Peeling machine high in transmission energy efficiency and convenient to use

By designing a three-part transmission assembly and a component that integrates peeling, screening, and collection functions in the corn peeling machine, the problems of low transmission efficiency and difficulty in cleaning loose grains are solved, achieving efficient transmission and convenient use.

CN223885743UActive Publication Date: 2026-02-10SHANDONG HANWO AGRI EQUIP CO LTD
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Patent Information

Application Number
CN202520205625.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-02-10
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

The existing corn peeling machine has a complex transmission structure, resulting in low transmission efficiency. Furthermore, it is difficult to effectively remove loose kernels during the peeling process, leading to resource waste and equipment maintenance difficulties.

Method used

A peeling machine with high transmission efficiency and ease of use was designed. It adopts a transmission structure divided into first, second and third transmission components, combined with peeling, skin screening and particle collection components. It utilizes components such as conveying, peeling, primary screening and skin output auger to achieve efficient transmission and cleaning.

Benefits of technology

It improves transmission efficiency, simplifies transmission structure, facilitates maintenance, solves the problem of loose particle collection, reduces resource waste, and enhances the ease of use of the peeling machine.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223885743U_ABST
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Abstract

The peeling machine is high in transmission energy efficiency and convenient to use and comprises a peeling machine frame, a corn dumping inclined plate and an anti-jumping baffle are connected to the upper surface of the peeling machine frame, a peeling component, a skin screening component and a scattered grain collecting assembly are connected into the peeling machine frame, a transmission component is connected to the outer side of the peeling machine frame, and the transmission component is connected with a transmission shaft. A corn output assembly is arranged at the output end of the husking assembly, the skin screening part comprises a primary screening assembly and a skin output assembly, the complexity of power input is reduced through the arranged transmission part, the transmission efficiency is improved, the husking part, the skin screening part and a scattered grain collecting assembly are integrated, use is more convenient, and the husking efficiency is improved. The primary screening auger and the epidermis output auger solve the problem that corn epidermis is blocked and cannot be removed, the scattered grain collecting assembly effectively solves the problem of collection of scattered grains wrapped in the corn epidermis, and waste is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the corn harvesting machinery field, concretely relates to a high transmission energy efficiency and convenient to use's barker. BACKGROUND

[0002] The present stage corn harvester mainly is mainly to collect fruit ear, and the stalk after harvesting is smashed by the still field machine and is returned to the field. The skin on the corn needs to be removed and discharged from the agricultural machine, and a small amount of scattered particles removed during the peeling process are mixed in the corn skin and need to be cleaned and collected. The existing mechanical corn skin discharge is not smooth, the scattered particles wrapped in the corn skin cannot be effectively cleaned and recovered, the transmission required by the whole barker is too complex, it is not conducive to long-time use in the field, and the transmission structure is too complex to cause winding of the stem and leaf and unable to clean quickly. UTILITY MODEL CONTENTS

[0003] The utility model aims at overcoming the insufficient of the above-mentioned traditional technology, provides a high transmission energy efficiency and convenient to use's barker.

[0004] The utility model aims at overcoming the insufficient of the above-mentioned traditional technology, provides a high transmission energy efficiency and convenient to use's barker.

