Wind-driven corn ear husk removal device
The wind-driven corn cob husk removal device uses a fan and a front conveying mechanism to separate corn husks and kernels, solving the problem of husks and kernels being mixed in traditional devices and saving screening processes and reducing kernel losses.
Patent Information
- Application Number
- CN202510074141.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2045-01-17
AI Technical Summary
In traditional corn peeling equipment, husks and kernels are mixed together, resulting in serious kernel loss and requiring additional screening processes.
A wind-driven corn cob husk removal device is used to remove corn husks using a fan and collect kernels by their own weight. Combined with a front conveying mechanism and a peeling mechanism, the husks and kernels are separated.
Directly separate the peeled husks and fallen kernels, saving the kernel screening process, avoiding kernel loss, and improving corn peeling efficiency.
Smart Images

Figure CN119769293B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of agricultural engineering. Aiming at the problem of husks and kernels being mixed in a corn peeling device, a wind-driven corn cob husk removing device is proposed. Background Art
[0002] Traditional corn huskers use a combination of a pressure wheel and a husk roller. The pressure wheel pushes the corn forward, and the husks are removed by friction between the two rollers. A disadvantage of this system is that the removed husks are mixed with the kernels that fall during operation, requiring further screening, which can result in kernel loss.
[0003] Therefore, in view of the shortcomings of the above-mentioned corn peeling device, if a new type of corn peeling device can be provided, which can directly separate the husks peeled off during the working process from the fallen kernels and realize the removal of corn husks, it can save the kernel screening process and effectively avoid kernel loss, which can provide a technical reference for the development of corn peeling devices. Summary of the Invention
[0004] In order to solve the above technical problems, the present invention proposes a wind-powered corn cob husk removal device that uses a fan to remove corn husks and uses the weight of the grains to collect lost grains. The present invention can save the grain screening process and avoid grain loss.
[0005] The present invention adopts the following technical solutions:
[0006] A wind-driven dust removal type corn cob husk removing device comprises a front conveying mechanism, a wind-driven dust removal mechanism, and a peeling mechanism; the front conveying mechanism is arranged at the front of the entire device, the peeling mechanism is arranged at the rear lower part of the entire device, and the wind-driven dust removal mechanism is arranged at the rear upper part of the entire device; the wind-driven dust removal mechanism comprises a fan housing, a housing mounting cover, a fan shaft, a fan blade weld, a negative pressure chamber housing, a knife holder, and a crushing knife; wherein the fan blade weld comprises a fan blade, a blade mounting seat, a cleaning knife mounting seat, and a cleaning knife; the housing mounting cover is mounted on one side of the fan housing, and the negative pressure chamber housing is mounted on the other side of the fan housing; the fan blade weld is located inside the fan housing and mounted on one side of the fan shaft; the crushing knife is mounted on the knife holder; and each knife holder is located inside the negative pressure chamber housing and mounted on the fan shaft.
[0007] The front conveying mechanism includes a front frame, a rotating protrusion, a pressure wheel, a dial-out wheel, a side transmission system of the front conveying mechanism, and a bottom transmission system of the front conveying mechanism, wherein the front frame includes a left plate, a right plate, a rotating protrusion mounting hole, and a bottom plate, the rotating protrusion includes a protrusion and a protrusion shaft, the pressure wheel includes a pressure wheel body and pressure wheel teeth, the rotating protrusion is installed at the bottom of the front frame, the pressure wheel is installed at the front inner side of the front frame, the dial-out wheel is installed at the rear inner side of the front frame, the side transmission system of the front conveying mechanism is located at the outside of the front frame, and the bottom transmission system of the front conveying mechanism is located at the bottom of the front frame, the lower parts of the left and right plates of the front frame are fixedly connected through the bottom plate, and the bottom plate is provided with evenly distributed rotating protrusion mounting holes.
