Nail clipper hanging mechanism
By designing a nail clipper hanging mechanism, and utilizing the synergistic effect of the feeding component, rotating component, and conveying component, the automatic hanging of nail clippers is achieved, solving the problem of low efficiency of manual hanging and reducing labor costs.
Patent Information
- Application Number
- CN202423123169.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-17
AI Technical Summary
The current nail clipper electroplating process requires manual hanging, resulting in low efficiency and high labor costs.
Design a nail clipper hanging mechanism, including a feeding component, a rotating component and a feeding component. The nail clipper is automatically hung by a suction cup and a gripper cylinder. The feeding track improves the accuracy and stability of the conveying. The nail clipper is hung on the electroplating rack by the gripper cylinder.
It enables the automatic hanging of nail clippers, improving hanging efficiency and reducing labor costs.
Smart Images

Figure CN223521857U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to nail clippers upper hanging technical field especially a nail clippers upper hanging mechanism. BACKGROUND
[0002] Nail clippers need to be hung on the electroplating frame for electroplating during the manufacturing process, to improve the appearance and rust resistance of nail clippers. In the existing process, nail clippers are hung on the electroplating frame by artificial hanging, which has the defects of requiring a large amount of labor cost and low hanging efficiency.
[0003] Therefore, it is urgent to develop a nail clippers upper hanging mechanism capable of automatically hanging nail clippers on the shelf, replacing manual hanging, improving hanging efficiency, and reducing labor cost. SUMMARY
[0004] The utility model aims at providing a nail clippers upper hanging mechanism which can improve the hanging efficiency of nail clippers and reduce labor cost.
[0005] In order to achieve the above-mentioned purpose, the utility model provides a nail clippers upper hanging mechanism, and the specific implementation scheme is as follows:
[0006] A nail clippers upper hanging mechanism comprises a feeding assembly, a rotating assembly and a feeding assembly installed on an upper hanging machine, the feeding port of the feeding assembly is connected with an external feeding mechanism, the discharge port extends to a position close to the rotating assembly, and the feeding assembly is used for conveying nail clippers provided by the feeding mechanism to the rotating assembly;
[0007] A material taking suction cup is arranged on the rotating assembly, the material taking suction cup is relatively movable to the feeding assembly to approach or move away from the discharge port of the feeding assembly, and the material taking suction cup is relatively rotatable to the feeding assembly;
[0008] A clamping jaw cylinder for receiving and clamping nail clippers is arranged on the feeding assembly, the clamping jaw cylinder is relatively movable to the rotating assembly to approach or move away from the rotating assembly, and the clamping jaw cylinder is used for hanging nail clippers on an electroplating frame arranged on the upper hanging machine or outside the upper hanging machine.
[0009] The nail clippers upper hanging mechanism of the utility model, compared with the prior art, conveys nail clippers provided by the external feeding mechanism to the rotating assembly through the feeding assembly, the material taking suction cup of the rotating assembly receives the nail clippers of the feeding assembly and moves to the clamping jaw cylinder on the feeding assembly, the clamping jaw cylinder is used for hanging nail clippers on the electroplating frame arranged on the upper hanging machine or the electroplating frame arranged outside the upper hanging machine, the automatic hanging of nail clippers is realized, the hanging efficiency is improved, and the labor cost is reduced.
[0010] In some embodiments, the feeding assembly comprises a mounting seat, a feeding track is arranged on the mounting seat, one end of the feeding track extends out of the rack of the hanging machine to form a feeding port of the feeding assembly and is connected to an external feeding mechanism, and the other end of the feeding track extends to the rotating assembly to form a discharge port of the feeding assembly.
[0011] By adopting the feeding track to transport the nail clippers, the accuracy and stability of the nail clippers in the transportation process are improved.
[0012] In some embodiments, a pressing cylinder is arranged at the discharge port of the feeding track, a pressing block is arranged on the piston of the pressing cylinder, and the pressing block is driven by the pressing cylinder to enter or leave the feeding track to press the nail clippers in the feeding track.
