Turmeric rotary slicing processing device with automatic feeding function

The double-headed screw structure and electromagnet push block design with sliding connection between the limit plate and the slide groove solves the problem of poor limiting during turmeric slicing, realizes the automatic feeding and slicing stability of turmeric, and improves the slicing uniformity and efficiency.

CN223326485UActive Publication Date: 2025-09-12HUGE-HUNTER AGRI & PROD CO LTD
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Patent Information

Application Number
CN202422663656.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-09-12
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

During the slicing process, turmeric slices are of different sizes, making it difficult to effectively limit the position, resulting in uneven cutting.

Method used

A double-headed screw structure with a limiting plate and a slide slidably connected is adopted, and a servo motor and a rotating screw are used to realize automatic feeding and limiting of turmeric. The remaining turmeric is automatically pushed in through an electromagnet pushing block structure, and slicing is performed in combination with a rotating slicing component.

Benefits of technology

The stability and uniformity of turmeric slices are achieved, and the slicing efficiency and automation level are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a turmeric rotary slicing processing device with an automatic feeding function, which solves the problem that turmeric is not easy to limit during turmeric slicing, so that the turmeric slicing stability is poor, and comprises a bottom frame, a support plate is mounted at the top end of the bottom frame, and a material box is mounted at one end of the bottom frame; a rotary slicing assembly is installed at the end, close to the material box, of the supporting plate, a turmeric feeding assembly is installed at the top end of the supporting plate and comprises two limiting plates symmetrically arranged above the supporting plate, a push plate is arranged between the two limiting plates, an end push-out assembly is installed on the push plate, and a sliding groove is formed in the supporting plate; the two limiting plates are slidably connected with the sliding groove, and a double-thread screw is rotationally installed in the sliding groove. According to the turmeric slicing device, in the working process, the two limiting plates are slidably connected with the sliding grooves, and after the double-thread screw rotates, the two limiting plates are driven to be close to each other, so that the two limiting plates limit turmeric, and the slicing stability is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of turmeric rotary slicing processing, in particular to a turmeric rotary slicing processing device with an automatic feeding function. Background Art

[0002] Turmeric has a well-developed rhizome, forming clusters with numerous branches and being oval or cylindrical in shape. Current turmeric processing methods typically involve removing fine roots, washing, slicing while fresh, and sun-drying. During slicing, the turmeric is passed through a cutting device equipped with a rotating cutter. The turmeric moves downward within the channel and is cut by the rotating cutter, which continuously slices the turmeric before feeding. However, this still presents the following drawbacks:

[0003] Since turmeric is of different sizes, it is difficult to limit the position of the turmeric when slicing it. As a result, the turmeric may deviate under the action of lateral force during cutting, resulting in poor uniformity in the cutting of the turmeric. Utility Model Content

[0004] In view of the above situation, in order to overcome the defects of the prior art, the utility model provides a turmeric rotary slicing processing device with an automatic feeding function, which effectively solves the problem that it is difficult to limit the turmeric when slicing the turmeric, resulting in poor stability of the turmeric slices.

[0005] To achieve the above object, the utility model provides the following technical solution: a turmeric rotary slicing processing device with an automatic feeding function, comprising a base frame, a support plate mounted on the top of the base frame, a material box mounted on one end of the base frame, a rotary slicing assembly mounted on the end of the support plate close to the material box, and a turmeric feeding assembly mounted on the top of the support plate;

[0006] The turmeric feeding assembly includes two limit plates symmetrically arranged above the support plate, a push plate is provided between the two limit plates, an end push-out assembly is installed on the push plate, a slide groove is provided on the support plate, the two limit plates are slidingly connected to the slide groove, a double-headed screw is installed for rotation inside the slide groove, the two slide grooves are respectively threadedly connected to the thread grooves in opposite directions on the double-headed screw, one end of the double-headed screw is fixedly connected to the output shaft of the servo motor, and the servo motor is fixedly installed on one side of the support plate.

[0007] Preferably, a connecting groove is opened on the limit plate away from the servo motor, a sliding plate is installed on the side of the push plate away from the servo motor, and a sliding frame is fixedly installed on the side of the support plate away from the servo motor, and the sliding plate passes through the connecting groove and is slidably connected to the sliding frame.

[0008] Preferably, a rotating screw is rotatably installed inside the sliding frame, the rotating screw is threadedly connected to the sliding plate, one end of the rotating screw is fixedly connected to the output shaft of the rotating motor, and the rotating motor is fixedly installed on the sliding frame.

