Nut grooving equipment

By designing feeding, pushing, picking up and grooving mechanisms, and utilizing rotary drive components and vertical cutters, the problems of complex structure and high cost of existing equipment have been solved, and the multi-directional grooving of nuts has been simplified and the cost reduced.

CN223465653UActive Publication Date: 2025-10-24DONGGUAN MINGJIE AUTOMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422900389.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-10-24
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

Existing nut grooving equipment has a complex structure, arduous production process and high cost.

Method used

A nut grooving device was designed, which adopts a feeding mechanism, a pushing mechanism, a picking mechanism and a grooving mechanism. Multi-directional grooving of nuts is achieved through a rotary drive and a vertically set cutter, which simplifies the structure and reduces production costs.

Benefits of technology

This design simplifies the structure of the nut by cutting grooves in all directions and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223465653U_ABST
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Abstract

The utility model discloses nut grooving equipment, which relates to the technical field of cutting equipment and comprises a frame, a feeding mechanism, a pushing mechanism, a picking mechanism and a grooving mechanism. The feeding mechanism is arranged on the rack and used for feeding nuts. The pushing mechanism is arranged on the rack and used for pushing the nuts to the clamping pieces. The picking mechanism comprises a first support, a driving module, a first rotary driving part and a clamping part, the first support is arranged on the rack, the driving module is arranged on the first support, the first rotary driving part is arranged on the driving module, and the clamping part is arranged on the first rotary driving part; the grooving mechanism comprises a second support, a second rotary driving part and a cutter, the second support is arranged on the rack, the second rotary driving part is arranged on the second support, the cutter is arranged on the second rotary driving part, and the cutter is perpendicular to the clamping part; according to the utility model, the structure is simplified, the production is more convenient, and the production cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cutting equipment technical field, specifically a nut slotting equipment. BACKGROUND

[0002] In the production operation of nut, nut needs to be carried out slotting processing, therefore, the processing equipment for nut slotting appears.

[0003] For example, the nut slotting machine with publication number CN218425999U discloses a workbench and a rack, the rack is arranged on the workbench, a slotting cavity is formed between the rack and the workbench, a nut slotting device is arranged in the slotting cavity, the nut slotting device includes a slotting unit, a clamp unit, a feeding unit and a movable sliding table, the movable sliding table is arranged on the workbench, a movable sliding block is arranged on the movable sliding table, the clamp unit is arranged on the sliding block, the slotting unit includes a transverse slotting unit and a longitudinal slotting unit, the transverse slotting unit and the longitudinal slotting unit are arranged on the two sides of the movable sliding table respectively, the feeding unit is arranged on the workbench, nuts are arranged on the feeding unit, the feeding unit conveys the nuts to the clamp unit, the clamp unit sends the nuts to the transverse slotting unit and the longitudinal slotting unit through the sliding block on the movable sliding table to carry out slotting on the nuts; the nut slotting device is provided with the transverse slotting unit and the longitudinal slotting unit to carry out horizontal direction and vertical direction slotting on the nuts respectively, although the horizontal direction and vertical direction slotting is solved, the structure is complex, the production procedure is heavy, and meanwhile, the overall cost of the device is increased. SUMMARY

[0004] The utility model discloses a nut slotting equipment to solve the technical problem of complex structure, heavy production procedure and high cost.

[0005] In order to solve the above technical problem, the utility model provides the following optimization technical scheme:

[0006] A nut slotting equipment, comprising:

[0007] A rack;

[0008] A feeding mechanism arranged on the rack for feeding nuts;

[0009] A pushing mechanism arranged on the rack for pushing nuts onto a clamping piece;

[0010] A picking mechanism, the picking mechanism comprising a first support, a driving module, a first rotary driving piece and a clamping piece, the first support being arranged on the rack, the driving module being arranged on the first support, the first rotary driving piece being arranged on the driving module, and the clamping piece being arranged on the first rotary driving piece;

[0011] The cutting mechanism comprises a second support, a second rotary driving member and a cutter, the second support is arranged on the frame, the second rotary driving member is arranged on the second support, and the cutter is arranged on the second rotary driving member and is arranged perpendicularly to the clamping member.