[0013] By arranging the pressing cylinder at the discharge port of the feeding track, when the nail clippers in the feeding track are adsorbed by the taking suction cup in actual use, the pressing block connected to the piston of the pressing cylinder enters the feeding track to press the first nail clipper behind the adsorbed nail clipper, so that the remaining nail clippers are prevented from continuing to advance to cause accumulation or falling.
[0014] In some embodiments, the rotating assembly comprises a first mounting frame, a connecting block is arranged on the first mounting frame, a lifting rod is arranged on the connecting block, the bottom of the lifting rod is connected to the taking suction cup, a lifting cylinder is arranged on the first mounting frame, a connecting rod is connected to the piston of the lifting cylinder, the connecting rod is connected to the lifting rod, and the lifting rod drives the taking suction cup to approach or move away from the discharge port of the feeding assembly under the drive of the lifting cylinder.
[0015] By arranging the lifting rod on the connecting block, connecting the taking suction cup to the bottom of the lifting rod, and connecting the lifting rod to the connecting rod through the lifting cylinder, the taking suction cup approaches or moves away from the discharge port of the feeding assembly in the lifting process of the lifting rod on the connecting block driven by the lifting cylinder, so that the nail clippers are adsorbed and transferred to the feeding assembly.
[0016] In some embodiments, two connecting plates are arranged on the first mounting frame, a guide slot is arranged on each of the connecting plates, the connecting rod is arranged between the two connecting plates, both ends of the connecting rod are arranged in the guide slots on the same side of the connecting rod, one end of the connecting rod is connected to the lifting rod through the guide slot, and the guide slot is inclined from the side close to the electroplating rack of the hanging machine to the side away from the electroplating rack from top to bottom.
[0017] By erecting the connecting rod between the two connecting plates, the two ends of the connecting rod are located in the guide slot of the connecting plate, and the guide slot is arranged to be inclined from the side close to the electroplating frame to the side away from the electroplating frame from the top to the bottom, so that the angle rotation adjustment of the lifting rod and the material taking suction cup is realized in the lifting process driven by the connecting rod, and the nail clippers on the material taking suction cup are adjusted to an angle which is easier to be clamped by the clamping jaw cylinder on the feeding assembly.
[0018] In some embodiments, a blocking cylinder is arranged on the first mounting frame, a piston of the blocking cylinder is connected with a blocking plate, and the blocking plate is close to or away from the discharge port of the feeding assembly under the action of the blocking cylinder, so as to clamp and fix the nail clippers for the material taking suction cup.
[0019] By arranging the blocking cylinder on the first mounting frame, the piston of the blocking cylinder is connected with the blocking plate, and the blocking plate clamps and fixes the nail clippers in cooperation with the discharge port of the feeding assembly, so as to improve the material taking stability of the material taking suction cup.
[0020] In some embodiments, the feeding assembly comprises a feeding motor, a feeding screw rod and a feeding sliding block, the feeding screw rod is arranged in transmission connection with the feeding motor, the feeding sliding block is sleeved on the feeding screw rod and moves in the axial direction of the feeding screw rod, and a clamping jaw cylinder is connected to the feeding sliding block and moves close to or away from the material taking suction cup of the rotating assembly under the action of the feeding sliding block.
[0021] By adopting the feeding motor to drive the feeding screw rod to rotate and drive the feeding sliding block to move in the axial direction of the feeding screw rod, the clamping jaw cylinder connected with the feeding sliding block is driven to move close to or away from the material taking suction cup of the rotating assembly, the nail clippers on the material taking suction cup are clamped and fed to the hanging rod of the electroplating frame.
[0022] In some embodiments, the feeding assembly further comprises a first mounting block and a second mounting block, the feeding screw rod is arranged between the first mounting block and the second mounting block, a first mounting plate is arranged on the top of the first mounting block and the second mounting block, a first sliding rail is arranged on the first mounting plate, a first sliding block is arranged on the first sliding rail, a third mounting block is arranged on the first sliding block, the third mounting block is connected with the feeding sliding block, and the clamping jaw cylinder is arranged on the third mounting block.
[0023] By adopting the structure of the first sliding rail and the first sliding block, the activity stability, smoothness and accuracy of the clamping jaw cylinder on the first mounting plate are improved.