[0009] Preferably, the end ejection assembly includes a fixed cylinder fixedly mounted on the side of the push plate away from the material box, a movable block is movably mounted inside the fixed cylinder, a push rod is mounted on the side of the movable block close to the push plate, one end of the push rod passes through the side of the push plate away from the fixed cylinder, and a push block is mounted on one end of the push rod.

[0010] Preferably, a return spring is fixedly installed on the side of the movable block close to the push plate, a magnetic block is installed on the movable block, an electromagnet is installed on one end of the fixed cylinder, a movable conductive rod is installed on the sliding plate, and fixed contacts are installed on the upper and lower side walls of the end of the connecting groove close to the material box. When the two ends of the movable conductive rod are respectively in contact with the two fixed contacts, the electromagnet is energized to generate a repulsive force on the magnetic block.

[0011] Preferably, the rotary slicing assembly includes a bottom groove opened at the bottom end of the support plate, a rotating shaft is rotatably installed at one end of the support plate close to the material box, one end of the rotating shaft passes through the inside of the bottom groove, a slicing knife is installed at equal angles on the outside of the rotating shaft, a driven gear is installed at one end of the rotating shaft, a driving gear is provided below the driven gear, the driving gear is fixedly connected to the output shaft of the driving motor, the driving motor is fixedly installed on the mounting bracket, and the mounting bracket is fixedly installed on the inner top wall of the bottom groove.

[0012] Compared with the prior art, the beneficial effects of the present invention are:

[0013] During operation, the two limit plates are slidably connected to the slide groove. After the double-headed screw rotates, the two limit plates are driven to move closer to each other, so that the two limit plates limit the turmeric. Then the rotating screw is controlled to rotate, driving the push plate to move toward the material box, so that the push plate pushes the turmeric, so that the turmeric can be automatically fed and conveniently sliced.

[0014] During operation, when the push plate is moved to the top of the support plate close to one end of the material box, there is residual turmeric left above the support plate. At this time, when the end of the moving conductive rod contacts the fixed contact, the electromagnet generates magnetic force, thereby generating a repulsive force on the magnetic block, causing the push block to move toward one side of the material box, pushing the remaining turmeric into the interior of the material box. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention.

[0016] In the attached figure:

[0017] Figure 1 This is a schematic structural diagram of a turmeric rotary slicing processing device with an automatic feeding function according to the present invention;

[0018] Figure 2 This is a schematic structural diagram of the rotary slicer assembly of the present utility model;

[0019] Figure 3 This is a schematic structural diagram of the turmeric feeding assembly of the present utility model;

[0020] Figure 4 This is a schematic diagram of the sliding frame structure of the utility model;

[0021] Figure 5 This is a schematic diagram of the push plate structure of the utility model;

[0022] Figure 6 This is a schematic diagram of the end push-out assembly structure of the present utility model.

[0023] In the figure: 1. Base frame; 2. Material box; 3. Support plate; 4. Rotary slicing assembly; 401. Bottom groove; 402. Rotating shaft; 403. Slicing knife; 404. Driven gear; 405. Driving gear; 406. Driving motor; 5. Turmeric feeding assembly; 501. Limiting plate; 502. Slide groove; 503. Double-headed screw; 504. Servo motor; 505. Connecting groove; 506. Push plate; 507. Sliding plate; 508. Sliding frame; 509. Rotating screw; 510. Rotating motor; 6. End ejection assembly; 601. Fixed cylinder; 602. Movable block; 603. Push rod; 604. Push block; 605. Reset spring; 606. Magnetic block; 607. Electromagnet; 608. Moving conductive rod; 609. Fixed contact. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments; based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0025] Depend on Figure 1-6 The utility model relates to a turmeric rotary slicing processing device with an automatic feeding function, comprising a base frame 1, a support plate 3 is installed on the top of the base frame 1, a material box 2 is installed on one end of the base frame 1, a rotary slicing assembly 4 is installed on the end of the support plate 3 close to the material box 2, and a turmeric feeding assembly 5 is installed on the top of the support plate 3;