[0008] The peeling mechanism includes a rear frame, a peeling roller assembly, a peeling roller transmission system, a peeling roller tensioning device, an introduction wheel, a conveying wheel, a partition, a partition fixing frame, a partition introduction frame, and a conveying wheel transmission system, wherein the rear frame includes a left plate, a connecting frame, a right plate, and a lower inclined plate, the peeling roller assembly includes an active roller and a passive roller, the introduction wheel includes an introduction wheel body and introduction wheel teeth, the conveying wheel includes a conveying wheel body and conveying wheel teeth, a slide groove is provided on the partition, the left plate and the right plate inside the rear frame are fixedly connected by a connecting frame, the bottom of the rear frame is fixedly connected by a lower inclined plate, the peeling roller assembly is located in the upper middle part of the inner side of the rear frame, and the active roller inside Adjacent, passive rollers are installed on both sides of two adjacent active rollers, and the front and rear ends are rotatably connected to the peeling roller tensioning device. The peeling roller transmission system is located at the rear end of the peeling roller combination, the guide wheel and the transport wheel are installed at the lower part of the peeling roller combination, the guide wheel is located in front of the transport wheel, the partition is located at the lower part of the peeling roller combination, the partitions are combined in pairs, each combination is located between the active roller and the passive roller, the lower parts of adjacent partitions are fixedly connected by partition fixing frames, the outermost partitions are connected to the left plate and the right plate through the partition fixing frame, the middle part of each partition is installed through a slide groove, and the upper parts of some adjacent partitions are fixedly connected through the partition guide frame, and the transport wheel transmission system is located on the outside of the left plate.
[0009] The rotating protrusion passes through the rotating protrusion installation hole through the protrusion shaft, and the protrusion shaft is installed in cooperation with the cylindrical gear of the transmission system at the bottom of the front conveying mechanism.
[0010] The fan blades are welded, and the number of the fan blades is more than 2 and they are mounted on the fan blade mounting seat. The cleaning knife mounting seat is mounted on the fan blades, and the cleaning knife is mounted on the cleaning knife mounting seat.
[0011] There is a certain axial distance between adjacent inlet wheel teeth on a single inlet wheel of the peeling mechanism. The distance between the inlet wheel teeth of adjacent inlet wheels is less than 40 mm, and the distance between the transport wheel teeth of adjacent transport wheels is less than 40 mm. There is a protrusion distributed on each tooth.
[0012] The distance between the partitions in each partition assembly is less than 100 mm.
[0013] The side transmission system of the front conveying mechanism is as follows: the pull-out wheel shaft obtains power from the outside and drives the pressure wheel to move through chain transmission; the lower transmission system of the front conveying mechanism is as follows: the rack obtains power from the outside and drives the rotating protrusion to start reciprocating linear motion, so that the cylindrical gear rotates back and forth, and then drives the next row of cylindrical gears to rotate back and forth, and so on; the peeling roller transmission system is as follows: the main power shaft obtains power from the outside and transmits the power to the active roller in the peeling roller combination through the bevel gear, and the active roller drives the passive roller to move; the conveying wheel transmission system is as follows: the introduction wheel shaft obtains power from the outside and drives the conveying wheel to rotate through chain transmission.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] The present invention can directly separate the husks peeled off during the working process from the fallen kernels, thereby achieving the removal of corn husks, saving the kernel screening process, effectively avoiding kernel loss, and providing a technical reference for the development of corn peeling devices. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic structural diagram of the present invention;
[0017] Figure 2 is a cross-sectional view of the present invention;
[0018] Figure 3 It is a schematic diagram of the front conveying mechanism of the present invention;
[0019] Figure 4 It is a schematic diagram of the front frame of the present invention;
[0020] Figure 5 is a schematic diagram of the rotating protrusion of the present invention;
[0021] Figure 6 is a schematic diagram of the pinch wheel of the present invention;
[0022] Figure 7 Schematic diagram of the wind-driven debris removal mechanism of the present invention;
[0023] Figure 8 This is a cross-sectional view of the wind-driven debris removal mechanism of the present invention;
[0024] Figure 9 This is a schematic diagram of the shaft system of the wind-driven impurity removal mechanism of the present invention;
[0025] Figure 10 This is a schematic diagram of the fan blade welding of the present invention;
[0026] Figure 11 It is a schematic diagram of the peeling mechanism of the present invention;
[0027] Figure 12It is a schematic diagram of the rear frame of the present invention;
[0028] Figure 13 It is a schematic diagram of the peeling roller assembly of the present invention;
[0029] Figure 14 It is a schematic diagram of the assembly of the transport wheel and the partition of the present invention;
[0030] Figure 15 is a schematic diagram of a partition of the present invention;
[0031] Figure 16 It is a schematic diagram of the assembly of the partition of the present invention;
[0032] Figure 17 It is a schematic diagram of the introduction wheel of the present invention;
[0033] Figure 18 is a schematic diagram of a transport wheel of the present invention;
[0034] Figure 19 It is a simplified diagram of the transmission route of the bottom transmission system of the front conveying mechanism of the present invention.
