Segmented assembly device for lock cylinder

Through the lock core segmented assembly device, the spring is first sent into the assembly hole of the core body, and then the pin is sent in, which solves the problem of easy deformation of the spring, realizes the precise and stable matching of the pin and the spring, and ensures the reliability and correct triggering of the lock core.

CN223338790UActive Publication Date: 2025-09-16HUIZHOU QIHUA HARDWARE PROD CO LTD
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Patent Information

Application Number
CN202422610706.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-09-16
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

In existing lock cylinder assembly devices, the spring is easily deformed under the action of a large external force, resulting in improper fit between the pin and the spring and poor connection reliability.

Method used

A lock core segmented assembly device is used. The spring is first fed into the assembly hole of the core body through the spring feeding assembly, and then the ball is fed in by the ball feeding assembly. The segmented assembly method reduces the external force on the spring, ensuring that the spring is not easily deformed under a small external force, and achieving precise and stable fit.

Benefits of technology

The connection reliability between the pin and the spring is improved, the correct triggering action of the lock cylinder is ensured, and the assembly quality of the lock cylinder is improved.

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Abstract

The utility model provides a lock cylinder segmented assembling device. The lock cylinder segmented assembling device comprises a device rack, a placing assembly, a discharging assembly, a spring feeding assembly and a marble feeding assembly. The placing assembly is used for placing a core body and is in sliding connection with the device rack; the discharging assembly is connected with the device rack, the discharging assembly is arranged adjacent to the placing assembly, the discharging assembly is provided with a spring discharging part and a marble discharging part, the spring discharging part or the marble discharging part is used for being located above the core body, the spring discharging part is connected with the spring feeding assembly, and the marble discharging part is connected with the marble feeding assembly; the spring feeding assembly is connected with the device rack and used for conveying springs. The marble feeding assembly is connected with the device rack and used for conveying marbles. By means of the lock cylinder segmented assembling device, the reliability of connection between the marbles and the springs is good.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of lock assembly-related equipment, and in particular to a lock core segmented assembly device. Background Art

[0002] The lock cylinder assembly device is an industrial device used to assemble lock cylinders. The lock cylinder is the core component of the lock. When used with the key, the lock cylinder rotates and drives the bolt, thereby opening or closing the lock. The lock cylinder consists of a core, a pin, and a spring. The pin and spring are both connected to the core, and the pin and spring are mated together.

[0003] The lock core assembly device of the related technology includes a device frame, a feeding assembly and a fixed seat. The feeding assembly and the fixed seat are both connected to the device frame. The feeding assembly is located above the fixed seat. The fixed seat is used to fix the core body. The feeding assembly is used to transport the pin and the spring to the top of the fixed seat. The pushing part of the feeding assembly is used to push the pin and the spring into the assembly hole of the core body together to complete the assembly of the lock core, such as the Chinese patent No. CN107953101B.

[0004] However, since the pushing portion of the feeding assembly is used to push the ball and the spring into the assembly hole of the core body, the external force applied to the spring is relatively large, making the spring more likely to deform under the action of the large external force, resulting in a more likely problem of improper matching between the ball and the spring, making it more difficult for the spring to correctly reset the ball, and thus making the connection reliability between the ball and the spring poor. Utility Model Content

[0005] The purpose of the present disclosure is to overcome the deficiencies in the prior art and to provide a lock core segmented assembly device that improves the reliability of the connection between the pin and the spring.

[0006] The purpose of this disclosure is achieved through the following technical solutions:

[0007] A lock core segmented assembly device comprises a device frame and a placement assembly, wherein the placement assembly is used to place a core body, and the placement assembly is slidably connected to the device frame;

[0008] The lock core segmented assembly device further includes a blanking assembly, a spring feeding assembly, and a ball feeding assembly; the blanking assembly is connected to the device frame, the blanking assembly is arranged adjacent to the placement assembly, the blanking assembly is provided with a spring blanking portion and a ball blanking portion, the spring blanking portion or the ball blanking portion is used to be located above the core body, the spring blanking portion is connected to the spring feeding assembly, and the ball blanking portion is connected to the ball feeding assembly;

[0009] The spring feeding assembly is connected to the device frame, and the spring feeding assembly is used to feed springs;

[0010] The marble feeding assembly is connected to the device frame, and the marble feeding assembly is used for conveying marbles.

[0011] In one embodiment, the placement assembly includes a placement seat, a sliding plate and a blocking part, the placement seat and the blocking part are both connected to the sliding plate, a avoidance gap is formed between the placement seat and the blocking part, the placement seat is provided with a placement groove for placing the core body, the placement groove is connected to the avoidance gap; the sliding plate is slidably connected to the device frame.

