CN112136439A - Seeding device for standardized planting of wormwood and using method thereof - Google Patents

Seeding device for standardized planting of wormwood and using method thereof Download PDF

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Publication number
CN112136439A
CN112136439A CN202011040046.8A CN202011040046A CN112136439A CN 112136439 A CN112136439 A CN 112136439A CN 202011040046 A CN202011040046 A CN 202011040046A CN 112136439 A CN112136439 A CN 112136439A
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seedling
transmission
seedlings
shaft
seedling separating
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CN202011040046.8A
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CN112136439B (en
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宋文海
刘通
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Ningxia huangfumi aiyikang Industry Co.,Ltd.
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宋文海
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01CPLANTING; SOWING; FERTILISING
    • A01C11/00Transplanting machines
    • A01C11/02Transplanting machines for seedlings

Abstract

The invention discloses a seeding device for standardized planting of wormwood and a using method thereof. The seedling transplanting device utilizes the separation structure of the seedling separating transmission shaft and the fixed rotating shaft to simultaneously utilize the ejector rod and the layering driven by the seedlings, so that the seedlings can be effectively transmitted to the inner side of the seedling transplanting cylinder, the condition of leakage is avoided, the seedlings can be effectively blocked after being transplanted with soil by utilizing the barrier strips, the seedlings are prevented from being taken up, and meanwhile, the seedlings are transplanted by utilizing the cylindrical structure of the seedling transplanting cylinder, the soil penetration depth of the seedlings is improved, and the survival rate is ensured.

Description

Seeding device for standardized planting of wormwood and using method thereof
Technical Field
The invention relates to the field of wormwood planting, in particular to a seeding device for standardized wormwood planting and a using method thereof.
Background
Artemisia argyi is propagated asexually mainly by rhizome division, but seeds can also be used for propagation. Generally, seeds are bred in 3 months for sowing, roots and stems are bred in 11 months, the width of a furrow is about 1.5 meters, the height of the middle of the furrow surface is higher, the two sides of the furrow surface are lower, and the furrow surface is of a fish back shape, so that water accumulation and disease damage are avoided. Sufficient base fertilizer is applied before sowing, generally 4000 kg of decomposed farmyard manure is applied per mu, deep ploughing and soil blocking are sufficient, and sufficient base water is poured once after sowing.
In the common wormwood planting, the soil digging and planting operation is carried out manually, the operation has low working efficiency, or the modified rice transplanter is utilized, but the conditions of seed leakage and seedling emergence caused by mechanical carrying after soil insertion can also occur, so that the survival rate is not high.
Disclosure of Invention
The invention aims to solve the problems and provides a seeding device for the standardized planting of wormwood and a using method thereof.
The invention realizes the purpose through the following technical scheme:
a seeding device for standardized planting of wormwood comprises a storage mechanism for storing wormwood seedlings, a seedling separating mechanism for transmitting separated seedlings and a seedling inserting mechanism for planting the seedlings, wherein the seedling separating mechanism is arranged at the lower end of the storage mechanism, the output end of the seedling separating mechanism is provided with the seedling inserting mechanism, two sides of the storage mechanism are connected with traction mechanisms, power ends of the seedling inserting mechanism and the seedling separating mechanism are connected with power mechanisms, and the seedling separating mechanism is connected with the power mechanisms through a linkage mechanism;
the storage mechanism comprises a sealing cover, a storage box and a material guide plate, the sealing cover is arranged at the upper end of the storage box, and the material guide plate is arranged in the storage box;
the traction mechanism comprises a support frame, wheel seats, moving wheels and wheel seat adjusting shock absorbers, wherein the wheel seats are arranged at two ends of the support frame, the moving wheels are mounted on the wheel seats, the wheel seat adjusting shock absorbers are arranged between the upper ends of the wheel seats and the storage box, an adjusting frame is arranged at the front end of the support frame, a support frame adjusting rod is arranged on the adjusting frame, and the front end of the adjusting frame is connected with a traction frame;