[0005] A corn peeling machine with high transmission efficiency and ease of use is characterized by: a peeling frame, with a corn tilting ramp and an anti-jump baffle connected to the upper surface of the frame; a peeling component, a husk screening component, and a grain collection component connected inside the frame; a transmission component connected to the outer side of the frame, which is drively connected to the peeling component, the husk screening component, and the grain collection component; the peeling component includes a conveying component and a peeling assembly; the conveying assembly has four conveying axles, three of which are fixedly connected to one end of a driven gear, and the remaining one conveying axle has one end of a driven gear. A conveying transmission gear is fixedly connected to one end of the peeling assembly. A conveying transmission chain is connected between two adjacent driven conveying gears. The conveying transmission chain drives the conveying transmission gear and the driven conveying gear. A corn output assembly is provided at the output end of the peeling assembly. The peeling assembly includes a peeling transmission shaft. The husk screening component includes a primary screening component and a husk output component. The primary screening component and the husk output component form a husk screening chamber. The primary screening component includes a primary screening auger. The husk output component includes a husk output auger. The loose grain collection component includes a loose grain conveying auger. The transmission component includes a first transmission component. A second transmission assembly and a third transmission assembly are included. The first transmission assembly includes a power input pulley, which is connected to an external power source by a power input belt. A power input gear is fixedly connected to the side of the power input pulley. One end of the peeling drive shaft is fixedly connected to a first drive gear, and a first drive chain connects the power input gear and the first drive gear. The second transmission assembly includes a first driven gear, which is fixedly connected to the other end of the peeling drive shaft. One end of the primary screening auger is fixedly connected to a second primary screening drive gear, and the outer skin output auger... A second conveying transmission gear is fixedly connected to one end of the first driven gear, the second primary screening transmission gear, and the second conveying transmission gear are connected by a second transmission chain. The third transmission assembly includes a second driven gear, which is fixedly connected to the other end of the primary screening auger. A third reversing gear set is provided on the outside of the peeling frame. A third reversing chain is connected between the second driven gear and the third reversing gear set. The other ends of the two non-adjacent conveying wheel shafts are fixedly connected to a third transmission gear. A third transmission chain is connected between the third transmission gear and the third reversing gear set.

[0006] As an improvement: multiple conveying wheels for conveying corn are fixedly connected to the conveying wheel shaft, and the multiple conveying wheels are evenly distributed on the conveying wheel shaft.

[0007] As an improvement: the peeling assembly includes a peeling ratchet shaft and a peeling conveyor shaft. Multiple peeling ratchet teeth for peeling are fixedly connected to the peeling ratchet shaft. A ratchet shaft drive gear is fixedly connected to one end of the peeling ratchet shaft near the peeling drive shaft. A conveying threaded protrusion for directional conveying of corn is fixedly connected to the peeling conveyor shaft. A conveying shaft drive gear is fixedly connected to one end of the peeling conveyor shaft near the peeling drive shaft, and the conveying shaft drive gear meshes with the ratchet shaft drive gear. A peeling driven bevel gear is fixedly connected to one end of the peeling ratchet shaft near the peeling drive shaft, and the peeling driven bevel gear is located outside the ratchet shaft drive gear. A peeling drive bevel gear is fixedly connected to the peeling drive shaft, and the peeling drive bevel gear meshes with the peeling driven bevel gear.

[0008] As an improvement: the conveying assembly includes a corn output dial shaft, on which multiple corn output dial plates are fixedly connected. The multiple corn output dial plates are distributed at equal angles on the corn output dial shaft. The corn output dial shaft is rotatably connected to the peeling frame. One end of the corn output dial shaft is fixedly connected to a corn output driven gear, and the other end of the conveying wheel shaft near the conveying assembly is fixedly connected to a corn output transmission gear. A corn output transmission chain is drivingly connected between the corn output transmission gear and the corn output driven gear.

[0009] As an improvement: the primary screening assembly includes a guide plate, which is fixedly connected to the peeling frame, and a primary screening cylinder is fixedly connected to the guide plate. One end of the primary screening auger is fixedly connected to a primary screening conveyor plate.

[0010] As an improvement: the skin output assembly includes a skin output screening cylinder, one end of which is connected to a skin output port, a skin output guide cylinder is connected below the skin output port, a skin output conveying plate is fixedly connected to one end of the skin output auger near the skin output port, a power transmission pulley is fixedly connected to the power input pulley, a crushing pulley is rotatably connected to the skin output guide cylinder, and a crushing transmission belt is drivingly connected between the crushing pulley and the power transmission pulley.

[0011] As an improvement: the bulk grain collection assembly includes a bulk grain collection chamber, in which two bulk grain actuating shafts and a bulk grain conveying auger are rotatably connected. Multiple bulk grain actuating rods are fixedly connected to the two bulk grain actuating shafts. One end of the bulk grain conveying auger is fixedly connected to a bulk grain drive gear that is connected to external transmission. The other end of the bulk grain conveying auger is provided with a bulk grain output sleeve. The bulk grain output sleeve is fixedly connected to the peeling frame. A bulk grain guide groove is fixedly connected to the bulk grain output sleeve.

