Corn husker feeding mechanism and its method
By designing the feeding mechanism of the corn peeling machine, using the reciprocating baffle and the toggle teeth of multiple toggle discs, the problems of high damage rate and low peeling quality caused by different diameters of corn cobs in the prior art are solved, and a more efficient corn peeling process is achieved.
Patent Information
- Application Number
- CN202411835028.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2044-12-13
AI Technical Summary
When existing corn peeling machines deal with corn cobs of different diameters, the length of the twitching teeth is the same, resulting in corn cobs with larger diameters being squeezed too tightly and have a high breakage rate; while corn cobs with smaller diameters not contacted enough, and the peeling quality is low.
A corn peeling machine feeding mechanism is designed, including a first feeding member and a second feeding member. The first feeding member pulls the corn cob with a larger diameter through the reciprocating baffle, and the second feeding member pulls the teeth length decreases in direction through the toggle roller and multiple toggle discs to adapt to corn cobs of different diameters.
This feeding mechanism effectively reduces the damage rate of corn cobs and improves the peeling quality of corn. It is suitable for corn cobs with larger or smaller diameters.
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Figure CN119522720B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of corn peeling, in particular to a material shifting mechanism of a corn peeling machine and a method thereof. Background Art
[0002] With the development of agricultural science and technology in my country, the planting area of corn seeds and grain corn has been increasing. In the harvest season, the peeling of corn cobs brings heavy labor to seed companies and farmers. Manual peeling is labor-intensive, inefficient, labor-intensive and time-consuming. Some large farms use corn peeling machines to peel corn husks, which reduces the work intensity of workers. The existing peeling machine usually includes: a frame, a feeding mechanism, a material-dipping mechanism, and a peeling mechanism. A cover is arranged above the frame. The peeling mechanism usually includes two groups of peeling rollers, each group of peeling rollers includes two peeling rollers with opposite rotation directions. The material-dipping mechanism includes a toggle roller connected to the cover, a toggle disk arranged on the toggle roller, and a toggle tooth arranged on the toggle disk, so that the spiral groove on the peeling roller continuously applies a downward pulling force and a forward thrust to the outer skin of the corn cob, and the forward thrust and downward squeezing force of the toggle teeth on the corn cob form an auxiliary peeling and auxiliary unloading effect to complete the corn peeling operation, so that the peeling efficiency is high.
[0003] Although the above-mentioned corn peeling machine improves the efficiency of corn peeling, when the corn cobs enter the peeling machine, they are randomly distributed on the peeling mechanism, and the lengths of the shifting teeth are generally the same. For corn cobs with larger diameters, the shifting teeth may squeeze them too tightly, resulting in a higher breakage rate of the corn kernels. For corn cobs with smaller diameters, the shifting teeth may not even contact the corn cobs, resulting in lower corn peeling quality. Summary of the invention
[0004] In order to solve the above technical problems, the present invention provides a corn peeling machine feeding mechanism and method thereof, which can reduce the breakage rate of corn and improve the peeling quality of corn.
[0005] The present invention provides a feeding mechanism of a corn peeler and a method thereof, comprising: a first feeding component close to a feeding port of the corn peeler and located above the peeling mechanism, a second feeding component arranged behind the first feeding component, and a driving component connected to the first feeding component and the second feeding component, wherein the first feeding component comprises: a plurality of baffles and a reciprocating motion structure located above the peeling mechanism, the plurality of baffles are connected to the reciprocating motion structure, the reciprocating motion structure is used to cyclically drive the baffles to move from one side of the peeling mechanism to the other side of the peeling mechanism, so as to move corn cobs with larger diameters on the peeling mechanism from one side of the peeling mechanism to the other side, the second feeding component comprises: a stirring roller and a plurality of stirring disks arranged on the stirring roller, each stirring disk is provided with a plurality of stirring teeth, and the lengths of the stirring teeth on different stirring disks are inconsistent, and the lengths of the stirring teeth decrease in sequence according to the direction of movement of the baffles, so that the stirring teeth can contact the corn cobs and have a forward thrust and a downward squeezing force on the corn cobs, and the driving component is connected to the reciprocating motion structure and the stirring roller to drive the reciprocating motion structure to move and the stirring roller to rotate.
