CN114600649B - Bundling machine and grain combine based on packaging process - Google Patents

Bundling machine and grain combine based on packaging process Download PDF

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Publication number
CN114600649B
CN114600649B CN202210269125.9A CN202210269125A CN114600649B CN 114600649 B CN114600649 B CN 114600649B CN 202210269125 A CN202210269125 A CN 202210269125A CN 114600649 B CN114600649 B CN 114600649B
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China
Prior art keywords
packaging
corn
station
bag
straw
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CN202210269125.9A
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CN114600649A (en
Inventor
翟冬峰
王玉香
王建岐
刘为更
杨今胜
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Shandong Denghai Seed Co ltd
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Shandong Denghai Seed Co ltd
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01FPROCESSING OF HARVESTED PRODUCE; HAY OR STRAW PRESSES; DEVICES FOR STORING AGRICULTURAL OR HORTICULTURAL PRODUCE
    • A01F15/00Baling presses for straw, hay or the like
    • A01F15/04Plunger presses
    • A01F15/044Plunger presses with open pressing chambers
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01DHARVESTING; MOWING
    • A01D43/00Mowers combined with apparatus performing additional operations while mowing
    • A01D43/06Mowers combined with apparatus performing additional operations while mowing with means for collecting, gathering or loading mown material
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01DHARVESTING; MOWING
    • A01D45/00Harvesting of standing crops
    • A01D45/02Harvesting of standing crops of maize, i.e. kernel harvesting
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01FPROCESSING OF HARVESTED PRODUCE; HAY OR STRAW PRESSES; DEVICES FOR STORING AGRICULTURAL OR HORTICULTURAL PRODUCE
    • A01F15/00Baling presses for straw, hay or the like
    • A01F15/08Details
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01FPROCESSING OF HARVESTED PRODUCE; HAY OR STRAW PRESSES; DEVICES FOR STORING AGRICULTURAL OR HORTICULTURAL PRODUCE
    • A01F15/00Baling presses for straw, hay or the like
    • A01F15/08Details
    • A01F15/14Tying devices specially adapted for baling presses
    • A01F15/145Twine knotters

Abstract

The invention relates to a bundling machine based on an encapsulation process and a grain combine harvester, comprising a forming device arranged on a forming station on a walking frame assembly; the forming device comprises a forming lower bottom used for supporting and carrying the straw which moves forwards; a forming lower hook part is arranged on the forming lower bottom part; the forming lower hook part is used for being inserted into the straws from the hollow part at the forming lower bottom part to comb the straws; the forming side pressing parts are arranged above and/or at two sides of the forming lower bottom part to intermittently extrude and form the straws; and the forming side hook part is arranged on the same side of the forming side pressing part and enters and exits in the hollow part of the forming side pressing part so as to be inserted into the straw. The invention has reasonable design, compact structure and convenient use.

Description

Bundling machine and grain combine based on packaging process
Technical Field
The invention relates to a bundling machine and a grain combine harvester based on an encapsulation process, which are particularly suitable for a corn and mother case CN202110669211.4 corn straw bundling machine and a combine harvester, and application date 20210616.
Background
Maize straw bundling machine is in order to carry out the automatic equipment of retrieving with maize straw, and current recovery mode includes that cylindrical bundle and cuboid bundle are beaten, and the cuboid bundle advantage lies in the storage and practices thrift the space, and the shortcoming lies in not having circular bundle closely knit of beating, beats a bundle inconveniently, and the structure is complicated. CN202110019779.1 a reaping processing device capable of automatically collecting and processing corn straws comprises a reaping box and a feeding mechanism arranged on the left side of the reaping box, wherein a power mechanism is arranged on the rear side of the reaping box, a moving mechanism is arranged on the lower side of the reaping box, and a reaping cavity is arranged in the reaping box.
Disclosure of Invention
The invention aims to solve the technical problem of providing a corn straw bundling machine and a combine harvester.
In order to solve the problems, the technical scheme adopted by the invention is as follows:
a bundling machine based on a packaging process comprises a packaging station arranged on a walking frame assembly to open a packaging bag so as to seal and package bundled straws; an output end of a sealed packaging bag feeding channel is arranged at the packaging station to output the packaging bags; a through hole of a bottom plate of the packaging station is provided with a packaging bottom telescopic suction nozzle which ascends to adsorb a packaging bag positioned at the packaging station; a packaging sealing machine is arranged at the input end of the packaging station to seal the packaging bag; a packaging top lifting suction nozzle plate is arranged above the packaging station to lower and adsorb the packaging bag positioned at the packaging station; a packaging transverse moving side suction nozzle corresponding to the output end of the sealed packaging bag feeding channel is arranged on the transverse back side of the packaging station so as to feed the packaging bag to the packaging station and open the packaging bag;
a packaging blowing nozzle is arranged at the input end of the packaging station to blow open the opening towards the fed packaging bag;
two sides of the output end of the sealed package bag feeding channel are provided with package transverse one-way rotating spring reset L-shaped baffle arms, and a package bag feeding station is arranged between the two package transverse one-way rotating spring reset L-shaped baffle arms; the packaging machine is characterized in that a packaging extension roller is arranged on a front retaining arm of a packaging transverse side unidirectional rotation spring reset L-shaped retaining arm, and packaging transverse telescopic suction nozzles are distributed on the front retaining arm of the packaging transverse side unidirectional rotation spring reset L-shaped retaining arm to extend out of the side portion of the adsorption packaging bag, so that the packaging bag is opened.
