Full-automatic Chinese yam cleaning, peeling and slicing device

The fully automatic yam washing, peeling and slicing device realizes the automated washing, peeling and slicing of yams, which solves the problems of low efficiency, large damage and high cost of manual peeling, adapts to the needs of yams of different thicknesses, and reduces equipment costs and space occupation.

CN223681942UActive Publication Date: 2025-12-19QINGDAO UNIV OF SCI & TECH
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Patent Information

Application Number
CN202520006789.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-02
Publication Date
2025-12-19
Estimated Expiration
2035-01-02

AI Technical Summary

Technical Problem

Existing yam peeling machines suffer from high manual labor intensity, low efficiency, easy to cause allergies, significant mechanical damage and high cost, and are difficult to adapt to the peeling needs of yams of different thicknesses.

Method used

A fully automatic yam washing, peeling and slicing device was designed, which includes a material washing mechanism, a feeding mechanism, a peeling and slicing mechanism and a two-stage reduction gearbox. It adopts a non-contact peeling mechanism and PLC control to realize the automation integration of washing, peeling and slicing, and adapts to the different thicknesses of yams.

Benefits of technology

It achieves automated cleaning, peeling, and slicing of yams, reducing manual intervention, avoiding over-cutting losses, and features a compact structure that saves space, is highly adaptable, and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a full-automatic Chinese yam peeling and slicing device which comprises a rack, a material cleaning mechanism and a feeding mechanism, and the feeding mechanism is matched with the material cleaning mechanism and the peeling and slicing mechanism and used for feeding cleaned Chinese yams into the peeling and slicing mechanism. The peeling and slicing mechanism is arranged on the rack and used for peeling and slicing Chinese yams; and the secondary reduction gearbox is arranged in the rack, is connected with the material cleaning mechanism, the feeding mechanism and the peeling and slicing mechanism, and can control the Chinese yams to be peeled and sliced orderly. The Chinese yam peeling, cleaning and slicing device can be used for peeling, cleaning and slicing Chinese yams with different thicknesses, is high in efficiency and clean and comprehensive in peeling, can control the peeling thickness, and reduces waste to a certain extent.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of full-automatic Chinese yam cleaning peeling slicing device, belong to food processing machinery technical field. BACKGROUND

[0002] In food processing enterprises, when processing Chinese yam, it is necessary to clean, peel and cut Chinese yam. The traditional peeling process of Chinese yam is completed by manual work, but the Chinese yam is slippery during peeling due to its juice, which requires high labor intensity and low efficiency. In addition, the juice can cause allergic reactions after contacting the skin, which is harmful to health. The existing mechanical equipment causes great damage to Chinese yam during peeling, resulting in high cost and low efficiency. It is also difficult to adapt to different thicknesses of Chinese yam for peeling. Some existing Chinese yam peeling machines, such as the utility model patent with authorization announcement number CN210988096U, generally use a cutting knife to complete the peeling of Chinese yam, which is prone to cutting errors or poor cutting quality. The invention patent with authorization announcement number CN104799404B reduces the waste caused by peeling, but cannot automatically clean and slice Chinese yam. Therefore, it is necessary to develop a new peeling device to solve the above problems existing in the existing peeling device. SUMMARY

[0003] The utility model provides a kind of full-automatic Chinese yam cleaning peeling slicing device to overcome the deficiencies of prior art, which is low in cost, easy to operate and has a wide application prospect.

[0004] The technical scheme of the utility model is as follows: a kind of full-automatic Chinese yam cleaning peeling slicing device, characterized by: including rack, material cleaning mechanism, feeding mechanism, peeling and slicing mechanism and two-stage reduction gearbox;The material cleaning mechanism and the feeding mechanism are arranged on the rack, the feeding mechanism is matched with the discharge bottom plate of the material cleaning mechanism to convey Chinese yam into the feeding groove;The peeling and slicing mechanism is also arranged on the rack, its input end is matched with the output end of the feeding mechanism, and is used to push Chinese yam cleaned by the material cleaning mechanism;The two-stage reduction gearbox is arranged inside the rack and is matched with the peeling and slicing mechanism and the material cleaning mechanism, respectively, to transmit power to the feeding mechanism and control Chinese yam to enter the feeding groove in order.