[0035] In the figure: 1. Front conveying mechanism, 2. Wind-driven debris removal mechanism, 3. Peeling mechanism, 1-1. Front frame, 1-2. Rotating protrusion, 1-3. Pressing wheel, 1-4. Discharging wheel, 1-5. Side transmission system of front conveying mechanism, 1-6. Bottom transmission system of front conveying mechanism, 2-1. Fan housing, 2-2. Housing mounting cover, 2-3. Fan shaft, 2-4. Fan blade welding, 2-5. Negative pressure chamber housing, 2-6. Knife holder, 2-7. Crushing knife, 3-1. Rear frame, 3-2. Peeling roller assembly, 3-3. Peeling roller transmission system, 3-4. Peeling roller tensioning device, 3-5. Introduction wheel, 3-6. Transport wheel, 3-7. Partition, 3-8. Partition fixing frame, 3-9. Partition introduction frame , 3-10, transport wheel transmission system, 1-1-1, left side plate, 1-1-2, right side plate, 1-1-3, bottom plate mounting hole, 1-1-4, bottom plate, 1-3-1, pressure wheel body, 1-3-2, pressure wheel teeth, 1-6-1, rack, 1-6-2, cylindrical gear, 2-4-1, fan blade, 2-4-2, blade mounting seat, 2-4-3, cleaning knife mounting seat, 2-4-4, cleaning knife, 3-1-1, left plate, 3-1-2, connecting frame, 3-1-3, right plate, 3-1-4, lower inclined plate, 3-5-1, guide wheel body, 3-5-2, guide wheel teeth, 3-6-1, transport wheel body, 3-6-2, transport wheel teeth, 3-7-1, slide groove. DETAILED DESCRIPTION
[0036] In order to make the objectives, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments.
[0037] See also Figures 1-19 As shown, the wind-driven impurity removal type corn ear husk removal device includes a front conveying mechanism 1, a wind-driven impurity removal mechanism 2, and a peeling mechanism 3; the front conveying mechanism 1 is arranged at the front of the entire device, the peeling mechanism 3 is arranged at the rear lower part of the entire device, and the wind-driven impurity removal mechanism 2 is arranged at the rear upper part of the entire device. The wind-driven impurity removal mechanism 2 includes a fan housing 2-1, a housing mounting cover 2-2, a fan shaft 2-3, a fan blade weld 2-4, a negative pressure chamber housing 2-5, a knife holder 2-6, and a crushing knife 2-7, wherein the fan blade weld 2- 4 includes fan blades 2-4-1, blade mounting bases 2-4-2, cleaning knife mounting bases 2-4-3, and cleaning knife 2-4-4. The housing mounting cover 2-2 is mounted on one side of the fan housing 2-1, and the negative pressure chamber housing 2-5 is mounted on the other side of the fan housing 2-1. The fan blade weld 2-4 is located inside the fan housing 2-1 and mounted on one side of the fan shaft 2-3. The crushing knife 2-7 is mounted on the knife holder 2-6. Each knife holder 2-6 is located inside the negative pressure chamber housing 2-5 and mounted on the fan shaft 2-3.