[0012] As an improvement: the grain lifting assembly includes an elevator and a grain bin, with a hinge connecting the elevator and the grain bin. A chain 5 is internally connected to the elevator, and multiple scrapers 6 for lifting grains are connected to the chain 5. A fixed seat is fixedly connected to the side of the elevator, and a cleaning fan is connected to the upper outer side of the elevator.

[0013] By adopting the above technical solution, this utility model has the following advantages compared with the prior art:

[0014] By designing the transmission components, the transmission is effectively divided into a first transmission component, a second transmission component, and a third transmission component, reducing the complexity of power input. All power inputs of this application are achieved with less power input, increasing the transmission efficiency of this application. Furthermore, the peeling component, the husk screening component, and the loose grain collection component are integrated on the peeling frame, making it more convenient to use. The design of the primary screening auger and the husk output auger solves the problem of traditional corn husk clogging. The design of the loose grain collection component can effectively solve the problem of collecting loose grains wrapped in the corn husk, reducing waste. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0016] Figure 2 This is a three-dimensional structural diagram of the present invention.

[0017] Figure 3 yes Figure 2 A supplementary structural diagram of the local structure.

[0018] Figure 4 This is a structural schematic diagram from another perspective of this utility model.

[0019] Figure 5 yes Figure 2 A cross-sectional structural diagram of the peeling component.

[0020] Figure 6 yes Figure 2 A schematic diagram of the cross-sectional structure of the middle skin screening component and the particle collection assembly.

[0021] Figure 7 yes Figure 6 A top view of the primary and intermediate screening components.

[0022] Figure 8 yes Figure 6 A three-dimensional structural diagram of the middle skin output component.

[0023] Figure 9 yes Figure 6 A three-dimensional structural diagram of the medium particle collection component.

[0024] Figure 10 yes Figure 5 A schematic diagram of the side structure of the peeling component.

[0025] Figure 11 yes Figure 2 An enlarged structural diagram of the first transmission component.

[0026] Figure 12 yes Figure 1 A three-dimensional structural diagram of the medium-grain lifting component.

[0027] In the diagram: 1. Peeling frame; 2. Corn tilting ramp; 3. Anti-jump baffle; 4. Peeling component; 41. Conveying assembly; 411. Conveying wheel axle; 412. Conveying turntable; 413. Conveying drive gear; 414. Conveying driven gear; 415. Conveying drive chain; 42. Peeling assembly; 421. Peeling drive shaft; 422. Peeling drive bevel gear; 423. Peeling driven bevel gear; 424. Peeling ratchet shaft; 425. Peeling ratchet teeth; 426. Ratchet shaft drive gear; 427. Peeling conveyor shaft; 428. Conveying threaded protrusion; 42 9. Conveyor shaft drive gear; 43. Corn output assembly; 431. Corn output drive gear; 432. Corn output driven gear; 433. Corn output drive chain; 434. Output turntable shaft; 435. Output turntable plate; 5. Skin screening component; 51. Skin screening chamber; 52. Primary screening assembly; 521. Guide inclined plate; 522. Primary screening auger; 523. Primary screening screen cylinder; 524. Primary screening conveyor plate; 53. Skin output assembly; 531. Skin output auger; 532. Skin output screening screen cylinder; 533. Skin output port; 534. 535. Surface output guide cylinder; 536. Surface output conveyor plate; 537. Power transmission pulley; 538. Crushing pulley; 539. Crushing transmission belt; 6. Particle collection assembly; 61. Particle collection chamber; 62. Particle conveying auger; 63. Particle actuating shaft; 64. Particle actuating rod; 65. Particle output sleeve; 66. Particle guide chute; 67. Particle drive gear; 7. Transmission component; 71. First transmission assembly; 711. Power input pulley; 712. Power output belt; 713. Power input gear; 714. First transmission gear; 7 15. First transmission chain; 72. Second transmission assembly; 721. First driven gear; 722. Second primary screening transmission gear; 723. Second conveying transmission gear; 724. Second transmission chain; 73. Third transmission assembly; 731. Second driven gear; 732. Third reversing gear set; 733. Third reversing chain; 734. Third transmission gear; 735. Third transmission chain; 8. Grain lifting assembly; 81. Lifter; 82. Hinge; 83. Grain bin; 84. Cleaning fan; 85. Chain; 86. Scraper; 87. Fixing base. Detailed Implementation

