Circular ring feeding mechanism and atomizing core assembling equipment

By designing a circular feeding mechanism, the automatic feeding of the atomizer core assembly equipment is realized, which solves the high cost and low efficiency problems caused by manual feeding and improves work efficiency and precision.

CN223301211UActive Publication Date: 2025-09-05SHENZHEN YONGLUN INTELLIGENT EQUIP TECH CO LTD
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Patent Information

Application Number
CN202422649840.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-09-05
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

Existing atomizer core assembly equipment requires manual loading, resulting in increased labor costs and low work efficiency.

Method used

A ring feeding mechanism was designed, which included a conveying component, a receiving component and a transplanting component. The rings were arranged in an orderly and directional manner and automatically transported by a vibrating feeding tray, and the rings were automatically transplanted to the fixture using a clamping claw.

Benefits of technology

It realizes automatic loading of the rings, reduces labor costs, improves work efficiency, and ensures transplanting accuracy and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a circular ring feeding mechanism and atomizing core assembly equipment, the atomizing core assembly equipment comprises a machine table, a turntable arranged on the machine table and a plurality of jigs annularly distributed on the edge of the turntable, the circular ring feeding mechanism is arranged on the machine table, the circular ring feeding mechanism comprises a conveying assembly, a feeding assembly and a discharging assembly, the ring conveying device is used for conveying rings and comprises a vibration conveying disc and a discharging guide groove connected to the output end of the vibration conveying disc. The material receiving assembly comprises a first support, a first driving part and a material receiving block, the first driving part is arranged on the first support and used for pushing the material receiving block to move horizontally, the moving direction of the material receiving block is perpendicular to the conveying direction of the discharging guide groove, and a groove used for receiving the circular rings is formed in the top of the material receiving block; and the transplanting assembly is used for transplanting the circular ring on the groove to the jig. The circular ring feeding device can achieve automatic feeding of circular rings, reduce labor cost and improve working efficiency.
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Description

Technical Field

[0001] The utility model relates to the technical field of electronic cigarette assembly equipment, and in particular to a circular feeding mechanism and an atomization core assembly device. Background Art

[0002] The atomizer core is assembled by an outer steel tube, an upper ring, a cotton tube, a heating core and a lower ring through an atomizer core assembly device. The outer steel tube, the upper ring and the cotton tube are sequentially placed on a first jig on a first conveying mechanism to assemble into a first assembly. The lower ring and the heating core are sequentially placed on a second jig on a second conveying mechanism to assemble into a second assembly. Finally, the first assembly is placed on a second jig on a second conveying mechanism and assembled with the second assembly to form the atomizer core.

[0003] However, existing atomizer core assembly equipment requires manual loading of the upper and lower rings, which increases labor costs and has low work efficiency. Utility Model Content

[0004] In order to overcome the deficiencies of the prior art, the utility model provides a circular ring feeding mechanism, which can realize automatic feeding of circular rings, reduce labor costs and improve work efficiency.

[0005] The technical solution adopted by the utility model to solve its technical problems is:

[0006] A ring feeding mechanism includes: a conveying assembly for conveying rings, including a vibrating feeding tray and a discharge guide trough connected to the output end of the vibrating feeding tray; a receiving assembly for receiving rings, including a first bracket, a first driving member and a receiving block, the first driving member is arranged on the first bracket, the first driving member is used to push the receiving block to move horizontally, the moving direction of the receiving block is perpendicular to the conveying direction of the discharge guide trough, and the top of the receiving block is provided with a groove for accommodating the ring; a transplanting assembly for transplanting the ring on the groove.

[0007] As a further improvement of the above technical solution, the transplanting assembly includes a second bracket, a U-shaped transplanting module arranged on the second bracket and a clamping claw arranged on the U-shaped transplanting module, the U-shaped transplanting module is used to drive the clamping claw to move along an inverted U-shaped trajectory, and the clamping claw is used to clamp or release the ring.

[0008] As a further improvement of the above technical solution, the clamping claw includes two clamping fingers and a finger cylinder for driving the two clamping fingers to move closer to or away from each other, and the finger cylinder is connected to the U-shaped transplanting module.

[0009] As a further improvement of the above technical solution, a guide seat is provided on the first bracket, and the guide seat is provided with a slide groove. The length direction of the slide groove is perpendicular to the length direction of the discharge guide groove, and the material receiving block is slidably connected in the slide groove.

[0010] As a further improvement of the above technical solution, the side of the slide groove away from the discharge guide groove is higher than the material receiving block, and the other side of the slide groove is flush with the material receiving block. The guide seat is provided with a material guide groove, one end of the material guide groove is connected to the slide groove, and the other end of the material guide groove is connected to the end of the discharge guide groove, and the bottom of the material guide groove is flush with the bottom of the groove.