[0038] The front conveying mechanism 1 includes a front frame 1-1, a rotating protrusion 1-2, a pressing wheel 1-3, a dialing wheel 1-4, a front conveying mechanism side transmission system 1-5, and a front conveying mechanism bottom transmission system 1-6, wherein the front frame 1-1 includes a left side plate 1-1-1, a right side plate 1-1-2, a rotating protrusion mounting hole 1-1-3, and a bottom plate 1-1-4, the rotating protrusion 1-2 includes a protrusion 1-2-1 and a protrusion shaft 1-2-2, the pressing wheel 1-3 includes a pressing wheel body 1-3-1 and a pressing wheel tooth 1-3-2, and the rotating protrusion 1-2 includes a protrusion 1-2-1 and a protrusion shaft 1-2-2. The rotating protrusion 1-2 is installed at the bottom of the front frame 1-1, the pressing wheel 1-3 is installed at the front of the inner side 1-1 of the front frame, the discharging wheel 1-4 is installed at the inner rear of the front frame 1-1, the side transmission system 1-5 of the front conveying mechanism is located on the outer side of the front frame 1-1, and the bottom transmission system 1-6 of the front conveying mechanism is located at the bottom of the front frame 1-1. The left side plate 1-1-1 and the right side plate 1-1-2 of the front frame 1-1 are fixedly connected by the bottom plate 1-1-4, and the bottom plate 1-1-4 is provided with evenly distributed rotating protrusion mounting holes 1-1-3.
[0039] The peeling mechanism 3 includes a rear frame 3-1, a peeling roller assembly 3-2, a peeling roller transmission system 3-3, a peeling roller tensioning device 3-4, an introduction wheel 3-5, a conveying wheel 3-6, a partition 3-7, a partition fixing frame 3-8, a partition introduction frame 3-9, and a conveying wheel transmission system 3-10, wherein the rear frame 3-1 includes a left plate 3-1-1, a connecting frame 3-1-2, a right plate 3-1-3, and a lower inclined plate 3-1-4, and the peeling roller assembly 3-2 includes an active roller 3-2-1 , passive roller 3-2-2, the guide wheel 3-5 includes a guide wheel body 3-5-1 and a guide wheel gear 3-5-2, the transport wheel 3-6 includes a transport wheel body 3-6-1 and a transport wheel gear 3-6-2, the partition 3-7 is provided with a slide 3-7-1, the left plate 3-1-1 and the right plate 3-1-3 inside the rear frame 3-1 are fixedly connected by a connecting frame 3-1-2, the bottom of the rear frame 3-1 is fixedly connected by a lower inclined plate 3-1-4, the peeling roller assembly 3-2 is located at the rear frame In the upper middle part of the inner side of the frame 3-1, the internal active rollers 3-2-1 are adjacent, and the passive rollers 3-2-2 are installed on both sides of the two adjacent active rollers 3-2-1. The front and rear ends are rotatably connected with the peeling roller tensioning device 3-4. The peeling roller transmission system 3-3 is located at the rear end of the peeling roller combination 3-2. The introduction wheel 3-5 and the transport wheel 3-6 are installed at the lower part of the peeling roller combination 3-2. The introduction wheel 3-5 is located in front of the transport wheel 3-6. The partition 3-7 is located at the lower part of the peeling roller combination 3-2. The partition 3-7 is on both sides. There are two combinations, each combination is located between the active roller 3-2-1 and the passive roller 3-2-2, the lower parts of adjacent partitions 3-7 are fixedly connected by the partition fixing frame 3-8, the outermost partition 3-7 is connected to the left plate 3-1-1 and the right plate 3-1-3 through the partition fixing frame 3-8, the middle part of each partition 3-7 is installed through the slide groove 3-7-1, the upper parts of some adjacent partitions 3-7 are fixedly connected by the partition introduction frame 3-9, and the transport wheel transmission system 3-10 is located on the outside of the left plate 3-1-1.
[0040] The working process of the present invention is divided into two working links according to the working links of the device, namely the husk removal auxiliary link and the husk removal link. First, the husk removal auxiliary link: the corn enters the front conveying mechanism 1 and moves to the rear of the device through the action of the pressing wheels 1-3. During this process, the rotating protrusions 1-2 move to loosen the corn husks, and finally enter the peeling mechanism 3 through the dialing wheels 1-4; then enters the husk removal link: the corn enters the upper part of the introduction wheel 3-5 of the peeling mechanism, and passes through the introduction wheel 3-5. It is close to the peeling roller combination 3-2 located above and is transported vertically to the conveying wheel 3-6. The partition 3-7 and the conveying wheel 3-6 keep the corn in the vertical distribution state when it enters and is transported, and finally falls out. In this link, the corn husks are peeled off by the peeling rollers and sucked into the vicinity of the crushing knife 2-7 by the action of the fan blades 2-4-1 and chopped, and finally discharged through the fan outlet. At this time, the fallen kernels fall on the lower inclined plate 3-1-4 due to their own weight and slide into the kernel box, realizing the separation of the husks and kernels.