[0028] Example: As attached Figures 1 to 12 As shown, a peeling machine with high transmission efficiency and convenient use includes a peeling frame 1. A corn tilting ramp 2 and an anti-jump baffle 3 are connected to the upper surface of the peeling frame 1. A peeling component 4, a husk screening component 5, and a loose grain collection component 6 are connected inside the peeling frame 1. A transmission component 7 is connected to the outside of the peeling frame 1, and the transmission component 7 is drivingly connected to the peeling component 4, the husk screening component 5, and the loose grain collection component 6. The peeling component 4 includes a conveying component 41 and a peeling component 42. The conveying component 41 is provided with four conveying axles 411, three of which are fixedly connected to a driven conveying gear 414 at one end, and the remaining one is fixed at one end. A conveyor drive gear 413 is connected to the hulling assembly 42. A conveyor drive chain 415 is connected between two adjacent driven gears 414. The conveyor drive chain 415 drives the conveyor drive gear 413 and the driven gear 414. A corn output assembly 43 is provided at the output end of the hulling assembly 42. The hulling assembly 42 includes a hulling drive shaft 421. The hulling screening component 5 includes a primary screening component 52 and a hulling output component 53. The primary screening component 52 and the hulling output component 53 form a hulling screening chamber 51. The primary screening component 52 includes a primary screening auger 522. The hulling output component 53 includes a hulling output auger 531. The loose grain collection component 6 includes a loose grain conveying auger 62. The corn tilting ramp 2 facilitates the large-scale dumping of corn, increasing the efficiency of corn hulling. The anti-jump baffle 3 effectively prevents corn from jumping out of the device or reducing hulling efficiency when it is fed into the hulling assembly 4.

[0029] The transmission component 7 includes a first transmission assembly 71, a second transmission assembly 72, and a third transmission assembly 73. The first transmission assembly 71 includes a power input pulley 711, which is connected to an external power source by a power input belt 712. A power input gear 713 is fixedly connected to the side of the power input pulley 711. One end of the peeling transmission shaft 421 is fixedly connected to a first transmission gear 714, and a first transmission chain 715 connects the power input gear 713 and the first transmission gear 714. The second transmission assembly 72 includes a first driven gear 721, which is fixedly connected to the other end of the peeling transmission shaft 421. One end of the primary screening auger 522 is fixedly connected to a second primary screening transmission gear 722. One end of the skin output auger 531 is fixedly connected to a second conveying transmission gear 723. A second transmission chain 724 is connected to the first driven gear 721, the second primary screening transmission gear 722, and the second conveying transmission gear 723. The third transmission assembly 73 includes a second driven gear 731, which is fixedly connected to the other end of the primary screening auger 522. A third reversing gear set 732 is provided on the outside of the peeling frame 1. A third reversing chain 733 is connected to the second driven gear 731 and the third reversing gear set 732. The other ends of the two non-adjacent conveying wheel shafts 411 are fixedly connected to a third transmission gear 734. A third transmission chain 735 is connected to the third reversing gear set 732. The first transmission component 71, the second transmission component 72, and the third transmission component 73 can fully utilize transmission efficiency. The transmission structure is simple and easy to maintain and replace the transmission components 7. The first transmission chain 715, the second transmission chain 724, the third reversing chain 733, and the third transmission chain 735 are all equipped with adjusting gears for adjusting chain tension, which facilitates the replacement and maintenance of the first transmission chain 715, the second transmission chain 724, the third reversing chain 733, and the third transmission chain 735.

[0030] Multiple conveying rollers 412 for conveying corn are fixedly connected to the conveying wheel shaft 411, and the multiple conveying rollers 412 are evenly distributed on the conveying wheel shaft 411. The conveying rollers 412 can effectively push the corn to move along the path of the peeling component 42, and the conveying rollers 412 are made of rubber, which avoids damage to the surface of the corn to a certain extent.