[0006] Optionally, the reciprocating motion structure includes: two connecting plates and a chain drive assembly, the two connecting plates are respectively vertically connected to the opposite side walls of the cover, the two connecting plates are close to the feed port of the corn peeler and are located above the peeling mechanism, the two sprockets of the chain drive assembly are respectively rotatably connected to the two connecting plates, and multiple baffles are vertically connected to the chain of the chain drive assembly so that the baffles reciprocate with the sprockets.
[0007] Optionally, it also includes a third material-dividing component and a fourth material-dividing component which are sequentially located behind the second material-dividing component. The third material-dividing component has the same structure as the first material-dividing component, and the movement direction of the reciprocating motion structure of the third material-dividing component is opposite to that of the first material-dividing component, so as to push the corn cobs with larger diameter on the peeling mechanism to one side of the peeling mechanism; the structure of the fourth material-dividing component is the same as that of the second material-dividing component, and the arrangement order of the dialing disks in the fourth material-dividing component is opposite to that of the second material-dividing component, and the dialing roller of the fourth material-dividing component is connected to the driving component.
[0008] Optionally, the third material shifting component also includes a gear, which is meshed with the sprocket, and the driving component includes: a first transmission shaft drivingly connected to the peeling roller through a bevel gear set, a second transmission shaft drivingly connected to the gear of the third material shifting component through a bevel gear set, and a third transmission shaft drivingly connected to the gear through a bevel gear set, the first transmission shaft is connected to the shifting roller of the fourth material shifting component through a chain transmission assembly, the shifting roller of the fourth material shifting component is drivingly connected to the second transmission shaft through the chain transmission assembly, the second transmission shaft is drivingly connected to the shifting roller of the second material shifting component through the chain transmission assembly, and the shifting roller of the second material shifting component is drivingly connected to the third transmission shaft through the chain transmission assembly.
[0009] Optionally, the lengths of the multiple baffles are inconsistent, and the multiple second baffles are arranged in sequence according to their lengths.
[0010] Optionally, the minimum distance from the longest baffle to the peeling roller of the corn peeling machine is 4 cm - 6 cm.
[0011] Optionally, the distance between the two baffles is 8 cm - 9 cm.
[0012] Optionally, the distance between the two dial plates is 1 cm - 2 cm.
[0013] Optionally, the distances between the first feeding component, the second feeding component, the third feeding component and the fourth feeding component are the same.
[0014] A method for using the feeding mechanism of a corn peeling machine, comprising the following steps:
[0015] Start the corn peeling machine, and the peeling roller of the corn peeling machine rotates;
[0016] The reciprocating structure moves the baffle from one side of the peeling roller to the other side, driving the large-diameter corn cobs to move from one side of the peeling roller to the other side, and then moving towards the second feeding component under the action of the peeling roller;
[0017] The dialing roller in the second feeding component rotates, the long dialing teeth contact the small-diameter corn cobs, and the short dialing teeth contact the large-diameter corn cobs. The dialing teeth on the dialing plate generate a forward thrust and a downward squeezing force on the corn cobs, thereby forming auxiliary peeling and completing the feeding.
[0018] The technical solution provided by the embodiment of the present invention has the following advantages compared with the prior art:
[0019] The feeding mechanism of the corn peeling machine provided by the embodiment of the present invention, by setting the first feeding component, the second feeding component and the driving component, the baffle of the first feeding component moves the larger-diameter corn cobs on one side of the peeling mechanism to the other side of the peeling mechanism. The second feeding component is placed behind the first feeding component. The corn cobs pass through the first dialing component and reach below the second dialing component. The dialing teeth above the peeling mechanism for large-diameter corn cobs are short, and the dialing teeth above the peeling mechanism for small-diameter corn cobs are short, so that the dialing teeth can contact the corn cobs and have a forward thrust and a downward squeezing force on the corn cobs, reducing the situation that when the diameter of the corn cobs is large, the too-long dialing teeth squeeze the corn cobs too tightly, resulting in a large breakage rate of the corn kernels, and also reducing the situation that when the diameter of the corn cobs is small, the dialing teeth do not contact the corn cobs, resulting in incomplete peeling. The feeding mechanism of the corn peeling machine enables the corn cobs with larger or smaller diameters to reduce the breakage rate of the corn while improving the peeling quality of the corn. Description of the Drawings
[0020] Figure 1The front view of the material feeding mechanism of the corn peeling machine provided by the embodiment of the present invention;
[0021] Figure 2 The top view of the material feeding mechanism of the corn peeling machine provided by the embodiment of the present invention;
[0022] Figure 3 It is Figure 2 The cross-sectional view at A-A in
[0023] Figure 4 It is Figure 2 The cross-sectional view at B-B in
[0024] Figure 5 It is Figure 2 The cross-sectional view at C-C in
[0025] Figure 6 It is Figure 2 The enlarged schematic view of the local structure in the D area in
[0026] Explanation of the reference numerals:
[0027] 1. Frame; 10. Housing; 11. Peeling roller; 2. First material feeding component; 20. Connecting plate; 21. Chain drive assembly; 210. Sprocket; 211. Chain; 22. Baffle; 3. Second material feeding component; 30. Pushing roller; 31. Pushing disc; 32. Pushing teeth; 4. Driving component; 40. First transmission shaft; 41. Second transmission shaft; 42. Third transmission shaft; 43. Bevel gear set; 5. Third material feeding component; 50. Gear; 6. Fourth material feeding component. Detailed implementation manners
[0028] The following combines the drawings to describe in detail a specific implementation manner of the present invention, but it should be understood that the protection scope of the present invention is not limited by the specific implementation manner.