[0026] The turmeric feeding component 5 includes two limit plates 501 symmetrically arranged above the support plate 3, a push plate 506 is provided between the two limit plates 501, an end push-out component 6 is installed on the push plate 506, a slide groove 502 is provided on the support plate 3, the two limit plates 501 are slidably connected to the slide groove 502, a double-headed screw 503 is installed for rotation inside the slide groove 502, the two slide grooves 502 are respectively threadedly connected to the thread grooves in opposite directions provided on the double-headed screw 503, one end of the double-headed screw 503 is fixedly connected to the output shaft of the servo motor 504, the servo motor 504 is fixedly installed on one side of the support plate 3, a connecting groove 505 is provided on the limit plate 501 away from the side of the servo motor 504, a sliding plate 507 is installed on the side of the push plate 506 away from the servo motor 504, and the support plate 3 is away from A sliding frame 508 is fixedly installed on one side of the servo motor 504, and the sliding plate 507 is slidably connected to the sliding frame 508 through the connecting groove 505. A rotating screw 509 is rotatably installed inside the sliding frame 508, and the rotating screw 509 is threadedly connected to the sliding plate 507. One end of the rotating screw 509 is fixedly connected to the output shaft of the rotating motor 510, and the rotating motor 510 is fixedly installed on the sliding frame 508. The two limit plates 501 are slidably connected to the slide groove 502. After the double-headed screw 503 rotates, the two limit plates 501 are driven to approach each other, so that the two limit plates 501 limit the turmeric, and then the rotating screw 509 is controlled to rotate, driving the push plate 506 to move toward the material box 2, so that the push plate 506 pushes the turmeric, so that the turmeric can be automatically fed and sliced.

[0027] The end ejection assembly 6 includes a fixed cylinder 601 fixedly mounted on the side of the push plate 506 away from the material box 2, a movable block 602 is movably mounted inside the fixed cylinder 601, a push rod 603 is mounted on the side of the movable block 602 close to the push plate 506, one end of the push rod 603 passes through the side of the push plate 506 away from the fixed cylinder 601, a push block 604 is mounted on one end of the push rod 603, a return spring 605 is fixedly mounted on the side of the movable block 602 close to the push plate 506, a magnetic block 606 is mounted on the movable block 602, an electromagnet 607 is mounted on one end of the fixed cylinder 601, and a movable conductive Rod 608, the connecting groove 505 is close to the material box 2 and the upper and lower side walls are installed with fixed contacts 609. When the two ends of the movable conductive rod 608 are respectively in contact with the two fixed contacts 609, the electromagnet 607 is energized to generate a repulsive force on the magnetic block 606. When the push plate 506 moves to the top of the support plate 3 close to one end of the material box 2, there is residual turmeric left above the support plate 3. At this time, when the end of the movable conductive rod 608 is in contact with the fixed contact 609, the electromagnet 607 generates a magnetic force, thereby generating a repulsive force on the magnetic block 606, causing the push block 604 to move toward the side of the material box 2, pushing the remaining turmeric into the interior of the material box 2.

[0028] The rotary slicing assembly 4 includes a bottom groove 401 opened at the bottom end of the support plate 3, and a rotating shaft 402 is rotatably installed at one end of the support plate 3 close to the material box 2. One end of the rotating shaft 402 passes through the inside of the bottom groove 401, and a slicing knife 403 is installed at an equal angle on the outside of the rotating shaft 402. A driven gear 404 is installed at one end of the rotating shaft 402, and a driving gear 405 is provided below the driven gear 404. The driving gear 405 is fixedly connected to the output shaft of the driving motor 406. The driving motor 406 is fixedly installed on the mounting frame, and the mounting frame is fixedly installed on the inner top wall of the bottom groove 401.

[0029] Working principle: When working, first place the turmeric to be sliced ​​between the two limit plates 501, then turn on the servo motor 504, causing the double-headed screw 503 to rotate, so that the two limit plates 501 approach each other, so that the two limit plates 501 limit the turmeric, then turn on the drive motor 406, causing the driving gear 405 to rotate. Since the driving gear 405 is engaged with the driven gear 404, the rotating shaft 402 is driven to rotate, thereby driving the slicing knife 403 to rotate;

[0030] The rotating motor 510 is turned on to rotate the rotating screw 509. Since the sliding plate 507 is threadedly connected to the rotating screw 509, the push plate 506 is driven to move toward the side of the material box 2. The push plate 506 continuously pushes the turmeric toward the side of the material box 2. When the turmeric passes through the slicing knife 403, the slicing knife 403 continuously slices the turmeric when the rotating shaft 402 rotates, facilitating automatic feeding. The sliced ​​turmeric falls into the interior of the material box 2 for collection.

