CN114631419A - Intelligent pouring and slurry filling equipment for growth promotion of root system of peanut seedlings - Google Patents

Intelligent pouring and slurry filling equipment for growth promotion of root system of peanut seedlings Download PDF

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Publication number
CN114631419A
CN114631419A CN202210250257.7A CN202210250257A CN114631419A CN 114631419 A CN114631419 A CN 114631419A CN 202210250257 A CN202210250257 A CN 202210250257A CN 114631419 A CN114631419 A CN 114631419A
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frame
moving
fixedly connected
root system
pipe
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CN202210250257.7A
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Chinese (zh)
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詹爱秀
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Individual
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01CPLANTING; SOWING; FERTILISING
    • A01C13/00Machines or apparatus for consolidating soil around plants

Abstract

The invention relates to agricultural equipment, in particular to intelligent pouring and slurry filling equipment for promoting growth of a floral needle root system of peanut seedlings. The technical problem is as follows: the utility model provides a can not produce the intelligent equipment of empting and filling thick liquid of the usefulness is encouraged to the flower needle root system of peanut seedling of injury to peanut seedling flower needle root system. The utility model provides a flower needle root system of peanut seedling encourages intelligent dumping and fill out thick liquid equipment of usefulness, including installation frame, first electronic slide rail, removal frame etc, the first electronic slide rail of installation frame left and right sides fixedly connected with, the moving member department fixedly connected with of first electronic slide rail removes the frame. According to the peanut seedling growth promoting and filling device, the mode that the guide frame moves inside and outside and the driving motor drives the rotating ring to rotate is adopted, and the mode that the peanut seedlings are pressed down by the pressing-down cone barrel is matched, so that the root systems of the peanut needles of the peanut seedlings can be quickly carried out in the growth promoting and filling process, and the automation degree is high.

Description

Intelligent pouring and slurry filling equipment for growth promotion of root system of peanut seedlings
Technical Field
The invention relates to agricultural equipment, in particular to intelligent pouring and slurry filling equipment for promoting growth of a floral needle root system of peanut seedlings.
Background
When crops are managed and maintained, particularly peanut seedlings are managed and protected, the peanut seedlings grow to have root systems with floral needles in the growth stage of the peanut seedlings, and the root systems of the floral needles of the peanut seedlings need to be buried in soil in time, so that the root systems of the floral needles continue to take roots and grow in the soil, and the yield of peanuts is improved; but at present to peanut seedling flower needle root system when helping long, a lot of all need artifical foot to step on peanut seedling flower needle root system and make its lodging, then shovel mud and cover it, and adopt present mode to foster the peanut seedling, the human time that needs to consume is very many, and concrete complex operation, degree of automation is low, be difficult to operate the peanut seedling of large tracts of land, and step on the peanut seedling at artifical foot and make its flower needle root system lodging in-process easily produce injuries such as rupture to it.
Therefore, it is desirable to design an intelligent pouring and slurry filling device for promoting the growth of the root system of peanut seedlings to solve the above problems.
Disclosure of Invention
In order to overcome the shortcoming that the mode is easily stepped on to peanut seedling flower needle root system and produce the injury to the peanut seedling flower needle root system to the foot of existence when encouraging to the flower needle root system of peanut seedling at present, technical problem: the utility model provides a can not produce the intelligent equipment of empting and filling thick liquid of the usefulness is encouraged to the flower needle root system of peanut seedling of injury to peanut seedling flower needle root system.
An intelligent pouring and slurry filling device for growth promotion of a root system of a peanut seedling, which comprises an installation frame, a first electric slide rail, a moving frame, a lifting pipe, a rotating ring, a fixing frame, a pressing down cone barrel, an enclosing frame, a moving device, a reversing device, a flow guide device and a blanking device, wherein the left side and the right side of the installation frame are fixedly connected with the first electric slide rail, the moving part of the first electric slide rail is fixedly connected with the moving frame, the lifting frame is fixedly connected between the moving frames, the lifting pipe is fixedly connected with the lower side of the lifting frame, the surface of the lower side of the lifting pipe is rotatably connected with the rotating ring, the front side and the rear side of the rotating ring are both fixedly connected with the fixing frame, the pressing down cone barrel is fixedly connected with the lower side of the fixing frame, the enclosing frame is fixedly connected between the left sides of the fixing frame, the front side and the rear side of the installation frame are both provided with the moving device, and the moving device is used for adjusting height difference and moving, the lifting pipe downside with be equipped with the switching-over device between the rotatory ring, the switching-over device is used for rotatory work, surround the frame with be equipped with the guiding device between the mount, the guiding device is used for carrying on peanut seedling root system and emptys and fill out the thick liquid water conservancy diversion, the installation frame upside with be equipped with unloader between the lifting pipe, unloader is used for carrying on the storage and the unloading of mud, guiding device blocks unloader.