[0031] The peeling assembly 42 includes a peeling ratchet shaft 424 and a peeling conveyor shaft 427. Multiple peeling ratchet teeth 425 for peeling are fixedly connected to the peeling ratchet shaft 424. A ratchet shaft drive gear 426 is fixedly connected to one end of the peeling ratchet shaft 424 near the peeling drive shaft 421. A conveying threaded protrusion 428 for directional conveying of corn is fixedly connected to the peeling conveyor shaft 427. The end of the peeling conveyor shaft 427 near the peeling drive shaft 421 is fixedly connected to... A conveyor shaft drive gear 429 is provided, which meshes with a ratchet shaft drive gear 426. A peeling driven bevel gear 423 is fixedly connected to one end of the peeling ratchet shaft 424 near the peeling drive shaft 421. The peeling driven bevel gear 423 is located outside the ratchet shaft drive gear 426. A peeling drive bevel gear 422 is fixedly connected to the peeling drive shaft 421, and the peeling drive bevel gear 422 meshes with the peeling driven bevel gear 423. The meshing connection between the conveyor shaft drive gear 429 and the ratchet shaft drive gear 426 enables adjacent gears to rotate in opposite directions, thereby causing the peeling ratchet teeth 425 on the peeling ratchet shaft 424 to peel off the corn husks. Then, the spiral structure of the conveying threaded protrusion 428 on the peeling conveyor shaft 427 drives the corn to be conveyed backward.

[0032] The conveying assembly 41 includes a corn output turntable shaft 434, on which multiple corn output turntables 435 are fixedly connected. These turntables 435 are evenly distributed at an included angle on the corn output turntable shaft 434. The corn output turntable shaft 434 is rotatably connected to the peeling frame 1. One end of the corn output turntable shaft 434 is fixedly connected to a corn output driven gear 432, and the other end of the conveying wheel shaft 411 near the conveying assembly 41 is fixedly connected to a corn output transmission gear 431. A corn output transmission chain 433 drives between the corn output transmission gear 431 and the corn output driven gear 432. The corn output turntables 435 can remove peeled corn from the outlet, preventing blockage. The contact area between the corn output turntables 435 and the corn is made of rubber to prevent damage to the corn.

[0033] The primary screening assembly 52 includes a guide inclined plate 521, which is fixedly connected to the peeling frame 1. A primary screening cylinder 523 is fixedly connected to the guide inclined plate 521, and a primary screening conveying plate 524 is fixedly connected to one end of the primary screening auger 522. The primary screening auger 522 can transport the corn husks, and the primary screening cylinder 523 can screen the loose grains mixed in with the husks. The guide inclined plate 521 can guide the peeled husks to pass through the primary screening cylinder 523 first, and the primary screening conveying plate 524 can send the primary screened corn husks into the husk conveying assembly 41.

[0034] The skin output assembly 53 includes a skin output screening cylinder 532, one end of which is connected to a skin output port 533, and a skin output guide cylinder 534 is connected below the skin output port 533. A skin output auger 531 is fixedly connected to a skin output conveying plate 535 at one end near the skin output port 533. The corn husks are transported by the auger 531, and the loose grains mixed in with the corn husks are further screened by the sieve screen cylinder 532. The sieved corn husks are conveyed through the husk output port 533 to the husk output guide cylinder 534 and discharged by the husk output conveyor plate 535. The power input pulley 711 is fixedly connected to the power transmission pulley 536, and the pulverizing pulley 537 is rotatably connected to the husk output guide cylinder 534. The pulverizing pulley 537 and the power transmission pulley 536 are connected by a pulverizing transmission belt 538. The pulverizing pulley 537 drives the pulverizing device located in the husk output guide cylinder 534 to rotate, thereby realizing the pulverizing treatment of the husks. The pulverizing transmission belt 538 realizes the transmission between the pulverizing pulley 537 and the power transmission pulley 536, and the power input pulley 711 drives the power transmission pulley 536 to rotate, thus optimizing the power transmission.