A grain combine harvester comprises a walking frame assembly, wherein each component is arranged on the walking frame assembly; the lower part of the walking frame assembly is provided with a root removing device, the middle part of the walking frame assembly is provided with a straw collecting device, the upper part of the walking frame assembly is provided with a corn cob collecting device and/or the upper part of the walking frame assembly is provided with a corn straw bundling machine for opening and packaging the collected corn straws. .
The invention has the advantages of reasonable design, low cost, firmness, durability, safety, reliability, simple operation, time and labor saving, capital saving, compact structure and convenient use.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a structural schematic diagram of a bundling part of the invention.
FIG. 3 is a schematic view of the sealing film structure of the present invention.
Fig. 4 is a schematic view of the harvester (with the bundling part removed) of the present invention in use.
FIG. 5 is a schematic diagram of the root removing device of the present invention.
FIG. 6 is a schematic view of the straw collection configuration of the present invention.
FIG. 7 is a schematic view of the front end of the corn collection of the present invention.
FIG. 8 is a schematic view of the rear use configuration of the corn collection of the present invention.
Wherein: 30. a traveling frame assembly; 31. a root removal device; 32. a straw collection device; 33. a corn cob collection device; 34. a base front portion; 35. removing root of the L-shaped soil turning hook group; 36. removing roots and breaking soil shrapnel; 37. removing root hollow space separating strips; 38. removing roots and cutting the bottom by a rotary cutter roller; 39. removing a root and rotating a crank; 40. removing roots and hinging a cross arm; 41. removing the root vertical hollow sleeve; 42. removing a spring rod; 43. removing roots and hinging the mesh plate; 44. removing root downward spurs; 45. a perforated front shovel plate for straw harvesting; 46. the straw harvesting rotary belt cutter poking wheel; 47. a straw post-harvest striker plate; 48. straw harvesting and feeding double rollers; 49. a straw harvesting conveyor belt; 50. a straw harvesting and storing part; 51. straw harvesting and smashing spiral cutters; 52. a corn splayed clamp arm; 53. corn conical double rollers; 54. inserting corn into the guide head; 55. the corn is fed to the roller pair; 56. a vertical corn rotary cutter group; 57. a corn guide; 58. the corn is transmitted to the direction-adjusting elastic sheet; 59. a corn output strip; 60. a corn splayed carrier; 61. the corn elastic lifting frame; 62. a corn longitudinal guide groove; 63. a corn lower pressure head; 64. a corn lifting guide block; 65. the corn is connected with a spring; 66. a corn longitudinal slotting cutter; 67. a corn rotating frame; 68. feeding the corns into a station; 69. a corn top station; 70. the corn is sent out of the station; 71. the corn bears and positions the taper hole cover; 72. corn craft concave-convex; 73. bur is protruded at the bottom of the corn; 74. a corn bottom spring; 75. a mesh plate at the bottom of the corn; 76. a corn center fabrication hole; 77. removing cores of the corns and drilling; 78. a corn collection conveyor belt; 79. a corn air blowing nozzle; 80. a corn collection duct; 81. a corn collection basket; 82. corn impurity leakage holes; 83. corn stirring arm. 84. A bundling assembly; 85. a straw feeding part; 86. feeding the shifting handle assembly; 87. pressing down the guide sloping plate; 88. a forming device; 89. forming a lower bottom; 90. forming a lower hook portion; 91. forming a side nip; 92. a molding side hook portion; 93. a forming station; 94. rotating the bending shifting arm; 95. a front guide grid; 96. a rear guide grid; 97. a rope tying knotter; 98. a hook hand assembly; 99. hooking a front conical head of a hand; 100. hooking the back conical head of the hand; 101. a hook hand guide connecting rod; 102. a bail arm; 103. a hook hand connecting arm; 104. a hitching sliding sleeve; 105. a hook return spring; 106. a pressing plate with a convex hole; 107. a pressure plate guide hole; 108. a reverse double-throw crankshaft connecting rod part; 109. sealing the feeding channel of the packaging bag; 110. a packaging station; 111. packaging a bottom telescopic suction nozzle; 112. packaging a sealing machine; 113. packaging the transverse moving side suction nozzle; 114. packaging the top lifting suction nozzle plate; 115. packaging the air blowing nozzle; 116. the packaging transverse side unidirectional rotating spring resets the L-shaped baffle arm; 117. packaging the extension roller; 118. packaging the transverse telescopic suction nozzle; 119. and a packaging bag feeding station.
Detailed Description
In order to make the technical problems, technical solutions and advantageous effects to be solved by the present application clearer, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
As shown in fig. 1-8, the packaging process based baler and grain combine harvester of the present embodiment, particularly a corn stalk baler, includes a forming device 88 disposed at a forming station 93 on a traveling frame assembly 30; the forming device 88 comprises a forming lower bottom 89 for supporting the straw which moves forward; a lower molding hook 90 is provided on the lower molding bottom 89;
the lower hook part 90 is formed and is used for being inserted into the straws from the hollow part of the lower bottom part 89 to comb the straws;
a forming side pressing part 91 arranged above and/or at two sides of the forming lower bottom part 89 to intermittently extrude and form the straw;
and the forming side hook part 92 is arranged on the same side of the forming side pressing part 91 and goes in and out of the hollow part of the forming side pressing part 91 so as to be inserted into the straw.