[0011] As a further improvement of the above technical solution, the guide seat is further provided with a first air avoidance groove, the first air avoidance groove is located on both sides of the sliding groove, and the first air avoidance groove is used to avoid the clamping claw.

[0012] As a further improvement of the above technical solution, a cover plate is connected to the top of the guide seat, and the cover plate is provided with a second air avoidance groove. The clamping claw passes through the second air avoidance groove and clamps the ring on the groove.

[0013] As a further improvement of the above technical solution, a receiving hole is provided in the guide seat, a sensor is installed in the receiving hole, the receiving hole passes through the side of the slide groove away from the material guide groove, and the sensor is used to sense whether there is a ring on the groove.

[0014] As a further improvement of the above technical solution, the bottom of the discharge guide trough is supported by a support seat.

[0015] An atomizer core assembly device includes a machine platform, a turntable arranged on the machine platform, a plurality of jigs distributed in an annular shape on the edge of the turntable, and the above-mentioned circular ring loading mechanism, wherein the circular ring loading mechanism is arranged on the machine platform and is used to transfer a circular ring to the jig.

[0016] The beneficial effects of the present invention are as follows: the present invention provides a ring feeding mechanism and an atomizer core assembly device, which arranges a conveying component, a receiving component and a transplanting component, and the vibration feeding tray arranges a plurality of disordered rings in an orderly and directional manner through vibration, so that the plurality of rings are transported one by one from the output end of the vibration feeding tray to the discharge guide groove, and the rings are transported one by one to the grooves on the receiving block through the discharge guide groove. Then, the first driving member pushes the receiving block to translate along the conveying direction perpendicular to the discharge guide groove, so that the rings on the grooves are translated to one side of the transplanting component. At this time, the receiving block will block the discharge guide groove from continuing to convey the rings. Finally, the transplanting component transplants the rings on the grooves into the jig, thereby realizing automatic feeding of the rings, reducing labor costs and improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0018] Figure 1 It is a structural diagram provided by an example of the utility model;

[0019] Figure 2 yes Figure 1 Schematic diagram of the structure of the transplanting component;

[0020] Figure 3 yes Figure 1 Schematic diagram of the structure of the discharge guide trough and the material receiving assembly;

[0021] Figure 4 yes Figure 3 Exploded view in ;

[0022] Figure 5 It is an exploded view of the splicing component in the splicing state;

[0023] Figure 6 It is a cross-sectional view of the splicing component in the splicing state.

[0024] Reference numerals: 1- conveying assembly, 11- vibrating loading tray, 12- discharge guide trough, 13- support base;

[0025] 2-material receiving assembly, 21-first bracket, 22-first driving member, 23-material receiving block, 24-guide seat, 25-cover plate, 231-groove, 241-chute, 242-material guide trough, 243-first avoidance groove, 244-accommodation hole, 251-second avoidance groove;

[0026] 3-transplanting assembly, 31-second bracket, 32-U-shaped transplanting module, 33-gripping claw, 331-gripping finger, 332-finger cylinder;

[0027] 4-Sensor;

[0028] 5-Machine;

[0029] 6-turntable;

[0030] 7-Jigs. DETAILED DESCRIPTION

[0031] The following will clearly and completely describe the concept, specific structure and technical effects of the present invention in combination with the embodiments and drawings, so as to fully understand the purpose, characteristics and effects of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, other embodiments obtained by technical personnel in this field without creative work are within the scope of protection of the present invention. In addition, all the connection / connection relationships involved in the patent do not refer to the direct connection of components, but refer to the fact that a better connection structure can be formed by adding or reducing connection accessories according to the specific implementation situation. The various technical features in the creation of the present invention can be combined interactively without conflicting with each other.

[0032] Reference Figures 1 to 6 An embodiment of the present invention provides an atomizer core assembly device, comprising a machine platform 5, a turntable 6 arranged on the machine platform 5, and a plurality of jigs 7 distributed in a ring shape on the edge of the turntable 6.

[0033] An embodiment of the present invention further provides a ring loading mechanism, which is arranged on a machine platform 5 and is used to transfer the rings to a jig 7 . The ring loading mechanism includes a conveying component 1 , a receiving component 2 and a transplanting component 3 .

[0034] Among them, the conveying component 1 is used to convey the rings, the receiving component 2 is used to receive the rings conveyed by the conveying component 1, and the transplanting component 3 is used to transplant the rings on the receiving component 2 to the fixture 7.

[0035] Structurally, the conveying assembly 1 includes a vibrating loading tray 11 and a discharge guide trough 12 connected to the output end of the vibrating loading tray 11 .

