CN217905226U - Peeling machine transmission system and corn harvester capable of harvesting stems and ears - Google Patents

Peeling machine transmission system and corn harvester capable of harvesting stems and ears Download PDF

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Publication number
CN217905226U
CN217905226U CN202220890284.6U CN202220890284U CN217905226U CN 217905226 U CN217905226 U CN 217905226U CN 202220890284 U CN202220890284 U CN 202220890284U CN 217905226 U CN217905226 U CN 217905226U
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China
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chain wheel
shaft
wheel
peeling
input
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CN202220890284.6U
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Chinese (zh)
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李小坡
梁耀飞
程义
杨亚帆
付永明
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Changzhou Changfa Heavy Industry Technology Co ltd
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Changzhou Changfa Heavy Industry Technology Co ltd
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Abstract

The utility model provides a driving system of a peeling machine, which comprises a peeling part, a power system and a power shaft of the peeling machine; the peeling part comprises a pressure transmitter assembly, a peeling assembly, a cleaning assembly and a grain recovery device; the pressure feeder assembly is arranged above the peeling assembly; the cleaning assembly is arranged below the peeling assembly, and the seed recovery device is arranged at the bottom of the cleaning assembly; the power system is in transmission connection with a power shaft of the peeling machine, and the power shaft of the peeling machine provides power for the cleaning assembly; the utility model discloses transmit engine power to each work subassembly of peeler respectively, set up rationally, the overall arrangement is simple, and power transmission progression is few, and transmission efficiency is high, and the reliability is high.

Description

Peeling machine transmission system and corn harvester capable of harvesting stems and ears
Technical Field
The utility model belongs to the technical field of maize picker and specifically relates to a maize picker transmission system is received to stem ear of grain concurrently.
Background
The header comprises an upper header and a lower header, the upper header is used for picking corn ears, the picked corn ears are conveyed to the peeler through the elevator, the peeled corn ears are peeled by the peeler, and the peeled corn ears are conveyed to the granary; the lower header cuts off the stalks, then enters the chopping mechanism to be chopped under the pushing of the conveying auger, and is thrown into the grass bin through the secondary throwing mechanism under the action of the throwing mechanism; the existing stalk and ear harvesting type corn harvester generally transfers power to a peeling machine, an elevator, a header and the like through multi-stage transmission by an engine, wherein one of the problems is that energy loss is large and product reliability is low due to high power transfer stage number; secondly, the arrangement of multi-stage transmission needs a large space, which affects the miniaturization of the corn harvester.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a peeler transmission system and stem ear of grain concurrently receive maize picker, solve above the problem.
According to one aspect of the present invention, there is provided a peeler drive system comprising a peeling section, a drive system, and a peeler power shaft; the peeling part comprises a pressure transmitter assembly, a peeling assembly, a cleaning assembly and a grain recovery device; the pressure transmitter assembly is arranged above the peeling assembly; the cleaning assembly is arranged below the peeling assembly, and the seed recovery device is arranged at the bottom of the cleaning assembly; the power system is in transmission connection with the power shaft of the peeling machine, and the power shaft of the peeling machine provides power for the cleaning assembly.
Preferably, one end of the power shaft of the peeling machine is provided with a power shaft input chain wheel of the peeling machine, and the other end of the power shaft of the peeling machine is sequentially provided with a first chain wheel and a second chain wheel; the cleaning component comprises a lower peeling machine auger and an upper peeling machine auger; the peeler lower auger comprises a peeler lower auger power shaft, a peeler lower auger input chain wheel and a fifth chain wheel are arranged on the peeler lower auger power shaft, and the fifth chain wheel is adjacent to the lower auger input chain wheel; the first chain wheel transmits power to the pressure feeder assembly through transmission; the second chain wheel is connected with the input chain wheel of the lower auger of the peeling machine through a chain; the last screw feeder of peeler includes screw feeder power shaft on the peeler, be equipped with screw feeder input sprocket on the peeler on the screw feeder power shaft on the peeler, screw feeder input sprocket passes through the chain connection on the peeler fifth sprocket.
