Rotating disc type slicing machine

By designing the conveying and slicing components of the rotary slicer, the problems of uneven thickness and low efficiency of Chinese herbal medicine slices were solved, realizing automated slicing and improving the slicing quality and efficiency of Chinese herbal medicine slices.

CN223933733UActive Publication Date: 2026-02-24CHENGDU JIANKANG PHARM CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520670756.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2026-02-24
Estimated Expiration
2035-04-10

Smart Images

  • Figure CN223933733U_ABST
    Figure CN223933733U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of slicing machines, and particularly relates to a rotating disc type slicing machine which comprises a supporting frame. The mounting plate is arranged at the top of the supporting frame, a containing table is arranged on one side of the mounting plate, a slicing box and a mounting frame are arranged at the top of the mounting plate, and a mounting box is arranged between the containing table and the slicing box; the conveying assembly is arranged in the containing table and the mounting box; the driving assembly is arranged on the outer side of the mounting box; and the slicing assembly is arranged on the slicing box and the mounting frame and is used for solving the problems that due to the adoption of manual slicing, the thicknesses of the sliced traditional Chinese medicine decoction pieces are not uniform, and the slicing efficiency is not high.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of slicing machine technology, specifically relating to a rotary slicer. Background Technology

[0002] Traditional Chinese medicine (TCM) decoction pieces are TCM herbs that have been processed according to TCM theory and processing methods, and can be directly used in TCM clinical practice. The process involves cutting the cleaned herbs into slices of a certain shape and size, and then heating the slices through methods such as stir-frying, roasting, calcining, steaming, and boiling to change or enhance the medicinal properties, reduce toxicity, and improve efficacy.

[0003] However, in many cases, manual slicing is still used when producing Chinese medicinal herbs. Due to differences in individual worker skill, manual slicing can easily lead to uneven thickness of the sliced ​​herbs, and the slicing efficiency is also not high. Utility Model Content

[0004] In view of the problems mentioned in the background art above, this utility model provides a rotary slicer to solve the problem that manual slicing easily leads to uneven thickness of the sliced ​​Chinese herbal medicine slices and low slicing efficiency.

[0005] The technical solution adopted in this utility model is as follows:

[0006] A rotary slicer, comprising:

[0007] Support frame;

[0008] The mounting plate is set on the top of the support frame. A holding platform is set on one side of the mounting plate. A slicing box and a mounting rack are set on the top of the mounting plate. The mounting box is set between the holding platform and the slicing box.

[0009] A conveying assembly, which is disposed within the holding platform and the mounting box;

[0010] A drive assembly, wherein the drive assembly is disposed on the outside of the mounting box;

[0011] A slicing assembly is disposed on a slicing box and a mounting bracket.

[0012] Based on the above technical solution, the present invention has made the following improvements:

[0013] Furthermore, the bottom of the holding platform is provided with an installation groove, and the installation groove, the inner cavity of the installation box, and the inner cavity of the slice box are interconnected;

[0014] The conveying assembly includes a lower conveying component and an upper conveying component. The lower conveying component includes a first roller and a second roller. The first roller is located at the end of the mounting slot in the holding platform, and the second roller is located at the lower part of the cavity near the end of the mounting box near the slice box. The first roller is connected to the second roller via a lower conveyor belt.

[0015] The upper conveying component includes a third roller and a fourth roller. The third roller is located at the upper part of the cavity opening of the mounting box near the holding platform, and the fourth roller is located at the upper part of the cavity opening of the mounting box near the slicing box. The third roller is connected to the fourth roller via an upper conveyor belt.

[0016] Furthermore, the drive assembly includes a rotating shaft and a support. There are two rotating shafts, both of which are located on the same outer side wall of the mounting box. The two rotating shafts are parallel to the second roller shaft and the fourth roller shaft. Synchronous pulleys are provided on the second roller shaft, the fourth roller shaft, and the two rotating shafts. A synchronous belt is provided between the synchronous pulleys on the second roller shaft and the corresponding rotating shaft on its side, and a synchronous belt is also provided between the synchronous pulleys on the fourth roller shaft and the corresponding rotating shaft on its side. The two synchronous belts are arranged in parallel.