[0005] The material cleaning mechanism includes brush one, brush two and brush three, which are arranged inside the cleaning hopper. The brush shaft bodies at both ends are fixed to the two sides of the cleaning hopper through bearings. The brush shaft bodies extending from the right side of the cleaning hopper are connected with gear one, gear two and gear three, respectively, and the gears are meshed with each other. The large pulley one is connected with the left end of the brush two shaft body on the left side of the cleaning hopper. The large pulley one is linked with the small pulley one through the synchronous belt one and is driven by the motor one.

[0006] The feeding mechanism includes a centering frame, which is fixed to the baffle by bolts and close to the feeding trough. A centering wheel is provided on one side, and a limit switch is provided above. A spring is connected inside for centering. The disc roller eccentric direct-acting cam mechanism is located on the left side of the feeding base. It consists of a disc roller eccentric direct-acting cam, a driving wheel, a cover plate, a driven wheel, and a roller. It is connected to the transmission rod and is powered by the main motor.

[0007] The peeling and slicing mechanism consists of a peeling device and a slicing device. The peeling device is located on the left side of the baffle and includes a large pulley three, a limiting shaft, a limiting wheel, a synchronous belt three, a small pulley three, a transmission rod three, a spring rod, a ring-shaped knife holder, a knife assembly upper arm, a roller knife, a knife assembly lower arm, and a spring sleeve, forming a three-headed ring-shaped peeling knife. The slicing device includes a slicing knife holder and a blade, which are assembled on the concentric shaft of the large pulley two.

[0008] The core components of the device shown are located in the control box, including a microcontroller, relays, power switches, and stepper motor drivers. The automatic operation of the oil injection device is achieved through PLC system programming. The control box is equipped with a microcontroller operation panel, which can be used for program input, saving, and running.

[0009] The beneficial effects of this utility model are:

[0010] (1) The washing, peeling and slicing processes are integrated into one, which greatly automates the processing of yams. All processes form a closed loop, with good automatic adaptability and very little need for manual adjustment of the machine.

[0011] (2) The non-contact yam peeling and slicing machine adopts an innovative peeling mechanism combined with PLC control, which can automatically adapt to the thickness of the yam within a certain range, avoiding waste of the edible part of the yam caused by over-cutting and incomplete peeling.

[0012] (3) The structural frame is compact, saving the space required to place equipment and increasing versatility. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0014] Figure 2 This is a three-dimensional structural diagram of the main frame of the present invention;

[0015] Figure 3 This is a three-dimensional structural diagram of the feeding and cleaning mechanism of the present invention;

[0016] Figure 4 This is a left view of the feeding and cleaning mechanism of the present invention;

[0017] Figure 5 This is a three-dimensional structural diagram of the feeding mechanism of the present invention;

[0018] Figure 6 Figure 1 is a perspective view of the peeling and slicing mechanism of the present application;

[0019] Figure 7 Figure 2 is a partial enlarged view of the feeding mechanism A of the present application;

[0020] Figure 8 Figure 3 is a partial enlarged view of the peeling and slicing mechanism B of the present application;

[0021] Figure 9 Figure 4 is a partial view of the transmission system of the present application.