the seedling transplanting mechanism comprises an external sleeve, a chain box, a reciprocating chain wheel set and a reciprocating matching block, wherein the chain box is arranged at the rear end of the external sleeve, the reciprocating chain wheel set is arranged in the chain box, the reciprocating chain wheel set is connected with a seedling transplanting barrel in the external sleeve through the reciprocating matching block, a blocking strip is connected to the inner side of the seedling transplanting barrel in a sliding manner, and the blocking strip is connected with the external sleeve through a first reset shaft;
the seedling separating mechanism comprises a seedling separating frame, a seedling separating groove is formed in the seedling separating frame, two seedling separating transmission shafts are arranged in the seedling separating frame, a transmission belt is arranged on each seedling separating transmission shaft, branches are arranged on the outer end face of the transmission belt, the lower end of each seedling separating transmission shaft is connected with a fixed rotating shaft, a matching tooth is formed on the fixed rotating shaft, a matching groove is formed between the fixed rotating shaft and the seedling separating transmission shafts, a push rod is arranged on the rear side of the lower end face of each seedling separating transmission shaft, a pressing strip is arranged on the rear side of the push rod, and the push rod and the pressing strip are both arranged on a second;
the power mechanism comprises a servo motor, a transmission case, a clutch and a first main shaft, the servo motor is installed on the transmission case, the clutch is installed at the rear end of the transmission case, the output end of the clutch is connected with a second main shaft, the output end of the transmission case is connected with the first main shaft, and the first main shaft is connected with a linkage mechanism through a transmission chain set.
Preferably: the linkage mechanism comprises a driven bevel gear, a driving bevel gear and a connecting rod, the driven bevel gear is connected to the lower end of the fixed rotating shaft, the driven bevel gear is matched with the driving bevel gear, the driving bevel gear is connected to the connecting rod, and the other end of the connecting rod is connected with the transmission chain set.
So set up, after transmission chain group rotated, power transmitted fixed pivot through connecting rod, initiative bevel gear, driven bevel gear for divide seedling transmission axle can drive conveyer and branching and transmit the seedling.
Preferably: the linkage mechanism comprises a worm wheel and a worm, the worm wheel is arranged on the lower end face of the fixed rotating shaft and meshed with the worm, and one end of the worm is connected with the transmission chain set.
So set up, after transmission chain group rotated, power transmitted fixed rotating shaft through worm, worm wheel for divide seedling transmission axle to drive conveyer and branching and transmit the seedling.
Preferably: the sealing cover is connected with the storage box through a buckle, and the material guide plate is connected with the storage box through a bolt.
So set up, the storage box plays the storage effect, and the sealing cover plays sealed effect, and the stock guide plays the water conservancy diversion effect.
Preferably: the external sleeve is connected with the chain box through welding, the seedling inserting cylinder is connected with the external sleeve in a sliding mode, and the seedling inserting cylinder is of a structure with a wide upper part and a narrow lower part.
So set up, outside sleeve plays the installation and places the effect, inserts a seedling section of thick bamboo and plays and insert the seedling effect.
Preferably: the first reset shaft is connected with the outer sleeve through a bolt, the barrier strip is connected with the first reset shaft through threads, and a stop block is arranged at the upper end of the barrier strip and positioned on the inner side of the outer sleeve.
So set up, the blend stop can avoid the seedling to be taken up again after the seedling inserts soil, guarantees to insert the process of seedling.
Preferably: the seedling separating transmission shaft is rotatably connected with the seedling separating frame, the seedling separating groove is integrally formed in the seedling separating frame, and the fork is connected with the conveying belt through a screw.
So set up, divide the seedling groove to play spacing and transmission effect, the bifurcation plays transmission effect.
Preferably: the ejector rod and the pressing strip are connected with a second reset shaft through welding, and the second reset shaft is connected with the seedling separating frame through a bolt.
So set up, the ejector pin can make fixed rotating shaft and divide seedling transmission axle separation to guarantee that the seedling is effectively transmitted inside the seedling transplanting barrel.
Preferably: the first main shaft key is connected with the transmission chain group.
So set up, first main shaft plays the transmission effect.