[0031] When the push plate 506 moves to one end of the support plate 3 close to the material box 2, the two ends of the movable conductive rod 608 on the sliding plate 507 respectively contact the two fixed contacts 609 on the connecting groove 505, so that the electromagnet 607 is energized to generate a repulsive force on the magnetic block 606. Under the action of the repulsive force, the push block 604 is pushed toward the side of the material box 2, thereby pushing all the remaining turmeric into the interior of the material box 2, making feeding easier;

[0032] After a piece of turmeric is sliced, the rotating motor 510 is controlled to supply a directional current, causing the rotating screw 509 to rotate in the opposite direction, thereby driving the push plate 506 to move back. After the movable conductive rod 608 is disengaged from the fixed contact 609, the electromagnet 607 is de-energized, and the push block 604 moves back under the elastic force of the return spring 605.

Claims

1. A turmeric rotary slicing device with an automatic feeding function, comprising a base frame (1), characterized in that: A support plate (3) is installed at the top of the base frame (1), a material box (2) is installed at one end of the base frame (1), a rotary slicer assembly (4) is installed at one end of the support plate (3) close to the material box (2), and a turmeric feeding assembly (5) is installed at the top of the support plate (3); The turmeric feeding assembly (5) comprises two limiting plates (501) symmetrically arranged above the support plate (3), a push plate (506) is provided between the two limiting plates (501), an end pushing assembly (6) is installed on the push plate (506), a chute (502) is provided on the support plate (3), the two limiting plates (501) are slidably connected to the chute (502), a double-headed screw (503) is rotatably installed inside the chute (502), the two chute (502) are respectively threadedly connected to the thread grooves in opposite directions provided on the double-headed screw (503), one end of the double-headed screw (503) is fixedly connected to the output shaft of the servo motor (504), and the servo motor (504) is fixedly installed on one side of the support plate (3).

2. The turmeric rotary slicing device with automatic feeding function according to claim 1, characterized in that: A connecting groove (505) is provided on the limiting plate (501) at a side away from the servo motor (504); a sliding plate (507) is installed on the side of the push plate (506) away from the servo motor (504); a sliding frame (508) is fixedly installed on the side of the support plate (3) away from the servo motor (504); and the sliding plate (507) passes through the connecting groove (505) and is slidably connected to the sliding frame (508).

3. The turmeric rotary slicing device with automatic feeding function according to claim 2, characterized in that: A rotating screw (509) is rotatably mounted inside the sliding frame (508), the rotating screw (509) being threadedly connected to the sliding plate (507), one end of the rotating screw (509) being fixedly connected to the output shaft of the rotating motor (510), and the rotating motor (510) being fixedly mounted on the sliding frame (508).

4. The turmeric rotary slicing device with automatic feeding function according to claim 1, characterized in that: The end ejection assembly (6) comprises a fixed cylinder (601) fixedly mounted on a side of the push plate (506) away from the material box (2); a movable block (602) is movably mounted inside the fixed cylinder (601); a push rod (603) is mounted on a side of the movable block (602) close to the push plate (506); one end of the push rod (603) passes through a side of the push plate (506) away from the fixed cylinder (601); and a push block (604) is mounted on one end of the push rod (603).

5. The turmeric rotary slicing device with automatic feeding function according to claim 4, characterized in that: A return spring (605) is fixedly installed on one side of the movable block (602) close to the push plate (506), a magnetic block (606) is installed on the movable block (602), an electromagnet (607) is installed on one end of the fixed cylinder (601), a movable conductive rod (608) is installed on the sliding plate (507), and fixed contacts (609) are installed on the upper and lower side walls of one end of the connecting groove (505) close to the material box (2). When the two ends of the movable conductive rod (608) respectively contact the two fixed contacts (609), the electromagnet (607) is energized to generate a repulsive force on the magnetic block (606).

6. The turmeric rotary slicing device with automatic feeding function according to claim 1, characterized in that: The rotary slicing assembly (4) comprises a bottom groove (401) provided at the bottom end of the support plate (3); a rotating shaft (402) is rotatably mounted on one end of the support plate (3) close to the material box (2); one end of the rotating shaft (402) passes through the interior of the bottom groove (401); a slicing knife (403) is mounted at an equal angle on the outer side of the rotating shaft (402); a driven gear (404) is mounted on one end of the rotating shaft (402); a driving gear (405) is provided below the driven gear (404); the driving gear (405) is fixedly connected to the output shaft of a driving motor (406); the driving motor (406) is fixedly mounted on a mounting frame; and the mounting frame is fixedly mounted on the inner top wall of the bottom groove (401).