[0024] Based on the above technical scheme, compared with the prior art, the utility model has the following beneficial effects:
[0025] The nail clippers provided by the external feeding mechanism are transported to the rotating assembly through the feeding assembly, the taking suction disc of the rotating assembly receives the nail clippers of the feeding assembly and is transferred to the clamping jaw cylinder on the feeding assembly, the nail clippers are hung on the electroplating rack arranged on the upper hanging machine or the electroplating rack arranged outside the upper hanging machine by using the clamping jaw cylinder, the automatic hanging of the nail clippers is realized, the hanging efficiency is improved, and the labor cost investment is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is a structure schematic view of the embodiment 1 of the utility model;
[0027] Figure 2 It is a structure schematic view of the feeding assembly of the utility model;
[0028] Figure 3 It is a structure schematic view of the rotating assembly of the utility model;
[0029] Figure 4 It is a structure schematic view of the structure of the rotating assembly removal part of the utility model;
[0030] Figure 5 It is a structure schematic view of the feeding assembly of the utility model;
[0031] Figure 6 It is a structure schematic view of the embodiment 2 of the utility model;
[0032] Figure 7 It is a structure schematic view of another view of the embodiment 2 of the utility model;
[0033] Figure 8 It is a structure schematic view of the driving cylinder body and the clamping piece of the utility model;
[0034] Figure 9 It is a structure schematic view of another view of the driving cylinder body and the clamping piece of the utility model.
[0035] BRIEF DESCRIPTION OF DRAWINGS:
[0036] 100. Feeding assembly; 110. Mounting base; 120. Feeding track; 130. Pressing cylinder; 140. Pressing block; 200. Rotating assembly; 210. First mounting bracket; 220. Connecting block; 230. Lifting cylinder; 240. Connecting rod; 250. Lifting rod; 260. Material suction cup; 270. Connecting plate; 271. Guide groove; 280. Blocking cylinder; 281. Blocking plate; 300. Feeding assembly; 310. Feeding motor; 320. Feeding screw; 330. Feeding slider; 340. First mounting block; 350. Second mounting block; 360. Third mounting block; 361. Gripper cylinder; 370. First mounting plate; 380. First sliding rail; 390. First sliding block; 4 00. Frame; 410. Mounting platform; 420. Electroplating rack; 421. Hanging rod; 422. Rotating motor; 423. Turntable; 424. Base plate; 425. Limiting plate; 426. Limiting rod; 427. Annular mounting rod; 500. Lifting assembly; 510. Lifting motor; 520. Lifting screw; 530. Lifting slider; 540. Lifting frame; 600. Second mounting frame; 610. Auxiliary cylinder; 620. Second sliding block; 630. Second sliding rail; 640. Second mounting plate; 650. Clamping component; 660. Third mounting plate; 670. Drive cylinder; 671. Push block; 680. First connecting rod; 681. First rotating shaft; 690. Second connecting rod; 691. Second rotating shaft. Detailed Implementation
[0037] To facilitate understanding of this utility model, the specific embodiments of this utility model will be described in more detail below with reference to the accompanying drawings.
[0038] Unless otherwise specified or defined, the terms "first," "second," etc., used in this document are for distinguishing names only and do not represent a specific number or order.
[0039] Unless otherwise specified or defined, the term “and / or” as used herein includes any and all combinations of one or more of the associated listed items.
[0040] It should be noted that in this article, "fixed to" or "connected to" can mean directly fixed to or connected to a component, or indirectly fixed to or connected to a component.
[0041] Example 1:
[0042] like Figures 1-5 As shown, the nail clipper hanging mechanism provided in this embodiment includes a feeding component 100, a rotating component 200, and a feeding component 300 disposed on the hanging machine.
[0043] The feeding port of the feeding assembly 100 is connected with an external feeding mechanism, and the discharging port is connected with the feeding port of the rotating assembly 200, so as to deliver the nail clippers provided by the feeding mechanism to the rotating assembly 200.
[0044] The rotating assembly 200 is provided with a material taking suction cup 260, which is movably close to or away from the discharging port of the feeding assembly 100, and is rotatable relative to the feeding assembly 100.