Preferably, the grain cleaning fan is arranged on one side of the grain recovery device; the seed cleaning fan comprises a cleaning fan power shaft, and a cleaning fan input chain wheel is arranged on the cleaning fan power shaft; the power system comprises a second intermediate shaft; a third chain wheel and a fourth chain wheel are sequentially arranged on the second intermediate shaft, and the second chain wheel is sequentially connected with the input chain wheel and the third chain wheel of the lower auger of the peeling machine through a chain; the fourth chain wheel is connected with the cleaning fan input chain wheel through a chain.
Preferably, the power system further comprises an engine output pulley, a main transmission shaft and a reversing box; the belt pulley of the main transmission shaft is arranged at the left end of the main transmission shaft, and the input chain wheel of the peeling machine is arranged at the other end of the main transmission shaft; the engine output belt wheel is connected with the main transmission shaft belt wheel through a belt; the input chain wheel of the peeling machine is in transmission connection with the reversing box through a chain and the input chain wheel of the reversing box; and the reversing box output chain wheel parallel to the axis of the reversing box input chain wheel is in transmission connection with the power shaft of the peeling machine.
Preferably, the power system further comprises a first intermediate shaft, and a first intermediate shaft input chain wheel and a first intermediate shaft output chain wheel are sequentially arranged on the first intermediate shaft; the first reversing box output chain wheel is connected with the first intermediate shaft input chain wheel through a chain wheel; the other end of the power shaft of the peeling machine is provided with an input chain wheel of the power shaft of the peeling machine; the first intermediate shaft output chain wheel is connected with the power shaft input chain wheel of the peeling machine through a chain wheel.
Preferably, the grain recovery device comprises a grain auger, the grain auger comprises a power shaft of the grain auger, and a grain auger input chain wheel is arranged on the power shaft of the grain auger; and a reversing box output chain wheel II parallel to the axis of the reversing box input chain wheel is connected with the grain auger input chain wheel through a chain.
Preferably, the peeling assembly comprises a plurality of peeling units, each peeling unit comprises a plurality of peeling rollers, and each peeling unit is provided with a driven bevel gear; and the power shaft of the peeling machine is also provided with a plurality of driving bevel gears meshed with each driven bevel gear, and the driving bevel gears synchronously drive the peeling units.
Preferably, the presser assembly comprises 4 star wheel shafts and a plurality of star wheels sleeved on each star wheel shaft; the first star wheel shaft is provided with a first star wheel shaft input chain wheel, and the first star wheel shaft input chain wheel is connected with the first chain wheel through a chain wheel; the first star wheel shaft is also provided with a second star wheel shaft input chain wheel; the second star wheel shaft is provided with a second star wheel shaft output chain wheel, and the second star wheel shaft input chain wheel is connected with the second star wheel shaft output chain wheel through a chain wheel; the second star wheel shaft is also provided with a third star wheel shaft input chain wheel; the third star wheel shaft is provided with a third star wheel shaft output chain wheel, and the third star wheel shaft input chain wheel is connected with the third star wheel shaft output chain wheel through a chain wheel; the third star wheel shaft is also provided with a fourth star wheel shaft input chain wheel; and a fourth star wheel shaft first output chain wheel is arranged on the fourth star wheel shaft, and the fourth star wheel shaft input chain wheel is connected with the fourth star wheel shaft first output chain wheel through a chain wheel.
Preferably, the peeling part further comprises a poking roller, the poking roller is positioned on one side of the peeling assembly and used for poking peeled ears to the ear bin; the poking roller comprises a poking roller shaft, and a poking roller shaft input chain wheel is arranged on the poking roller shaft; and a fourth star wheel shaft second output chain wheel is further arranged on the fourth star wheel shaft and is connected with the shifting roller shaft input chain wheel through a chain wheel.
The utility model also provides a corn harvester for harvesting stalks and ears, which comprises the transmission system of the peeling machine.
The utility model discloses transmit engine power to each work assembly of peeler respectively, set up rationally, the overall arrangement is simple, and power transmission progression is few, and transmission efficiency is high, and the reliability is high.