[0012] In one embodiment, the device frame is provided with a mounting seat body, and the mounting seat body is provided with a sliding connection surface; the sliding plate is connected to the sliding connection surface and is slidably connected to the mounting seat body, so that the placement seat slides relative to the device frame.

[0013] In one embodiment, the sliding connection surface is a rough surface.

[0014] In one embodiment, the spring feeding assembly is provided with a first feeding tube, and the first feeding tube is connected to the spring unloading portion.

[0015] In one embodiment, the spring feeding assembly further includes a first fixing seat, the first fixing seat is provided with a first fixing hole, the first feeding tube is passed through the first fixing hole and is connected to the first fixing seat, and the first fixing seat is connected to the device frame.

[0016] In one embodiment, the number of the first feeding tubes, the first fixing holes and the spring blanking parts are all multiple, the multiple first feeding tubes are arranged at intervals, and the multiple first feeding tubes, the multiple first fixing holes and the multiple spring blanking parts are arranged in a one-to-one correspondence.

[0017] In one embodiment, the marble feeding assembly is provided with a second feeding pipe, and the second feeding pipe is connected to the marble discharge portion.

[0018] In one embodiment, the marble feeding assembly further includes a second fixing seat, the second fixing seat is provided with a second fixing hole, the second feeding tube is passed through the second fixing hole and connected to the second fixing seat, and the second fixing seat is connected to the device frame.

[0019] In one embodiment, the number of the second feeding tubes, the second fixing holes and the ball discharge parts is multiple, the multiple second feeding tubes are arranged at intervals, and the multiple second feeding tubes, the multiple second fixing holes and the multiple ball discharge parts are arranged in a one-to-one correspondence.

[0020] Compared with the prior art, the present disclosure has at least the following advantages:

[0021] 1. Since the spring feeding assembly is used to convey the spring, the spring unloading part is connected to the spring feeding assembly so that the spring feeding assembly is used to convey the spring to the spring unloading part, and the spring unloading part is used to be located above the core body, so that the spring unloading part is used to unload the spring into the assembly hole of the core body, thereby completing the assembly of the core body and the spring. Then, the placement assembly is slidably connected to the device frame, and the staff moves the placement assembly to slide the core body relative to the device frame. When the ball unloading part is located above the core body, the moving placement assembly is stopped. Then, the ball feeding assembly is used to convey the ball, and the ball unloading part is connected to the ball feeding assembly so that the ball feeding assembly is used to convey the ball to the ball unloading part, so that the ball unloading part is used to unload the ball into the assembly hole of the core body, thereby completing the segmented assembly between the core body, the spring and the ball, that is, the spring first enters the assembly hole of the core body, and the ball enters the assembly hole of the core body later to complete the segmented assembly of the lock cylinder.

[0022] 2. Since the spring feeding assembly first feeds the spring into the assembly hole of the core body, and the ball feeding assembly then feeds the ball into the assembly hole of the core body, the lock core segmented assembly device feeds the spring and the ball into the assembly hole of the core body in segments. The external force exerted by the spring blanking part to feed the spring alone into the assembly hole of the core body is the first force exerted on the spring, and the pushing part of the feeding assembly is used to push the ball and the spring together into the assembly hole of the core body. The external force exerted by the spring is the second force exerted on the spring. The greater the weight, the greater the required thrust. Therefore, the first force exerted on the spring is less than the second force exerted on the spring, so that the external force exerted on the spring under the action of the spring blanking part is smaller, so that the spring is less likely to deform under the action of a smaller external force, thereby solving the problem of improper cooperation between the ball and the spring in the prior art, and making the spring and the ball able to cooperate accurately and stably, so that the spring is easier to correctly reset the ball, which is used to ensure that the lock core triggers the expected action, thereby making the connection between the ball and the spring more reliable. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present disclosure and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.

[0024] Figure 1 This is a schematic structural diagram of a lock core segmented assembly device according to one embodiment;

[0025] Figure 2 for Figure 1An enlarged schematic diagram of the lock cylinder segmented assembly device at point A is shown;

[0026] Figure 3 for Figure 1 An enlarged schematic diagram of the lock cylinder segmented assembly device at point B is shown;

[0027] Figure 4 for Figure 1 The structural schematic diagram of the placement component of the lock core segmented assembly device shown. DETAILED DESCRIPTION

[0028] To facilitate understanding of the present disclosure, a more comprehensive description of the present disclosure will be provided below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present disclosure. However, the present disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the disclosure.

[0029] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only implementation methods.