[0022] Figure 1 is a perspective view of the peeling and slicing mechanism of the present application;

[0023] 1, frame: 11, main frame body, 12, motor two fixed plate, 13, feeding frame body, 14, motor one fixed plate, 15, cleaning mechanism support, 16, baffle, 17, discharge gasket, 18, positioning plate one, 19, positioning plate two, 110, triangular support plate;

[0024] 2, material cleaning mechanism: 21, small pulley one, 22, motor one, 23, synchronous belt one, 24, water pipe fixator, 25, water pipe, 26, water pipe cover, 27, water conveying pipe, 28, water inlet, 29, gear one, 210, brush one, 211, gear two, 212, brush two, 213, brush three, 214, gear three, 215, cleaning hopper, 216, discharge bottom plate, 217, large pulley one, 218, bearing;

[0025] 3, feeding mechanism: 31, feeding base, 32, disc roller eccentric direct-acting cam, 33, driving wheel, 34, cover plate, 35, driven wheel, 36, roller, 37, material pushing plate, 38, centering wheel, 39, travel switch, 310, centering frame, 311, bearing, 312, driven shaft, 313, rack, 314, small pushing plate, 315, feeding groove, 316, gear four, 317, linkage shaft, 318, coupling one, 319, driving shaft, 320, gear five, 321, gear six, 322, coupling two, 323, coupling three, 324, motor two;

[0026] 4, peeling and slicing mechanism: 41, limiting shaft, 42, limiting wheel, 43, large pulley three, 44, slicing knife holder, 45, blade, 46, large pulley two, 47, synchronous belt two, 48, small pulley two, 49, synchronous belt three, 410, small pulley three, 411, spring rod, 412, ring knife holder, 413, knife assembly large arm, 414, roller knife, 415, knife assembly small arm, 416, spring sleeve, 417, transmission rod one, 418, transmission rod two, 419, transmission rod three. DETAILED DESCRIPTION

[0027] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0028] The following is combined Figures 1 to 9 A fully automatic yam washing, peeling and slicing device according to an embodiment of the present invention will be described in detail.

[0029] like Figure 1 As shown, an automatic yam washing, peeling, and slicing device according to an embodiment of the present invention includes: a frame 1, a material washing mechanism 2, and a feeding mechanism 3. The feeding mechanism is configured to cooperate with the discharge base plate 216 of the material washing mechanism to convey the yam into the feeding trough 315; a peeling and slicing mechanism 4 is configured on the frame 1, and the input end of the peeling and slicing mechanism 4 is configured to cooperate with the output end of the feeding mechanism 3 to push the yam after it has been washed by the material washing mechanism 2; a secondary reduction gearbox 5 is configured inside the frame 1, and the secondary reduction gearbox 5 is configured adjacent to the peeling and slicing mechanism 4 and the material washing mechanism 2 respectively, to transmit power to the feeding mechanism 4 and control the orderly entry of the yam into the feeding trough 315.

[0030] like Figure 2 As shown, the main frame of a fully automatic yam washing, peeling and slicing device is composed of a main frame 11 and eight triangular support plates 110. The frame 1 is provided with a motor fixing plate 12 and a motor fixing plate 14 at intervals, which are used to fix motor 1 22 and motor 2 324 respectively, providing power to the material cleaning mechanism 2 and the feeding mechanism 3 respectively; the frame 1 is provided with a positioning plate 18 and a positioning plate 19 at intervals in the middle, which are fixed to the main frame 11 at both ends, and are used to position the secondary reduction gearbox 5 and the disc roller eccentric direct-acting cam mechanism; a baffle 16 is provided above the positioning plate 18, and the baffle 16 is fixed to the main frame 11 by a triangle, and together with the positioning plate 18, it positions the peeling and slicing mechanism 4; a feeding frame 13 is also provided between the two potentiometer fixing plates; a discharge pad 17 is provided on the discharge port side of the baffle 16; on the far left of the table, behind the motor fixing plate 14, a cleaning mechanism support 15 is provided, which is fixed to the main frame 11 by a triangle support, and is used to support the material cleaning mechanism 2.