A rope tying knotter 97 is arranged at the input end of the forming device 88 for tying the straw ropes; the forming side hook part 92 and the forming lower hook part 90 have the same structure and avoid rope belts tied on the straws, and both adopt a hook hand assembly 98, which comprises a hook hand front conical head 99 positioned at the end part and a hook hand rear conical head 100 with the large end connected back to back with the large end of the hook hand front conical head 99; the small end of the rear conical head 100 of the hook hand is connected with a hook hand guide connecting rod 101, and the root part of a hook hand swing arm 102 is hinged on the hook hand guide connecting rod 101 to move;
a gib sliding sleeve 104 is arranged on the gib guide connecting rod 101, a gib connecting arm 103 with the end part hinged with the cantilever end or the upper part of the gib swing arm 102 is arranged on the gib sliding sleeve 104, and a gib return spring 105 connected with the gib sliding sleeve 104 is arranged on the gib guide connecting rod 101;
when the front conical head 99 of the gib hand is inserted into the straw, the swing arm 102 of the gib hand moves towards the root of the guide connecting rod 101 of the gib hand under the action of the return spring 105 of the gib hand and the resistance of the straw; when the front conical head 99 of the hook hand leaves the straw, under the resistance action of the straw, the hook hand return spring 105 overcomes the spring force of the hook hand return spring 105 to open and swing towards the head of the hook hand guide connecting rod 101, and the hook hand swing arm 102 moves towards the head of the hook hand guide connecting rod 101; thereby combing the bent straws;
the forming side nip 91 includes a linearly reciprocating barbed press plate 106 having a press plate guide hole 107 for passing through the hook hand assembly 98;
the forming side pressing part 91 and the corresponding gib hand guide connecting rod 101 of the gib hand assembly 98 are respectively hinged on two opposite double-throw parts with the angle difference of 180 degrees of the opposite double-throw crankshaft connecting rod part 108, so as to be alternately contacted with the straws.
The corn stalk bundling machine of the embodiment comprises a packaging station 110 arranged on the walking frame assembly 30 to open a packaging bag so as to seal and package bundled stalks; an output end of the sealed package feeding channel 109 is provided at the packaging station 110 to output the packaged packages; a through hole of a bottom plate of the packaging station 110 is provided with a packaging bottom telescopic suction nozzle 111 which ascends to suck a packaging bag positioned at the packaging station 110; a packaging sealing machine 112 is arranged at the input end of the packaging station 110 to seal the packaging bag; a packaging top lifting suction nozzle plate 114 is arranged above the packaging station 110 and used for descending and sucking the packaging bags positioned at the packaging station 110; a packaging-bag-transversely-moving-side suction nozzle 113 corresponding to the output end of the sealed-bag-feeding path 109 is provided on the transversely-rear side of the packaging station 110 to feed the packaging bag to the packaging station 110 and open it;
a packaging blowing nozzle 115 is provided at the input end of the packaging station 110 to blow open towards the fed packaging bags;
two lateral parts of the output end of the sealed package feeding channel 109 are provided with a package lateral unidirectional rotation spring return L-shaped baffle arm 116, and a package feeding station 119 is arranged between the two package lateral unidirectional rotation spring return L-shaped baffle arms 116; the packaging extension roller 117 is arranged on the front retaining arm of the packaging transverse side unidirectional rotation spring reset L-shaped retaining arm 116, and the packaging transverse telescopic suction nozzle 118 is distributed on the front retaining arm of the packaging transverse side unidirectional rotation spring reset L-shaped retaining arm 116 so as to extend out of the side part of the adsorption packaging bag and open the packaging bag.
The corn stalk bundling machine of the embodiment comprises a bundling component 84; the baling assembly 84 includes a straw feeding portion 85 for feeding in corn straw to be baled;
the straw feeding part 85 is a conveying auger, a conveying belt or a push rod;
the feeding shifting hand assembly 86 is symmetrically arranged at the input part of the straw feeding part 85 and is used for assisting in gathering the straws at the input end of the straw feeding part 85;
a downward-pressing guide inclined plate 87 which is arranged above the input part of the straw feeding part 85 and is used for guiding and feeding the straws;
the feeding shifting handle assembly 86 comprises a front guide grid 95 and a rear guide grid 96 which are connected and arranged at the side part of the input part of the straw feeding part 85; the dial-up channel formed by connecting the front guide grid 95 and the rear guide grid 96 at the side parts of the input parts at two sides is firstly reduced and then enlarged; a rotary bending toggle arm 94 is arranged at the corner of the front guide grid 95 and the rear guide grid 96; the rotary dog arm 94 enters the feed channel from a front guide grid 95 and exits the feed channel from a rear guide grid 96.
A forming device 88 of a corn straw bundling machine is arranged at or above the output end of the straw feeding part 85; a baling assembly 84 of a corn stalk baler is disposed after the forming device 88.
The combine harvester of the embodiment comprises a walking frame assembly 30, wherein each component is arranged on the walking frame assembly 30; wherein, the lower part of the walking frame assembly 30 is provided with a root removing device 31, the middle part of the walking frame assembly 30 is provided with a straw collecting device 32, the upper part of the walking frame assembly 30 is provided with a corn cob collecting device 33 and/or the upper part of the walking frame assembly 30 is provided with a corn straw bundling machine for opening and packaging the collected corn straws.