[0035] The bulk grain collection assembly 6 includes a bulk grain collection chamber 61, within which two bulk grain actuating shafts 63 and a bulk grain conveying auger 62 are rotatably connected. Multiple bulk grain actuating rods 64 are fixedly connected to the two bulk grain actuating shafts 63. One end of the bulk grain conveying auger 62 is fixedly connected to a bulk grain drive gear 67 for external transmission, and the other end of the bulk grain conveying auger 62 is provided with a bulk grain output sleeve 65. The bulk grain output sleeve 65 is fixedly connected to the peeling frame 1, and a bulk grain guide chute 66 is fixedly connected to the bulk grain output sleeve 65. The bulk grain conveying auger 62 facilitates the conveying of bulk grains collected in the bulk grain collection chamber 61, discharging the bulk grains through the bulk grain output sleeve 65 and the bulk grain guide chute 66, thus preventing waste of bulk grains.

[0036] The grain lifting assembly 8 includes a lifter 81 and a grain bin 83, connected by a hinge 82. A chain 85 is internally connected to the lifter 81, and multiple scrapers 86 for lifting the grains are connected to the chain 85. A fixing seat 87 is fixedly connected to the side of the lifter 81, and a cleaning fan 84 is connected to the upper outer side of the lifter 81. The chain 85 drives the scrapers 86 to move, thereby transporting the loose grains discharged from the loose grain guide chute 66 upwards for storage in the grain bin 83. The scrapers 86 are a combination of steel plate and rubber, with the rubber providing a sealed transport mechanism.

Claims

1. A peeling machine with high transmission efficiency and ease of use, characterized in that: The machine includes a peeling frame (1), on the upper surface of which is connected a corn tilting ramp (2) and an anti-jump baffle (3). Inside the peeling frame (1) are peeling components (4), a husk screening component (5), and a loose grain collection component (6). On the outside of the peeling frame (1) are transmission components (7), which are connected to the peeling components (4), the husk screening component (5), and the loose grain collection component (6). The peeling components (4) include a conveying component (41) and a peeling component (42). The conveying component (41) is provided with four conveying wheel shafts (411), three of which are fixedly connected to a conveying driven gear (414) at one end, and the remaining one... One end of the conveying wheel shaft (411) is fixedly connected to a conveying transmission gear (413), and a conveying transmission chain (415) is connected between two adjacent driven conveying gears (414). The conveying transmission chain (415) drives the conveying transmission gear (413) and the driven conveying gear (414). The output end of the peeling assembly (42) is provided with a corn output assembly (43). The peeling assembly (42) includes a peeling transmission shaft (421). The husk screening component (5) includes a primary screening assembly (52) and a husk output assembly (53). The primary screening assembly (52) and the husk output assembly (53) form a husk screening chamber (51). The primary screening assembly (52) includes a primary screening auger (52). 22), the peel output assembly (53) includes a peel output auger (531), the loose grain collection assembly (6) includes a loose grain conveying auger (62), the output end of the loose grain conveying auger (62) is connected to a grain lifting assembly (8), the transmission component (7) includes a first transmission assembly (71), a second transmission assembly (72) and a third transmission assembly (73), the first transmission assembly (71) includes a power input pulley (711), the power input pulley (711) is connected to an external power source by a power input belt (712), the side of the power input pulley (711) is fixedly connected to a power input gear (713), one end of the peeling transmission shaft (421) is fixedly connected to the first A transmission gear (714) is provided, and a first transmission chain (715) is connected between the power input gear (713) and the first transmission gear (714). The second transmission assembly (72) includes a first driven gear (721), which is fixedly connected to the other end of the peeling transmission shaft (421). A second primary screening transmission gear (722) is fixedly connected to one end of the primary screening auger (522), and a second conveying transmission gear (723) is fixedly connected to one end of the skin output auger (531). A second transmission chain (724) is connected between the first driven gear (721), the second primary screening transmission gear (722), and the second conveying transmission gear (723).The third transmission assembly (73) includes a second driven gear (731), which is fixedly connected to the other end of the primary screening auger (522). A third reversing gear set (732) is provided on the outside of the peeling frame (1). A third reversing chain (733) is drivingly connected between the second driven gear (731) and the third reversing gear set (732). The other ends of the two non-adjacent conveying wheel shafts (411) are fixedly connected to a third transmission gear (734). A third transmission chain (735) is drivingly connected between the third transmission gear (734) and the third reversing gear set (732).