[0031] like Figure 3 As shown, the material cleaning mechanism 2 is mounted on the cleaning mechanism support 15. Inside, brushes 210, 212, and 213 are installed. The ends of the three brush shafts are fixed to both sides of the cleaning hopper 215 via bearings 218. The brush shafts extending from the right side of the cleaning hopper 215 are connected to gears 29, 211, and 214 respectively. The gears are positioned as follows:Figure 3 The two pairs shown are engaged. (Connection) Figure 4 As shown, on the left side of the cleaning hopper 215, the left end of the shaft of brush two 212 is connected to the large pulley one 217. The large pulley one 217 is linked to the small pulley one 21 via the synchronous belt one 23, and is thus driven by the motor one 22. Figure 3 As shown, a water pipe 25 is provided above the washing hopper 215 and in the main view direction. The water pipe 25 is fixed to the surface of the washing hopper 215 by a water pipe fastener 24, and its water inlet 28 is connected to the water inlet pipe through a water delivery pipe 27. The discharge bottom plate 216 is provided below the washing hopper 215.

[0032] like Figure 5 As shown, the top pusher plate 37 is set in the groove inside the feeding base 31. Above the top pusher plate 37, a feeding groove 315 is set between the feeding frame bodies 13, inside which is the track for the rack 313 to push the yam. The small pusher plate 314 is welded to the inner side of the rack 313. The centering frame 310 is fixed to the baffle 16 by bolts. A centering wheel 38 is set below it near the feeding groove 315. A limit switch 39 is set above it, and a spring is connected inside for centering. A disc roller eccentric direct-acting cam mechanism is set on the left side of the feeding base 31. The disc roller eccentric direct-acting cam mechanism consists of a disc roller eccentric direct-acting cam 32, a driving wheel 33, a cover plate 34, a driven wheel 35, and a roller 36. It is connected to the transmission rod 417 and is powered by the main motor 6. The driven shaft 312 and the driving shaft 319 are fixed to the left and right sides of the feeding frame body 13 by bearings 311, respectively. Figure 7 As shown, gear six 321 is fixed at the left end of the drive shaft 319 and meshes with rack 313. Gear five 320 is fixed at the right side of the drive shaft 319 and meshes with gear four 316. Gear four 316 is connected to motor two 324 through linkage shaft 317 and coupling. Coupling 317 is composed of coupling one 318, coupling two 322 and coupling three 323.

[0033] like Figure 6 As shown, the peeling and slicing mechanism 4 consists of a peeling device and a slicing device. The peeling device is located on the left side of the baffle 16. A large pulley 43 is located on the left side of the baffle 16 and is positioned by a limiting shaft 41 and a limiting wheel 42. The large pulley 43 is equipped with a synchronous belt 49 that meshes with a small pulley 410 mounted on the left side of the transmission rod 419. Power is supplied by the main motor 6 through the transmission rod 3. A small pulley 48 is mounted on the right side of the transmission rod 419 and meshes with a large pulley 46 via a synchronous belt 47. Power is supplied by the main motor 6 through the transmission rod 3. The slicing blade consists of a blade 45 and a slicing blade holder 44, mounted on the concentric shaft of the large pulley 46. Figure 8As shown, the large pulley three 43 is internally provided with a spring rod 411, an annular tool holder 412, a tool assembly large arm 413, a roller cutter 414, a tool assembly small arm 415 and a spring sleeve 416, forming a three-head annular peeling knife.

[0034] As shown, Figure 9 As shown, the secondary reduction gearbox 50 is formed by two-to-two meshing of transmission rod one 417, transmission rod two 418 and transmission rod three 419, and power is input to the peeling and slicing mechanism 4 and the disc roller eccentric straight motion cam mechanism through the main motor 6.

[0035] The working principle of the present application is as follows:

[0036] After starting the device, the feeding mechanism two (pushing mechanism) and the stepping motor of the cleaning part are started and begin to work. The motor of the cleaning part continuously provides power for the cleaning device through belt transmission, so that the three circular brushes rotate synchronously to clean the surface of the yam. At the same time, the two rows of water inlets on the upper and side surfaces are connected to clean water to assist cleaning, and the mesh-shaped water outlet on the lower surface timely discharges sewage.

[0037] In the feeding mechanism, the top feeding mechanism operates first. The center shaft of the disc roller eccentric straight motion cam is connected with the secondary reduction gearbox to obtain power. When the yam rolls on the slope track above the top feeding mechanism and the device enters a new round of process, the cam reaches the maximum stroke, the top feeding mechanism pushes the next yam stick to the slope of the pushing track, and the yam rolls into the pushing track under the action of gravity.