[0045] The feeding assembly 300 is provided with a clamping jaw cylinder 361 for receiving and clamping the nail clippers, which is movably close to or away from the electroplating rack 420, so as to hang the nail clippers on the electroplating rack 420 arranged on the upper hanging machine or outside the upper hanging machine.
[0046] The feeding assembly 100 includes a mounting seat 110, and a feeding track 120 is arranged on the mounting seat 110. One end of the feeding track 120 extends to the outside of the rack 400 to form a feeding port of the feeding assembly 100 and is connected with an external feeding mechanism. The other end of the feeding track 120 extends to the rotating assembly 200 to form a discharging port of the feeding assembly 100. The feeding track 120 is used to deliver the nail clippers, which improves the accuracy and stability of the nail clippers during delivery.
[0047] The external feeding mechanism of the embodiment adopts the feeding mechanism in the prior art, as long as it can continuously put the nail clippers into the feeding track 120.
[0048] The feeding track 120 is provided with a pressing cylinder body 130 at the position of the discharging port. A pressing block 140 is arranged on the piston of the pressing cylinder body 130. The pressing block 140 enters or separates from the feeding track 120 under the drive of the pressing cylinder body 130, so as to press the nail clippers in the feeding track 120. When the nail clippers in the feeding track 120 are adsorbed by the material taking suction cup 260, the pressing block 140 connected with the piston of the pressing cylinder body 130 enters the feeding track 120 to press the first nail clippers behind the adsorbed nail clippers, so as to prevent the remaining nail clippers from continuing to advance and causing accumulation or falling.
[0049] The rotating assembly 200 comprises a first mounting frame 210, a connecting block 220 arranged on the first mounting frame 210, a lifting rod 250 arranged on the connecting block 220, a material taking suction cup 260 connected to the bottom of the lifting rod 250, a lifting cylinder 230 arranged on the first mounting frame 210, a connecting rod 240 connected to the piston of the lifting cylinder 230, and the connecting rod 240 connected to the lifting rod 250. The lifting rod 250 is driven by the lifting cylinder 230 to move the material taking suction cup 260 to be close to or away from the discharge port of the feeding assembly 100. By arranging the lifting rod 250 on the connecting block 220, connecting the material taking suction cup 260 to the bottom of the lifting rod 250, connecting the lifting cylinder 230 to the lifting rod 250 through the connecting rod 240, and adjusting the angle of the material taking suction cup 260 to be close to or away from the discharge port of the feeding assembly 100 during the lifting of the lifting rod 250 by the lifting cylinder 230, the material taking suction cup 260 can be sucked and transferred to the feeding assembly 300.
[0050] The first mounting frame 210 is provided with two connecting plates 270, each of which is provided with a guide groove 271, the connecting rod 240 is arranged between the two connecting plates 270, the two ends of the connecting rod 240 are arranged in the guide grooves 271 on the same side, and one end of the connecting rod 240 is connected to the lifting rod 250 through the guide groove 271. The guide grooves 271 are inclined from the side close to the electroplating rack 420 to the side away from the electroplating rack 420 from top to bottom. By arranging the connecting rod 240 between the two connecting plates 270, arranging the two ends of the connecting rod 240 in the guide grooves 271 of the connecting plates 270, and arranging the guide grooves 271 to be inclined from the side close to the electroplating rack 420 to the side away from the electroplating rack 420 from top to bottom, the angle of the lifting rod 250 and the material taking suction cup 260 can be adjusted during the lifting of the lifting rod 250 by the connecting rod 240, so that the nail clippers on the material taking suction cup 260 can be adjusted to an angle that is easier to be clamped by the clamping jaw cylinder 361 of the feeding assembly 300.
[0051] The connecting block 220 needs to be rotatably connected to the first mounting frame 210 to ensure that the lifting rod 250 can rotate and drive the material taking suction cup 260 to adjust the angle.
[0052] Wherein, the first mounting frame 210 is provided with a blocking cylinder 280, the piston of the blocking cylinder 280 is connected with a blocking plate 281, the blocking plate 281 is close to or away from the discharge port of the feeding assembly 100 under the action of the blocking cylinder 280, so as to clamp and fix the nail clippers for the taking of the taking suction cup 260. By setting the blocking cylinder 280 on the first mounting frame 210, the piston of the blocking cylinder 280 is connected with the blocking plate 281, the blocking plate 281 cooperates with the discharge port of the feeding assembly to clamp and fix the nail clippers, so as to improve the taking stability of the taking suction cup 260.