A use method of a seeding device for standardized planting of wormwood comprises the following steps:
a. the method comprises the following steps of placing wormwood seedlings to be planted in a storage box, and cutting the wormwood seedlings to be planted through a guide plate for guiding, so that the seedlings can fall between branches on the inner side of a seedling separating groove through a gap between the storage box and the guide plate;
b. starting a servo motor, enabling a transmission chain group to drive a connecting rod or a worm through a transmission box and a first main shaft, so that a fixed rotating shaft is driven to rotate, and matching teeth on the fixed rotating shaft are matched with a seedling splitting transmission shaft at the moment so that the seedling splitting transmission shaft drives branches to transmit seedlings;
c. when seedlings fall into the inner side of the outer sleeve through the hole between the seedling separating frame and the outer sleeve, pressing strips for pressing the seedlings to turn over, and simultaneously driving the ejector rods to turn over through the second reset shafts, wherein the ejector rods push the seedling separating transmission shafts to separate the seedling separating transmission shafts from the fixed rotating shafts, so that seedlings can be ensured to exist in each seedling inserting cylinder, and the condition of seedling leakage is avoided;
d. then control clutch makes reciprocal sprocket group and reciprocal cooperation piece drive a seedling transplanting section of thick bamboo and descends and insert the seedling, after inserting the seedling, when a seedling transplanting section of thick bamboo resets, the seedling receives the blockking of first axle that resets, can not be taken up by a seedling transplanting section of thick bamboo to make the inside unloading of a seedling transplanting section of thick bamboo, receive the preparation of next seedling, after the seedling is emitted, the layering resets, divides seedling transmission shaft and fixed rotating shaft to mesh once more, transmits the seedling.
Compared with the prior art, the invention has the following beneficial effects:
1. the seedling separating transmission shaft and the fixed rotating shaft are used for separating the seedling separating transmission shaft from the fixed rotating shaft, and the ejector rod and the pressing bar driven by the seedling are used simultaneously, so that the seedling can be effectively transmitted to the inner side of the seedling transplanting cylinder, and the condition of missing is avoided;
2. utilize the blend stop can make the seedling by inserting effectual blockking behind the soil, avoid being taken up, utilize to insert a seedling section of thick bamboo tubular structure simultaneously and insert the seedling, improve the degree of depth of ingrowing of seedling, guarantee the survival rate.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic structural diagram of a seeding device for standardized planting of wormwood according to the invention;
FIG. 2 is a schematic structural diagram of a traction mechanism of the seeding device for the standardized planting of the wormwood in the invention;
FIG. 3 is a schematic view of a conveying chain group structure of the sowing device for the standardized planting of the wormwood according to the invention;
FIG. 4 is a schematic view of the internal structure of a storage box of the sowing device for the standardized planting of the wormwood in the invention;
FIG. 5 is a schematic view of a forked structure of a seeding device for standardized planting of wormwood according to the invention;
FIG. 6 is a schematic structural diagram of a seedling transplanting mechanism of the seeding device for the standardized planting of the wormwood;
FIG. 7 is a schematic structural view of a passive bevel gear of the sowing device for standardized planting of wormwood, which is disclosed by the invention;
fig. 8 is a schematic view of a worm wheel structure of the sowing device for the standardized planting of the wormwood.
The reference numerals are explained below:
1. a storage mechanism; 2. a traction mechanism; 3. a seedling transplanting mechanism; 4. a seedling separating mechanism; 5. a power mechanism; 6. a linkage mechanism; 11. a sealing cover; 12. a storage box; 13. a material guide plate; 21. a support frame; 22. a wheel seat; 23. a moving wheel; 24. adjusting and damping the wheel seat; 25. a support frame adjusting rod; 26. an adjusting bracket; 27. a traction frame; 31. an outer sleeve; 32. a chain case; 33. a reciprocating sprocket set; 34. a reciprocating mating block; 35. seedling transplanting cylinders; 36. a first reset shaft; 37. blocking strips; 41. seedling separating and placing; 42. a seedling separating groove; 43. a seedling separating transmission shaft; 44. a conveyor belt; 45. branching; 46. fixing the rotating shaft; 47. matching teeth; 48. a mating groove; 49. a second reset shaft; 410. layering; 411. a top rod; 51. a servo motor; 52. a transmission case; 53. a clutch; 54. a first main shaft; 55. a second main shaft; 56. a transmission chain set; 61. a driven bevel gear; 62. a drive bevel gear; 63. a connecting rod; 611. a worm gear; 612. a worm.