The corn straw bundling process comprises the step S6 of straw forming;
s6.1, firstly, the straws move forward to be sent into a forming station 93; then, forming a lower hook part 90, inserting the lower hook part into the straws from the hollow part of the formed lower bottom part 89 to comb the straws, and meanwhile, reversely and respectively extruding and combing the straws by a forming side pressing part 91 and a forming side hook part 92 which are staggered in spatial position;
s6.2, firstly, starting the rope tying knotter 97 to tie the ropes of the straws; then, outputting the bundled straws.
In step S6.1, first, when the front conical head 99 of the hitching arm is inserted into the straw, the hitching arm swing arm 102 swings towards the root of the hitching guide link 101 under the action of the hitching return spring 105 and the resistance of the straw, and at the same time, the pressing plate 106 with the burred holes is transversely separated from the straw under the action of the reverse double-crank crankshaft link 108; then, when the front conical head 99 of the gib hand leaves the straw, under the resistance of the straw, the gib hand return spring 105 overcomes the spring force of the gib hand return spring 105 to open and swing towards the head of the gib hand guide connecting rod 101, the gib hand swing arm 102 moves towards the head of the gib hand guide connecting rod 101, and meanwhile, under the action of the reverse double-crank crankshaft connecting rod 108, the pressing plate 106 with the burred hole is pressed against the straw.
The corn straw bundling process of the embodiment comprises a step S7 of opening a packaging bag at a packaging station 110 so as to seal and package bundled straws;
s7.1, firstly, the packaging bag output from the output end of the packaging bag feeding channel 109 is sealed, and the transverse side of the packaging bag is unidirectionally rotated by the spring to reset the L-shaped baffle arm 116; then, the packaging transverse moving side suction nozzle 113 transversely moves, so that the packaging transverse side unidirectional rotating spring reset L-shaped baffle arm 116 is opened; secondly, the packaging extending roller 117 performs rolling extension and/or side support on the side surface of the packaging bag; thirdly, the packaging bag is fed to the packaging station 110 by the packaging transverse moving side suction nozzle 113; then, the two transverse side unidirectional rotating spring reset L-shaped stop arms 116 of the package automatically reset; then, the package horizontal telescopic suction nozzle 118 extends out to suck the side part of the package bag, and the package top lifting suction nozzle plate 114 descends to suck the package bag positioned at the package station 110; the packaging bottom telescopic suction nozzle 111 absorbs the plastic bag, and meanwhile, the packaging air blowing nozzle 115 blows open towards the opening of the packaging bag;
and S7.1, sealing the packaging bag through a packaging sealing machine 112 and outputting.
The corn straw bundling process comprises the step S5 of feeding corn straws to be bundled; the concrete steps are as follows;
s5.1, conveying straws by a straw feeding part 85;
s5.2, the rotary bending shifting arm 94 enters the shifting channel from the front guide grid 95 and leaves the shifting channel from the rear guide grid 96, and the straw is prevented from being mixed by utilizing the inclination and the turning.
Executing the step S5, and executing a step S6 of the corn straw bundling machine, namely executing the steps of the corn straw bundling machine and the straw forming process; step S7 of the corn stalk baler is performed after step S6.
The combine harvesting process of the present embodiment, by means of the traveling gantry assembly 30, to travel in the field; the process comprises the following automatic harvesting steps;
s1, pre-threshing and collecting the corn cobs through a corn cob collecting device 33;
s2, crushing and collecting the corn straws through a straw collecting device 32;
s3, loosening soil when the corn roots are collected through the root removing device 31;
after step S2, a corn stalk baling process is performed.
As shown in fig. 1-8, the corn combine harvester of the present embodiment includes a walking frame assembly 30, on which each component is disposed; wherein, the lower part of the walking frame assembly 30 is provided with a root removing device 31, the middle part of the walking frame assembly 30 is provided with a straw collecting device 32 and/or the upper part of the walking frame assembly 30 is provided with a corn cob collecting device 33.
In the root removing device of the corn combine harvester of the embodiment, the root removing device 31 comprises a root removing L-shaped soil turning hook group 35 which is rotatably arranged at the front part 34 of the base of the walking frame assembly 30 and is provided with a plurality of components, and the root removing L-shaped soil turning hook group is turned downwards to enter soil for a set depth, loosens the soil and takes out corn root hairs; a root-removing soil-breaking elastic sheet 36 is arranged above the root-removing L-shaped soil-turning hook group 35 and is arranged in a neutral position between the adjacent root-removing L-shaped soil-turning hook groups 35 so as to impact corn root hairs planed by the root-removing L-shaped soil-turning hook group 35; an input end of a root-removing hollow space strip 37 is arranged on the back side of the root-removing soil-breaking elastic sheet 36 to receive the corn root hairs impacted on the root-removing soil-breaking elastic sheet 36; a root-removing bottom rotary cutter roller 38 is arranged at the spacing gap of the root-removing hollow space strip 37 to cut the corn root silks; a root-removing rotating crank 39 is rotatably arranged above the root-removing hollow space partition strip 37, a transverse root-removing hinged cross arm 40 is sleeved between cantilever ends of the root-removing rotating crank 39, a root-removing vertical hollow sleeve 41 is distributed on the root-removing hinged cross arm 40, a root-removing spring rod 42 is stretched in the root-removing vertical hollow sleeve 41, a root-removing hinged mesh plate 43 is arranged at the lower end of the root-removing spring rod 42, and a plurality of root-removing downward spurs 44 are distributed on the lower surface of the root-removing hinged mesh plate 43; the root-removed downward spurs 44 correspond to the hollow distribution of the root-removed hollow partitioning strips 37.