Drawings
FIG. 1 is a schematic structural diagram of a corn stalk harvester 1;
FIG. 2 is a schematic structural diagram 2 of a stalk corn harvester;
FIG. 3 is a schematic structural diagram of a corn stalk harvester 3;
FIG. 4 is a schematic view of the main transmission system of the stem-ear corn harvester;
FIG. 5 is a schematic view of a debarker drive system;
FIG. 6 is a schematic diagram of the front side drive of the debarker;
FIG. 7 is a schematic illustration of the rear drive of the dehider 1;
FIG. 8 is a schematic illustration of the rear drive of the debarker 2;
fig. 9 is a schematic view of the transmission of the grain recovering device.
Detailed Description
In order to make the aforementioned objects, features and advantages of the present application more comprehensible, embodiments accompanying the present application are described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth to provide a thorough understanding of the present application, and in the accompanying drawings, preferred embodiments of the present application are set forth. This application may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete. This application is capable of implementation in many other ways than those herein described and of similar modifications by one of ordinary skill in the art without departing from the spirit and scope of the present application and is therefore not limited to the specific embodiments disclosed below.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of the present application, "plurality" means at least two, e.g., two, three, etc., unless specifically limited otherwise. In the description of the present application, "a number" means at least one, such as one, two, etc., unless specifically limited otherwise.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
In this context, it is to be understood that the terms "mounted," "connected," and "connected" are to be construed broadly unless otherwise specifically indicated and limited. For example, the connection may be fixed, detachable, or integrated; can be mechanically or electrically connected; they may be directly connected or indirectly connected through intervening media, or may be interconnected between two elements.
Embodiments of the invention are described in further detail below with reference to the drawings.
In the present embodiment, when the right direction or the left direction in the front-back direction and the lateral width direction of the machine body is defined, the front, back, left, and right directions are defined in a state of being viewed along the machine body forward direction.
Referring to fig. 1-4, the utility model discloses a maize picker is received concurrently to stem ear, including the header 6 that is used for plucking the maize ear and cuts the stem stalk, a driver's cabin 7 for driving operation, an elevator 8 for carrying the maize ear of corn who is carried from the header, an engine 9 for providing power, a peeler 50 for carrying out the work of skinning with the maize ear of corn, a feeding comminution device 70 for feeding the maize stem stalk with the comminution, a grass storehouse 10 for splendid attire maize stem stalk after the comminution, a throwing device 20 for throwing the maize stem stalk after the comminution to grass storehouse 10, a granary 30 for splendid attire maize ear of corn that the processing of skinning through the peeler, a still field machine 40 that is used for the straw still field and be used for complete machine moving transmission system 60.
Referring to fig. 4-9, a drive system for a debarker 50 includes a debarking section 1, a power system 3, and a debarker power shaft 4; the peeling part 1 comprises a pressure feeder assembly 11, a peeling assembly 12, a cleaning assembly 13, a grain cleaning fan 14, a grain recovery device 15 and a poking roller 16; the pressure transmitter assembly 11 is arranged above the peeling assembly 12; the cleaning assembly 13 is arranged below the peeling assembly 12, a lower peeler auger 131 and an upper peeler auger 132 are arranged inside the cleaning assembly 13, a cleaning screen is arranged at the bottom, and the cleaning assembly 13 is used for conveying the separated ear bracts to the bract crusher 80; the grain recovery device 15 is arranged at the bottom of the cleaning assembly 13; the grain cleaning fan 14 is arranged at one side of the grain recovery device 15; the poking roller 16 is positioned at one side of the peeling assembly 12 and is used for poking the peeled fruit ears to the fruit ear bin; the power system 3 is in transmission connection with a power shaft 4 of the peeling machine, and the power shaft 4 of the peeling machine provides power for the cleaning component 13, the grain cleaning fan 14, the peeling component 12, the pressure feeder component 11 and the poking roller 16; the scheme simplifies a transmission system, and has low power transmission stage number and high transmission efficiency.
The peeling assembly 12 comprises a plurality of peeling units, in the embodiment, four peeling units are provided, each peeling unit comprises four peeling rollers 121, and each peeling unit is provided with a driven bevel gear 1211; four driving bevel gears 49 meshed with each driven bevel gear 1211 are arranged on the power shaft 4 of the peeling machine, the four driving bevel gears 49 synchronously drive the driven bevel gear 1211 on each peeling unit, the four peeling rollers 121 on each peeling unit are respectively provided with a transmission gear 1212, and the driven bevel gear 1211 on each peeling unit is in transmission connection with the four peeling rollers 121 in the peeling unit through the transmission gears 1212; a plurality of groups of peeling units are synchronously driven by a plurality of bevel gears so as to drive the peeling assembly 12 to normally work, the number of transmission stages is reduced, and the transmission efficiency and the reliability are improved.