[0036] Furthermore, the material receiving assembly 2 includes a first bracket 21, a first driving member 22 and a material receiving block 23. The first driving member 22 is arranged on the first bracket 21. The first driving member 22 is used to push the material receiving block 23 to move horizontally. The moving direction of the material receiving block 23 is perpendicular to the conveying direction of the discharge guide groove 12. A groove 231 for accommodating a ring is provided on the top of the material receiving block 23.

[0037] During operation, the vibrating loading tray 11 arranges the disordered multiple rings in an orderly and directional manner through vibration, so that the multiple rings are transported one by one from the output end of the vibrating loading tray 11 to the discharge guide groove 12, and the rings are transported one by one to the groove 231 on the receiving block 23 through the discharge guide groove 12. Then, the first driving member 22 pushes the receiving block 23 to move horizontally along the conveying direction perpendicular to the discharge guide groove 12, so that the rings on the groove 231 are moved horizontally to one side of the transplanting component 3. At this time, the receiving block 23 will block the discharge guide groove 12 from continuing to transport the rings. Finally, the transplanting component 3 transplants the rings on the groove 231 to the jig 7, thereby realizing automatic loading of the rings, reducing labor costs and improving work efficiency.

[0038] In some preferred embodiments, the transplanting assembly 3 includes a second bracket 31, a U-shaped transplanting module 32 arranged on the second bracket 31, and a clamp 33 arranged on the U-shaped transplanting module 32. The U-shaped transplanting module 32 is used to drive the clamp 33 to move along an inverted U-shaped trajectory, and the clamp 33 is used to clamp or release the ring.

[0039] Specifically, when the first driving member 22 pushes the receiving block 23 to move to one side of the transplanting assembly 3, the U-shaped transplanting module 32 drives the clamping jaw 33 to move to one end, so that the clamping jaw 33 is located directly above the groove 231. Then, the clamping jaw 33 clamps the ring on the groove 231. Then, the U-shaped transplanting module 32 drives the clamping jaw 33 to move along the inverted U-shaped trajectory, so that the clamping jaw 33 moves to directly above the corresponding jig 7. Then, the clamping jaw 33 releases the ring, so that the ring falls onto the jig 7, thereby achieving fixed-point transplanting and ensuring transplanting accuracy.

[0040] Furthermore, the clamping claw 33 includes a finger cylinder 332 and two clamping fingers 331. The finger cylinder 332 is connected to the U-shaped transplanting module 32. The two clamping fingers 331 are respectively arranged at the two output ends of the finger cylinder 332. The finger cylinder 332 drives the two clamping fingers 331 to move closer to or away from each other at the same time to clamp or loosen the ring. The clamping force of the two clamping fingers 331 is balanced, which can prevent the ring from deforming. Moreover, it can ensure that the ring is centered, thereby improving the transplanting accuracy.

[0041] In some preferred embodiments, a guide seat 24 is provided on the first bracket 21, and the guide seat 24 is provided with a slide groove 241. The length direction of the slide groove 241 is perpendicular to the length direction of the discharge guide groove 12. The material receiving block 23 is slidably connected in the slide groove 241, and the first driving member 22 pushes the material receiving block 23 to move along the length direction of the slide groove 241, thereby improving the stability of the material receiving block 23 during movement, and further, improving the position accuracy of the ring.

[0042] It should be noted that the first driving member 22 can be a telescopic cylinder, or an electric cylinder or other power device.

[0043] Furthermore, the side of the chute 241 away from the discharge guide chute 12 is higher than the material receiving block 23, and the other side of the chute 241 is flush with the material receiving block 23. The guide seat 24 is provided with a material guide chute 242, one end of the material guide chute 242 is connected to the chute 241, and the other end of the material guide chute 242 is connected to the end of the discharge guide chute 12. The bottom of the material guide chute 242 is flush with the bottom of the groove 231.

[0044] It can be understood that the multiple rings arranged in the discharge guide groove 12 are conveyed to the guide groove 242 in sequence. When the first driving member 22 drives the material receiving block 23 to move and makes the groove 231 correspond to the material guide groove 242, a ring in the guide groove 242 closest to the groove 231 is conveyed to the groove 231. The side of the slide groove 241 that is higher than the material receiving block 23 can limit the ring on the groove 231 to ensure the consistency of the position of the ring in the groove 231. When the first driving member 22 drives the material receiving block 23 to move and makes the groove 231 and the material guide groove 242 misaligned, one side of the material receiving block 23 can block one end of the guide groove 242, so that the ring on the guide groove 242 stops being conveyed, thereby ensuring that the rings are conveyed one by one.

[0045] Furthermore, the guide seat 24 is also provided with a first avoidance groove 243, which is located on both sides of the slide groove 241. The first avoidance groove 243 is used to avoid the clamping claw 33. When the material receiving block 23 moves directly below the clamping claw 33, the groove 231 on the material receiving block 23 corresponds to the first avoidance groove 243 on both sides of the slide groove 241, thereby preventing the clamping claw 33 from interfering with the guide seat 24 when clamping the ring on the groove 231, thereby ensuring the normal operation of the clamping claw 33.