In the straw collecting device of the corn combine harvester of the embodiment, the straw collecting device 32 comprises a straw harvesting perforated front shovel plate 45 arranged at the front part 34 of the base of the walking frame assembly 30, and the straw harvesting perforated front shovel plate 45 is positioned in front of the root-removing L-shaped soil-turning hook group 35;
the upper surface of the straw harvesting perforated front shovel plate 45 is provided with a straw harvesting rotary belt cutter shifting wheel 46, and the straw harvesting rotary belt cutter shifting wheel 46 is used for gathering and collecting the corn straws backwards along the straw harvesting perforated front shovel plate 45; a straw harvesting feeding roller 48 is arranged at the output port at the rear end of the straw harvesting perforated front shovel plate 45; a straw harvesting rear baffle plate 47 is obliquely arranged above the straw harvesting feeding pair roller 48, an input end of a straw harvesting conveyor belt 49 is arranged below an output port at the rear end of the straw harvesting perforated front shovel plate 45, and an output end of the straw harvesting conveyor belt 49 is provided with a straw harvesting storage part 50;
a straw harvesting and smashing spiral cutter 51 is coaxially arranged above the straw harvesting rotary belt cutter thumb wheel 46, and the straw harvesting and smashing spiral cutter 51 smashes falling straws;
the collected straws are gathered together, and the fallen straws are cut by a straw harvesting feeding roller 48 and enter the input end of a straw harvesting conveyor belt 49 under the guidance of a straw post-harvest baffle plate 47, and are stored in a straw harvesting storage part 50;
a pressing plate is provided in the straw harvest storage part 50 for compressing the stored straw.
In the corn cob collecting device of the corn combine harvester of the embodiment, the corn cob collecting device 33 comprises a corn splayed clamping arm 52 which is arranged in front of the neutral position at the upper part of the base front part 34 of the walking frame assembly 30 and is used for clamping the middle part of corn so as to strip the corn stalks upwards;
a corn conical double-roller 53 is arranged below the corn splayed clamp arm 52, and a corn inserting guide head 54 is coaxially arranged at the front end of the corn conical double-roller 53;
a corn guide part 57 positioned at the rear side of the corn splayed clamp arm 52 is arranged at the upper part of the base front part 34 in a neutral position; a corn lower conveying double-roll 55 is arranged below the corn conical double-roll 53, and a corn vertical rotary cutter group 56 is arranged between the corn lower conveying double-roll 55 and the corn conical double-roll 53 and is used for longitudinally cutting or obliquely cutting the corn straws;
a corn guide part 57 which is positioned at the rear side of the corn splayed clamping arm 52 is arranged at the upper part of the base front part 34 in a neutral position so as to receive corn cobs falling from the clamping strip of the corn splayed clamping arm 52; a corn transmission direction-adjusting elastic sheet 58 is arranged at the inlet of the corn guide part 57 to adjust the direction of the corn cobs; the output end of the corn splayed clamp arm 52 is provided with an input end of a corn output strip 59; a plurality of self-positioning corn splayed carriers 60 are longitudinally distributed on the corn output strip 59, and the corn splayed carriers 60 are arranged in a through manner and correspond to the corn output strip 59 in a clearance manner;
a corn elastic lifting frame 61 is arranged above the longitudinal central line of the corn splayed carrier 60, a corn longitudinal guide groove 62 is arranged on the corn elastic lifting frame 61, and a corn lower pressing head 63 is arranged in the corn longitudinal guide groove 62 and is used for pressing the upper surface of a corn cob to be longitudinally peeled; a corn lifting guide block 64 is lifted in the corn longitudinal guide groove 62, the upper end of the corn lifting guide block 64 is connected with the corn elastic lifting frame 61 through a corn connecting spring 65, and the lower end of the corn lifting guide block 64 is provided with a corn longitudinal slotting cutter 66 to be cut with the corn cob skin.
