot be used. The liquid level sensor 357 can monitor the lubricating oil in the receiving housing 351. When the receiving housing 351 abuts against the lock core, the lifting plate 120 continues to move downward, and the bottom inclined surface of the guide block one 150 abuts against the stop block at the end of the guide post one 352, thereby driving the displacement plate 359 to move towards the end of the receiving housing 351. The blocking block 356 contacts the end of the receiving housing 351, thereby blocking the drain hole 358 at the end of the receiving housing 351. The lubricating oil can be stored in the receiving housing 351. When the receiving housing 351 and the displacement plate 359 reset, the lubricating oil in the receiving housing 351 can be discharged.

[0048] It should be noted that the above specific embodiments are only the preferred embodiments of the present invention and the technical principles applied. Those skilled in the art should understand that various modifications, equivalent replacements, changes, etc. can also be made to the present invention. However, as long as these transformations do not depart from the spirit of the present invention, they should be within the protection scope of the present invention. In addition, some terms used in the specification and claims of this application are not restrictive, but are only for the convenience of description.

Claims

1. A feeding device for processing automobile lock cylinders, characterized in that: It includes: A feeding shell and a vibration plate, wherein the feeding shell is connected to the discharge end of the vibration plate, the feeding shell is used to transport the lock core, the top of the lock core is a lock hole, and the lock shell wall of the lock core is provided with two through grooves, which are arranged opposite to each other, and the wall of the feeding shell is provided with a detection mechanism, the detection mechanism comprises a shift column 1, a clamping plate 1, a shift column 2, and a clamping plate 2, the shift column 1 is close to one side wall of the feeding shell, the shift column 2 is close to the other side wall of the feeding shell, the shift column 1 and the shift column 2 are arranged opposite to each other and are installed in the same manner, one end of the clamping plate 1 is connected to the wall of the shift column 1, the other end of the clamping plate 1 passes through the wall of the feeding shell and is close to the lock core, the installation manner of the clamping plate 2 is the same as that of the clamping plate 1 and is arranged opposite to each other, the detection mechanism also comprises a detection component 1 and a detection component 2, the detection component 1 and the detection component 2, the detection component 1 is arranged on the shift column 1, the detection component 2 is arranged on the shift column 2, and the detection component 1 and the detection component 2 are arranged opposite to each other; A lifting plate is arranged above the feeding shell, and the lifting plate is arranged horizontally. A lifting mechanism is arranged on the top of the feeding shell, and the lifting plate is arranged on the lifting mechanism. The lifting mechanism can drive the lifting plate to move up and down. Guide plate 1, guide block 1, guide plate 2 and guide block 2 are arranged at both ends of the lifting plate. Guide plate 1 and guide block 1 are arranged opposite to guide plate 2 and guide block 2. Guide plate 1 is close to the top edge of displacement column 1, guide plate 1 is arranged obliquely, guide block 1 is on one side of guide plate 1, and the bottom of guide block 1 is arranged obliquely. A connecting sleeve 1 is horizontally arranged on the wall of displacement column 1, and two connecting sleeves 1 are arranged in parallel. A connecting column 1 is horizontally arranged on the wall of the feeding shell, and one connecting column set is arranged in the connecting sleeve 1. A spring 1 is sleeved on the connecting column 1 and the connecting sleeve 1, and one end of the spring 1 is connected to the wall of displacement column 1, and the other end of the spring 1 is connected to the wall of the feeding shell. An oil delivery mechanism is arranged on the lifting plate, and the oil delivery mechanism comprises a liquid delivery pipe, a liquid delivery shell, an electromagnetic valve, a liquid discharge pipe and a collar. The liquid delivery shell is located below the lifting plate, the liquid delivery pipe is connected to the top of the liquid delivery shell, the top of the liquid delivery pipe extends vertically upward through the plate surface of the lifting plate, the collar is coaxially fixedly sleeved on the liquid delivery pipe, the collar is located above the lifting plate, the electromagnetic valve is arranged at the end of the liquid delivery pipe, the liquid discharge pipe is connected to the bottom of the liquid delivery shell, a spring three is sleeved on the liquid delivery pipe, one end of the spring three contacts with the bottom of the lifting plate, and the other end of the spring three contacts with the top of the liquid delivery shell, a guide groove one is opened on the annular surface of the collar, and the guide groove one is a spiral groove, a guide rod one is arranged on the plate surface of the lifting plate, the guide rod one is horizontally arranged, and the end of the guide rod one matches and extends into the guide groove one, the liquid delivery shell is a rectangular shell, and the liquid delivery shell matches the lock hole at the top of the lock core.

2. The automobile lock cylinder processing and feeding equipment according to claim 1, characterized in that: The end of the clamping plate one is a concave surface, and a ball is arranged in the concave surface of the end of the clamping plate one. A limiting mechanism is arranged on the top of the clamping plate one, and the limiting mechanism is close to the end of the clamping plate one. The limiting mechanism includes a support plate, a rubber block, a second guide column, and a holding plate. The support plate is fixed to the top of the clamping plate one, one end of the second guide column is fixedly connected to the rubber block, the other end of the second guide column passes through the support plate and is fixedly connected to the holding plate, two guide columns are provided and are arranged in parallel, the second guide column is parallel to the clamping direction of the clamping plate one, and a second spring is sleeved on the second guide column, one end of the second spring is in contact with the plate surface of the support plate, and the other end of the second spring is in contact with the wall of the rubber block, and the rubber block is above the end of the clamping plate one.