The power system 3 comprises an engine output belt wheel 31, a main transmission shaft 32, a reversing box 33, a first intermediate shaft 34 and a second intermediate shaft 35; the left end of the main transmission shaft 32 is provided with a main transmission shaft belt pulley 321, and the other end of the main transmission shaft 32 is provided with a peeler input chain wheel 322; a reversing box input chain wheel 331 and a reversing box output chain wheel are arranged on the reversing box 33, and the peeling machine input chain wheel 322 is in transmission connection with the reversing box 33 through a chain and the reversing box input chain wheel 331; the first intermediate shaft 34 is sequentially provided with a first intermediate shaft input chain wheel 341 and a first intermediate shaft output chain wheel 342; a first reversing box output chain wheel 332 parallel to the axis of the reversing box input chain wheel 331 is connected with a first intermediate shaft input chain wheel 341 through a chain wheel; one end of the power shaft 4 of the peeling machine is provided with an input chain wheel 41 of the power shaft of the peeling machine, and the other end of the power shaft 4 of the peeling machine is sequentially provided with a first chain wheel 42 and a second chain wheel 43; the first intermediate shaft output sprocket 342 is connected to the peeler power shaft input sprocket 41 by a sprocket. When the machine body works, the engine output belt wheel 31 is connected with the main transmission shaft belt wheel 321 through a belt, the engine output belt wheel 31 drives the main transmission shaft belt wheel 321 to rotate, the main transmission shaft belt wheel 321 drives the main transmission shaft 32 to rotate, and the main transmission shaft 32 drives the input chain wheel 322 of the peeling machine to rotate; the input chain wheel 322 of the peeling machine drives the input chain wheel 331 of the reversing box to rotate so as to drive the reversing box 33 to work, and the output chain wheel I332 of the reversing box drives the input chain wheel 341 of the first intermediate shaft to rotate; the first intermediate shaft input sprocket 341 drives the first intermediate shaft 34 to rotate; the first intermediate shaft 34 drives the first intermediate shaft output chain wheel 342 to rotate, the first intermediate shaft output chain wheel 342 drives the peeling machine power shaft input chain wheel 41 to rotate, the peeling machine power shaft input chain wheel 41 drives the peeling machine power shaft 4 to rotate, and the peeling machine power shaft 4 synchronously drives the first chain wheel 42 and the second chain wheel 43 to rotate so as to provide power for the cleaning assembly 13, the grain cleaning fan 14, the peeling assembly 12 and the pressure feeder assembly 11.
A lower peeler auger 131 and an upper peeler auger 132 are arranged in the cleaning assembly 13; the peeler lower auger 131 comprises a peeler lower auger power shaft 1311, a peeler lower auger input sprocket 1312 and a fifth sprocket 1313 are arranged on the peeler lower auger power shaft 1311, and the fifth sprocket 1313 is arranged adjacent to the peeler lower auger input sprocket 1312; the peeler upper auger 132 comprises a peeler upper auger power shaft 1321, a peeler upper auger input sprocket 1322 is arranged on the peeler upper auger power shaft 1321, and the peeler upper auger input sprocket 1322 is connected with the fifth sprocket 1313 through a chain; the second intermediate shaft 35 is provided with a third chain wheel 351 and a fourth chain wheel 352 in sequence, and the second chain wheel 43 is connected with a peeler lower auger input chain wheel 1312 and the third chain wheel 351 in sequence through a chain. When the machine body works, the second chain wheel synchronization 43 drives the input chain wheel 1312 and the third chain wheel 351 of the lower peeling auger to rotate, and the input chain wheel 1312 of the lower peeling auger drives the power shaft 1311 of the lower peeling auger to rotate, so that power is provided for the lower peeling auger; the peeler lower auger power shaft 1311 drives the fifth sprocket 1313 to rotate, the fifth sprocket 1313 drives the peeler upper auger input sprocket 1322 to rotate, and the peeler upper auger input sprocket 1322 drives the peeler upper auger power shaft 1321 to rotate, so that power is provided for the peeler upper auger; specifically, the upper peeler auger input sprocket 1322 is connected to the fifth sprocket 1313 by a chain, the fifth sprocket 1313 is located outside the chain, and the power rotation directions of the upper peeler auger input sprocket 1322 and the fifth sprocket 1313 are opposite.