In the corn cob collecting device of the corn combine harvester of the embodiment, the corn cob collecting device 33 comprises a corn rotary frame 67 arranged on the walking frame assembly 30, and the corn rotary frame is provided with a corn feeding station 68, a corn top station 69 and a corn discharging station 70;
a plurality of corn bearing and positioning taper hole sleeves 71 with large ends opened are distributed on the corn rotating frame 67, and a plurality of corn process concave-convex 72 and/or spiral ring cutters are distributed on the inner side wall of each corn bearing and positioning taper hole sleeve 71; the small end of the root of the corn bearing positioning taper hole sleeve 71 is provided with a corn bottom spur 73, and the corresponding meshes of the corn bottom mesh plate 75 are sleeved on the corn bottom spur 73; the corn bottom mesh plate 75 is connected with the small end of the root of the corn bearing and positioning taper hole sleeve 71 through a corn bottom spring 74, and a corn center fabrication hole 76 is formed in the center of the corn bottom mesh plate 75;
the meshes and the long slotted holes of the corn bearing and positioning taper hole sleeve 71 are both larger than the shape of the corn grains to be removed and smaller than the shape of the corn grains required by the setting;
in the corn feeding station 68, the corn stalks are obliquely arranged upwards, and the corn stalks are fed into a corn bearing positioning taper hole sleeve 71 and self-positioned through taper;
the corn top station 69 is vertically arranged upwards, and is provided with a corn core removing drill 77 which corresponds to the corn central process hole 76 and has lifting and rotating actions, the corn core removing drill 77 rotates to enter the corn bearing and positioning taper hole sleeve 71, and the corn core is drilled and crushed to realize grain stripping; after the corn is crushed, the impurities after the partial crushing are discharged through the corn bearing and positioning taper hole sleeve 71, and the corn kernels meeting the set requirement are temporarily stored in the corn bearing and positioning taper hole sleeve 71;
a corn delivery station 70 arranged downwards, wherein an input end of a corn collection conveyor belt 78 is arranged below the corn delivery station to output the crushed corn kernels and impurities discharged by falling;
a corn blowing nozzle 79 is arranged below the ascending section of the corn collecting and conveying belt 78, and a corn collecting air duct 80 is arranged above the ascending section of the corn collecting and conveying belt 78;
a corn collecting basket 81 with a corn impurity leaking hole 82 at the bottom is arranged at the output end of the corn collecting conveyor belt 78, and a corn stirring arm 83 is arranged in the corn collecting basket 81.
The automatic harvesting process for the corn is characterized in that: by means of a walking frame assembly 30, to walk in the field; the process comprises the following automatic harvesting steps;
s1, pre-threshing and collecting the corn cobs through a corn cob collecting device 33;
s2, crushing and collecting the corn straws through a straw collecting device 32;
and S3, loosening soil when the corn roots are collected through the root removing device 31.
The corn cob collection process of the corn combine harvester comprises the following steps of S1, pre-threshing and collecting corn cobs through a corn cob collection device 33; the following is specifically performed;
s1.1, firstly, clamping the middle part of corn by a corn splayed clamping arm 52 to strip up the corn cobs of the corn straws, simultaneously, inserting a corn inserting guide head 54 into two side parts of the clamped corn, and rotating a corn conical pair roller 53 to pull the corn downwards to be matched with the corn splayed clamping arm 52 so as to separate the corn cobs from the corn straws; then, the vertical corn rotary cutter 56 cuts or obliquely cuts the pulled corn stalks, and the corn stalks are fed into the corn guide 57 under the action of inertia; secondly, the corn downward conveying roller 55 transversely cuts the falling longitudinally cut or obliquely cut corn straws, and meanwhile, corn cobs enter the corn splayed carrier 60 and are self-positioned after being shifted from the corn guide part 57 through the corn conveying direction-adjusting elastic sheet 58; thirdly, transversely cut straws are collected, and meanwhile, the corn output strips 59 drive the corn splayed carriers 60 to move forwards; then, when the corn elastic lifting frame 61 is reached, the corn lower pressure head 63 presses the upper surface of the corn cob to be longitudinally peeled, and meanwhile, the corn lifting guide block 64 is lifted along the corn longitudinal guide groove 62 under the action of the corn connecting spring 65, so that the corn longitudinal slitting knife 66 longitudinally cuts the skin of the corn cob; the corn output strip 59 then delivers the longitudinally peeled corn cobs to the next station.
The corn cob collection process of the corn combine harvester comprises the following steps of S1, pre-threshing and collecting corn cobs through a corn cob collection device 33; the following step S1.2 is carried out, with the help of the corn rotary frame 67, S1.2.1, at the corn feeding station 68, for the transported corn cobs to be fed into the corn bearing positioning taper hole sleeve 71 and self-positioned by taper; s1.2.2, firstly, at the top station 69, the corn core removing drill 77 rotates into the corn bearing positioning taper hole sleeve 71 to drill and crush the corn core to realize grain stripping; then, under the pressing action of the corn core removing drill 77, the end part of the corn cob is penetrated and fixed by the corn bottom spurs 73; secondly, under the pressing and rotating action of the corn core removing drill 77, the corn cobs are crushed by utilizing the corn technology concave-convex 72 and/or the spiral ring cutter, meanwhile, after the corn cobs are crushed, impurities are discharged through the corn bearing and positioning taper hole sleeve 71 after the corn cobs are partially crushed, and corn kernels meeting the set requirements are temporarily stored in the corn bearing and positioning taper hole sleeve 71; s1.2.3, in the corn delivery station 70, the corn bottom mesh plate 75 overcomes the spring force of the corn bottom spring 74 by gravity, so as to separate the end of the corn cob from the corn bottom spurs 73, and the corn collection conveyor 78 outputs the crushed corn grains and sundries discharged by falling; s1.2.4, firstly, on the ascending section of the corn collecting conveyor belt 78, under the action of the corn blowing nozzle 79 and the corn collecting air duct 80, the sundries are output through the corn collecting air duct 80; then, at the output end of the corn collection conveyor belt 78, the corn collection basket 81 stores the corn kernels and debris and the elongated stalks are subjected to a mixing wrap by the corn mixing arm 83.