Detailed Description
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on those shown in the drawings, and are used only for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention. Furthermore, the terms "first", "second", etc. 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," "second," etc. may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless otherwise specified.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood by those of ordinary skill in the art through specific situations.
The invention will be further described with reference to the accompanying drawings in which:
example 1
As shown in fig. 1-7, a seeding device for standardized planting of wormwood comprises a storage mechanism 1 for storing wormwood seedlings, a seedling separating mechanism 4 for transmitting separated seedlings and a seedling transplanting mechanism 3 for planting the seedlings, wherein the seedling separating mechanism 4 is arranged at the lower end of the storage mechanism 1, the seedling transplanting mechanism 3 is arranged at the output end of the seedling separating mechanism 4, the traction mechanism 2 is connected to two sides of the storage mechanism 1, the power ends of the seedling transplanting mechanism 3 and the seedling separating mechanism 4 are connected with a power mechanism 5, and the seedling separating mechanism 4 is connected with the power mechanism 5 through a linkage mechanism 6;
the storage mechanism 1 comprises a sealing cover 11, a storage box 12 and a material guide plate 13, wherein the sealing cover 11 is arranged at the upper end of the storage box 12, and the material guide plate 13 is arranged in the storage box 12;
the traction mechanism 2 comprises a support frame 21, a wheel seat 22, a moving wheel 23 and a wheel seat adjusting shock absorber 24, wherein the wheel seat 22 is arranged at two ends of the support frame 21, the moving wheel 23 is arranged on the wheel seat 22, the wheel seat adjusting shock absorber 24 is arranged between the upper end of the wheel seat 22 and the storage box 12, an adjusting frame 26 is arranged at the front end of the support frame 21, a support frame adjusting rod 25 is arranged on the adjusting frame 26, and the front end of the adjusting frame 26 is connected with a traction frame 27;
the seedling transplanting mechanism 3 comprises an external sleeve 31, a chain box 32, a reciprocating chain wheel set 33 and a reciprocating matching block 34, wherein the chain box 32 is arranged at the rear end of the external sleeve 31, the reciprocating chain wheel set 33 is arranged in the chain box 32, the reciprocating chain wheel set 33 is connected with a seedling transplanting barrel 35 in the external sleeve 31 through the reciprocating matching block 34, a barrier strip 37 is connected to the inner side of the seedling transplanting barrel 35 in a sliding manner, and the barrier strip 37 is connected with the external sleeve 31 through a first resetting shaft 36;
the seedling separating mechanism 4 comprises a seedling separating frame 41, a seedling separating groove 42 is formed in the seedling separating frame 41, two seedling separating transmission shafts 43 are arranged in the seedling separating frame 41, a transmission belt 44 is arranged on the seedling separating transmission shafts 43, a fork 45 is arranged on the outer end face of the transmission belt 44, the lower end of each seedling separating transmission shaft 43 is connected with a fixed rotating shaft 46, a matching tooth 47 is formed on the fixed rotating shaft 46, a matching groove 48 is formed between the fixed rotating shaft 46 and the seedling separating transmission shafts 43, a push rod 411 is arranged on the rear side of the lower end face of each seedling separating transmission shaft 43, a pressing strip 410 is arranged on the rear side of the push rod 411, and the push rod 411 and the pressing strip 410 are both arranged on;
the power mechanism 5 comprises a servo motor 51, a transmission case 52, a clutch 53 and a first main shaft 54, wherein the servo motor 51 is installed on the transmission case 52, the clutch 53 is installed at the rear end of the transmission case 52, the output end of the clutch 53 is connected with a second main shaft 55, the output end of the transmission case 52 is connected with the first main shaft 54, and the first main shaft 54 is connected with the linkage mechanism 6 through a transmission chain group 56.