The grain cleaning fan 14 comprises a cleaning fan power shaft 141, and a cleaning fan input chain wheel is arranged on the cleaning fan power shaft 141; the fourth chain wheel 352 is connected with the cleaning fan input chain wheel through a chain; during operation, the third chain wheel 351 drives the second intermediate shaft 35 to rotate, the second intermediate shaft 35 drives the fourth chain wheel 352 to rotate, the fourth chain wheel 352 drives the cleaning fan input chain wheel to rotate, the cleaning fan input chain wheel drives the cleaning fan power shaft 141 to rotate, and then the grain cleaning fan 14 operates normally.
In this embodiment, the pusher assembly 11 comprises 4 star wheel shafts and a plurality of star wheels fitted over each star wheel shaft; a first star wheel shaft input chain wheel 1111 and a second star wheel shaft input chain wheel 1112 are arranged on the first star wheel shaft 111, and the first star wheel shaft input chain wheel 1111 is connected with the first chain wheel 42 through the chain wheels; a second star wheel shaft output chain wheel 1121 and a third star wheel shaft input chain wheel 1122 are arranged on the second star wheel shaft 112, and the second star wheel shaft input chain wheel 1112 is connected with the second star wheel shaft output chain wheel 1121 through chain wheels; a third star wheel shaft output chain wheel 1131 and a fourth star wheel shaft input chain wheel 1132 are arranged on the third star wheel shaft 113, and the third star wheel shaft input chain wheel 1122 is connected with the third star wheel shaft output chain wheel 1131 through a chain wheel; a fourth star wheel shaft first output chain wheel 1141 and a fourth star wheel shaft second output chain wheel 1142 are arranged on the fourth star wheel shaft 114, and the fourth star wheel shaft input chain wheel 1132 is connected with the fourth star wheel shaft first output chain wheel 1141 through chain wheels; the shifting roller 16 comprises a shifting roller shaft 161, a shifting roller shaft input chain wheel 1611 is arranged on the shifting roller shaft 161, and a fourth star wheel shaft second output chain wheel 1142 is connected with the shifting roller shaft input chain wheel 1611 through a chain wheel. When the machine body works, the first chain wheel 42 drives the first star wheel shaft input chain wheel 1111 to rotate, the first star wheel shaft input chain wheel 1111 drives the first star wheel shaft 111 to rotate, the first star wheel shaft 111 drives the second star wheel shaft input chain wheel 1112 to rotate, the second star wheel shaft input chain wheel 1112 drives the third star wheel shaft input chain wheel 1122 to rotate, the third star wheel shaft input chain wheel 1122 drives the second star wheel shaft 112 to rotate, the second star wheel shaft 112 drives the third star wheel shaft input chain wheel 1122 to rotate, the third star wheel shaft input chain wheel 1122 drives the third star wheel shaft output chain wheel 1131 to rotate, the third star wheel shaft output chain wheel 1131 drives the third star wheel shaft 113 to rotate, the third star wheel shaft 113 drives the fourth star wheel shaft input chain wheel 1132 to rotate, the fourth star wheel shaft input chain wheel 1132 drives the fourth star wheel shaft first output chain wheel 1141 to rotate, the fourth star wheel shaft first output chain wheel shaft output chain wheel 1141 to rotate, the fourth star wheel shaft 114 drives the fourth star wheel shaft second output chain wheel 1142 to rotate, and the roll shaft input chain wheel 1611 to rotate; so that the pusher assembly 11 and the dial roller 16 work properly.
The grain recovery device 15 comprises a grain auger, the grain auger comprises a power shaft of the grain auger, and a grain auger input chain wheel 1512 is arranged on the power shaft of the grain auger; the second reversing box output chain wheel 333 parallel to the axis of the reversing box input chain wheel 331 is connected with a kernel auger input chain wheel 1512 through a chain. When the machine body works, the second reversing box output chain wheel 333 drives the grain auger input chain wheel 1512 to rotate, the grain auger input chain wheel 1512 drives the grain auger power shaft to rotate so as to provide power for grain recovery, and therefore the grain recovery device 15 works normally.