Optionally, the moving device includes a screw rod pair, a first moving pair, a shock absorber and a wheel set frame, the front side and the rear side of the installation frame are rotatably connected with the screw rod pair and connected with the first moving pair through bolts, the moving members of the screw rod pair and the first moving pair are adjacent to each other, the shock absorber is fixedly mounted at the moving member of the first moving pair, and the wheel set frame is fixedly mounted at the movable end of the shock absorber.
Optionally, the switching-over device is including driving motor, straight-teeth gear and ring gear frame, fall pipe downside fixedly connected with driving motor, driving motor output shaft department has the straight-teeth gear through the coupling joint, rotatory ring department fixedly connected with ring gear frame, the ring gear frame with the straight-teeth gear cooperation.
Optionally, the guiding device includes second moving pair, second electric slide rail, guiding frame and stop the piece, the equal fixedly connected with second moving pair of mount department, surround the equal fixedly connected with second electric slide rail of a downside, the moving member of second electric slide rail with the moving member of second moving pair is connected, the moving member right side fixedly connected with guiding frame of second moving pair, guiding frame is the inclined structure, guiding frame centripetal fixedly connected with of department stops the piece, stop the piece with the unloader cooperation.
Optionally, unloader including store the storehouse, fixed pipe, the flexible pipe of gomphosis and lower thick liquid pipe, installation frame upside fixedly connected with stores the storehouse, store the fixed pipe of storehouse downside fixedly connected with, fixed pipe downside with the crane contact, fixed intraductal endotheca has the flexible pipe of gomphosis, the flexible pipe of gomphosis is located fixed pipe with in the riser, the flexible intraductal side of gomphosis is connected with lower thick liquid pipe, lower thick liquid pipe right side downside with block the piece contact, block the piece and block the lower thick liquid pipe, lower thick liquid pipe with rotatory ring fixed connection.
Optionally, still including blowing and pressing the device, it is including air pump and outlet manifold to blow and press the device, the awl bucket department of falling is equipped with and blows and presses the device, it is used for empting the peanut seedling flower needle root system that the growth vigour is high to blow the device, and improves the volume of falling, avoids omitting the flower needle, fixedly connected with air pump in the awl bucket of falling, air pump outlet end fixedly connected with outlet manifold, outlet manifold stretches out the awl bucket downside of falling, it has the inlet port to open on the awl bucket of falling.
Optionally, still including photosensitive sensor, fixedly connected with photosensitive sensor in the awl bucket of falling, the awl bucket downside of falling is opened there is the light trap.
Optionally, the electric sliding rail device further comprises a control box, the control box is fixedly connected to the right side of the first electric sliding rail, the control box comprises a switching power supply, an AC-DC power supply module and a control module MCU, a power main switch is connected to the AC-DC power supply module through a circuit, the control module MCU and the DC-DC power supply module are electrically connected, a descending switch, a starting switch and an air blowing switch are arranged on the control module MCU in an electrically connected mode, a photosensitive sensor is connected with the control module MCU through a circuit, a C circuit is connected to the microcontroller MCU, the first electric sliding rail, a driving motor, a second electric sliding rail and an air pump are all connected with the microcontroller MCU through a peripheral circuit.
Compared with the prior art, the invention has the following advantages: 1. according to the peanut seedling growth promoting and pulp filling machine, the mode that the guide frame moves inside and outside and the driving motor drives the rotating ring to rotate is adopted, and the mode that the pressing cone barrel presses down the peanut seedlings is matched, so that the root systems of the peanut needles of the peanut seedlings can be quickly carried out in the growth promoting and pulp filling process, the automation degree is high, and frequent foot stepping and pulp shoveling operation are not required manually.