The straw collecting process of the corn combine harvester comprises the step S2 of crushing and collecting corn straws through the straw collecting device 32; the following steps are executed; s2.1, firstly, a straw harvesting and smashing spiral cutter 51 smashes fallen straws; then, the straw harvesting perforated front shovel plate 45 moves forward, and the straw harvesting rotary belt cutter shifting wheel 46 gathers and collects the corn straws backwards along the straw harvesting perforated front shovel plate 45; then, the collected straws are gathered backwards, and the fallen straws are cut by a straw harvesting feeding roller 48 and enter the input end of a straw harvesting conveyor belt 49 under the guidance of a straw post-harvest baffle plate 47, and are stored in a straw harvesting storage part 50; next, in the straw harvest storage part 50, the stored straw is compressed by the pressing plate.
The root removing process of the corn combine harvester of the embodiment is realized by the root removing device 31; s3, loosening soil when the corn roots are collected through the root removing device 31; the following steps are executed; s3.1, rotating the root-removing L-shaped soil-turning hook group 35, turning the root-removing L-shaped soil-turning hook group downwards to a set depth of soil, loosening the soil and taking out corn root hairs; s3.2, the root-removing soil-breaking elastic sheet 36 impacts the corn root hairs planed by the root-removing L-shaped soil-turning hook group 35; s3.3, the input end of the root removing hollow space strip 37 receives the corn root hairs of the striking root removing soil breaking elastic sheet 36; s3.4, removing roots and rotating the bottom of the corn to cut the corn rootlets by a rotary cutter roller 38; s3.5, at the same time of or after the step S3.4, the rootless rotating crank 39 drives the rootless articulated mesh plate 43 to rotate, and the rotary shaft faces downwards under the self-weight action of the rootless articulated mesh plate 43; s3.6, the descending section of the root removing hinged mesh plate 43 is the same as the root removing hollow space partition strip 37, the root removing spring rod 42 is compensated by the spring expansion, the distance of the root removing hinged mesh plate when the root removing hinged mesh plate moves forwards is changed, and meanwhile, the root removing downward bur 44 is used for burling and pressing down the planed corn root hair and sundries through the spring force so as to remove the attached soil.
The invention takes the walking frame assembly 30 as a carrier, and the root removing device 31 realizes soil loosening and takes out stones, root hairs and the like. Straw collection device 32 has realized that the straw is smashed and is retrieved, corn-on-cob collection device 33 compares in traditional harvester, it can carry out the harmless takeout to the stick, the L type that removes the root hook group 35 preferred V type cutter, realized smashing soil, it beats to get rid of the soil of adhesion to remove root hack shell fragment 36, it has the technology interval to remove root fretwork space spacer 37, simultaneously can leak garrulous end and soil grain in the soil down, it cuts the root must to remove root bottom rotary cutter roller 38, because it is bottom, can make the stone arched, avoid damaging the cutter, it drives to remove root rotating crank 39, it is rotatory to make it articulated cross arm 40 that removes the root around crank root center pin, remove the root vertical cavity 41 can realize the free rotation, guarantee the flagging state, remove root spring lever 42 through spring adjustment height, it is rotatory to be circulated and drive and remove the root and to the downward bur 44 lift and longitudinal movement to remove the root articulated orifice plate 43, because there is the spring, can avoid large granule stone and the damage that the root must adjust the tool to the tool.
The straw reaps foraminiferous front shovel board 45 and realizes the direction, and it can be collected and the cutting with the straw of whereabouts in the straw reaps rotatory band knife thumb wheel 46, and the straw reaps back striker plate 47 and avoids during the straw gets into rear portion equipment, and the straw reaps feed pair roller 48 and realizes that the straw rolls in, and the straw reaps conveyer belt 49 and realizes the conveying, and the straw reaps storage part 50 and realizes the storage to the straw, and the straw reaps smashes spiral cutter 51 and realizes the cutting in advance of straw.
As another innovation point, the splayed corn clamp arm 52 simulates hands (similar to a left-hand stripping), contact of inclined corn is achieved by the aid of locomotive walking, corn is clamped in a rotating mode through the conical corn roller 53 in a rotating mode (simulating a right-hand downward pulling of a straw part), separation of the corn sticks from the stem part is achieved, gaps among the corn straws are inserted into the guide head 54 through the corn insertion, the corn downward conveying roller 55 and the vertical corn rotary cutter set 56 achieve multi-angle smashing and cutting processing on the corn straws, the corn guide part 57 achieves storage of the corn sticks through inertia of the rolled corn sticks and motive power of the locomotive forward walking, corn transmission and direction adjusting elastic pieces 58 achieve adjustment of the direction of the corn sticks, a corn output strip 59 achieves conveying of the corn sticks, the splayed corn carrier 60 achieves self-positioning through a V shape, the distance between a pressing head and a cutter is set according to the thickness and the number of layers of the corn husks, flexible adjustment of the corn elastic lifting rack 61 is achieved, guiding of the corn longitudinal guide groove 62 is achieved, and the spring elasticity of the corn connecting spring 65 and the height of the corn pushing head 63 and the corn longitudinal cutter 66 are adjusted according to the experience value, the requirements of the corn lifting block for achieving the corn slotting operation.