Preferably: the linkage mechanism 6 comprises a driven bevel gear 61, a driving bevel gear 62 and a connecting rod 63, wherein the driven bevel gear 61 is connected to the lower end of the fixed rotating shaft 46, the driven bevel gear 61 is matched with the driving bevel gear 62, the driving bevel gear 62 is connected to the connecting rod 63, the other end of the connecting rod 63 is connected with the transmission chain set 56, and after the transmission chain set 56 rotates, power is transmitted to the fixed rotating shaft 46 through the connecting rod 63, the driving bevel gear 62 and the driven bevel gear 61, so that the seedling separating transmission shaft 43 can drive the conveying belt 44 and the fork 45 to transmit seedlings; the sealing cover 11 is connected with the storage box 12 through a buckle, the material guide plate 13 is connected with the storage box 12 through a bolt, the storage box 12 plays a role in storage, the sealing cover 11 plays a role in sealing, and the material guide plate 13 plays a role in flow guiding; the external sleeve 31 is connected with the chain case 32 through welding, the seedling transplanting cylinder 35 is connected with the external sleeve 31 in a sliding mode, the seedling transplanting cylinder 35 is of a structure with a wide upper part and a narrow lower part, the external sleeve 31 plays a role in installation and placement, and the seedling transplanting cylinder 35 plays a role in seedling transplanting; the first reset shaft 36 is connected with the outer sleeve 31 through a bolt, the barrier strip 37 is connected with the first reset shaft 36 through a thread, a stop block is arranged at the upper end of the barrier strip 37 and positioned on the inner side of the outer sleeve 31, the barrier strip 37 can prevent seedlings from being brought up again after the seedlings are inserted with soil, and the seedling inserting process is guaranteed; the seedling separating transmission shaft 43 is rotatably connected with the seedling separating frame 41, the seedling separating groove 42 is integrally formed in the seedling separating frame 41, the fork 45 is connected with the conveying belt 44 through a screw, the seedling separating groove 42 plays a role in limiting and transmitting, and the fork 45 plays a role in transmitting; the ejector rod 411 and the pressing bar 410 are connected with the second reset shaft 49 through welding, the second reset shaft 49 is connected with the seedling separating frame 41 through a bolt, and the ejector rod 411 can separate the fixed rotating shaft 46 from the seedling separating transmission shaft 43, so that seedlings are effectively transmitted into the seedling transplanting cylinder 35; the first main shaft 54 is keyed to the transport chain set 56.
Example 2
As shown in fig. 8, the present embodiment is different from embodiment 1 in that:
the linkage mechanism 6 comprises a worm wheel 611 and a worm 612, the worm wheel 611 is mounted on the lower end face of the fixed rotating shaft 46, the worm wheel 611 is meshed with the worm 612, one end of the worm 612 is connected with the transmission chain group 56, and after the transmission chain group 56 rotates, power is transmitted to the fixed rotating shaft 46 through the worm 612 and the worm wheel 611, so that the seedling separating transmission shaft 43 can drive the conveying belt 44 and the fork 45 to transmit seedlings.
A use method of a seeding device for standardized planting of wormwood comprises the following steps:
a. the wormwood seedlings to be planted are placed in the storage box 12 and cut through the material guide plate 13 for guiding flow, so that the seedlings can fall between the branches 45 on the inner side of the seedling separating groove 42 through a gap between the storage box 12 and the material guide plate 13;
b. starting the servo motor 51, enabling the transmission chain group 56 to drive the connecting rod 63 or the worm 612 through the transmission case 52 and the first main shaft 54, so that the fixed rotating shaft 46 is driven to rotate, and at the moment, the matching teeth 47 on the fixed rotating shaft 46 are matched with the seedling splitting transmission shaft 43, so that the seedling splitting transmission shaft 43 drives the fork 45 to transmit seedlings;
c. when seedlings fall into the inner side of the outer sleeve 31 through the hole between the seedling separating frame 41 and the outer sleeve 31, the layering 410 is used for pressing, moving and turning over the seedlings, meanwhile, the ejector rod 411 is driven to turn over through the second reset shaft 49, the ejector rod 411 pushes the seedling separating transmission shaft 43 at the moment, and the seedling separating transmission shaft 43 is separated from the fixed rotating shaft 46, so that the seedlings can be ensured to exist in each seedling inserting barrel 35, and the condition of seedling leakage can not be generated;
d. then the clutch 53 is controlled to enable the reciprocating chain wheel set 33 and the reciprocating matching block 34 to drive the seedling transplanting barrel 35 to descend for transplanting seedlings, after the seedlings are transplanted, when the seedling transplanting barrel 35 resets, the seedlings are blocked by the first resetting shaft 36 and cannot be taken up by the seedling transplanting barrel 35, so that the inside of the seedling transplanting barrel 35 is emptied for preparation of receiving the next seedling, after the seedlings are released, the pressing strip 410 resets, and the seedling separating transmission shaft 43 is meshed with the fixed rotating shaft 46 again for transmission of the seedlings.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the invention as claimed.