[0029] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", etc. is the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the technical solutions of the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present invention.
[0030] In the description of the present invention, it should be noted that, unless otherwise clearly specified and defined, the term "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific situations.
[0031] In addition, in the description of the present invention, "a plurality of" means two or more than two. The terms "first" and "second" are only used for descriptive purposes and cannot be understood as implying or suggesting relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features.
[0032] The present invention will be described below through several specific embodiments. To keep the description below the embodiments of the present invention clear and concise, the detailed descriptions of known functions and known components may be omitted. When any component of the embodiments of the present invention appears in more than one drawing, the component may be denoted by the same reference numeral in each drawing.
[0033] Refer to Figures 1 to 6 , Figure 1 which is the front view of the material feeding mechanism of the corn peeling machine provided by the embodiment of the present invention, Figure 2 which is the top view of the material feeding mechanism of the corn peeling machine provided by the embodiment of the present invention, Figure 3 is Figure 2 the cross-sectional view at A-A in Figure 4 is Figure 2 the cross-sectional view at B-B in Figure 5 is Figure 2 the cross-sectional view at C-C in Figure 6 is Figure 2 the enlarged schematic view of the local structure in the D area in Figures 1 to 6As shown, an embodiment of the present invention provides a feeding mechanism for a corn peeler, comprising: a frame 1 and a cover shell 10 connected to the top of the frame 1, and also comprising: a first feeding component 2 close to the feeding port of the corn peeler and located above the peeling mechanism, a second feeding component 3 arranged behind the first feeding component 2, and a driving component 4 connected to the first feeding component 2 and the second feeding component 3, wherein the first feeding component 2 comprises: a plurality of baffles 22 and a reciprocating structure located above the peeling mechanism, the plurality of baffles 22 are connected to the reciprocating structure, and the reciprocating structure is used to cyclically drive the baffles 22 to move from one side of the peeling mechanism to the other side of the peeling mechanism. , to move the corn cob with a larger diameter on the peeling mechanism from one side of the peeling mechanism to the other side, the second material-moving component 3 includes: a moving roller 30 and a plurality of moving disks 31 arranged on the moving roller 30, each moving disk 31 is provided with a plurality of moving teeth 32, and the lengths of the moving teeth 32 on different moving disks 31 are inconsistent, and the lengths of the moving teeth 32 decrease in sequence according to the movement direction of the baffle 22, so that the moving teeth 32 can contact the corn cob and have a forward thrust and a downward squeezing force on the corn cob, and the driving component 4 is connected to the reciprocating motion structure and the moving roller 30 to drive the reciprocating motion structure to move and the moving roller 30 to rotate.
[0034] By setting the first material-pickup component 2, the second material-pickup component 3 and the driving component 4, the baffle 22 of the first material-pickup component 2 pushes the corn cob with a larger diameter on one side of the peeling mechanism to the other side of the peeling mechanism, and the second material-pickup component 3 is placed behind the first material-pickup component 2, and the corn cob passes through the first pickup component to the bottom of the second pickup component, and the pickup teeth 32 above the peeling mechanism of the large-diameter corn cob are short in length, and the pickup teeth 32 above the peeling mechanism of the small-diameter corn cob are short in length, so that the pickup teeth 32 can contact the corn cob and have a forward thrust and a downward squeezing force on the corn cob, thereby reducing the situation where the corn cob is too long and squeezes the corn cob too tightly when the corn cob has a larger diameter, and reducing the situation where the corn kernel breakage rate is large when the corn cob has a smaller diameter, and the pickup teeth 32 do not contact the corn cob, resulting in incomplete peeling. The material-pickup mechanism of the corn peeling machine can reduce the breakage rate of corn and improve the peeling quality of corn when there are corn cobs with larger or smaller diameters.