2. According to the invention, the mode that the storage bin, the slurry discharging pipe and the blocking sheet are jointly matched is adopted, so that slurry in the storage bin can be blocked by the blocking sheet when passing through the slurry discharging pipe, leakage is avoided, meanwhile, automatic blanking can be carried out in the slurry filling process, manual slurry filling operation is not needed, and the manual working strength is reduced.
3. According to the peanut seedling pressing device, the mode that the photosensitive sensor identifies the position of the pressing conical barrel relative to the peanut seedlings is adopted, the stopping action of the first electric sliding rail in the downward moving process can be automatically controlled, and the phenomenon that the pressing conical barrel is extruded to damage the peanut seedlings due to careless manual operation can be avoided.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic partial perspective view of a first embodiment of the present invention.
Fig. 3 is a second partial perspective view of the present invention.
Fig. 4 is a third partial perspective view of the present invention.
Fig. 5 is a schematic perspective view of a mobile device according to the present invention.
Fig. 6 is a schematic perspective view of the blanking device of the present invention.
Fig. 7 is a partial perspective view of the blanking device of the present invention.
Figure 8 is a schematic perspective view of a first embodiment of the elevator tube portion of the present invention.
Figure 9 is a schematic view of a second embodiment of the elevator tube portion of the present invention.
Fig. 10 is a perspective view of a portion of the reversing device of the present invention.
Fig. 11 is a perspective view of a deflector portion of the present invention.
Fig. 12 is a partial perspective view of the deflector portion of the present invention.
FIG. 13 is a schematic perspective view of the bottom nozzle portion of the present invention.
Fig. 14 is a schematic perspective view of a part of the blow-pressing device of the present invention.
Fig. 15 is a schematic circuit diagram of the present invention.
Fig. 16 is a circuit block diagram of the present invention.
Description of reference numerals: 1. the device comprises a mounting frame, 2, a first electric slide rail, 3, a moving frame, 4, a lifting frame, 5, a lifting pipe, 6, a rotating ring, 7, a fixed frame, 8, a pressing cone barrel, 9, a surrounding frame, 10, a moving device, 11, a reversing device, 12, a flow guide device, 13, a blanking device, 101, a screw pair, 102, a first moving pair, 103, a shock absorber, 104, a wheel set frame, 111, a driving motor, 112, a straight gear, 113, a toothed ring frame, 121, a second moving pair, 122, a second electric slide rail, 123, a flow guide frame, 124, a blocking sheet, 131, a storage bin, 132, a fixed pipe, 134, a jogged telescopic pipe, 135, a blanking pipe, 14, a blowing device, an air pump 141, 142, an air outlet manifold, 143, an air inlet, 15, a photosensitive sensor, 16, a light hole, 17 and a control box.
Detailed Description
Although the present invention may be described with respect to a particular application or industry, those skilled in the art will recognize the broader applicability of the invention. Those of ordinary skill in the art will recognize other factors such as: terms such as above, below, upward, downward, and the like are used to describe the accompanying drawings and are not meant to limit the scope of the invention, which is defined by the appended claims. Such as: any numerical designation of first or second, and the like, is merely exemplary, and is not intended to limit the scope of the invention in any way.
Example 1
As shown in figures 1-4, an intelligent pouring and slurry filling device for growth promotion of a root system of a peanut seedling comprises an installation frame 1, wherein the left side and the right side of the installation frame 1 are both connected with a first electric slide rail 2 through bolts, a moving part of the first electric slide rail 2 is connected with a moving frame 3 through bolts, a lifting frame 4 is connected between the moving frames 3 through bolts, the lower side of the lifting frame 4 is connected with a lifting pipe 5 through bolts, the lower side surface of the lifting pipe 5 is rotatably connected with a rotating ring 6, the front side and the rear side of the rotating ring 6 are both connected with a fixed frame 7 through bolts, the lower side of the fixed frame 7 is connected with a down cone barrel 8 through bolts, a surrounding frame 9 is connected between the left side of the fixed frame 7 through bolts, the front side and the rear side of the installation frame 1 are both provided with moving devices 10, the moving devices 10 are used for adjusting height difference and moving, a reversing device 11 is arranged between the lower side of the lifting pipe 5 and the rotating ring 6, reversing arrangement 11 is used for rotatory work, surrounds and is equipped with guiding device 12 between frame 9 and the mount 7, and guiding device 12 is used for carrying on peanut seedling root system and emptys and fill out the thick liquid water conservancy diversion, is equipped with unloader 13 between 1 upside of installation frame and the fall-down tube 5, and unloader 13 is used for carrying on the storage and the unloading of mud, and guiding device 12 blocks unloader 13.