As another innovation point, the corn rotating frame 67 is connected with each other, the corn feeding station 68, the corn top station 69 and the corn discharging station 70 are used for completing the functions of corresponding stations, the corn bearing and positioning taper hole sleeve 71 is used for realizing self positioning, and the corn process concave-convex 72 and/or the cutter are used for transversely cutting or grinding the outer skin. The corn bottom spurs 73 can fix the bottom of the corn core, certainly, non-contact corn is non-contact and has no functions, certainly, the corn bottom mesh plate 75 which can be dragged with the corn bottom spring 74 realizes automatic cleaning of impurities accumulated at the bottom, the corn center fabrication hole 76 realizes protection of the corn core removing drill 77, the corn collecting conveyor belt 78 realizes conveying, the corn blowing nozzle 79 blows light husks, the corn collecting air duct 80 collects the light impurities to the straw storage position, the corn grains are stored in the corn collecting basket 81, the corn impurity leaking holes 82 drop the impurities, and preferably, the corn stirring arm 83 winds the slender husk silk.
The invention solves the problem of poor binding tightness in the traditional binding process, realizes the problem of variable tightness of straws by extrusion or barbs, presses down the guide inclined plate 87 to realize guide, ensures the convenience of discharge forming by using air suction and draught of the forming device 88, realizes extrusion by the forming side pressing part 91, realizes the combing of each straw by the forming side hook part 92 to avoid bending, completes the forming of the forming station 93, rotates the bending shifting arm 94, the front guide grille 95, the rear guide grille 96, the binding rope knotter 97, the hook component 98, the hook front conical head 99, the hook rear conical head 100, the hook guide connecting rod 101, the hook swinging arm 102, the hook connecting arm 103, the hook sliding sleeve 104 and the hook reset spring 105, realizes automatic reset and avoids the straws being pulled out. The pressing plate 106 with the spurs realizes the extrusion of the straws. The packaging process is ingenious in that automatic side blocking and automatic extension are achieved through the station 110, the packaging bottom telescopic suction nozzle 111, the packaging sealing machine 112, the packaging transverse moving side suction nozzle 113, the packaging top lifting suction nozzle plate 114, the packaging air blowing nozzle 115, the packaging transverse side one-way rotating spring reset L-shaped blocking arm 116, the packaging extension roller 117, the packaging transverse telescopic suction nozzle 118 and the packaging bag feeding station 119, and comprehensive utilization of gas is achieved through negative pressure and voltage.
The above description is only exemplary of the present application and should not be taken as limiting the present application, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims (1)

1. A grain combine harvester, characterized in that: comprises a walking frame assembly (30), wherein each component is arranged on the walking frame assembly (30); wherein, the lower part of the walking frame assembly (30) is provided with a root removing device (31), the upper part of the walking frame assembly (30) is provided with a corn cob collecting device (33), and the upper part of the walking frame assembly (30) is provided with a corn straw bundling machine for opening and packaging the collected corn straw;
the bundling machine of the packaging process comprises a packaging station (110) arranged on a walking frame assembly (30) to open a packaging bag so as to seal and package bundled straws; an output end of a sealed packaging bag feeding channel (109) is arranged at the packaging station (110) to output the packaging bags; a packaging bottom telescopic suction nozzle (111) is arranged on a through hole of a bottom plate of the packaging station (110) to lift and adsorb a packaging bag positioned in the packaging station (110); a sealing machine (112) is arranged at the input end of the sealing station (110) to seal the sealing bag; a packaging top lifting suction nozzle plate (114) is arranged above the packaging station (110) to descend and suck the packaging bags positioned at the packaging station (110); a packaging transverse moving side suction nozzle (113) corresponding to the output end of the sealed packaging bag feeding channel (109) is arranged on the transverse back side of the packaging station (110) so as to feed the packaging bag to the packaging station (110) and open the packaging bag;
a packaging blowing nozzle (115) is arranged at the input end of the packaging station (110) to blow the opening open towards the fed packaging bag;
two sides of the output end of the sealed package bag feeding channel (109) are provided with package transverse side unidirectional rotating spring reset L-shaped baffle arms (116), and a package bag feeding station (119) is arranged between the two package transverse side unidirectional rotating spring reset L-shaped baffle arms (116); a packaging extension roller (117) is arranged on the front baffle arm of the packaging transverse side unidirectional rotation spring reset L-shaped baffle arm (116), and a packaging transverse telescopic suction nozzle (118) is distributed on the front baffle arm of the packaging transverse side unidirectional rotation spring reset L-shaped baffle arm (116) to extend out of the side part of the adsorption packaging bag so as to open the packaging bag;
in the corn straw bundling process, opening a packaging bag at a packaging station so as to seal and package bundled straws; firstly, a packaging bag output from the output end of a packaging bag feeding channel is packaged, and a transverse side of the packaging bag is unidirectionally rotated to return an L-shaped retaining arm through a spring; then, transversely moving the packaging transverse moving side suction nozzle to open the packaging transverse side unidirectional rotating spring reset L-shaped baffle arm; secondly, carrying out rolling extension and/or side support on the side surface of the packaging bag by a packaging extension roller; thirdly, the packaging bag is fed into a packaging station by a packaging transverse moving side suction nozzle; then, the two transverse side unidirectional rotating springs of the package reset the L-shaped baffle arm to automatically reset; then, the packaging transverse telescopic suction nozzle extends out of the side part of the adsorption packaging bag, and the lifting suction nozzle plate at the top of the packaging part descends to adsorb the packaging bag positioned at the packaging station; the plastic bag is adsorbed by the telescopic suction nozzle at the bottom of the package, and meanwhile, the packaging blowing nozzle blows open towards the opening of the package bag.
CN202210269125.9A 2021-06-16 2021-06-16 Bundling machine and grain combine based on packaging process Active CN114600649B (en)

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