[0035] Reference again Figure 2 and Figure 3 The reciprocating motion structure includes: two connecting plates 20 and a chain transmission assembly 21. The two connecting plates 20 are respectively vertically connected to the opposite side walls of the cover 10. The two connecting plates 20 are close to the feed port of the corn peeling machine and are located above the peeling mechanism. The two sprockets 210 of the chain transmission assembly 21 are respectively rotatably connected to the two connecting plates 20. Multiple baffles 22 are vertically connected to the chains 211 of the chain transmission assembly 21 so that the baffles 22 reciprocate with the sprockets 210.
[0036] The driving component 4 causes the peeling roller 11 of the corn peeling machine to drive the sprocket 210 in the first material feeding component 2 to rotate, and at the same time drives the shifting roller 30 in the second material feeding component 3 to rotate. The rotation of the sprocket 210 in the first material feeding component 2 drives the chain 211 to move, thereby driving the baffle 22 to move along with the movement of the chain 211. When the chain drive assembly 21 causes the sprocket 210 to rotate, the baffle 22 can move in a cycle in one direction above the peeling mechanism, preventing the corn from piling up on both sides above the peeling mechanism.
[0037] Refer again to Figure 2 , the material feeding mechanism further includes a third material feeding component 5 and a fourth material feeding component 6 that are sequentially located after the second material feeding component 3. The third material feeding component 5 has the same structure as the first material feeding component 2, and the movement direction of the reciprocating movement structure of the third material feeding component 5 is opposite to that of the first material feeding component 2 to push the larger diameter corn cobs on the peeling mechanism to one side of the peeling mechanism; the structure of the fourth material feeding component 6 is the same as the structure of the second material feeding component 3, and the arrangement order of the shifting disks 31 in the fourth material feeding component 6 is opposite to the arrangement order of the shifting disks 31 in the second material feeding component 3. The shifting roller 30 of the fourth material feeding component 6 is connected to the driving component 4.
[0038] Because the first material feeding component 2 can only shift the larger diameter corn cobs on one set of peeling rollers 11 to another set of peeling rollers 11, causing the smaller diameter ones to stay on this set of peeling rollers 11, and the smaller corn cobs originally on the other set of peeling rollers 11 still stay on this set of peeling rollers 11, and the length of the shifting teeth 32 on this side is relatively short, so the smaller diameter corn cobs on this side cannot contact the shifting teeth 32, and it is possible that the smaller diameter corn cobs on this side cannot be completely peeled. By setting the third material feeding component 5 and the fourth material feeding component 6, the larger diameter corn cobs after passing through the second shifting component are pushed back to the original side, and the smaller diameter corn cobs remain stationary. The arrangement order of the shifting disks 31 in the fourth material feeding component 6 is opposite to the arrangement order of the shifting disks 31 in the second material feeding component 3, so that the smaller diameter corn cobs can also receive a downward pressure, further improving the peeling quality of the corn.
[0039] Refer again to Figures 2 to 4The third material-digging component 5 also includes a gear 50, which is meshed with the sprocket 210. The driving component 4 includes: a first transmission shaft 40 drivingly connected to the peeling roller 11 through a bevel gear set 43, a second transmission shaft 41 drivingly connected to the gear 50 of the third material-digging component 5 through a bevel gear set 43, and a third transmission shaft 42 drivingly connected to the gear 50 through a bevel gear set 43. The first transmission shaft 40 is connected to the stirring roller 30 of the fourth material-digging component 6 through a chain transmission assembly 21, the stirring roller 30 of the fourth material-digging component 6 is drivingly connected to the second transmission shaft 41 through the chain transmission assembly 21, the second transmission shaft 41 is drivingly connected to the stirring roller 30 of the second material-digging component 3 through the chain transmission assembly 21, and the stirring roller 30 of the second material-digging component 3 is drivingly connected to the third transmission shaft 42 through the chain transmission assembly 21.