[0012] Further, the feeding mechanism comprises a vibrating disc and a discharge pipe, the vibrating disc is arranged on the frame, the discharge pipe is connected to the vibrating disc, and the outlet end of the discharge pipe extends to the pushing mechanism.

[0013] Further, the pushing mechanism comprises a third support, a receiving seat and a moving driving member, the third support is arranged on the frame, the receiving seat and the moving driving member are arranged on the third support, the receiving seat is used for receiving the nuts falling from the feeding mechanism, and the moving driving member pushes the nuts on the receiving seat to the clamping member.

[0014] Further, the third support comprises a first base and a first housing, the first base is arranged on the frame;

[0015] The pushing mechanism further comprises a first lifting assembly, the first lifting assembly comprises a first hand wheel, a lead screw and a lead screw seat, the lead screw is arranged vertically on the first base, the lead screw seat is assembled on the lead screw, the first housing is connected to the lead screw seat, the first hand wheel is provided with a first output shaft, the first output shaft is engaged with the lead screw, the first hand wheel is connected to the lead screw, and the receiving seat and the moving driving member are arranged on the first housing.

[0016] Further, the pushing mechanism further comprises a bearing assembly, the bearing assembly comprises a second base, a second housing and a second hand wheel, the second base is arranged on the first base, the second hand wheel is provided with a second output shaft, and the second driving shaft is screwed through the second base and connected to the second housing.

[0017] Further, the clamping member is a chuck, and the first rotary driving member penetrates through the chuck to drive the nuts in the chuck to rotate.

[0018] Further, the cutter is provided with a cutting head and a blade, the cutting head is arranged on the cutter, the cutter is connected to the second rotary driving member, and the blade is detachably connected to the cutting head.

[0019] Further, the cutting head comprises a main body and a lower cover, the main body is connected to the second rotary driving member, and the lower cover is tightly connected to the main body, and the blade is fixed between the main body and the lower cover.

[0020] Further, the slotting mechanism further comprises a translation assembly, the translation assembly comprising a sliding seat and a third hand wheel, the sliding seat being arranged on the second support, and the third hand wheel being provided with a third output shaft, the third output shaft being screwed through the sliding seat and connected with the cutting head.

[0021] Further, the slotting mechanism further comprises a second lifting assembly, the second lifting assembly comprising a lifting seat and a fourth hand wheel, the lifting seat being connected with the third output shaft, and the fourth hand wheel being provided with a fourth output shaft, the fourth output shaft being screwed through the lifting seat and connected with the cutter.

[0022] The utility model discloses have following beneficial effects relative to prior art:

[0023] The utility model discloses a nut slotting equipment sets up first rotary drive spare in pickup mechanism, and clamping piece is connected on first rotary drive spare, and the cutter is connected on second rotary drive spare, and second rotary drive spare can drive the rotation of cutter to cut the nut on clamping piece, after cutting a slot, first rotary drive spare drives the rotation of nut on clamping piece, so that cutter carries out slotting to next slot, and all slotting of slot is completed by analogy, the utility model discloses only set up one slotting mechanism can realize the slotting of nut each direction, and the structure is simplified, and it is more convenient for production, and production cost is also reduced. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is the structural schematic diagram of the utility model.

[0025] Figure 2 It is the internal structure schematic diagram of the rack of the utility model.

[0026] Figure 3 It is the structural schematic diagram of the feeding mechanism of the utility model.

[0027] Figure 4 It is the structural schematic diagram of the pushing mechanism of the utility model.

[0028] Figure 5 It is the explosion drawing of the pushing mechanism of the utility model.

[0029] Figure 6 It is the structural schematic diagram of the pickup mechanism of the utility model.

[0030] Figure 7 It is the structural schematic diagram of the slotting mechanism of the utility model Figure 1 .

[0031] Figure 8 It is the enlarged view of A of Figure 6 .

[0032] Figure 9The cutting groove mechanism structure schematic diagram of the utility model Figure 2 .

