A navel globe punching and cutting device

By designing a navel global drilling and cutting equipment that includes loading, moving, supporting materials, clamping, dotting, drilling and cutting mechanisms, the problem of low production efficiency of navel global in the prior art is solved, and automated production is realized, suitable for mass production.

CN115351550BActive Publication Date: 2025-07-01DONGGUAN TIAN ZUAN JEWELRY CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202211166871.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-23
Publication Date
2025-07-01
Estimated Expiration
2042-09-23

AI Technical Summary

Technical Problem

The lack of equipment for automated punching and cutting of the navel ring in the prior art leads to low production efficiency of the navel ring and is not suitable for mass production.

Method used

A navel-global punching and cutting equipment is designed, including a feeding mechanism, a moving mechanism, a supporting mechanism, a clamping mechanism, a docking mechanism, a drilling mechanism and a cutting mechanism, to realize the automatic loading, positioning and clamping, a docking, drilling and cutting operations of the navel-global.

Benefits of technology

Through the automated punching and cutting process, the production efficiency of the belly button world is significantly improved and mass production is supported.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115351550B_ABST
    Figure CN115351550B_ABST
Patent Text Reader

Abstract

The present invention relates to the field of automated processing technology, and in particular to a navel globe punching and cutting device, which includes a feeding mechanism for transferring the navel globe to a material supporting mechanism, a moving mechanism for driving the material supporting mechanism, the dotting mechanism, the drilling mechanism and the cutting mechanism to move back and forth, a material supporting mechanism for holding the navel globe and transferring the navel globe to a clamping mechanism, a clamping mechanism for clamping the navel globe, a dotting mechanism for drilling positioning holes in the navel globe clamped by the clamping mechanism, a drilling mechanism for performing positioning drilling on the navel globe, and a cutting mechanism for cutting the navel globe; the clamping mechanism is also used for discharging the cut navel globe. The present invention realizes the automated feeding, positioning and clamping, dotting, drilling and cutting actions of the navel globe, thereby improving the production efficiency of the navel globe.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of automated processing, and in particular to a navel globe drilling and cutting device. Background Art

[0002] At present, navel rings have become one of the personalized ornaments, which are used to be worn in the navel of a person. A navel ring usually has a navel globe and a connecting rod, and the navel globe and the connecting rod are welded together. The navel globe is worn on the navel of the human body, and corresponding drilling is required before it can be filled with suitable decorations. The connecting rod is used for the user to pass through the skin tissue on the navel and expose it to the outside, and connect to other decorations.

[0003] In the prior art, there is no device for drilling and cutting navel rings, resulting in low production efficiency of navel rings and being unfavorable for mass production of products. Summary of the Invention

[0004] The present invention provides a navel globe drilling and cutting device for the problems of the prior art, which can realize automatic drilling and cutting actions for navel globes.

[0005] To solve the above technical problems, the present invention adopts the following technical solutions:

[0006] A navel globe drilling and cutting device provided by the present invention includes a feeding mechanism, a moving mechanism, a material supporting mechanism, a clamping mechanism, a dotting mechanism, a drilling mechanism and a cutting mechanism.

[0007] The feeding mechanism is used to transfer the navel globe to the material supporting mechanism.

[0008] The moving mechanism is used to drive the material supporting mechanism, the dotting mechanism, the drilling mechanism and the cutting mechanism to move back and forth.

[0009] The material supporting mechanism is used to support the navel globe and transfer the navel globe to the clamping mechanism.

[0010] The clamping mechanism is used to clamp the navel globe.

[0011] The dotting mechanism is used to drill positioning holes on the navel globe clamped by the clamping mechanism.

[0012] The drilling mechanism is used to perform positioning drilling with the positioning holes on the navel globe.

[0013] The cutting mechanism is used to cut the navel globe after drilling.

[0014] The clamping mechanism is also used to unload the navel globe after cutting.