[0053] Wherein, the feeding assembly 300 comprises a feeding motor 310, a feeding screw 320 and a feeding sliding block 330, the feeding motor 310 is fixed on the mounting platform 410, the feeding screw 320 is erected on the mounting platform 410 and is in transmission connection with the feeding motor 310, the feeding sliding block 330 is sleeved on the feeding screw 320 and is movable in the axial direction of the feeding screw 320, a clamping jaw air cylinder 361 is connected on the feeding sliding block 330, the clamping jaw air cylinder 361 is close to or away from the taking suction cup 260 of the rotating assembly 200 under the driving of the feeding sliding block 330. By adopting the feeding motor 310 to drive the feeding screw 320 to rotate and drive the feeding sliding block 330 to move in the axial direction of the feeding screw 320, the clamping jaw air cylinder 361 connected with the feeding sliding block 330 is close to or away from the taking suction cup 260 of the rotating assembly 200, the nail clippers on the taking suction cup 260 are clamped and taken and are conveyed to the electroplating frame 420 and are hung on the hanging rod 421 of the electroplating frame 420.
[0054] Wherein, the first mounting frame 210 is provided with a blocking cylinder 280, the piston of the blocking cylinder 280 is connected with a blocking plate 281, the blocking plate 281 is close to or away from the discharge port of the feeding assembly 100 under the action of the blocking cylinder 280, so as to clamp and fix the nail clippers for the taking of the taking suction cup 260. By setting the blocking cylinder 280 on the first mounting frame 210, the piston of the blocking cylinder 280 is connected with the blocking plate 281, the blocking plate 281 cooperates with the discharge port of the feeding assembly to clamp and fix the nail clippers, so as to improve the taking stability of the taking suction cup 260.
[0055] Embodiment 2:
[0056] As Figures 6-9As shown, the embodiment provides an upper hanging machine, which comprises a frame 400, a plating frame 420 is arranged on the frame 400, a plurality of hanging rods 421 for hanging nail clippers are arranged on the plating frame 420, the plating frame 420 is rotatable relative to the frame 400, and a lifting assembly 500 for driving the plating frame 420 to lift is arranged on the frame 400.
[0057] Specifically, the plating frame 400 is provided with a plurality of annular mounting rods 427, a plurality of hanging rods 421 are arranged on the outer peripheral wall of each annular mounting rod 427, two hanging rods 421 are used for hanging a nail clipper, and the two hanging rods 421 are in an outer eight shape, and the hanging rods 421 are elastic.
[0058] Specifically, the lifting assembly 500 comprises a lifting motor 510 fixed on the frame 400, the lifting motor 510 is drivingly connected with a lifting lead screw 520, the lifting lead screw 520 is screwed with a lifting sliding block 530, the lifting sliding block 530 is connected with a lifting frame 540, a rotating motor 422 is arranged at the bottom of the bottom plate 424 of the lifting frame 540, the motor shaft of the rotating motor 422 is drivingly connected with a rotating disc 423 penetrating through the bottom plate 424, the plating frame 420 is arranged on the rotating disc 423, the plating frame 420 is driven to rotate by the rotating motor 422, and is lifted along with the lifting frame 540 driven by the lifting motor 510.
[0059] A limiting disc 425 is arranged at the top of the lifting frame 540, which is used for limiting the lifting range of the plating frame 420, a plurality of limiting rods 426 extending towards the direction of the plating frame 420 are arranged on the limiting disc 425, which are used for limiting the swing of the rotation of the plating frame 420.
[0060] An installation platform 410 is arranged on the frame 400, and the upper hanging mechanism of the embodiment is arranged on the installation platform 410.