[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this disclosure pertains. The terms used herein in the specification of this disclosure are intended only to describe specific embodiments and are not intended to limit this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0031] like Figures 1 to 4 As shown, a lock core segmented assembly device 10 according to an embodiment includes a device frame 100 and a placement component 200 , wherein the placement component 200 is used for placing the core body.

[0032] Furthermore, the placement component 200 is slidingly connected to the device frame 100; the lock core segmented assembly device 10 also includes a blanking component 300, a spring feeding component 400 and a pin feeding component 500; the blanking component 300 is connected to the device frame 100, and the blanking component 300 is arranged adjacent to the placement component 200. The blanking component 300 is provided with a spring blanking part 310 and a pin blanking part 320. The spring blanking part 310 or the pin blanking part 320 is used to be located above the core body, the spring blanking part 310 is connected to the spring feeding component 400, and the pin blanking part 320 is connected to the pin feeding component 500; the spring feeding component 400 is connected to the device frame 100, and the spring feeding component 400 is used to convey the spring; the pin feeding component 500 is connected to the device frame 100, and the pin feeding component 500 is used to convey the pins.

[0033] In this embodiment, the spring feeding assembly 400 is used to feed springs, and the spring unloading portion 310 is connected to the spring feeding assembly 400 so that the spring feeding assembly 400 is used to feed the springs to the spring unloading portion 310. The ball feeding assembly 500 is used to feed balls, and the ball unloading portion 320 is connected to the ball feeding assembly 500 so that the ball feeding assembly 500 is used to feed the balls to the ball unloading portion 320.

[0034] It should be noted that the working principles of the spring feeding assembly 400 for conveying springs and the marble feeding assembly 500 for conveying marbles are both existing technologies.

[0035] In the lock core segmented assembly device 10, since the spring feeding assembly 400 is used to feed the spring, the spring unloading portion 310 is connected to the spring feeding assembly 400 so that the spring feeding assembly 400 is used to feed the spring to the spring unloading portion 310. The spring unloading portion 310 is used to be located above the core body so that the spring unloading portion 310 is used to unload the spring into the assembly hole of the core body to complete the assembly of the core body and the spring. Then, the placement assembly 200 is slidably connected to the device frame 100. The staff moves the placement assembly 200 to make the core body relative to the device frame 10 0 slide, when the ball discharge part 320 is located above the core body, the moving placement assembly 200 is stopped, and then the ball feeding assembly 500 is used to convey the ball. The ball discharge part 320 is connected to the ball feeding assembly 500, so that the ball feeding assembly 500 is used to convey the ball to the ball discharge part 320, so that the ball discharge part 320 is used to discharge the ball into the assembly hole of the core body, thereby completing the segmented assembly between the core body, the spring and the ball, that is, the spring enters the assembly hole of the core body first, and the ball enters the assembly hole of the core body later to complete the segmented assembly of the lock core;

[0036] Since the spring feeding assembly 400 first feeds the spring into the assembly hole of the core body, and the ball feeding assembly 500 then feeds the ball into the assembly hole of the core body, the lock core segmented assembly device 10 feeds the spring and the ball into the assembly hole of the core body in segments. The external force exerted by the spring blanking part 310 to feed the spring alone into the assembly hole of the core body is the first force exerted on the spring, and the pushing part of the feeding assembly is used to push the ball and spring into the assembly hole of the core body together. The external force exerted is the second force exerted on the spring. The greater the weight, the greater the required pushing force. Therefore, the first force exerted on the spring is less than the second force exerted on the spring, so that the external force exerted on the spring under the action of the spring blanking part 310 is smaller, so that the spring is less likely to deform under the action of a smaller external force, thereby solving the problem of improper matching between the ball and the spring in the prior art, and making the spring and the ball able to match accurately and stably, so that the spring can more easily reset the ball correctly, which is used to ensure that the lock core triggers the expected action, thereby making the connection between the ball and the spring more reliable.

[0037] like Figure 1 and Figure 4 As shown, in one embodiment, the placement assembly 200 includes a placement seat 210, a sliding plate 220, and a blocking portion 230. The placement seat 210 and the blocking portion 230 are both connected to the sliding plate 220. A clearance gap 211 is formed between the placement seat 210 and the blocking portion 230. The placement seat 210 is provided with a placement groove 212 for placing the core, and the placement groove 212 is connected to the clearance gap 211. The sliding plate 220 is slidably connected to the device frame 100. In this embodiment, the placement groove 212 is connected to the clearance gap 211 so that a worker can remove the core from the placement groove 212 through the clearance gap 211, making the lock cylinder segmented assembly device 10 more convenient to use.