[0015] Furthermore, the supporting mechanism includes a feeding drive mechanism, a feeding pushing mechanism and a feeding seat, the feeding seat is provided with a feeding trough for accommodating the navel ring, the feeding pushing mechanism includes a feeding pushing piece, a feeding pushing seat, a slide rail, a feeding guide seat and a pushing piece, the feeding drive mechanism is used to drive the feeding pushing seat to approach or move away from the clamping mechanism, the slide rail is installed on the feeding pushing seat, the feeding guide seat is slidably arranged on the guide rail, the pushing piece is installed on the feeding guide seat, a first elastic piece is arranged between the pushing piece and the feeding guide seat, the feeding pushing piece is used to drive the feeding guide seat to slide to drive the pushing piece to insert into or leave the feeding trough, the clamping structure and the feeding pushing piece cooperate to clamp the navel ring and drive the navel ring into the clamping mechanism.

[0016] Furthermore, the feeding drive mechanism includes a feeding drive member, a feeding base and a guide rail installed on the feeding base, the feeding push mechanism is movably arranged on the guide rail, the feeding seat is arranged on the feeding push mechanism, and the feeding drive member is used to drive the feeding push mechanism to move back and forth along the guide rail.

[0017] Furthermore, the material clamping mechanism includes a material clamping seat, a clamp and a material clamping pushing mechanism, the clamp is installed on the material clamping seat, and the material clamping pushing mechanism is used to drive the clamp to approach or move away from the material supporting mechanism; the clamp is provided with a through hole, and the material clamping pushing mechanism includes a material clamping pushing member and a material resisting member, the material resisting member is slidably provided in the through hole, the material clamping pushing member is used to drive the material resisting member to move back and forth, the material resisting member is used to resist the material, and a second elastic member is provided between the material clamping pushing member and the material resisting member.

[0018] Furthermore, the clamp includes a body, one end of which is provided with a clamping groove for accommodating the navel ring, and one end of the body is also provided with two positioning blocks, and a positioning groove for accommodating the connecting rod of the navel ring is provided between the two positioning blocks.

[0019] Preferably, the main body includes a chuck and a fixing rod, the chuck includes a plurality of clamping parts arranged at one end of the fixing rod, the plurality of clamping parts are arranged to form a clamping groove, a clamping gap is provided between adjacent clamping parts, and two positioning blocks are provided on one of the clamping parts; the other end of the fixing rod is provided with a thread, and the other end of the fixing rod is also provided with a compensation groove, and the compensation groove and the clamping gap are staggered.

[0020] Furthermore, the material clamping mechanism also includes a material clamping driving mechanism, which includes a material clamping driving member, an extension member and a material clamping hoop. The material clamping driving member is connected to the material clamping hoop via the extension member, and the material clamping hoop is used to tighten the material clamping seat.

[0021] Furthermore, the mobile mechanism includes a mobile base, a driving motor, a screw, a nut and a base plate. The screw is rotatably arranged on the mobile base, the driving motor is used to drive the screw to rotate, the nut is installed on the base plate, the nut is threadedly connected to the screw, and the dotting mechanism, drilling mechanism, cutting mechanism and supporting mechanism are all installed on the base plate.

[0022] Further, the feeding mechanism includes a feeding track, a feeding clamping mechanism, and a feeding transfer mechanism. The feeding track is provided with a feeding groove for accommodating the navel globe blank. The bottom of the feeding groove is communicated with a rod groove for accommodating the connecting rod of the navel globe blank. One end of the feeding track is connected to an external vibrating disk, and a limiting member is provided at the other end of the feeding track. The feeding transfer mechanism is used to control the movement of the feeding mechanism, and the feeding clamping mechanism is used to pick up the navel globe blank that abuts against the limiting member and transfer the navel globe blank to the material supporting mechanism.

[0023] Further, the material supporting mechanism, the dotting mechanism, the drilling mechanism, and the cutting mechanism are arranged side by side on the moving mechanism, and the material supporting mechanism, the dotting mechanism, the drilling mechanism, and the cutting mechanism are arranged at intervals in sequence.

[0024] Advantages of the present invention: Through the cooperation of the feeding mechanism, the moving mechanism, the material supporting mechanism, the clamping mechanism, the dotting mechanism, the drilling mechanism, and the cutting mechanism, the present invention realizes the automated feeding, positioning and clamping, dotting, drilling, and cutting operations of the navel globe blank, thereby improving the production efficiency of the navel globe blank. Description of the Drawings

[0025] Figure 1 It is a schematic diagram of the present invention.

[0026] Figure 2 It is a schematic diagram of the material supporting mechanism of the present invention.