[0017] Both of the rotating shafts are equipped with gears that mesh with each other; one of the rotating shafts is equipped with a second pulley; the support is mounted on the mounting plate; the support is equipped with a first motor; the drive shaft of the first motor is equipped with a first pulley; the first pulley is connected to the second pulley via a transmission belt.

[0018] Furthermore, the slicing assembly includes a second motor and a blade disc. The second motor is mounted on a mounting bracket, and the blade disc is mounted on the drive shaft of the second motor and located in the inner cavity of the slicing box. The blade disc has multiple mounting holes arranged in an array, and multiple forks are arranged on the side wall of the blade disc facing the second motor. Each fork is located beside a corresponding mounting hole, and a blade is mounted on each fork by screws. Each blade is located in a corresponding mounting hole, and the oblique cutting edge of the blade forms a cut with the side wall of the corresponding mounting hole.

[0019] Furthermore, a discharge pipe is provided at an angle on the upper part of the slicing box, a cover is provided on the upper part of the slicing box, and a buckle plate is provided on the top of the mounting box.

[0020] The beneficial effects of this utility model are:

[0021] 1. By setting up a combination of conveying components and driving components, the driving component can drive the conveying component to operate, so that during the operation of the conveying component, Chinese medicinal materials can be put into the conveying component and continuously conveyed into the slicing box, thus achieving the purpose of automatic feeding.

[0022] 2. Through the slicing component, as the Chinese medicinal materials are continuously fed into the slicing box, the slicing component can slice the medicinal materials that enter the slicing box, thereby achieving the purpose of slicing the medicinal materials and improving slicing efficiency. Attached Figure Description

[0023] This utility model can be further illustrated by the non-limiting embodiments given in the accompanying drawings;

[0024] Figure 1 This is a structural diagram of a rotary slicer according to the present invention;

[0025] Figure 2 This is a schematic diagram of a rotary slicer according to the present invention;

[0026] Figure 3 This is an internal structural diagram of a rotary slicer according to the present invention;

[0027] Figure 4 This is a cross-sectional view of a rotary slicer according to the present invention;

[0028] Figure 5 This is a structural diagram of the blade disc in a rotary slicer according to the present invention.

[0029] The attached diagram is labeled as follows:

[0030] 1. Support frame; 2. Mounting plate; 201. Container platform; 202. Mounting slot; 203. Mounting box; 204. Buckle plate; 205. Slicing box; 206. Discharge pipe; 207. Cover; 208. Mounting frame; 301. First roller shaft; 302. Second roller shaft; 303. Lower conveyor belt; 304. Third roller shaft; 305. Fourth roller shaft; 306. Upper conveyor belt; 401. Rotating shaft; 402. Support; 403. Motor 1; 404. Pulley 1; 405. Transmission belt; 406. Pulley 2; 407. Gear; 408. Synchronous pulley; 409. Synchronous belt; 5. Motor 2; 601. Cutter head; 602. Mounting hole; 603. Fork; 604. Blade; 605. Screw; 606. Cutting edge. Detailed Implementation

[0031] like Figures 1-5 As shown, a rotary slicer includes:

[0032] Support frame 1 and mounting plate 2. Mounting plate 2 is set on the top of support frame 1. A holding platform 201 is set on one side of mounting plate 2. Chinese medicinal materials to be cut can be placed on the holding platform 201.

[0033] The top of the mounting plate 2 is provided with a slicing box 205 and a mounting frame 208. A mounting box 203 is provided between the holding platform 201 and the slicing box 205. A conveying assembly is disposed within the holding platform 201 and the mounting box 203. A mounting groove 202 is provided at the bottom of the holding platform 201. The mounting groove 202, the inner cavity of the mounting box 203, and the inner cavity of the slicing box 205 are interconnected. The conveying assembly includes a lower conveying component and an upper conveying component. The lower conveying component includes a first roller 301 and a second roller 302. The first roller 301 is located at the end of the mounting groove 202 in the holding platform 201, and the second roller 302 is located at the lower part of the cavity opening of the mounting box 203 near the end of the slicing box 205. The first roller 301 is connected to the second roller 302 via a lower conveyor belt 303. The upper conveying component includes a third roller. The third roller 304 is located at the upper part of the cavity opening of the mounting box 203 near the holding platform 201, and the fourth roller 305 is located at the upper part of the cavity opening of the mounting box 203 near the slicing box 205. The third roller 304 is connected to the fourth roller 305 via the upper conveyor belt 306. The Chinese medicinal materials to be cut can be placed between the lower conveyor belt 303 and the upper conveyor belt 306. When the lower conveyor belt 303 and the upper conveyor belt 306 move relative to each other, the Chinese medicinal materials to be cut placed between the lower conveyor belt 303 and the upper conveyor belt 306 can be transported into the slicing box 205. The setting of the lower conveyor belt 303 and the upper conveyor belt 306 can transport the Chinese medicinal materials to be cut and also ensure that the Chinese medicinal materials are clamped and stabilized during the transport process.