3. The automobile lock cylinder processing and feeding equipment according to claim 2, characterized in that: The detection component one is provided with three groups and is arranged in sequence up and down. The detection component one includes a material receiving shell, a guide column one, a push plate, and a connecting sleeve two. The material receiving shell is a rectangular shell. The material receiving shell matches the through groove on the lock shell of the lock core. The material receiving shell passes through the wall of the feeding shell. The connecting sleeve two is horizontally arranged at the end of the material receiving shell. Two connecting sleeves two are provided and arranged in parallel. One end of the guide column one is close to the connecting sleeve two, and the other end of the guide column one passes through the shift column one and is provided with a stopper. Two guide columns one are provided and are arranged in parallel. The end of the guide column one is connected to the shift plate, and the plate surface of the shift plate is provided with a connecting column two. The connecting column two is sleeved in the connecting sleeve two. A spring four is sleeved on the connecting column two and the connecting sleeve two. One end of the spring four is connected to the plate surface of the shift plate, and the other end of the spring four is connected to the end of the material receiving shell.

4. The automobile lock cylinder processing and feeding equipment according to claim 3 is characterized in that: A trigger assembly is provided on the top of the clamping plate one, and the trigger assembly includes a support plate, a connecting shaft, and a transmission plate. The support plate is vertically arranged on the top of the clamping plate one, the connecting shaft is horizontally fixedly connected to the plate surface of the support plate, the transmission plate is rotatably sleeved on the connecting shaft, and a guide groove 2 is opened on the wall of the transmission plate, a pulling rod is provided on the plate surface of the pulling plate, and a guide rod 2 is horizontally provided on the end of the pulling rod, and the guide rod 2 is matched in the guide groove 2, and a push plate is provided on the wall of the material receiving shell at the top, and the push plate is close to the plate surface of the transmission plate.

5. The automobile lock cylinder processing and feeding equipment according to claim 4, characterized in that: A liquid level sensor is arranged on the inner wall of the material receiving shell.

6. The automobile lock cylinder processing and feeding equipment according to claim 5, characterized in that: A drainage hole is provided on the wall of the material receiving shell, and the drainage hole is close to the plate surface of the shift plate.

7. The automobile lock cylinder processing and feeding equipment according to claim 6, characterized in that: A blocking block is arranged on the plate surface of the shift plate, and a collecting box is arranged below the feeding shell.

8. A feeding method for a feeding device for processing a car lock cylinder according to claim 7, wherein: S1. The lock core is transported to the feeding housing through the vibration plate, and then the lock core is transported to the bottom of the lifting plate. Then the lifting mechanism drives the lifting plate to move downward, thereby driving the guide plate to move downward, and then drives the shift column 1 to move in the direction close to the feeding housing, thereby driving the clamping plate 1 to move in the direction close to the lock core. The lock core is between the clamping plate 1 and the clamping plate 2, and then the rubber block contacts the lock core, thereby limiting the lock core; S2. When the lifting plate moves downward, the discharge pipe extends into the lock hole at the top of the lock core, and the bottom of the liquid delivery housing contacts the top of the lock core. When the lifting plate continues to move downward, the guide rod 1 drives the ring to rotate, thereby driving the liquid delivery housing to rotate. When the liquid delivery housing rotates to match the lock hole of the lock core, the elastic force of the spring 3 drives the liquid delivery housing to move downward, and the liquid delivery housing matches the lock hole of the lock core. During the process of the lifting plate continuing to move downward, the bottom inclined surface of the guide block 1 contacts the stopper at the end of the guide column 1, thereby driving the material receiving housing to move in the direction close to the lock core, and then the push plate pushes the transmission plate to deflect, thereby driving the holding plate to move in the direction away from the support plate, so that the rubber block and the lock core Separate, cancel the rotation limit of the lock core, the elastic force of spring three drives the collar and the liquid feeding housing to reset, thereby adjusting the position of the lock core, making the lock core straight, the through groove on the lock housing of the lock core is arranged opposite to the receiving housing, and then the receiving housing is extended into the through groove on the lock housing of the lock core, and then the solenoid valve is opened, and lubricating oil is input into the lock core through the liquid feeding pipe, so as to lubricate the inside of the lock core, and if the lubricating oil in the lock core can seep out and fall into the receiving housing, it indicates that the slider and the pin in the lock core are assembled with clearance fit, and the lock core is assembled correctly. If the lubricating oil in the lock core cannot seep out, it indicates that the slider and the pin in the lock core are assembled incorrectly, and the lock core cannot be used; S3. The liquid level sensor can monitor the lubricating oil in the material receiving shell. When the material receiving shell contacts the lock core, the lifting plate continues to move downward, and the bottom slope of the guide block contacts the stop block at the end of the guide column, thereby driving the shift plate to move toward the end of the material receiving shell. The blocking block contacts the end of the material receiving shell, thereby blocking the drainage hole at the end of the material receiving shell. The lubricating oil can be stored in the material receiving shell. When the material receiving shell and the shift plate are reset, the lubricating oil in the material receiving shell can be discharged.

Citation Information

Patent Citations

  • Lock cylinder position-correcting feeding device

    CN217599687U

  • A lock cylinder positioning device

    CN218840912U