2. The peeling machine with high transmission efficiency and convenient use according to claim 1, characterized in that: Multiple conveying wheels (412) for conveying corn are fixedly connected to the conveying wheel shaft (411), and the multiple conveying wheels (412) are evenly distributed on the conveying wheel shaft (411).

3. The peeling machine with high transmission efficiency and convenient use according to claim 2, characterized in that: The peeling assembly (42) includes a peeling ratchet shaft (424) and a peeling conveyor shaft (427). Multiple peeling ratchet teeth (425) for peeling are fixedly connected to the peeling ratchet shaft (424). A ratchet shaft drive gear (426) is fixedly connected to one end of the peeling ratchet shaft (424) near the peeling drive shaft (421). A conveying threaded protrusion (428) for directional conveying of corn is fixedly connected to the peeling conveyor shaft (427). The end of the peeling conveyor shaft (427) near the peeling drive shaft (421) is fixedly connected to... There is a conveyor shaft drive gear (429), which meshes with the ratchet shaft drive gear (426). The peeling ratchet shaft (424) is fixedly connected to a peeling driven bevel gear (423) at one end near the peeling drive shaft (421). The peeling driven bevel gear (423) is located outside the ratchet shaft drive gear (426). A peeling drive bevel gear (422) is fixedly connected to the peeling drive shaft (421), and the peeling drive bevel gear (422) meshes with the peeling driven bevel gear (423).

4. The peeling machine with high transmission efficiency and convenient use according to claim 1, characterized in that: The conveying assembly (41) includes a corn output dial shaft (434), on which a plurality of corn output dial plates (435) are fixedly connected. The plurality of corn output dial plates (435) are arranged at equal angles on the corn output dial shaft (434). The corn output dial shaft (434) is rotatably connected to the peeling frame (1). One end of the corn output dial shaft (434) is fixedly connected to a corn output driven gear (432). The other end of the conveying wheel shaft (411) near the conveying assembly (41) is fixedly connected to a corn output transmission gear (431). A corn output transmission chain (433) is connected between the corn output transmission gear (431) and the corn output driven gear (432).

5. A peeling machine with high transmission efficiency and convenient use according to claim 1, characterized in that: The primary screening assembly (52) includes a guide inclined plate (521), which is fixedly connected to the peeling frame (1). The guide inclined plate (521) is fixedly connected to a primary screening cylinder (523), and one end of the primary screening auger (522) is fixedly connected to a primary screening conveyor plate (524).

6. A peeling machine with high transmission efficiency and convenient use according to claim 1, characterized in that: The skin output assembly (53) includes a skin output screening cylinder (532), one end of which is connected to a skin output port (533), and a skin output guide cylinder (534) is connected below the skin output port (533). A skin output conveying plate (535) is fixedly connected to one end of the skin output auger (531) near the skin output port (533). A power transmission pulley (536) is fixedly connected to the power input pulley (711), and a crushing pulley (537) is rotatably connected to the skin output guide cylinder (534). A crushing transmission belt (538) is drivingly connected between the crushing pulley (537) and the power transmission pulley (536).

7. A peeling machine with high transmission efficiency and convenient use according to claim 1, characterized in that: The bulk grain collection assembly (6) includes a bulk grain collection chamber (61), in which two bulk grain actuating shafts (63) and a bulk grain conveying auger (62) are rotatably connected. Multiple bulk grain actuating rods (64) are fixedly connected to the two bulk grain actuating shafts (63). One end of the bulk grain conveying auger (62) is fixedly connected to a bulk grain drive gear (67) that is connected to external transmission. The other end of the bulk grain conveying auger (62) is provided with a bulk grain output sleeve (65). The bulk grain output sleeve (65) is fixedly connected to the peeling frame (1). The bulk grain output sleeve (65) is fixedly connected to a bulk grain guide groove (66).

8. A peeling machine with high transmission efficiency and convenient use according to claim 1, characterized in that: The grain lifting assembly (8) includes a lifter (81) and a grain bin (83). A hinge (82) connects the lifter (81) and the grain bin (83). A chain (85) is connected inside the lifter (81). Multiple scrapers (86) for lifting grains are connected to the chain (85). A fixed seat (87) is fixedly connected to the side of the lifter (81). A cleaning fan (84) is connected to the outer side of the lifter (81).