Claims (10)

1. The utility model provides a seeder for chinese mugwort grass standardization is planted which characterized in that: the moxa seedling planting machine comprises a storage mechanism for storing moxa seedlings, a seedling separating mechanism for transmitting the separated seedlings and a seedling inserting mechanism for planting the seedlings, wherein the seedling separating mechanism is arranged at the lower end of the storage mechanism, the seedling inserting mechanism is arranged at the output end of the seedling separating mechanism, two sides of the storage mechanism are connected with traction mechanisms, power ends of the seedling inserting mechanism and the seedling separating mechanism are connected with power mechanisms, and the seedling separating mechanism is connected with the power mechanisms through a linkage mechanism;
the seedling transplanting mechanism comprises an external sleeve, a chain box, a reciprocating chain wheel set and a reciprocating matching block, the chain box is arranged at the rear end of the external sleeve, the reciprocating chain wheel set is arranged in the chain box, the reciprocating chain wheel set is connected with a seedling transplanting barrel in the external sleeve through the reciprocating matching block, the inner side of the seedling transplanting barrel is connected with a barrier strip in a sliding manner, and the barrier strip is connected with the external sleeve through a first reset shaft;
the seedling separating mechanism comprises a seedling separating frame, a seedling separating groove is formed in the seedling separating frame, two seedling separating transmission shafts are arranged in the seedling separating frame, a transmission belt is arranged on each seedling separating transmission shaft, branches are arranged on the outer end face of the transmission belt, the lower end of each seedling separating transmission shaft is connected with a fixed rotating shaft, a matching tooth is formed on the fixed rotating shaft, a matching groove is formed between the fixed rotating shaft and the seedling separating transmission shafts, a top rod is arranged on the rear side of the lower end face of each seedling separating transmission shaft, a pressing strip is arranged on the rear side of the top rod, and the top rod and the pressing strip are both arranged on;
the power mechanism comprises a servo motor, a transmission case, a clutch and a first main shaft, the servo motor is installed on the transmission case, the clutch is installed at the rear end of the transmission case, the output end of the clutch is connected with the second main shaft, the output end of the transmission case is connected with the first main shaft, and the first main shaft is connected with the linkage mechanism through a transmission chain set.
2. The sowing apparatus for the standardized planting of wormwood according to claim 1, wherein: the linkage mechanism comprises a driven bevel gear, a driving bevel gear and a connecting rod, the driven bevel gear is connected to the lower end of the fixed rotating shaft, the driven bevel gear is matched with the driving bevel gear, the driving bevel gear is connected to the connecting rod, and the other end of the connecting rod is connected with the transmission chain set.
3. The sowing apparatus for the standardized planting of wormwood according to claim 1, wherein: the linkage mechanism comprises a worm wheel and a worm, the worm wheel is arranged on the lower end face of the fixed rotating shaft and meshed with the worm, and one end of the worm is connected with the transmission chain set.
4. The sowing apparatus for the standardized planting of wormwood according to claim 1, wherein: storage mechanism including sealed lid, storage box, stock guide, the storage box upper end is provided with sealed lid, the inside stock guide that is provided with of storage box, sealed lid passes through the buckle and connects the storage box, the stock guide passes through bolted connection storage box, drive mechanism includes the support frame, the wheel seat, remove the wheel, the shock attenuation is adjusted to the wheel seat, the support frame both ends are provided with the wheel seat, install on the wheel seat and remove the wheel, it adjusts the shock attenuation to be provided with the wheel seat between wheel seat upper end and the storage box, the support frame front end is provided with the alignment jig, be provided with the support frame on the alignment jig and adjust.