[0041] The rotating protrusion 1-2 passes through the rotating protrusion mounting hole 1-1-3 through the protrusion shaft 1-2-2, and the protrusion shaft 1-2-2 is installed in conjunction with the cylindrical gear 1-6-2 of the bottom transmission system 1-6 of the front conveying mechanism. The rotating protrusion 1-2 rotates to loosen the husks of the corn passing by.
[0042] The fan blade weld 2-4 has two or more fan blades 2-4-1 mounted on the fan blade mounting seat 2-4-2, the cleaning knife mounting seat 2-4-3 is mounted on the fan blade 2-4-1, and the cleaning knife 2-4-4 is mounted on the cleaning knife mounting seat 2-4-3. The fan blade weld 2-4 plays a role in providing wind power.
[0043] There is a certain axial distance between adjacent inlet wheel teeth 3-5-1 on a single inlet wheel 3-5 of the peeling mechanism 3, ensuring that the corn can vertically enter between the partitions 3-7, the distance between the inlet wheel teeth 3-5-1 of adjacent inlet wheels 3-5 is less than 40 mm, and the distance between the transport wheel teeth 3-6-1 of adjacent transport wheels 3-6 is less than 40 mm to prevent corn from being stuck between the teeth. There is a protrusion distributed on each tooth to increase the friction between the tooth and the corn, so that the corn is transported forward.
[0044] The distance between the partitions 3-7 in each partition assembly is less than 100 mm, ensuring that the corn is transported vertically forward and enhancing the peeling effect.
[0045] The side transmission system 1-5 of the front conveying mechanism is as follows: the pull-out wheel shaft obtains power from the outside, and drives the pressure wheel 1-3 to move through the chain transmission; the lower transmission system 1-6 of the front conveying mechanism 1 is as follows: the rack 1-6-1 obtains power from the outside, drives the rotating protrusion 1-2 to start reciprocating linear motion, so that the cylindrical gear 1-6-2 rotates back and forth, and then drives the next row of cylindrical gears 1-6-2 to rotate back and forth, and so on; the peeling roller transmission system 3-3 is as follows: the main power shaft obtains power from the outside, and transmits the power to the active roller 3-2-1 in the peeling roller combination 3-2 through the bevel gear, and the active roller 3-2-1 drives the passive roller 3-2-2 to move; the conveying wheel transmission system 3-10 is as follows: the introduction wheel shaft obtains power from the outside, and drives the conveying wheel 3-6 to rotate through the chain transmission.
[0046] The above-mentioned specific embodiments are merely specific solutions of the present invention and are not intended to limit the present invention in any other form. Any person skilled in the art may utilize the above-mentioned technical content to modify or modify the above-mentioned embodiments into equivalent embodiments. However, any simple modification, equivalent variation, or modification of the above-mentioned embodiments made in accordance with the technical essence of the present invention, without departing from the technical principles of the present invention, shall fall within the scope of patent protection of the present invention.