[0033] In the figure: 100, rack; 200, feeding mechanism; 210, vibration disc; 220, discharge pipe; 300, pushing mechanism; 310, third support; 311, first base; 312, first shell; 320, receiving seat; 330, moving driving part; 340, first lifting assembly; 341, first hand wheel; 342, screw rod; 343, screw rod seat; 350, bearing assembly; 351, second base; 352, second shell; 353, second hand wheel; 400, picking mechanism; 410, first support; 420, driving module; 430, first rotary driving part; 440, clamping piece; 500, cutting groove mechanism; 510, second support; 520, second rotary driving part; 530, cutter; 531, cutting head; 532, blade; 533, main body; 534, lower cover; 540, translation assembly; 541, sliding seat; 542, third hand wheel; 550, second lifting assembly; 551, lifting seat; 552, fourth hand wheel; 600, nut. DETAILED DESCRIPTION

[0034] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0035] Reference Figures 1-9The nut 600 slotting device comprises a rack 100, a feeding mechanism 200, a pushing mechanism 300, a picking mechanism 400 and a slotting mechanism 500; the feeding mechanism 200 is arranged on the rack 100 and used for feeding the nut 600; the pushing mechanism 300 is arranged on the rack 100 and used for pushing the nut 600 to a clamping piece 440; the picking mechanism 400 comprises a first support 410, a driving module 420, a first rotary driving piece 430 and the clamping piece 440; the first support 410 is arranged on the rack 100; the driving module 420 is arranged on the first support 410; the first rotary driving piece 430 is arranged on the driving module 420; and the clamping piece 440 is arranged on the first rotary driving piece 430; the slotting mechanism 500 comprises a second support 510, a second rotary driving piece 520 and a cutter 530; the second support 510 is arranged on the rack 100; the second rotary driving piece 520 is arranged on the second support 510; and the cutter 530 is arranged on the second rotary driving piece 520; and the cutter 530 is arranged perpendicularly to the clamping piece 440.

[0036] In the technical scheme, the nut 600 is placed on the feeding mechanism 200, the feeding mechanism 200 transmits the nut 600 to the pushing mechanism 300, the pushing mechanism 300 pushes the nut 600 to the clamping piece 440 of the picking mechanism 400, the driving module 420 drives the clamping piece 440 to move to a position close to the cutter 530, at this time, the second rotary driving piece 520 drives the cutter 530 to rotate, the cutter 530 slots the nut 600 on the clamping piece 440, after the first slot is slotted, the first rotary driving piece 430 drives the nut 600 on the clamping piece 440 to rotate, the cutter 530 slots the second slot of the nut 600, and the slotting of all slots is completed in this way.

[0037] It should be noted that the rotation angle of the first rotary driving piece 430 can be set, specifically, the number of slots required for one nut 600 and the slotting position are set, that is, the nut 600 can be slotted in the transverse direction and the longitudinal direction, and the specific direction can be controlled by the first rotary driving piece 430.

[0038] It should be noted that the first rotary driving piece 430 is a motor and a conveyor belt, the second rotary driving piece 520 is a motor, and the driving module 420 is a motor and a screw rod 342 structure.

[0039] In the embodiment, the feeding mechanism 200 comprises a vibrating disc 210 and a discharge pipe 220, the vibrating disc 210 is arranged on the frame 100, the discharge pipe 220 is connected to the vibrating disc 210, and the outlet end of the discharge pipe 220 extends to the pushing mechanism 300. A plurality of nuts 600 are placed on the vibrating disc 210, the vibrating disc 210 vibrates to sequentially and orderly output the nuts 600 from the discharge pipe 220, and then the nuts 600 fall into the receiving seat 320 of the pushing mechanism 300 from the outlet of the discharge pipe.

[0040] In the embodiment, the pushing mechanism 300 comprises a third support 310, a receiving seat 320 and a moving drive 330, the third support 310 is arranged on the frame 100, the receiving seat 320 and the moving drive 330 are arranged on the third support 310, the receiving seat 320 is used for receiving the nuts 600 falling from the feeding mechanism 200, and the moving drive 330 pushes the nuts 600 on the receiving seat 320 to the clamping member 440. The nuts 600 fall into the receiving seat 320 from the discharge pipe 220, and the moving drive 330 pushes the nuts 600 to move to the clamping member 440.