[0046] In some preferred embodiments, a cover plate 25 is connected to the top of the guide seat 24, and the cover plate 25 is provided with a second air avoidance groove 251. The clamping claw 33 passes through the second air avoidance groove 251 and clamps the ring on the groove 231. On the one hand, the cover plate 25 can limit the top of the connecting block 23 to ensure the stability of the connecting block 23 when it moves. On the other hand, the cover plate 25 can limit the ring on the guide groove 242 to prevent the ring from flying out from the top of the guide groove 242 during transportation.

[0047] In some preferred embodiments, a receiving hole 244 is provided in the guide seat 24, and a sensor 4 is installed in the receiving hole 244. The receiving hole 244 passes through the side of the slide groove 241 away from the material guide groove 242. The sensor 4 is used to sense whether there is a ring on the groove 231. If the sensor 4 senses that there is no ring on the groove 231, the equipment will alarm, thereby facilitating the operator to troubleshoot and ensure the normal loading of the ring.

[0048] In some preferred embodiments, the bottom of the discharge guide trough 12 is mounted on the machine platform 5 via a support base 13, which can support the discharge guide trough 12 and prevent the discharge guide trough 12 from deforming or shaking during transportation.

[0049] The above is a specific description of the preferred implementation of the present invention, but the invention of the present invention is not limited to the embodiments. Those skilled in the art can make various equivalent modifications or substitutions without violating the spirit of the present invention. These equivalent modifications or substitutions are all included in the scope defined by the claims of this application.

Claims

1. A ring feeding mechanism, characterized in that: include: A conveying assembly for conveying the rings, comprising a vibrating loading tray and a discharge guide chute connected to the output end of the vibrating loading tray; A material receiving assembly for receiving a circular ring, comprising a first bracket, a first driving member, and a material receiving block, wherein the first driving member is disposed on the first bracket and is used to push the material receiving block to translate, wherein the moving direction of the material receiving block is perpendicular to the conveying direction of the discharge guide chute, and a groove for accommodating the circular ring is disposed on the top of the material receiving block; The transplanting component is used for transplanting the ring on the groove.

2. A ring feeding mechanism according to claim 1, characterized in that: The transplanting assembly includes a second bracket, a U-shaped transplanting module arranged on the second bracket and a clamping claw arranged on the U-shaped transplanting module. The U-shaped transplanting module is used to drive the clamping claw to move along an inverted U-shaped track, and the clamping claw is used to clamp or release a ring.

3. A ring feeding mechanism according to claim 2, characterized in that: The clamping claw comprises two clamping fingers and a finger cylinder for driving the two clamping fingers to move closer to or away from each other, and the finger cylinder is connected to the U-shaped transplanting module.

4. A ring feeding mechanism according to claim 2, characterized in that: The first bracket is provided with a guide seat, the guide seat is provided with a slide groove, the length direction of the slide groove is perpendicular to the length direction of the discharge guide groove, and the material receiving block is slidably connected in the slide groove.

5. A ring feeding mechanism according to claim 4, characterized in that: The side of the chute away from the discharge guide chute is higher than the material receiving block, and the other side of the chute is flush with the material receiving block. The guide seat is provided with a material guide chute, one end of the material guide chute is connected to the chute, and the other end of the material guide chute is connected to the end of the discharge guide chute, and the bottom of the material guide chute is flush with the bottom of the groove.

6. A ring feeding mechanism according to claim 4, characterized in that: The guide seat is further provided with a first avoidance groove, which is located on both sides of the sliding groove and is used to avoid the clamping claw.

7. The ring feeding mechanism according to claim 5, characterized in that: The top of the guide seat is connected with a cover plate, and the cover plate is provided with a second air-avoiding groove. The clamping claw passes through the second air-avoiding groove and clamps the ring on the groove.

8. The ring feeding mechanism according to claim 5, characterized in that: A receiving hole is provided in the guide seat, and a sensor is installed in the receiving hole. The receiving hole passes through a side of the slide groove away from the material guide groove, and the sensor is used to sense whether there is a ring on the groove.

9. The ring feeding mechanism according to claim 1, characterized in that: The bottom of the discharge guide trough is supported by a support seat.

10. An atomizer core assembly device, characterized in that: It comprises a machine platform, a turntable arranged on the machine platform, a plurality of jigs distributed in a ring shape on the edge of the turntable, and a ring loading mechanism according to any one of claims 1 to 9, wherein the ring loading mechanism is arranged on the machine platform and is used to transfer the ring to the jig.