Claims
1. Wind-driven corn ear husk removal device, characterized by: It includes a front conveying mechanism, a wind-driven debris removal mechanism, and a peeling mechanism; the front conveying mechanism is arranged at the front of the entire device, the peeling mechanism is arranged at the rear lower part of the entire device, and the wind-driven debris removal mechanism is arranged at the rear upper part of the entire device. The wind-driven debris removal mechanism includes a fan housing, a housing mounting cover, a fan shaft, a fan blade weld, a negative pressure chamber housing, a knife holder, and a crushing knife. Among them, the fan blade weld includes a fan blade, a blade mounting seat, a cleaning knife mounting seat, and a cleaning knife. The housing mounting cover is installed on one side of the fan housing, and the negative pressure chamber housing is installed on the other side of the fan housing. The fan blade weld is located inside the fan housing and installed on one side of the fan shaft. The crushing knife is installed on the knife holder. Each knife holder is located inside the negative pressure chamber housing and installed on the fan shaft. The front conveying mechanism includes a front frame, a rotating protrusion, a pressure wheel, a dial-out wheel, a side transmission system of the front conveying mechanism, and a bottom transmission system of the front conveying mechanism, wherein the front frame includes a left plate, a right plate, a rotating protrusion mounting hole, and a bottom plate, the rotating protrusion includes a protrusion and a protrusion shaft, the pressure wheel includes a pressure wheel body and pressure wheel teeth, the rotating protrusion is installed at the bottom of the front frame, the pressure wheel is installed at the front inner side of the front frame, the dial-out wheel is installed at the rear inner side of the front frame, the side transmission system of the front conveying mechanism is located at the outside of the front frame, the bottom transmission system of the front conveying mechanism is located at the bottom of the front frame, the lower parts of the left and right plates of the front frame are fixedly connected through the bottom plate, and the bottom plate is provided with evenly distributed rotating protrusion mounting holes; The peeling mechanism includes a rear frame, a peeling roller assembly, a peeling roller transmission system, a peeling roller tensioning device, an introduction wheel, a conveying wheel, a partition, a partition fixing frame, a partition introduction frame, and a conveying wheel transmission system, wherein the rear frame includes a left plate, a connecting frame, a right plate, and a lower inclined plate, the peeling roller assembly includes an active roller and a passive roller, the introduction wheel includes an introduction wheel body and introduction wheel teeth, the conveying wheel includes a conveying wheel body and conveying wheel teeth, a slide groove is provided on the partition, the left plate and the right plate inside the rear frame are fixedly connected by a connecting frame, the bottom of the rear frame is fixedly connected by a lower inclined plate, the peeling roller assembly is located in the upper middle part of the inner side of the rear frame, and the active roller inside Adjacent, passive rollers are installed on both sides of two adjacent active rollers, and the front and rear ends are rotatably connected to the peeling roller tensioning device. The peeling roller transmission system is located at the rear end of the peeling roller combination, the guide wheel and the transport wheel are installed at the lower part of the peeling roller combination, the guide wheel is located in front of the transport wheel, the partition is located at the lower part of the peeling roller combination, the partitions are combined in pairs, each combination is located between the active roller and the passive roller, the lower parts of adjacent partitions are fixedly connected by partition fixing frames, the outermost partitions are connected to the left plate and the right plate through the partition fixing frame, the middle part of each partition is installed through a slide groove, and the upper parts of some adjacent partitions are fixedly connected through the partition guide frame, and the transport wheel transmission system is located on the outside of the left plate.
2. The wind-driven corn ear husk removal device according to claim 1 is characterized in that: The rotating protrusion passes through the rotating protrusion installation hole through the protrusion shaft, and the protrusion shaft is installed in cooperation with the cylindrical gear of the transmission system at the bottom of the front conveying mechanism.
3. The wind-driven corn ear husk removal device according to claim 2, characterized in that: The fan blades are welded, and the number of the fan blades is more than 2 and they are mounted on the fan blade mounting seat. The cleaning knife mounting seat is mounted on the fan blades, and the cleaning knife is mounted on the cleaning knife mounting seat.
4. The wind-driven corn ear husk removal device according to claim 3, characterized in that: There is a certain axial distance between adjacent inlet wheel teeth on a single inlet wheel of the peeling mechanism. The distance between the inlet wheel teeth of adjacent inlet wheels is less than 40 mm, and the distance between the transport wheel teeth of adjacent transport wheels is less than 40 mm. There is a protrusion distributed on each tooth.
5. The wind-driven corn ear husk removal device according to claim 4, characterized in that: The distance between the partitions in each partition assembly is less than 100 mm.
6. The wind-driven corn ear husk removal device according to claim 5, characterized in that: The side transmission system of the front conveying mechanism is as follows: the pull-out wheel shaft obtains power from the outside and drives the pressure wheel to move through chain transmission; the lower transmission system of the front conveying mechanism is as follows: the rack obtains power from the outside and drives the rotating protrusion to start reciprocating linear motion, so that the cylindrical gear rotates back and forth, and then drives the next row of cylindrical gears to rotate back and forth, and so on; the peeling roller transmission system is as follows: the main power shaft obtains power from the outside and transmits the power to the active roller in the peeling roller combination through the bevel gear, and the active roller drives the passive roller to move; the conveying wheel transmission system is as follows: the introduction wheel shaft obtains power from the outside and drives the conveying wheel to rotate through chain transmission.