[0041] It is additionally explained that the moving drive 330 is a pneumatic cylinder.

[0042] In the embodiment, the third support 310 comprises a first base 311 and a first housing 312, the first base 311 is arranged on the frame 100, the pushing mechanism 300 further comprises a first lifting assembly 340, the first lifting assembly 340 comprises a first hand wheel 341, a lead screw 342 and a lead screw seat 343, the lead screw 342 is vertically arranged on the first base 311, the lead screw seat 343 is assembled on the lead screw 342, the first housing 312 is connected to the lead screw seat 343, the first hand wheel 341 is provided with a first output shaft, the first output shaft is engaged with the lead screw 342, the first hand wheel 341 is connected to the lead screw 342, and the receiving seat 320 and the moving drive 330 are arranged on the first housing 312. The first hand wheel 341 is rotated to drive the first housing 312 to rise and fall through the lead screw seat 343, so that the height of the receiving seat 320 and the moving drive 330 is adjusted, the height of the first housing 312 is adjusted according to the size of the nuts 600, so that the moving drive 330 can accurately push the nuts 600.

[0043] In the embodiment, the pushing mechanism 300 further comprises a bearing assembly 350, the bearing assembly 350 comprises a second base 351, a second housing 352 and a second hand wheel 353, the second base 351 is arranged on the first base 311, the second hand wheel 353 is provided with a second output shaft, the second driving shaft is screwed through the second base 351 and connected with the second housing 352. The outlet of the discharge pipe 220 is arranged above the receiving seat 320 to ensure that the nut 600 falls from top to bottom on the receiving seat 320, so that the outlet end of the discharge pipe 220 is provided with the second housing 352, and the second hand wheel 353 is rotated, the second driving shaft drives the second housing 352 to move to adjust the position of the second housing 352, which can better pad the discharge pipe 220.

[0044] In the embodiment, the clamping piece 440 is a chuck, and the first rotary driving member 430 passes through the chuck to drive the nut 600 in the chuck to rotate. Specifically, the chuck is provided with a slot for accommodating the nut 600, the output shaft of the first rotary driving member 430 extends into the slot, and the output shaft of the first rotary driving member 430 can tightly fit and clamp the nut 600, so as to drive the nut 600 to rotate.

[0045] In the embodiment, the cutter 530 is provided with a cutting head 531 and a blade 532, the cutting head 531 is arranged on the cutter 530, the cutter 530 is connected with the second rotary driving member 520, and the blade 532 is detachably connected on the cutting head 531. In work, the second rotary driving member 520 drives the cutting head 531 to rotate, and the blade 532 arranged on the cutting head 531 also rotates, so as to cut the nut 600.

[0046] In the embodiment, the cutting head 531 comprises a main body 533 and a lower cover 534, the main body 533 is connected with the second rotary driving member 520, the lower cover 534 is tightly connected on the main body 533, and the blade 532 is fixed between the main body 533 and the lower cover 534. Specifically, the lower cover 534 is removed, the blade 532 is sleeved on the main body 533, and then the lower cover 534 is tightly connected on the main body 533, so as to fix the blade 532 on the cutting head 531. The detachable connection mode of the main body 533 and the lower cover 534 has multiple choices, and detachable connection is achieved, for example, buckle connection.

[0047] In the embodiment, the slotting mechanism 500 further comprises a translation assembly 540, the translation assembly 540 comprises a sliding seat 541 and a third hand wheel 542, the sliding seat 541 is arranged on the second support 510, the third hand wheel 542 is provided with a third output shaft, the third output shaft is screwed through the sliding seat 541 and is connected with the cutting head 531. By rotating the third hand wheel 542, the third output shaft drives the lifting assembly and the cutting head 531 on the lifting assembly to move, so as to adjust the distance between the cutting head 531 and the material picking mechanism 400, thereby adjusting the depth of the slotting of the blade 532.