[0038] The pushing mechanism in the pushing track is started, the gear rotates under the drive of the synchronous motor, and the rack moves. The end of the rack close to the inner side is connected with the small push plate, slowly pushing the yam stick to move forward. When the yam reaches the centering mechanism, the wheel in the centering mechanism is lifted up by the yam stick, and the centering mechanism exerts a pressure on the yam, playing a role of centering. When the spring in the centering mechanism is compressed, the travel switch above the centering mechanism is triggered, the main motor is reversed for a short time and then rotated forward, the yam stick continues to move forward and enters the peeling part and the slicing part of the device in turn.

[0039] When the rack moves forward to the time point when the cam stroke is minimum again, the next yam enters above the top feeding mechanism. When the rack reaches the farthest stroke, the switch is triggered, the main motor and the pushing motor are quickly reversed, and return to the zero displacement point, so as to enter a new round of pushing process.

[0040] In the peeling part, the yam stick keeps moving forward without rotating, and the special-shaped pulley drives the cutter holder and cutter to rotate and cut to remove the yam skin. When the yam enters the material, the front section of the yam just contacts the side surface of the cutter, the special-shaped pulley drives the cutter holder and cutter to rotate clockwise, at this time the direction of the cutting edge is opposite to the direction of the instantaneous speed, and the yam cannot be peeled. At this time, the yam will give a positive pressure to the side surface of the cutter, and the friction between the front section of the yam and the cutter will cause the cutter to tilt to the cutter holder, the inlet is enlarged, and the yam can smoothly enter the cutting edge. Subsequently, the special-shaped pulley drives the cutter holder and cutter to rotate counterclockwise, at this time the direction of the cutting edge is the same as the direction of the instantaneous speed, and the cutting edge begins to cut and peel the yam. In order to avoid overcutting during peeling, a roller with adjustable position is added at the cutting edge to control the cutting depth.

[0041] In the slicing part, the cutter on the cutter holder rotates clockwise under the drive of the driven wheel, and the peeled yam stick continuously enters the working part of the cutter in the slicing part under the action of the pushing part, and the yam slicing is completed. By adjusting the number of cutters, the thickness of the slices can be adjusted, and the cut yam slices fall into the discharge track.

[0042] In the whole movement process, the main motor (responsible for peeling, slicing, and pushing material), motor one (pushing mechanism), and motor two (cleaning mechanism, independent switch, no need for PLC control) work together. The reverse and forward rotation of the main motor controls the process of feeding and peeling and slicing. The straight-line distance from the known travel switch to the cutter is fixed, and the synchronous motor speed is constant during the pushing process, so the feeding time is fixed at 9 seconds. When the yam is long, the time interval from positive pushing to touching the travel switch is short; when the yam is short, the time interval from positive pushing to touching the travel switch is long.