[0038] like Figure 1 and Figure 4 As shown, in one embodiment, the device frame 100 is provided with a mounting seat body 110, and the mounting seat body 110 is provided with a sliding connection surface 111; the sliding plate 220 is connected to the sliding connection surface 111 and is slidably connected to the mounting seat body 110, so that the placement seat 210 slides relative to the device frame 100, so that the sliding performance of the placement component 200 is better.

[0039] like Figure 1 and Figure 4 As shown, in one embodiment, the sliding connection surface 111 is a rough surface, so that the sliding plate 220 is pressed against the sliding connection surface 111, so that the placement component 200 is pressed against the sliding connection surface 111; when the pushing force applied by the staff to the placement component 200 is greater than the friction force generated by the sliding connection surface 111, the placement component 200 slides relative to the device frame 100.

[0040] like Figures 1 to 3 As shown, in one embodiment, the spring feeding assembly 400 is provided with a first feeding tube 410, and the first feeding tube 410 is connected to the spring unloading portion 310, so that the spring feeding assembly 400 is connected to the spring unloading portion 310 through the first feeding tube 410, so that the spring feeding assembly 400 is used to deliver the spring to the spring unloading portion 310 through the first feeding tube 410, thereby making the lock core segmented assembly device 10 more convenient to use.

[0041] like Figures 1 to 2 As shown, in one embodiment, the spring feed assembly 400 further includes a first fixing base 420, the first fixing base 420 having a first fixing hole 421, the first feed tube 410 passing through the first fixing hole 421 and connected to the first fixing base 420, and the first fixing base 420 is connected to the device frame 100. In this embodiment, the first fixing base 420 and the device frame 100 are welded, so that the connection between the first fixing base 420 and the device frame 100 is more stable.

[0042] like Figures 1 to 3 As shown, in one embodiment, the number of the first feeding tubes 410, the first fixing holes 421 and the spring unloading parts 310 are all multiple, the multiple first feeding tubes 410 are arranged at intervals, and the multiple first feeding tubes 410, the multiple first fixing holes 421 and the multiple spring unloading parts 310 are arranged one by one.

[0043] like Figures 1 to 3 As shown, in one embodiment, the ball feeding assembly 500 is provided with a second feeding tube 510, and the second feeding tube 510 is connected to the ball discharge portion 320, so that the ball feeding assembly 500 is connected to the ball discharge portion 320 through the second feeding tube 510, so that the ball feeding assembly 500 is used to transport the balls to the ball discharge portion 320 through the second feeding tube 510, thereby making the lock core segmented assembly device 10 more convenient to use.

[0044] like Figures 1 to 2 As shown, in one embodiment, the ball feeding assembly 500 further includes a second fixing base 520, the second fixing base 520 having a second fixing hole 521, the second feeding tube 510 passing through the second fixing hole 521 and connected to the second fixing base 520, and the second fixing base 520 is connected to the device frame 100. In this embodiment, the second fixing base 520 is welded to the device frame 100, so that the connection between the second fixing base 520 and the device frame 100 is more stable.

[0045] like Figures 1 to 3As shown, in one embodiment, the number of the second feeding tubes 510, the second fixing holes 521 and the ball discharge parts 320 are all multiple, the multiple second feeding tubes 510 are arranged at intervals, and the multiple second feeding tubes 510, the multiple second fixing holes 521 and the multiple ball discharge parts 320 are arranged one by one.

[0046] Compared with the prior art, the present disclosure has at least the following advantages:

[0047] 1. Since the spring feeding assembly 400 is used to feed the spring, the spring unloading portion 310 is connected to the spring feeding assembly 400 so that the spring feeding assembly 400 is used to feed the spring to the spring unloading portion 310. The spring unloading portion 310 is used to be located above the core body so that the spring unloading portion 310 is used to unload the spring into the assembly hole of the core body to complete the assembly of the core body and the spring. Then, the placement assembly 200 is slidably connected to the device frame 100. The staff moves the placement assembly 200 to make the core body slide relative to the device frame 100. When the spring When the pin discharge portion 320 is located above the core body, the moving placement assembly 200 is stopped, and then the pin feeding assembly 500 is used to convey the pins. The pin discharge portion 320 is connected to the pin feeding assembly 500 so that the pin feeding assembly 500 is used to convey the pins to the pin discharge portion 320, so that the pin discharge portion 320 is used to discharge the pins into the assembly hole of the core body, thereby completing the segmented assembly between the core body, the spring and the pins, that is, the spring first enters the assembly hole of the core body, and the pins enter the assembly hole of the core body later to complete the segmented assembly of the lock core;