The utility model discloses transmit engine 9 power to 50 each work subassemblies of peeler respectively, set up rationally, the overall arrangement is simple, and power transmission progression is few, and transmission efficiency is high, and the reliability is high.
It will be apparent to those skilled in the art that various modifications and variations can be made in the above-described exemplary embodiments of the present invention without departing from the spirit or scope of the invention. Thus, it is intended that the present invention cover the modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.

Claims (10)

1. A peeler drive system, characterized in that:
comprises a peeling part (1), a power system (3) and a power shaft (4) of a peeling machine;
the peeling part (1) comprises a pressure transmitter assembly (11), a peeling assembly (12), a cleaning assembly (13) and a grain recovery device (15); the pusher assembly (11) is arranged above the peeling assembly (12); the cleaning assembly (13) is arranged below the peeling assembly (12), and the grain recovery device (15) is arranged at the bottom of the cleaning assembly (13);
the power system (3) is in transmission connection with the power shaft (4) of the peeling machine, and the power shaft (4) of the peeling machine provides power for the cleaning assembly (13).
2. The dehider drive system according to claim 1, wherein:
one end of the power shaft (4) of the peeling machine is provided with an input chain wheel (41) of the power shaft of the peeling machine, and the other end of the power shaft (4) of the peeling machine is sequentially provided with a first chain wheel (42) and a second chain wheel (43);
the cleaning assembly (13) comprises a peeler lower auger (131) and a peeler upper auger (132); the peeler lower auger (131) comprises a peeler lower auger power shaft (1311), a peeler lower auger input sprocket (1312) and a fifth sprocket (1313) are arranged on the peeler lower auger power shaft (1311), and the fifth sprocket (1313) and the lower auger input sprocket (1312) are arranged adjacent to each other;
the first chain wheel (42) transmits power to the pressure feed assembly (11) through transmission;
the second sprocket (43) is connected to the dehider lower auger input sprocket (1312) by a chain;
the peeling machine upper auger (132) comprises a peeling machine upper auger power shaft (1321), an upper peeling machine upper auger input chain wheel (1322) is arranged on the peeling machine upper auger power shaft (1321), and the upper peeling machine upper auger input chain wheel (1322) is connected with the fifth chain wheel (1313) through a chain.
3. The dehider drive system according to claim 2, wherein:
the grain cleaning fan (14) is arranged on one side of the grain recovery device (15); the grain cleaning fan (14) comprises a cleaning fan power shaft (141), and a cleaning fan input chain wheel is arranged on the cleaning fan power shaft (141);
the power system (3) comprises a second intermediate shaft (35); a third chain wheel (351) and a fourth chain wheel (352) are sequentially arranged on the second intermediate shaft (35), and the second chain wheel (43) is sequentially connected with the input chain wheel (1312) and the third chain wheel (351) of the peeler through a chain;
the fourth chain wheel (352) is connected with the cleaning fan input chain wheel through a chain.
4. The dehider drive system according to claim 2, wherein:
the power system (3) further comprises an engine output belt wheel (31), a main transmission shaft (32) and a reversing box (33); the left end of the main transmission shaft (32) is provided with a main transmission shaft belt pulley (321), and the other end of the main transmission shaft (32) is provided with a peeler input chain wheel (322);
the engine output belt wheel (31) is connected with the main transmission shaft belt wheel (321) through a belt;
a reversing box input chain wheel (331) and a reversing box output chain wheel are arranged on the reversing box (33), and the peeling machine input chain wheel (322) is in transmission connection with the reversing box (33) through a chain and the reversing box input chain wheel (331); and a first reversing box output chain wheel (332) parallel to the axis of the first reversing box input chain wheel (331) is in transmission connection with the power shaft (4) of the peeling machine.