When the embodiment is operated, the intelligent pouring and slurry filling equipment for promoting the root systems of the needles of the peanut seedlings can be used when the root systems of the needles of the peanut seedlings need to be filled with slurry to promote the growth of the roots of the needles; the intelligent pouring and slurry filling equipment for promoting the floral needle root system of the peanut seedlings to move to the peanut field through the moving device 10, the height difference of the field is adjusted through the moving device 10, so that the pressing cone barrel 8 is in a horizontal and straight state, the pressing cone barrel 8 is located above the peanut seedlings, and at the moment, slurry is poured to the discharging device 13; then, a power supply path of the intelligent dumping and slurry filling equipment for promoting the growth of the floral needle root system of the peanut seedling is started through a power supply main switch, the moving piece of the first electric sliding rail 2 is controlled to ascend and descend through a descending switch at the control box 17, at the moment, the moving piece of the first electric sliding rail 2 is controlled to move downwards through the descending switch, the moving piece of the first electric sliding rail 2 drives the lifting frame 4 and the lifting pipe 5 to move downwards, so that the inverted cone barrel 8 is driven to move downwards, when the inverted cone barrel 8 moves downwards to contact the peanut seedling, the inverted cone barrel 8 dumps the floral needle root system which grows upwards of the peanut seedling, the floral needle root system of the peanut seedling is positioned below the flow guide device 12, at the moment, the descending switch can be loosened, the flow guide device 12 is controlled to move outwards through the starting switch on the control box 17, and the flow guide device 12 does not block the discharging device 13 any more when moving outwards, at the moment, the slurry in the blanking device 13 falls to the diversion device 12, and along with the outward movement of the diversion device 12, the slurry also falls from the diversion device 12 and flows into the root system of the flower needle of the pressed peanut seedling to cover and promote the root system; when the diversion device 12 operates to the outermost end, namely the diversion device 12 operates to complete a half cycle, the control box 17 controls the first electric slide rail 2 to move upwards for one second, and stops after the upward movement for one second is completed, and meanwhile, the control box 17 controls the diversion device 12 to reset, so that the diversion device 12 moves inwards, and the poured slurry cannot be taken away in the resetting process of the diversion device 12; after the diversion device 12 is moved inwards and reset, the control box 17 controls the reversing device 11 to operate for one second, the reversing device 11 operates to drive the rotating ring 6 and the fixing frame 7 to rotate, thereby driving the diversion device 12 to rotate, the angle is fifteen degrees, so that the diversion device 12 can rotate to another angle above peanut seedlings, the reversing device 11 stops operating after the operation time of the reversing device 11 is finished, the control box 17 controls the first electric sliding rail 2 to move downwards again at the moment, the time is one second, the diversion device 12 after rotating moves downwards, the actions are carried out until the reversing device 11 operates for twenty-four cycles, namely the diversion device 12 rotates for one circle, at the moment, the control box 17 controls the reversing device 11 and the diversion device 12 not to carry out the rotation control any more, the first electric sliding rail 2 is controlled, so that the first electric sliding rail 2 drives the moving part to move upwards, until the uppermost end of the first electric slide rail 2 is reached, the intelligent pouring and slurry filling equipment for the root system growth of the peanut seedlings fills slurry into one peanut seedling root system to complete the growth, and then the intelligent pouring and slurry filling equipment for the root system growth of the peanut seedlings is moved through the moving device 10 to fill slurry into the next peanut seedling to promote; when the intelligent of the usefulness is encouraged to topple over and fill out thick liquid equipment not using the flower needle root system of this peanut seedling, can break the circuit that the intelligent of the usefulness is toppled over and fill out thick liquid equipment is encouraged to the flower needle root system of this peanut seedling through the main switch of power.
Example 2
As shown in fig. 1, 2 and 5, the moving device 10 includes a screw pair 101, the front side and the rear side of the mounting frame 1 are rotatably connected with the screw pair 101 and connected with the first moving pair 102 through bolts, the moving members of the first moving pair 102 and the adjacent moving members of the screw pair 101 are connected with each other, a shock absorber 103 is fixedly mounted at the moving member of the first moving pair 102, and a wheel set frame 104 is fixedly mounted at the movable end of the shock absorber 103.