Claims

1. A fully automatic yam washing, peeling, and slicing device, characterized in that: The utility model relates to a kind of multi-functional mountain yam peeling and slicing machine, including rack (1), material cleaning mechanism (2), feeding mechanism (3), peeling and slicing mechanism (4) and secondary reduction gearbox (5);Material cleaning mechanism (2) and feeding mechanism (3) are set on rack (1), feeding mechanism (3) and the discharge bottom plate (216) of material cleaning mechanism (2) cooperate, to be used to send mountain yam to feeding groove (315) inside;Peeling and slicing mechanism (4) is also set on rack (1), its input end and the output end of feeding mechanism (3) cooperate with being connected, for advancing mountain yam after being cleaned by material cleaning mechanism (2);Secondary reduction gearbox (5) is set inside rack (1), respectively with peeling and slicing mechanism (4) and material cleaning mechanism (2) cooperate with being adjacent, for power transmission to feeding mechanism (3) and control mountain yam orderly enter feeding groove (315) inside; The utility model relates to a kind of multi-functional mountain yam peeling and slicing machine, including rack (1), material cleaning mechanism (2), feeding mechanism (3), peeling and slicing mechanism (4) and secondary reduction gearbox (5);Material cleaning mechanism (2) and feeding mechanism (3) are set on rack (1), feeding mechanism (3) and the discharge bottom plate (216) of material cleaning mechanism (2) cooperate, to be used to send mountain yam to feeding groove (315) inside;Peeling and slicing mechanism (4) is also set on rack (1), its input end and the output end of feeding mechanism (3) cooperate with being connected, for advancing mountain yam after being cleaned by material cleaning mechanism (2);Secondary reduction gearbox (5) is set inside rack (1), respectively with peeling and slicing mechanism (4) and material cleaning mechanism (2) cooperate with being adjacent, for power transmission to feeding mechanism (3) and control mountain yam orderly enter feeding groove (315) inside; The utility model relates to a kind of multi-functional mountain yam peeling and slicing machine, including rack (1), material cleaning mechanism (2), feeding mechanism (3), peeling and slicing mechanism (4) and secondary reduction gearbox (5);Material cleaning mechanism (2) and feeding mechanism (3) are set on rack (1), feeding mechanism (3) and the discharge bottom plate (216) of material cleaning mechanism (2) cooperate, to be used to send mountain yam to feeding groove (315) inside;Peeling and slicing mechanism (4) is also set on rack (1), its input end and the output end of feeding mechanism (3) cooperate with being connected, for advancing mountain yam after being cleaned by material cleaning mechanism (2);Secondary reduction gearbox (5) is set inside rack (1), respectively with peeling and slicing mechanism (4) and material cleaning mechanism (2) cooperate with being adjacent, for power transmission to feeding mechanism (3) and control mountain yam orderly enter feeding groove (315) inside; The utility model relates to a kind of multi-functional mountain yam peeling and slicing machine, including rack (1), material cleaning mechanism (2), feeding mechanism (3), peeling and slicing mechanism (4) and secondary reduction gearbox (5);Material cleaning mechanism (2) and feeding mechanism (3) are set on rack (1), feeding mechanism (3) and the discharge bottom plate (216) of material cleaning mechanism (2) cooperate, to be used to send mountain yam to feeding groove (315) inside;Peeling and slicing mechanism (4) is also set on rack (1), its input end and the output end of feeding mechanism (3) cooperate with being connected, for advancing mountain yam after being cleaned by material cleaning mechanism (2);Secondary reduction gearbox (5) is set inside rack (1), respectively with peeling and slicing mechanism (4) and material cleaning mechanism (2) cooperate with being adjacent, for power transmission to feeding mechanism (3) and control mountain yam orderly enter feeding groove (315) inside; The utility model relates to a kind of multi-functional mountain yam peeling and slicing machine, including rack (1), material cleaning mechanism (2), feeding mechanism (3), peeling and slicing mechanism (4) and secondary reduction gearbox (5);Material cleaning mechanism (2) and feeding mechanism (3) are set on rack (1), feeding mechanism (3) and the discharge bottom plate (216) of material cleaning mechanism (2) cooperate, to be used to send mountain yam to feeding groove (315) inside;Peeling and slicing mechanism (4) is also set on rack (1), its input end and the output end of feeding mechanism (3) cooperate with being connected, for advancing mountain yam after being cleaned by material cleaning mechanism (2);Secondary reduction gearbox (5) is set inside rack (1), respectively with peeling and slicing mechanism (4) and material cleaning mechanism (2) cooperate with being adjacent, for power transmission to feeding mechanism (3) and control mountain yam orderly enter feeding groove (315) inside; The utility model relates to a kind of multi-functional mountain yam peeling and slicing machine, including rack (1), material cleaning mechanism (2), feeding mechanism (3), peeling and slicing mechanism (4) and secondary reduction gearbox (5);Material cleaning mechanism (2) and feeding mechanism (3) are set on rack (1), feeding mechanism (3) and the discharge bottom plate (216) of material cleaning mechanism (2) cooperate, to be used to send mountain yam to feeding groove (315) inside;Peeling and slicing mechanism (4) is also set on rack (1), its input end and the output end of feeding mechanism (3) cooperate with being connected, for advancing mountain yam after being cleaned by material cleaning mechanism (2);Secondary reduction gearbox (5) is set inside rack (1), respectively with peeling and slicing mechanism (4) and material cleaning mechanism (2) cooperate with being adjacent, for power transmission to feeding mechanism (3) and control mountain yam orderly enter feeding groove (315) inside; The utility model relates to a kind of multi-functional mountain yam peeling and slicing machine, including rack (1), material cleaning mechanism (2), feeding mechanism (3), peeling and slicing mechanism (4) and secondary reduction gearbox (5);Material cleaning mechanism (2) and feeding mechanism (3) are set on rack (1), feeding mechanism (3) and the discharge bottom plate (216) of material cleaning mechanism (2) cooperate, to be used to send mountain yam to feeding groove (315) inside;Peeling and slicing mechanism (4) is also set on rack (1), its input end and the output end of feeding mechanism (3) cooperate with being connected, for advancing mountain yam after being cleaned by material cleaning mechanism (2);Secondary reduction gearbox (5) is set inside rack (1), respectively with peeling and slicing mechanism (4) and material cleaning mechanism (2) cooperate with being adjacent, for power transmission to feeding mechanism (3) and control mountain yam orderly enter feeding groove (315) inside; The utility model relates to a kind of multi-functional mountain yam peeling and slicing machine, including rack (1), material cleaning mechanism (2), feeding mechanism (3), peeling and slicing mechanism (4) and secondary reduction gearbox (5);Material cleaning mechanism (2) and feeding mechanism (3) are set on rack (1), feeding mechanism (3) and the discharge bottom plate (216) of material cleaning mechanism (2) cooperate, to be used to send mountain yam to feeding groove (315) inside;Peeling and slicing mechanism (4) is also set on rack (1), its input end and the output end of feeding mechanism (3) cooperate with being connected, for advancing mountain yam after being cleaned by material cleaning mechanism (2);Secondary reduction gearbox (5) is set inside rack (1), respectively with peeling and slicing mechanism (4) and material cleaning mechanism (2) cooperate with being adjacent, for power transmission to feeding mechanism (3) and control mountain yam orderly enter feeding groove (315) inside; The utility model relates to a kind of multi-functional mountain yam peeling and slicing machine, including rack (1), material cleaning mechanism (2), feeding mechanism (3), peeling and slicing mechanism (4) and secondary reduction gearbox (5);Material cleaning mechanism (2) and feeding mechanism (3) are set on rack (1), feeding mechanism (3) and the discharge bottom plate (216) of material cleaning mechanism (2) cooperate, to be used to send mountain yam to feeding groove (315) inside;Peeling and slicing mechanism (4) is also set on rack (1), its input end and the output end of feeding mechanism (3) cooperate with being connected, for advancing mountain yam after being cleaned by material cleaning mechanism (2);Secondary reduction gearbox (5) is set inside rack (1), respectively with peeling and slicing mechanism (4) and material cleaning mechanism (2) cooperate with being adjacent, for power transmission to feeding mechanism (3) and control mountain yam orderly enter feeding groove (315) inside; The utility model relates to a kind of multi-functional mountain yam peeling and slicing machine, including rack (1), material cleaning mechanism (2), feeding mechanism (3), peeling and slicing mechanism (4) and secondary reduction gearbox (5);Material cleaning mechanism (2) and feeding mechanism (3) are set on rack (1), feeding mechanism (3) and the discharge bottom plate (216) of material cleaning mechanism (2) cooperate, to be used to send mountain yam to feeding groove (

Citation Information

Patent Citations

  • A yam peeling machine

    CN104799404B

  • Chinese yam peeling and cleaning device

    CN210988096U