[0048] 2. Since the spring feeding assembly 400 first feeds the spring into the assembly hole of the core body, and the ball feeding assembly 500 then feeds the ball into the assembly hole of the core body, the lock core segmented assembly device 10 feeds the spring and the ball into the assembly hole of the core body in segments. The external force exerted by the spring blanking part 310 to feed the spring alone into the assembly hole of the core body is the first force exerted on the spring, and the pushing part of the feeding assembly is used to push the ball and the spring together into the assembly hole of the core body. The external force exerted is the second force exerted on the spring. The greater the weight, the greater the required pushing force. Therefore, the first force exerted on the spring is less than the second force exerted on the spring, so that the external force exerted on the spring under the action of the spring blanking part 310 is smaller, so that the spring is less likely to deform under the action of a smaller external force, thereby solving the problem of improper matching between the ball and the spring in the prior art, and making the spring and the ball able to match accurately and stably, so that the spring is easier to correctly reset the ball, which is used to ensure that the lock core triggers the expected action, thereby making the connection between the ball and the spring more reliable.

[0049] The above-described embodiments merely represent several implementation methods of the present disclosure. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the disclosed patent. It should be noted that a person of ordinary skill in the art may make various modifications and improvements without departing from the scope of the present disclosure, all of which fall within the scope of protection of the present disclosure. Therefore, the scope of protection of the disclosed patent shall be determined by the appended claims.

Claims

1. A lock core segmented assembly device, comprising a device frame and a placement component, wherein the placement component is used to place the core body, characterized in that: The placement assembly is slidably connected to the device frame; The lock core segmented assembly device further includes a blanking assembly, a spring feeding assembly, and a ball feeding assembly; the blanking assembly is connected to the device frame, the blanking assembly is arranged adjacent to the placement assembly, the blanking assembly is provided with a spring blanking portion and a ball blanking portion, the spring blanking portion or the ball blanking portion is used to be located above the core body, the spring blanking portion is connected to the spring feeding assembly, and the ball blanking portion is connected to the ball feeding assembly; The spring feeding assembly is connected to the device frame, and the spring feeding assembly is used to feed springs; The marble feeding assembly is connected to the device frame, and the marble feeding assembly is used for conveying marbles.

2. The lock core segmented assembly device according to claim 1, characterized in that: The placement assembly includes a placement seat, a sliding plate and a blocking part. The placement seat and the blocking part are both connected to the sliding plate. A avoidance gap is formed between the placement seat and the blocking part. The placement seat is provided with a placement groove for placing the core body, and the placement groove is connected to the avoidance gap; the sliding plate is slidably connected to the device frame.

3. The lock core segmented assembly device according to claim 2, characterized in that: The device frame is provided with a mounting seat body, and the mounting seat body is provided with a sliding connection surface; the sliding plate is connected to the sliding connection surface and is slidably connected to the mounting seat body, so that the placement seat slides relative to the device frame.

4. The lock core segmented assembly device according to claim 3, characterized in that: The sliding connection surface is a rough surface.

5. The lock core segmented assembly device according to claim 1, characterized in that: The spring feeding assembly is provided with a first feeding pipe, and the first feeding pipe is connected to the spring unloading part.

6. The lock core segmented assembly device according to claim 5, characterized in that: The spring feeding assembly also includes a first fixing seat, the first fixing seat is provided with a first fixing hole, the first feeding tube is passed through the first fixing hole and is connected to the first fixing seat, and the first fixing seat is connected to the device frame.

7. The lock core segmented assembly device according to claim 6, characterized in that: The number of the first feeding tubes, the first fixing holes and the spring blanking parts are all multiple, the multiple first feeding tubes are arranged at intervals, and the multiple first feeding tubes, the multiple first fixing holes and the multiple spring blanking parts are arranged in a one-to-one correspondence.

8. The lock core segmented assembly device according to claim 1, characterized in that: The marble feeding assembly is provided with a second feeding pipe, and the second feeding pipe is connected to the marble unloading portion.

9. The lock core segmented assembly device according to claim 8, characterized in that: The marble feeding assembly further includes a second fixing seat, the second fixing seat is provided with a second fixing hole, the second feeding pipe is passed through the second fixing hole and connected to the second fixing seat, and the second fixing seat is connected to the device frame.

10. The lock core segmented assembly device according to claim 9, characterized in that: The number of the second feeding tubes, the second fixing holes and the ball discharge parts is multiple, the multiple second feeding tubes are arranged at intervals, and the multiple second feeding tubes, the multiple second fixing holes and the multiple ball discharge parts are arranged in a one-to-one correspondence.

Citation Information

Patent Citations

  • Pin tumbler lock cylinder assembly machine

    CN107953101B