[0027] Figure 3 It is a cross-sectional view of the feeding push seat of the present invention.

[0028] Figure 4 It is a schematic diagram of the clamping mechanism of the present invention.

[0029] Figure 5 It is a cross-sectional view of the clamping seat and the fixture of the present invention.

[0030] Figure 6 It is Figure 5 an enlarged view of part A of

[0031] Figure 7 It is a schematic diagram of the fixture of the present invention.

[0032] Figure 8 It is Figure 1 an enlarged view of part B of

[0033] Figure 9 It is a schematic diagram of the navel globe blank described in the present invention.

[0034] Reference numerals: 1 - loading mechanism, 2 - moving mechanism, 3 - material supporting mechanism, 4 - material clamping mechanism, 5 - dotting mechanism, 6 - drilling mechanism, 7 - cutting mechanism, 8 - machine body, 9 - navel globe, 10 - connecting rod, 11 - loading track, 12 - loading clamping mechanism, 13 - loading transfer mechanism, 21 - moving base, 22 - driving motor, 23 - lead screw, 24 - base plate, 31 - loading driving mechanism, 32 - loading pushing mechanism, 33 - loading seat, 41 - material clamping seat, 42 - fixture, 43 - material clamping pushing mechanism, 44 - material clamping driving mechanism, 45 - second elastic member, 111 - material groove, 112 - limiting member, 311 - loading driving member, 312 - loading base, 313 - guide rail, 321 - loading pushing member, 322 - loading pushing seat, 323 - slide rail, 324 - loading guiding seat, 325 - material pushing member, 326 - first elastic member, 331 - loading groove, 420 - through hole, 421 - clamping groove, 422 - positioning block, 423 - positioning groove, 424 - chuck, 425 - fixing rod, 426 - clamping gap, 427 - thread, 428 - compensation groove, 431 - material clamping pushing member, 432 - material abutting member, 441 - material clamping driving member, 442 - extension member, 443 - material clamping hoop. Detailed implementation manners

[0035] For the convenience of understanding by those skilled in the art, the present invention will be further described below in conjunction with embodiments and the accompanying drawings. The content mentioned in the implementation manners does not limit the present invention. The present invention will be described in detail below with reference to the accompanying drawings.

[0036] As Figures 1 to 9 shown, a navel globe punching and cutting device provided by the present invention includes a loading mechanism 1, a moving mechanism 2, a material supporting mechanism 3, a material clamping mechanism 4, a dotting mechanism 5, a drilling mechanism 6, and a cutting mechanism 7.

[0037] The loading mechanism 1 is used to transfer the navel globe 9 to the material supporting mechanism 3.

[0038] The moving mechanism 2 is used to drive the material supporting mechanism 3, the dotting mechanism 5, the drilling mechanism 6, and the cutting mechanism 7 to move back and forth.

[0039] The material supporting mechanism 3 is used to support the navel globe 9 and transfer the navel globe 9 to the material clamping mechanism 4.

[0040] The material clamping mechanism 4 is used to clamp the navel globe 9.

[0041] The dotting mechanism 5 is used to drill positioning holes in the navel globe 9 clamped by the material clamping mechanism 4.

[0042] The drilling mechanism 6 is used to perform positioning drilling with the positioning holes on the navel globe 9.

[0043] The cutting mechanism 7 is used to cut the navel globe 9 after punching;

[0044] The material clamping mechanism 4 is also used to discharge the cut navel globe 9.

[0045] Specifically, the present invention is arranged on a machine body 8, and its specific operation steps are as follows: After the navel globes 9 are arranged one by one by the feeding mechanism 1, the navel globe 9 at the forefront is transferred to the material supporting mechanism 3. Subsequently, the moving mechanism 2 operates to drive the material supporting mechanism 3, the dotting mechanism 5, the drilling mechanism 6, and the cutting mechanism 7 (hereinafter referred to as the translation unit) to operate, so that the material supporting mechanism 3 aligns with the material clamping mechanism 4 and clamps the navel globe 9 onto the material clamping mechanism 4. Subsequently, the moving mechanism 2 controls the translation unit to translate, so as to drive the dotting mechanism 5, the drilling mechanism 6, and the cutting mechanism 7 to align with the material clamping mechanism 4 in sequence and perform dotting, drilling, and cutting operations on the navel globe 9 on the material clamping mechanism 4. During cutting, the material supporting mechanism 3 can just catch the next navel globe 9 from the feeding mechanism 1. After cutting, the material clamping mechanism 4 pushes the navel globe 9 away from the material clamping mechanism 4, so that the navel globe 9 falls into a container (not shown in the figure) directly in front of it, achieving the discharging effect.