5. The sowing apparatus for the standardized planting of wormwood according to claim 1, wherein: the external sleeve is connected with the chain box through welding, the seedling inserting cylinder is connected with the external sleeve in a sliding mode, and the seedling inserting cylinder is of a structure with a wide upper part and a narrow lower part.
6. The sowing apparatus for the standardized planting of wormwood according to claim 1, wherein: the first reset shaft is connected with the outer sleeve through a bolt, the barrier strip is connected with the first reset shaft through threads, and a stop block is arranged at the upper end of the barrier strip and positioned on the inner side of the outer sleeve.
7. The sowing apparatus for the standardized planting of wormwood according to claim 1, wherein: the seedling separating transmission shaft is rotatably connected with the seedling separating frame, the seedling separating groove is integrally formed in the seedling separating frame, and the fork is connected with the conveying belt through a screw.
8. The sowing apparatus for the standardized planting of wormwood according to claim 1, wherein: the ejector rod and the pressing strip are connected with a second reset shaft through welding, and the second reset shaft is connected with the seedling separating frame through a bolt.
9. The sowing apparatus for the standardized planting of wormwood according to claim 1, wherein: the first main shaft key is connected with the transmission chain group.
10. The use method of the seeding device for the standardized planting of the wormwood is characterized in that: the method comprises the following steps:
a. the method comprises the following steps of placing wormwood seedlings to be planted in a storage box, and cutting the wormwood seedlings to be planted through a guide plate for guiding, so that the seedlings can fall between branches on the inner side of a seedling separating groove through a gap between the storage box and the guide plate;
b. starting a servo motor, enabling a transmission chain group to drive a connecting rod or a worm through a transmission box and a first main shaft, so that a fixed rotating shaft is driven to rotate, and matching teeth on the fixed rotating shaft are matched with a seedling splitting transmission shaft at the moment so that the seedling splitting transmission shaft drives branches to transmit seedlings;
c. when seedlings fall into the inner side of the outer sleeve through the hole between the seedling separating frame and the outer sleeve, pressing strips for pressing the seedlings to turn over, and simultaneously driving the ejector rods to turn over through the second reset shafts, wherein the ejector rods push the seedling separating transmission shafts to separate the seedling separating transmission shafts from the fixed rotating shafts, so that seedlings can be ensured to exist in each seedling inserting cylinder, and the condition of seedling leakage is avoided;
d. then control clutch makes reciprocal sprocket group and reciprocal cooperation piece drive a seedling transplanting section of thick bamboo and descends and insert the seedling, after inserting the seedling, when a seedling transplanting section of thick bamboo resets, the seedling receives the blockking of first axle that resets, can not be taken up by a seedling transplanting section of thick bamboo to make the inside unloading of a seedling transplanting section of thick bamboo, receive the preparation of next seedling, after the seedling is emitted, the layering resets, divides seedling transmission shaft and fixed rotating shaft to mesh once more, transmits the seedling.
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Cited By (1)

* Cited by examiner, † Cited by third party
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CN113892354A (en) * 2021-10-22 2022-01-07 米林冰钱柳农业科技发展有限公司 Cutting seedling raising device and method for Tibetan-honey ice cyclocarya paliurus

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CN107836178A (en) * 2017-12-15 2018-03-27 王友芳 Pot seedling transplanting device and plant transplantation machine
CN107820805A (en) * 2017-12-15 2018-03-23 王友芳 Pot seedling transponder and plant transplantation machine
CN209218603U (en) * 2018-11-15 2019-08-09 山东省农业科学院农业资源与环境研究所 The transplantation device of Rice In Drought Rice Nursery rice transplanting and onion crop rotation plantation
CN109863864A (en) * 2019-04-03 2019-06-11 赵晓亮 A kind of rice-seedling throwing machine for Rice Cropping
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CN210579980U (en) * 2019-08-09 2020-05-22 中国农业科学院草原研究所 Alfalfa seed ration seeding instrument
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