5. The dehider drive system according to claim 4, wherein:
the power system (3) further comprises a first intermediate shaft (34), and a first intermediate shaft input chain wheel (341) and a first intermediate shaft output chain wheel (342) are sequentially arranged on the first intermediate shaft (34); the first reversing box output chain wheel (332) is connected with the first intermediate shaft input chain wheel (341) through a chain wheel; the other end of the power shaft (4) of the peeling machine is provided with an input chain wheel (41) of the power shaft of the peeling machine; the first intermediate shaft output chain wheel (342) is connected with the power shaft input chain wheel (41) of the peeling machine through a chain wheel.
6. The dehider drive system according to claim 4, wherein:
the grain recovery device (15) comprises a grain auger (151), the grain auger (151) comprises a grain auger power shaft (1511), and a grain auger input chain wheel (1512) is arranged on the grain auger power shaft (1511); and a second reversing box output chain wheel (333) parallel to the axis of the second reversing box input chain wheel (331) is connected with the grain auger input chain wheel (1512) through a chain.
7. The dehider drive system according to claim 1, wherein:
the peeling assembly (12) comprises a plurality of peeling units, each peeling unit comprises a plurality of peeling rollers (121), and each peeling unit is provided with a driven bevel gear (1211);
the power shaft (4) of the peeling machine is also provided with a plurality of driving bevel gears (49) which are meshed with the driven bevel gears (1211), and the driving bevel gears (49) synchronously drive the peeling units.
8. The dehider drive system according to claim 2, wherein:
the presser assembly (11) comprises 4 star wheel shafts and a plurality of star wheels sleeved on each star wheel shaft;
the 4 star wheel shafts are a first star wheel shaft (111), a second star wheel shaft (112), a third star wheel shaft (113) and a fourth star wheel shaft (114) respectively;
a first star wheel shaft input chain wheel (1111) is arranged on the first star wheel shaft (111), and the first star wheel shaft input chain wheel (1111) is connected with the first chain wheel (42) through a chain wheel; a second star wheel shaft input chain wheel (1112) is further arranged on the first star wheel shaft (111);
a second star wheel shaft output chain wheel (1121) is arranged on the second star wheel shaft (112), and the second star wheel shaft input chain wheel (1112) is connected with the second star wheel shaft output chain wheel (1121) through a chain wheel; a third star wheel shaft input chain wheel (1122) is further arranged on the second star wheel shaft (112);
a third star wheel shaft output chain wheel (1131) is arranged on the third star wheel shaft (113), and the third star wheel shaft input chain wheel (1122) is connected with the third star wheel shaft output chain wheel (1131) through a chain wheel; a fourth star wheel shaft input chain wheel (1132) is further arranged on the third star wheel shaft (113);
and a fourth star wheel shaft first output chain wheel (1141) is arranged on the fourth star wheel shaft (114), and the fourth star wheel shaft input chain wheel (1132) is connected with the fourth star wheel shaft first output chain wheel (1141) through a chain wheel.
9. The dehider drive system according to claim 8, wherein:
the peeling part (1) further comprises a poking roller (16), and the poking roller (16) is positioned on one side of the peeling component (12) and is used for poking peeled ears to an ear bin;
the poking roller (16) comprises a poking roller shaft (161), and a poking roller shaft input chain wheel (1611) is arranged on the poking roller shaft (161);
and a fourth star wheel shaft second output chain wheel (1142) is further arranged on the fourth star wheel shaft (114), and the fourth star wheel shaft second output chain wheel (1142) is connected with the poking roller shaft input chain wheel (1611) through a chain wheel.
10. A corn harvester for harvesting both stalks and ears, comprising a peeler drive system as claimed in any one of claims 1 to 9.
CN202220890284.6U 2022-04-18 2022-04-18 Peeling machine transmission system and corn harvester capable of harvesting stems and ears Active CN217905226U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220890284.6U CN217905226U (en) 2022-04-18 2022-04-18 Peeling machine transmission system and corn harvester capable of harvesting stems and ears

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220890284.6U CN217905226U (en) 2022-04-18 2022-04-18 Peeling machine transmission system and corn harvester capable of harvesting stems and ears

Publications (1)

Publication Number Publication Date
CN217905226U true CN217905226U (en) 2022-11-29

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CN202220890284.6U Active CN217905226U (en) 2022-04-18 2022-04-18 Peeling machine transmission system and corn harvester capable of harvesting stems and ears

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