[0048] In the embodiment, the slotting mechanism 500 further comprises a second lifting assembly 550, the second lifting assembly 550 comprises a lifting seat 551 and a fourth hand wheel 552, the lifting seat 551 is connected with the third output shaft, the fourth hand wheel 552 is provided with a fourth output shaft, the fourth output shaft is screwed through the lifting seat 551 and is connected with the cutter 530. By rotating the fourth hand wheel 552, the fourth output shaft drives the cutter 530 to lift to adjust the height of the cutter 530, so as to adapt to the position of the nut 600 of different sizes.

[0049] The above description is only a specific embodiment of the present application, so that those skilled in the art can understand or implement the present application. Various modifications of these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to these embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features applied herein.

Claims

1. A nut slotting apparatus characterized by, The utility model relates to a nut feeding device, including: A rack; A feeding mechanism arranged on the rack for feeding nuts; A pushing mechanism arranged on the rack for pushing nuts onto a clamping piece; A picking mechanism including a first support, a driving module, a first rotary drive and a clamping piece, the first support being arranged on the rack, the driving module being arranged on the first support, the first rotary drive being arranged on the driving module, and the clamping piece being arranged on the first rotary drive; A slot cutting mechanism including a second support, a second rotary drive and a cutter, the second support being arranged on the rack, the second rotary drive being arranged on the second support, and the cutter being arranged on the second rotary drive, the cutter being arranged perpendicular to the clamping piece.

2. A nut slotting apparatus according to claim 1, wherein, The feeding mechanism includes a vibrating disc and a discharge pipe, the vibrating disc being arranged on the rack, and the discharge pipe being connected to the vibrating disc, the outlet end of the discharge pipe extending to the pushing mechanism.

3. A nut slotting apparatus according to claim 1, wherein The pushing mechanism includes a third support, a receiving seat and a moving drive, the third support being arranged on the rack, the receiving seat and the moving drive both being arranged on the third support, the receiving seat being used to receive nuts falling from the feeding mechanism, and the moving drive pushing the nuts on the receiving seat onto the clamping piece.

4. A nut slotting apparatus according to claim 3, wherein The third support includes a first base and a first housing, the first base being arranged on the rack; The pushing mechanism further includes a first lifting assembly, the first lifting assembly including a first hand wheel, a lead screw and a lead screw seat, the lead screw being arranged vertically on the first base, the lead screw seat being assembled on the lead screw, the first housing being connected to the lead screw seat, the first hand wheel being provided with a first output shaft, the first output shaft being engaged with the lead screw, the first hand wheel being connected to the lead screw, and the receiving seat and the moving drive both being arranged on the first housing.

5. A nut slotting apparatus according to claim 4, wherein The pushing mechanism further includes a bearing assembly, the bearing assembly including a second base, a second housing and a second hand wheel, the second base being arranged on the first base, the second hand wheel being provided with a second output shaft, and the second driving shaft being screwed through the second base and connected to the second housing.

6. The nut slotting apparatus of claim 1, wherein The clamping piece is a chuck, the first rotary drive penetrating through the chuck for driving the nuts in the chuck to rotate.

7. The nut slotting apparatus of claim 1, wherein The cutter is provided with a cutting head and a blade, the cutting head being arranged on the cutter, the cutter being connected to the second rotary drive, and the blade being detachably connected to the cutting head.

8. A nut slotting apparatus according to claim 7, wherein, The cutting head includes a main body and a lower cover, the main body being connected to the second rotary drive, and the lower cover being tightly connected to the main body, the blade being fixed between the main body and the lower cover.

9. The nut slotting apparatus of claim 1, wherein, The slot cutting mechanism further includes a translation assembly, the translation assembly including a sliding seat and a third hand wheel, the sliding seat being arranged on the second support, the third hand wheel being provided with a third output shaft, and the third output shaft being screwed through the sliding seat and connected to the cutting head.

10. A nut slotting apparatus according to claim 9, wherein, The slotting mechanism further comprises a second lifting assembly, the second lifting assembly comprising a lifting seat connected to the third output shaft and a fourth hand wheel provided with a fourth output shaft screwing through the lifting seat and connected to the cutter.

Citation Information

Patent Citations

  • Nut grooving machine

    CN218425999U