[0040] The gear 50 is rotatably connected to the connecting plate 20, and the gear 50 is meshed with the sprocket 210. The gear 50 is connected to the driving component 4, so that the third material-dispensing component 5 moves in the opposite direction to the chain 211 in the first material-dispensing component 2. By setting the driving component 4, the power input of the material-dispensing mechanism of the corn peeling machine is the same as the power mechanism of the peeling roller 11, which saves energy and enables the first material-dispensing component 2, the second material-dispensing component 3, the third material-dispensing component 5 and the fourth material-dispensing component 6 to operate synchronously, thereby further improving the peeling quality and reducing the breakage rate of corn kernels.
[0041] The lengths of the plurality of baffles 22 are not consistent, and the plurality of second baffles 22 are arranged in sequence according to their lengths. This avoids the baffles 22 pushing several corn cobs at a time when there are many corn cobs with larger diameters, causing blockage, or pushing two corn cobs with smaller diameters together onto another set of peeling rollers 11, thereby further improving the peeling quality.
[0042] The minimum distance from the longest baffle 22 to the peeling roller 11 of the corn peeler is 4cm-6cm. The diameter of the corn cob is usually 4cm-6cm, and the minimum distance from the longest baffle 22 to the peeling roller 11 of the corn peeler is 4cm-6cm, which avoids the baffle 22 being too long, and pushes the corn cobs of normal length onto another set of peeling rollers 11, further improving the peeling quality.
[0043] The distance between the two baffles 22 is 8 cm to 9 cm, which prevents the corn cob from being stuck between the two baffles 22 and causing damage to the corn kernels, thereby further reducing the breakage rate of the corn kernels.
[0044] The distance between the two toggle plates 31 is 1 cm to 2 cm, so that the toggle teeth 32 can contact the corn as much as possible without affecting the rotation, thereby further improving the corn peeling quality.
[0045] The distances between the first material feeding component 2, the second material feeding component 3, the third material feeding component 5 and the fourth material feeding component are the same, which can avoid continuous force on the corn kernels at the same position due to too small spacing, prevent damage, further improve the peeling quality and reduce the breakage rate of the corn kernels.
[0046] The using method of the material feeding mechanism of the corn peeling machine includes the following steps:
[0047] Start the corn peeling machine, and the peeling roller 11 of the corn peeling machine rotates;
[0048] The reciprocating structure makes the baffle 22 move from one side of the peeling roller 11 to the other side, driving the corn cobs with large diameter to move from one side of the peeling roller 11 to the other side, and then moving towards the second material feeding component 3 under the action of the peeling roller 11;
[0049] The driving roller 30 in the second material feeding component 3 rotates. The driving teeth 32 with longer length contact the corn cobs with smaller diameter, and the driving teeth 32 with shorter length contact the corn cobs with larger diameter. The driving teeth 32 on the driving disk 31 generate a forward thrust and a downward extrusion force on the corn cobs, thus forming auxiliary peeling and completing material feeding.
[0050] This process reduces the situation where the driving teeth 32 squeeze the corn cobs too tightly when the diameter of the corn cobs is relatively large, resulting in a large breakage rate of the corn kernels, and also reduces the situation where the driving teeth 32 do not contact the corn when the diameter of the corn cobs is relatively small, resulting in incomplete peeling and low peeling quality.
[0051] The above-disclosed are only several specific embodiments of the present invention. However, the embodiments of the present invention are not limited thereto, and any changes that can be thought of by those skilled in the art should fall within the protection scope of the present invention.