[0046] In this embodiment, the material supporting mechanism 3 includes a feeding driving mechanism 31, a feeding pushing mechanism 32, and a feeding seat 33. The feeding seat 33 is provided with a feeding groove 331 for accommodating the navel globe 9. The feeding pushing mechanism 32 includes a feeding pushing member 321, a feeding pushing seat 322, a slide rail 323, a feeding guiding seat 324, and a pushing member 325. The feeding driving mechanism 31 is used to drive the feeding pushing seat 322 to approach or move away from the material clamping mechanism 4. The slide rail 323 is installed on the feeding pushing seat 322. The feeding guiding seat 324 is slidably arranged on the guide rail 313. The pushing member 325 is installed on the feeding guiding seat 324. A first elastic member 326 is arranged between the pushing member 325 and the feeding guiding seat 324. The feeding pushing member 321 is used to drive the feeding guiding seat 324 to slide to drive the pushing member 325 to insert into or leave the feeding groove 331. The clamping structure cooperates with the feeding pushing member 321 to clamp the navel globe 9 and drive the navel globe 9 into the material clamping mechanism 4.

[0047] The feeding pusher 321 is preferably a cylinder and the power of the feeding pusher 321 is greater than that of the material clamping structure. The first elastic member 326 is a spring, and the bottom of the feeding groove 331 can be communicated with a groove (not shown in the figure) adapted to the connecting rod 10. When the feeding base 33 is aligned with the material clamping mechanism 4, a specific structure extends from the material clamping mechanism 4 into the feeding groove 331. Subsequently, it extends from the material clamping structure and inserts into the feeding groove 331. Then, the feeding pusher 321 acts to drive the feeding guide seat 324 to move forward, so that the pusher 325 abuts against the navel globe 9 and pushes the navel globe 9 towards the material clamping mechanism 4. When the navel globe 9 abuts against the material clamping structure, as the feeding pusher 321 continues to act, it will preferentially compress the first elastic member 326, causing the first elastic member 326 to deform. When the first elastic member 326 is compressed to a certain extent, due to the greater force output by the feeding pusher 321, the feeding pusher 321 will force the material clamping structure to retract into the material clamping mechanism 4. The first elastic member 326 being in a compressed state can ensure the reliable abutment of the pusher 325 against the navel globe 9, so as to make the clamping of the navel globe 9 more stable, that is, even when there is a certain space between the material supporting mechanism 3 and the material clamping mechanism 4, it can ensure that the navel globe 9 enters the material clamping mechanism 4.

[0048] Specifically, the feeding driving mechanism 31 includes a feeding driving member 311, a feeding base 312, and a guide rail 313 installed on the feeding base 312. The feeding pushing mechanism 32 is movably arranged on the guide rail 313. The feeding base 33 is arranged on the feeding pushing mechanism 32. The feeding driving member 311 is used to drive the feeding pushing mechanism 32 to move back and forth along the guide rail 313.

[0049] The feeding driving member 311 is preferably a cylinder, that is, by the telescopic manner of the feeding driving member 311, the feeding pushing mechanism 32 and the feeding base 33 are controlled to move back and forth, so as to achieve the effect of making the two approach the material clamping mechanism 4, reducing the distance between the feeding base 33 and the material clamping mechanism 4, facilitating feeding, and ensuring that the two will not interfere with each other during subsequent actions.

[0050] In this embodiment, the material clamping mechanism 4 includes a material clamping seat 41, a clamp 42, and a material clamping pushing mechanism 43. The clamp 42 is installed on the material clamping seat 41. The material clamping pushing mechanism 43 is used to drive the clamp 42 to approach or move away from the material supporting mechanism 3. The clamp 42 is provided with a through hole 420. The material clamping pushing mechanism 43 includes a material clamping pushing member 431 and a material abutting member 432. The material abutting member 432 is slidably arranged in the through hole 420. The material clamping pushing member 431 is used to drive the material abutting member 432 to move back and forth. The material abutting member 432 is used to abut against the material. A second elastic member 45 is arranged between the material clamping pushing member 431 and the material abutting member 432.