[0034] The drive assembly is located on the outside of the mounting box 203. The drive assembly includes a rotating shaft 401 and a support 402. There are two rotating shafts 401, both of which are located on the same outer side wall of the mounting box 203. The two rotating shafts 401 are parallel to the second roller shaft 302 and the fourth roller shaft 305. The second roller shaft 302, the fourth roller shaft 305 and the two rotating shafts 401 are all provided with synchronous pulleys 408. A synchronous belt 409 is provided between the synchronous pulleys 408 on the second roller shaft 302 and the corresponding rotating shaft 401 on its side. A synchronous belt 409 is also provided between the synchronous pulleys 408 on the fourth roller shaft 305 and the corresponding rotating shaft 401 on its side. The two synchronous belts 409 are arranged in parallel.

[0035] Two rotating shafts 401 are each equipped with a gear 407, and the two gears 407 mesh with each other; one of the rotating shafts 401 is equipped with a pulley 406, a support 402 is mounted on the mounting plate 2, a motor 403 is mounted on the support 402, a pulley 404 is mounted on the drive shaft of the motor 403, and the pulley 404 is connected to the pulley 406 via a transmission belt 405;

[0036] By starting the motor 403 to drive the pulley 404 to rotate, after being driven by the pulley 404, the transmission belt 405 and the pulley 406, one of the rotating shafts 401 can be driven to rotate. After being driven by the meshing of two gears 407, the other rotating shaft 401 can be driven to rotate, causing the two rotating shafts 401 to rotate simultaneously. Then, after being driven by the corresponding synchronous pulleys 408 and synchronous belts 409, the second roller shaft 302 and the fourth roller shaft 305 can be driven to rotate synchronously and relative to each other, causing the lower conveyor belt 303 and the upper conveyor belt 306 to rotate synchronously and relative to each other. During the synchronous and relative rotation of the lower conveyor belt 303 and the upper conveyor belt 306, the Chinese medicinal materials to be cut can be placed in the area between the lower conveyor belt 303 and the upper conveyor belt 306, so that the Chinese medicinal materials to be cut can be transported into the slicing box 205.

[0037] The slicing assembly is mounted on the slicing box 205 and the mounting bracket 208. The slicing assembly includes a second motor 5 and a blade disc 601. The second motor 5 is mounted on the mounting bracket 208, and the blade disc 601 is mounted on the drive shaft of the second motor 5 and located within the cavity of the slicing box 205. The blade disc 601 has multiple mounting holes 602 arranged in an array. Multiple forks 603 are provided on the side wall of the blade disc 601 facing the second motor 5. Each fork 603 is located beside a corresponding mounting hole 602, and each fork 603 is secured with screws 605. The device is equipped with blades 604, each blade 604 being located in a corresponding mounting hole 602. The beveled cutting edge of the blade 604 forms a cut 606 with the side wall of the corresponding mounting hole 602. The blades 604 are mounted on the fork 603 and located in the mounting hole 602 using screws 605, so that the blades 604 can be disassembled and replaced. By replacing the blades 604 with blades of different sizes, the size of the cut 606 between the beveled cutting edge of the blade 604 and the side wall of the corresponding mounting hole 602 can be adjusted to adapt to cutting tablets of different thicknesses.

[0038] During the process of feeding the Chinese medicinal materials to be cut into the slicing box 205, the motor 25 drives the blade 601 to rotate in the opposite direction. As the medicinal materials are continuously fed in and pressed against the side wall of the blade 601, and the blade 601 rotates in the opposite direction, the cutting edge of the blade 604 can slice the fed medicinal materials, thereby replacing manual slicing, improving the quality of slicing and increasing the efficiency of slicing.