[0061] And, the second mounting rack 600 is arranged on the mounting platform 410, an auxiliary cylinder 610 is arranged on the second mounting rack 600, a second sliding block 620 is arranged on the piston of the auxiliary cylinder 610, the second sliding block 620 is in sliding fit with a second sliding rail 630 on the second mounting rack 600, a second mounting plate 640 is arranged on the second sliding block 620, and two oppositely arranged clamping pieces 650 are arranged on the second mounting plate 640 and used for clamping the hanging rods 421, the hanging rods 421 are elastic, and the clamping pieces 650 are rotationally connected with the second mounting plate 640. The auxiliary cylinder 610 is used for driving the second sliding block 620 to displace on the second sliding rail 630, so that the two clamping pieces 650 rotationally connected with the second mounting plate 640 are close to or away from the electroplating frame 420, the hanging rods 421 on the electroplating frame 420 are clamped, the nail clippers are hung on the hanging rods 421, the clamping pieces 650 are loosened after the nail clippers are hung, the hanging rods 421 are elastically reset, the nail clippers are pried open, and the nail clippers are hung on the hanging rods 421, so that the nail clippers are prevented from being separated from the hanging rods 421.
[0062] Wherein, a third mounting plate 660 is arranged on the second mounting plate 640, a drive cylinder 670 is arranged on the third mounting plate 660, a pushing block 671 is arranged on the piston of the drive cylinder 670, a first rotating shaft 681 is arranged on the pushing block 671, two first connecting rods 680 are sleeved on the first rotating shaft 681, a second connecting rod 690 is connected to the other end of each first connecting rod 680, the first connecting rod 680 is rotationally connected with the first rotating shaft 681 and the second connecting rod 690 respectively, a second rotating shaft 691 is connected to each second connecting rod 690, and each second rotating shaft 691 is connected with one clamping piece 650. The piston of the drive cylinder 670 is used for driving the pushing block 671 to ascend and descend, so that the first connecting rod 680 swings to drive the second connecting rod 690 to swing in the opposite direction, the second rotating shaft 691 connected with the second rod and the clamping piece 650 on the second rotating shaft 691 are close to each other to clamp the hanging rods 421 or are away from each other to loosen the hanging rods 421.
[0063] And, in actual use, if the nail clippers are not hung far enough in the process that the clamping pieces 650 preliminarily clamp the hanging rods 421 to make the end portions of the two hanging rods 421 close to each other and shrink to be hung on the nail clippers, the nail clippers will be directly popped out in the process that the hanging rods 421 are reset, so the clamping pieces 650 need to advance a distance in the direction close to the electroplating frame 420 after clamping the two hanging rods 421 under the action of the drive cylinder 670, so that the distance that the nail clippers are hung on the hanging rods 421 by the clamping jaw cylinder 361 is lengthened, and the nail clippers are prevented from being popped out in the process that the hanging rods 421 are elastically reset. Or the hanging rods 421 are arranged in a bent shape, so that the nail clippers hung on the hanging rods 421 are clamped by the bending point.
[0064] The utility model provides a kind of nail clippers upper hanging mechanism, relative to prior art, by feeding assembly 100, the nail clippers provided by external feeding mechanism is transported to rotating assembly 200, rotating assembly 200's material taking suction cup 260 receives the nail clippers of feeding assembly 300 and is transferred to the clamp jaw air cylinder 361 on feeding assembly 300, utilize clamp jaw air cylinder 361 to hang and set nail clippers on the electroplating frame 420 that is set on upper hanging machine or the electroplating frame 420 that is set in the outside of upper hanging machine, realize the automatic hanging of nail clippers, improve hanging efficiency, and reduce artificial cost investment.
[0065] According to the disclosure and teaching of the above description, the skilled in the art of the utility model can also change and modify the above-mentioned embodiments. Therefore, the utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes of the utility model should fall within the protection scope of the claims of the utility model. In addition, although some specific terms are used in the specification, these terms are only for convenience of description and do not constitute any limitation on the utility model.
Claims
1. A nail clipper hanging mechanism, characterized by, The device comprises a feeding assembly (100) installed on the upper hanging machine, a rotating assembly (200) and a feeding assembly (300), the feeding port of the feeding assembly (100) is connected with an external feeding mechanism, and the discharge port extends to the position close to the rotating assembly (200) for conveying the nail clippers provided by the feeding mechanism to the rotating assembly (200); The rotating assembly (200) is provided with a material taking suction cup (260), which is relatively movable close to or away from the discharge port of the feeding assembly (100), and the material taking suction cup (260) is relatively rotatable with the feeding assembly (100); The feeding assembly (300) is provided with a clamping jaw air cylinder (361) for receiving and clamping the nail clippers, the clamping jaw air cylinder (361) is relatively movable close to or away from the rotating assembly (200), and the nail clippers are hung on the electroplating rack arranged on or outside the upper hanging machine.