[0051] The second elastic member 45 is preferably a spring, and the material clamping pushing member 431 is preferably a cylinder, that is, after the feeding seat 33 is aligned with the clamp 42, the material clamping pushing member 431 first controls the material resisting member 432 to extend and insert into the feeding groove 331, and then the feeding pushing mechanism 32 cooperates to push the navel ring 9 to contact with the material resisting member 432; since the output force of the feeding pushing member 321 is greater than the output force of the material clamping pushing member 431, the material resisting member 432 will eventually be forced to retreat. During the retreat process, the second elastic member 45 is first compressed and then the piston of the material clamping pushing member 431 is forced to retreat. After the navel ring 9 completely enters the clamping mechanism 4, the material clamping pushing member 431 is reset to allow the second elastic member 45 to restore its deformation, so as to avoid pushing the navel ring 9 out of the clamp 42.

[0052] After the navel ring 9 completes the cutting action, the second pusher only needs to move again to push the navel ring 9 through the material stopper 432 and drop it from the clamp 42 to achieve the material unloading effect.

[0053] Specifically, the clamp 42 includes a body, one end of which is provided with a clamping groove 421 for accommodating the navel ring 9, and one end of the body is also provided with two positioning blocks 422, and a positioning groove 423 for accommodating the connecting rod 10 of the navel ring 9 is provided between the two positioning blocks 422.

[0054] The clamp 42 of the present invention has a clamping groove 421 and a positioning groove 423. The clamping groove 421 is used to accommodate the navel ring 9, while the positioning groove 423 is used to accommodate the connecting rod 10. Combined with the structure of the loading chute 331, the effect of allowing the material to maintain a suitable posture (and the connecting rod 10 facing downward) to enter the clamp 42 is achieved, so that when performing dotting, drilling or cutting operations, based on the blocking of the connecting rod 10 by the positioning block 422, the navel ring 9 cannot be subjected to force and rotate relative to the clamp 42, thereby ensuring the dotting, drilling and cutting effects.

[0055] Most of the belly button ring 9 is accommodated in the clamping groove 421, and the connecting rod 10 is almost embedded in the positioning groove 423, so that the belly button ring 9 can be prevented from being separated from the clamp 42 without other structures.

[0056] Preferably, the main body includes a chuck 424 and a fixing rod 425, the chuck 424 includes a plurality of clamping parts arranged at one end of the fixing rod 425, the plurality of clamping parts are arranged to form a clamping groove 421, a clamping gap 426 is provided between adjacent clamping parts, and two positioning blocks 422 are provided on one of the clamping parts; a thread 427 is provided at the other end of the fixing rod 425, and a compensation groove 428 is also provided at the other end of the fixing rod 425, and the compensation groove 428 is staggered with the clamping gap 426.

[0057] The setting of the clamping gap 426 enables, before performing an operation, to control the depth of the fixture 42 entering the clamping seat 41 by controlling the screwing depth of the thread 427 and the clamping seat 41 according to the specifications of the material, thereby achieving the change of the width of the clamping gap 426, so as to realize the effect of adjusting the width of the clamping groove 421 according to the specifications of different materials, and expanding the application of the present invention. The compensation groove 428 serves to compensate for deformation when the temperature of the fixture 42 rises.

[0058] Specifically, the clamping mechanism 4 further includes a clamping driving mechanism 44. The clamping driving mechanism 44 includes a clamping driving member 441, an extension member 442 and a clamping hoop 443. The clamping driving member 441 is connected to the clamping hoop 443 through the extension member 442, and the clamping hoop 443 is used to tightly hold the clamping seat 41.

[0059] The clamping driving member 441 is preferably a cylinder, which has the effect of controlling the reciprocating movement of the fixture 42 and the clamping seat 41, so that when loading, the clamping seat 41 and the fixture 42 can be controlled to extend forward a certain distance to facilitate loading.