[0039] The slicing box 205 is provided with a discharge pipe 206 at an angle, which facilitates the discharge of slices. The upper part of the slicing box 205 is provided with a cover 207, which can close the upper part of the slicing box 205. The top of the mounting box 203 is provided with a buckle plate 204, which can cover the upper conveyor belt 306.

[0040] The present invention has been described in detail above. The specific embodiments are provided only to help understand the method and core idea of ​​the present invention. It should be noted that those skilled in the art can make various improvements and modifications to the present invention without departing from its principles, and these improvements and modifications also fall within the protection scope of the claims of the present invention.

Claims

1. A rotary slicer, characterized in that: include: Support frame (1); Mounting plate (2), the mounting plate (2) is set on the top of the support frame (1), a holding platform (201) is set on one side of the mounting plate (2), a slicing box (205) and a mounting frame (208) are set on the top of the mounting plate (2), and a mounting box (203) is set between the holding platform (201) and the slicing box (205); A conveying assembly is disposed within the holding platform (201) and the mounting box (203); A drive assembly is disposed on the outside of the mounting box (203); A slicing assembly is disposed on a slicing box (205) and a mounting bracket (208).

2. The rotary slicer according to claim 1, characterized in that: The bottom of the holding platform (201) is provided with an installation groove (202), and the installation groove (202), the inner cavity of the installation box (203), and the inner cavity of the slice box (205) are interconnected; The conveying assembly includes a lower conveying component and an upper conveying component. The lower conveying component includes a first roller (301) and a second roller (302). The first roller (301) is located at the end of the mounting groove (202) in the holding platform (201), and the second roller (302) is located at the lower part of the cavity of the mounting box (203) near the slice box (205). The first roller (301) is connected to the second roller (302) through a lower conveyor belt (303). The upper conveying component includes a third roller (304) and a fourth roller (305). The third roller (304) is located at the upper part of the cavity opening of the mounting box (203) near the end of the holding platform (201). The fourth roller (305) is located at the upper part of the cavity opening of the mounting box (203) near the end of the slicing box (205). The third roller (304) is connected to the fourth roller (305) via an upper conveyor belt (306).

3. A rotary slicer according to claim 2, characterized in that: The drive assembly includes a rotating shaft (401) and a support (402). There are two rotating shafts (401), both of which are located on the same outer side wall of the mounting box (203). The two rotating shafts (401) are parallel to the second roller shaft (302) and the fourth roller shaft (305). The second roller shaft (302), the fourth roller shaft (305), and the two rotating shafts (401) are all provided with synchronous pulleys (408). A synchronous belt (409) is provided between the synchronous pulleys (408) on the second roller shaft (302) and the corresponding rotating shaft (401) on its side. A synchronous belt (409) is also provided between the synchronous pulleys (408) on the fourth roller shaft (305) and the corresponding rotating shaft (401) on its side. The two synchronous belts (409) are arranged in parallel. Both of the two rotating shafts (401) are provided with gears (407), and the two gears (407) mesh with each other; one of the rotating shafts (401) is provided with a pulley (406), the support (402) is provided on the mounting plate (2), the support (402) is provided with a motor (403), the drive shaft of the motor (403) is provided with a pulley (404), and the pulley (404) is connected to the pulley (406) through a transmission belt (405).

4. A rotary slicer according to claim 1, characterized in that: The slicing assembly includes a second motor (5) and a cutting disc (601). The second motor (5) is mounted on a mounting bracket (208). The cutting disc (601) is mounted on the drive shaft of the second motor (5) and located in the inner cavity of the slicing box (205). The cutting disc (601) has a plurality of mounting holes (602) arranged in an array. The side wall of the cutting disc (601) facing the second motor (5) has a plurality of forks (603). Each fork (603) is located beside a corresponding mounting hole (602). Each fork (603) is mounted with a blade (604) by screws (605). Each blade (604) is located in a corresponding mounting hole (602). The oblique cutting edge of the blade (604) forms a cut (606) with the side wall of the corresponding mounting hole (602).

5. A rotary slicer according to claim 1, characterized in that: The slicing box (205) is provided with a discharge pipe (206) at an angle downwards, the upper part of the slicing box (205) is provided with a cover (207), and the top of the mounting box (203) is provided with a buckle plate (204).