2. The fingernail clip-on attachment mechanism of claim 1, wherein, The feeding assembly (100) comprises a mounting seat (110), a feeding track (120) is arranged on the mounting seat (110), one end of the feeding track (120) extends to the rack (400) of the upper hanging machine to form the feeding port of the feeding assembly (100) and is connected with the external feeding mechanism, and the other end of the feeding track (120) extends to the rotating assembly (200) to form the discharge port of the feeding assembly (100).
3. The fingernail clip-on attachment mechanism of claim 2, wherein, A pressing cylinder body (130) is arranged at the discharge port position of the feeding track (120), a pressing block (140) is arranged on the piston of the pressing cylinder body (130), the pressing block (140) is driven by the pressing cylinder body (130) to enter or separate from the feeding track (120) for pressing the nail clippers in the feeding track (120).
4. A fingernail clippers hanging mechanism according to any one of claims 1-3, characterized in that, The rotating assembly (200) comprises a first mounting rack (210), a connecting block (220) is arranged on the first mounting rack (210), a lifting rod (250) is arranged on the connecting block (220), the bottom of the lifting rod (250) is connected with the material taking suction cup (260), a lifting cylinder body (230) is arranged on the first mounting rack (210), a connecting rod (240) is connected with the piston of the lifting cylinder body (230), the connecting rod (240) is connected with the lifting rod (250), and the lifting rod (250) drives the material taking suction cup (260) to move close to or away from the discharge port of the feeding assembly (100) under the drive of the lifting cylinder body (230).
5. The fingernail clippers on-hanger mechanism according to claim 4, wherein, Two connecting plates (270) are arranged on the first mounting frame (210), a guide groove (271) is arranged on each connecting plate (270), the connecting rod (240) is arranged between the two connecting plates (270), the two ends of the connecting rod (240) are arranged in the guide grooves (271) on the same side, and one end of the connecting rod (240) is connected with the lifting rod (250) by penetrating the guide groove (271), and the guide groove (271) is inclined from the side close to the electroplating frame (420) of the upper hanging machine to the side far away from the electroplating frame (420) in the direction from the top to the bottom.
6. The fingernail clippers on-hanger mechanism according to claim 4, wherein, A blocking cylinder (280) is arranged on the first mounting frame (210), a blocking plate (281) is connected to the piston of the blocking cylinder (280), and the blocking plate (281) is close to or away from the discharge port of the feeding assembly (100) under the action of the blocking cylinder (280), so as to clamp and fix the nail clippers for the material taking suction cup (260) to suck.
7. The fingernail clip-on attachment mechanism according to any one of claims 1 to 3, wherein The feeding assembly (300) comprises a feeding motor (310), a feeding screw rod (320) and a feeding sliding block (330), the feeding screw rod (320) is in transmission connection with the feeding motor (310), the feeding sliding block (330) is sleeved on the feeding screw rod (320) and is movable in the axial direction of the feeding screw rod (320), and the clamping jaw air cylinder (361) is connected to the feeding sliding block (330) and is close to or away from the material taking suction cup (260) of the rotating assembly (200) under the driving of the feeding sliding block (330).
8. The fingernail clippers on-hanger mechanism according to claim 7, wherein, The feeding assembly (300) further comprises a first mounting block (340) and a second mounting block (350), the feeding screw rod (320) is arranged between the first mounting block (340) and the second mounting block (350), a first mounting plate (370) is arranged on the top of the first mounting block (340) and the second mounting block (350), a first sliding rail (380) is arranged on the first mounting plate (370), a first sliding block (390) is arranged on the first sliding rail (380), and a third mounting block (360) is arranged on the first sliding block (390), the third mounting block (360) is connected with the feeding sliding block (330), and the clamping jaw air cylinder (361) is arranged on the third mounting block (360).