[0060] In this embodiment, the moving mechanism 2 includes a moving base 21, a driving motor 22, a lead screw 23, a nut and a bottom plate 24. The lead screw 23 is rotatably arranged on the moving base 21. The driving motor 22 is used to drive the lead screw 23 to rotate. The nut is installed on the bottom plate 24, and the nut is screwed to the lead screw 23. The dotting mechanism 5, the drilling mechanism 6, the cutting mechanism 7 and the material supporting mechanism 3 are all installed on the bottom plate 24.

[0061] The present invention realizes the high-precision translation control of the bottom plate 24 through the cooperation of the motor, the lead screw 23 and the nut, ensuring that the corresponding mechanism in each action is accurately aligned with the clamping mechanism 4, thus ensuring the processing effect.

[0062] In this embodiment, the loading mechanism 1 includes a loading track 11, a loading clamping mechanism 12 and a loading transfer mechanism 13. The loading track 11 is provided with a feeding groove 111 for accommodating the navel globe 9. The bottom of the feeding groove 111 is communicated with a rod groove for accommodating the connecting rod 10 of the navel globe 9. One end of the loading track 11 is externally connected to a vibrating disk, and the other end of the loading track 11 is provided with a limiting member 112. The loading transfer mechanism 13 is used to control the movement of the loading mechanism 1, and the loading clamping mechanism 12 is used to pick up the navel globe 9 abutted against the limiting member 112 and transfer the navel globe 9 to the material supporting mechanism 3.

[0063] The loading clamping mechanism 12 is preferably a manipulator or a finger cylinder, and the loading transfer mechanism 13 is a conventional mechanism that can move in the XZ directions, achieving the effect of loading the navel globes 9 one by one after arranging them, and ensuring the reliable execution of automatic drilling and cutting.

[0064] In this embodiment, the material supporting mechanism 3, the dotting mechanism 5, the drilling mechanism 6, and the cutting mechanism 7 are arranged side by side on the moving mechanism 2, and the material supporting mechanism 3, the dotting mechanism 5, the drilling mechanism 6, and the cutting mechanism 7 are arranged at intervals in sequence.

[0065] Through the sequential arrangement of the four, after the material supporting mechanism 3 feeds the navel globe 9 into the clamping mechanism 4, dotting, drilling, and cutting operations are sequentially performed, making the driving mode of the moving mechanism 2 simpler.

[0066] The dotting mechanism 5, the drilling mechanism 6, and the cutting mechanism 7 described in this embodiment are all conventional mechanisms and have no obvious innovation in structure. Those skilled in the art can adjust them according to needs, so they will not be elaborated here.

[0067] The above is only a preferred embodiment of the present invention, and it is not a limitation to the present invention in any form. Although the present invention is disclosed above in a preferred embodiment, it is not intended to limit the present invention. Any person skilled in the art, without departing from the scope of the technical solution of the present invention, when making some changes or modifications using the above-disclosed technical content as equivalent embodiments of equivalent changes, but as long as it does not depart from the content of the technical solution of the present invention, any simple modification, equivalent change, and modification made to the above embodiments according to the technical means of the present invention shall fall within the scope of the technical solution of the present invention.