Claims
1. The feeding mechanism of the corn peeling machine is characterized by: include: A first material-moving component (2) located near the feeding port of the corn peeling machine and above the peeling mechanism, a second material-moving component (3) located behind the first material-moving component (2), and a driving component (4) connected to the first material-moving component (2) and the second material-moving component (3); The first material shifting component (2) comprises: a plurality of baffles (22) and a reciprocating structure located above the peeling mechanism, the plurality of baffles (22) being connected to the reciprocating structure, the reciprocating structure being used to cyclically drive the baffles (22) to move from one side of the peeling mechanism to the other side of the peeling mechanism, so as to shift the corn cobs with a larger diameter on the peeling mechanism from one side of the peeling mechanism to the other side; The second material-moving component (3) comprises: a moving roller (30) and a plurality of moving disks (31) arranged on the moving roller (30), each moving disk (31) being provided with a plurality of moving teeth (32), and the moving teeth (32) on different moving disks (31) are of different lengths, and the lengths of the moving teeth (32) decrease in sequence according to the direction of movement of the baffle (22), so that the moving teeth (32) can contact the corn cob and exert a forward thrust and a downward pressing force on the corn cob; The driving component (4) is connected to the reciprocating structure and the shifting roller (30) to drive the reciprocating structure to move and the shifting roller (30) to rotate; The reciprocating motion structure comprises: two connecting plates (20) and a chain transmission assembly (21), the two connecting plates (20) being respectively vertically connected to opposite side walls of the cover (10), the two connecting plates (20) being close to the feed port of the corn peeling machine and being located above the peeling mechanism, the two sprocket wheels (210) of the chain transmission assembly (21) being respectively rotatably connected to the two connecting plates (20), and the plurality of baffles (22) being vertically connected to the chains (211) of the chain transmission assembly (21) so that the baffles (22) reciprocate along with the sprocket wheels (210); The invention also comprises a third material-moving component (5) and a fourth material-moving component (6) which are sequentially located after the second material-moving component (3); the third material-moving component (5) has the same structure as the first material-moving component (2); the movement direction of the reciprocating structure of the third material-moving component (5) is opposite to that of the first material-moving component (2), so as to push the corn cobs with larger diameters on the peeling mechanism to one side of the peeling mechanism; the structure of the fourth material-moving component (6) is the same as that of the second material-moving component (3); the arrangement order of the moving disks (31) in the fourth material-moving component (6) is opposite to that of the moving disks (31) in the second material-moving component (3); and the moving roller (30) of the fourth material-moving component (6) is connected to the driving component (4).
2. The material feeding mechanism of the corn peeling machine according to claim 1, characterized in that: The third material shifting component (5) further comprises a gear (50), wherein the gear (50) meshes with the sprocket (210), and the driving component (4) comprises: a first transmission shaft (40) drivingly connected to the peeling roller (11) via a bevel gear set (43), a second transmission shaft (41) drivingly connected to the gear (50) of the third material shifting component (5) via a bevel gear set (43), and a third transmission shaft (42) drivingly connected to the gear (50) via a bevel gear set (43). The shaft (40) is connected to the paddle roller (30) of the fourth material paddle component (6) through a chain transmission assembly (21); the paddle roller (30) of the fourth material paddle component (6) is drivingly connected to the second transmission shaft (41) through the chain transmission assembly (21); the second transmission shaft (41) is drivingly connected to the paddle roller (30) of the second material paddle component (3) through the chain transmission assembly (21); and the paddle roller (30) of the second material paddle component (3) is drivingly connected to the third transmission shaft (42) through the chain transmission assembly (21).
3. The material feeding mechanism of the corn peeling machine according to claim 1, characterized in that: The lengths of the plurality of baffles (22) are inconsistent, and the plurality of second baffles (22) are arranged in sequence according to their lengths.
4. The material feeding mechanism of the corn peeling machine according to claim 1, characterized in that: The minimum distance from the longest baffle (22) to the corn peeling machine peeling roller (11) is 4cm-6cm.
5. The material feeding mechanism of the corn peeling machine according to claim 1, characterized in that: The distance between the two baffles (22) is 8 cm-9 cm.
6. The material feeding mechanism of the corn peeling machine according to claim 1, characterized in that: The distance between the two dials (31) is 1 cm-2 cm.
7. The material feeding mechanism of the corn peeling machine according to claim 3, characterized in that: The distances between the first material shifting component (2), the second material shifting component (3), the third material shifting component (5) and the fourth material shifting component (6) are the same.
8. A method for using a material dispensing mechanism of a corn peeler, using the material dispensing mechanism of a corn peeler as claimed in any one of claims 1 to 6, characterized in that: The following steps are involved: The corn peeling machine is started, and the peeling roller (11) of the corn peeling machine rotates; The reciprocating structure causes the baffle (22) to move from one side of the peeling roller (11) to the other side, driving the corn cob with a large diameter to move from one side of the peeling roller (11) to the other side, and then move to the second material-dispensing component (3) under the action of the peeling roller (11); The stirring roller (30) in the second material-moving component (3) rotates, the long stirring teeth (32) contact the small diameter corn cobs, and the short stirring teeth (32) contact the large diameter corn cobs. The stirring teeth (32) on the stirring plate (31) generate a forward thrust and a downward squeezing force on the corn cobs, thereby forming auxiliary peeling and completing the material-moving.
Citation Information
Patent Citations
Multichannel corn husker
CN104380930A
Corn peeling device
CN220140226U