Claims

1. A navel global drilling and cutting device, characterized in that: It includes feeding mechanism, moving mechanism, supporting mechanism, clamping mechanism, dotting mechanism, drilling mechanism and cutting mechanism. The feeding mechanism is used to transfer the belly button ring to the supporting mechanism; The moving mechanism is used to drive the supporting mechanism, the dotting mechanism, the drilling mechanism and the cutting mechanism to move back and forth; The supporting mechanism is used to support the belly button ring and transfer the belly button ring to the clamping mechanism; The clamping mechanism is used to clamp the navel ring; The dotting mechanism is used to drill positioning holes on the navel ring clamped by the clamping mechanism; The drilling mechanism is used for positioning and drilling holes through the positioning holes on the navel ring; The cutting mechanism is used to cut the navel ring after the hole is punched; The clamping mechanism is also used to unload the cut belly button ring; The supporting mechanism comprises a feeding drive mechanism, a feeding push mechanism and a feeding seat, the feeding seat is provided with a feeding trough for accommodating the navel ring, the feeding push mechanism comprises a feeding push piece, a feeding push seat, a slide rail, a feeding guide seat and a pushing piece, the feeding drive mechanism is used to drive the feeding push seat to approach or move away from the clamping mechanism, the slide rail is installed on the feeding push seat, the feeding guide seat is slidably arranged on the slide rail, the pushing piece is installed on the feeding guide seat, a first elastic piece is arranged between the pushing piece and the feeding guide seat, the feeding push piece is used to drive the feeding guide seat to slide so as to drive the pushing piece to insert into or leave the feeding trough, the clamping mechanism has a clamping structure, the clamping structure cooperates with the feeding push piece to clamp the navel ring and drive the navel ring into the clamping mechanism; The material clamping mechanism includes a material clamping seat, a clamp and a material clamping pushing mechanism, the clamp is installed on the material clamping seat, and the material clamping pushing mechanism is used to drive the clamp to approach or move away from the material supporting mechanism; the clamp is provided with a through hole, and the material clamping pushing mechanism includes a material clamping pushing member and a material resisting member, the material resisting member is slidably arranged in the through hole, the material clamping pushing member is used to drive the material resisting member to move back and forth, and the material resisting member is used to resist the material, and a second elastic member is arranged between the material clamping pushing member and the material resisting member.

2. The navel global drilling and cutting device according to claim 1, characterized in that: The feeding drive mechanism includes a feeding drive member, a feeding base and a guide rail installed on the feeding base. The feeding push mechanism is movably arranged on the guide rail, the feeding seat is arranged on the feeding push mechanism, and the feeding drive member is used to drive the feeding push mechanism to move back and forth along the guide rail.

3. The navel global drilling and cutting device according to claim 1, wherein: The clamp comprises a body, one end of which is provided with a clamping groove for accommodating a belly button ring, and one end of the body is further provided with two positioning blocks, and a positioning groove for accommodating a connecting rod of the belly button ring is provided between the two positioning blocks.

4. The navel global drilling and cutting device according to claim 3, characterized in that: The main body includes a chuck and a fixing rod. The chuck includes a plurality of clamping parts arranged at one end of the fixing rod. The plurality of clamping parts are arranged to form a clamping groove. There is a clamping gap between adjacent clamping parts. Two positioning blocks are arranged on one of the clamping parts. The other end of the fixing rod is provided with a thread. The other end of the fixing rod is also provided with a compensation groove. The compensation groove and the clamping gap are staggered.

5. The navel global drilling and cutting device according to claim 1, characterized in that: The material clamping mechanism also includes a material clamping driving mechanism, which includes a material clamping driving member, an extension member and a material clamping hoop. The material clamping driving member is connected to the material clamping hoop via the extension member, and the material clamping hoop is used to clamp the material clamping seat.

6. The navel global drilling and cutting device according to claim 1, characterized in that: The moving mechanism includes a moving base, a driving motor, a lead screw, a nut, and a bottom plate. The lead screw is rotatably arranged on the moving base, the driving motor is used to drive the lead screw to rotate, the nut is installed on the bottom plate, and the nut is screwed with the lead screw. The dotting mechanism, the drilling mechanism, the cutting mechanism, and the material supporting mechanism are all installed on the bottom plate.

7. The navel global punching and cutting device according to claim 6, characterized in that: The material supporting mechanism, the dotting mechanism, the drilling mechanism, and the cutting mechanism are arranged side by side on the moving mechanism, and the material supporting mechanism, the dotting mechanism, the drilling mechanism, and the cutting mechanism are arranged at intervals in sequence.

8. The navel global punching and cutting device according to claim 1, characterized in that: The feeding mechanism includes a feeding track, a feeding clamping mechanism, and a feeding transfer mechanism. The feeding track is provided with a feeding groove for accommodating the navel globe, the bottom of the feeding groove is communicated with a rod groove for accommodating the connecting rod of the navel globe, one end of the feeding track is externally connected to a vibrating disk, the other end of the feeding track is provided with a limiting member, the feeding transfer mechanism is used to control the movement of the feeding clamping mechanism, and the feeding clamping mechanism is used to pick up the navel globe in contact with the limiting member and transfer the navel globe to the material supporting mechanism.

Citation Information

Patent Citations

  • Ball head rod punching equipment

    CN211219595U

  • Navel ring ball punching and cutting equipment

    CN218051288U