This embodiment is when operating, when rotatory screw pair 101's rotating member, screw pair 101's moving member will drive first sliding pair 102's moving member and reciprocate, thereby drive bumper shock absorber 103 and wheel group frame 104 and reciprocate, thereby adjust the level that the root system of the flower needle of this peanut seedling encouraged the intellectuality of usefulness to empty and fill out thick liquid equipment, and adjust the root system of the flower needle of this peanut seedling encouraged the intellectuality of usefulness to empty and fill out the level and the height of thick liquid equipment, so that press down the effective working height of awl bucket 8 in peanut seedling top.
As shown in fig. 1, 2, 3, 4, 8, 9 and 10, the reversing device 11 includes a driving motor 111, the lower side of the elevator tube 5 is connected with the driving motor 111 through a bolt, an output shaft of the driving motor 111 is connected with a spur gear 112 through a coupling, a rotating ring 6 is connected with a toothed ring frame 113 through a bolt, and the toothed ring frame 113 is matched with the spur gear 112.
In operation, when the control box 17 controls the reversing device 11, the control box 17 will control the driving motor 111 to operate, and the driving motor 111 will drive the spur gear 112 to rotate, thereby driving the rack gear 113 to rotate, and further rotating the rotating ring 6.
As shown in fig. 1, fig. 2, fig. 3, fig. 4, fig. 8, fig. 9, fig. 11, fig. 12 and fig. 13, the guiding device 12 includes a second sliding pair 121, the fixing frame 7 is connected with the second sliding pair 121 through bolts, the lower side of the surrounding frame 9 is connected with a second electric sliding rail 122 through bolts, a moving member of the second electric sliding rail 122 is connected with a moving member of the second sliding pair 121, the right side of the moving member of the second sliding pair 121 is connected with a guiding frame 123 through bolts, the guiding frame 123 is of an inclined structure, a centripetal part of the guiding frame 123 is connected with a blocking piece 124 through bolts, and the blocking piece 124 is matched with the blanking device 13.
In operation, when the control box 17 controls the air guiding device 12, the control box 17 controls the second electric slide rail 122 to work and the moving element to move, so as to drive the second sliding pair 121 to move and drive the air guiding frame 123 to move; when the guide frame 123 drives the blocking piece 124 to move outwards, the blocking piece 124 is separated from the matching with the blanking device 13, and at the moment, slurry in the blanking device 13 falls to the guide frame 123 and flows down from the guide frame 123 to the root system of the pressed peanut seedling spicule.
As shown in fig. 1, 2, 3, 4, 6, 7 and 13, the blanking device 13 includes a storage bin 131, the upper side of the installation frame 1 is connected with the storage bin 131 through a bolt, the lower side of the storage bin 131 is connected with a fixed pipe 132 through a bolt, the lower side of the fixed pipe 132 is in contact with the lifting frame 4, a tabling telescopic pipe 134 is sleeved in the fixed pipe 132, the tabling telescopic pipe 134 is positioned in the fixed pipe 132 and the lifting pipe 5, the lower side of the tabling telescopic pipe 134 is connected with a grout pipe 135, the right lower side of the grout pipe 135 is in contact with the blocking piece 124, the blocking piece 124 blocks the grout pipe 135, and the grout pipe 135 is in bolt connection with the rotating ring 6.
In this embodiment, when the slurry is stored in the storage tank 131, the elevator tube 5 moves the engaging extension tube 134 and the down tube 135 up and down when the elevator tube 5 moves up and down, the rotating ring 6 rotates the rotating ring 6 to rotate the engaging extension tube 134 and the down tube 135 in the fixed tube 132 and the elevator tube 5, and when the stopper plate 124 is disengaged from the down tube 135, the slurry in the storage tank 131 flows out from the fixed tube 132, the engaging extension tube 134 and the down tube.
As shown in fig. 14, still including blowing and pressing device 14, blowing and pressing device 14 includes air pump 141, 8 departments of the awl bucket of falling are equipped with and blow and press device 14, blow and press device 14 and be used for empting the high peanut seedling flower needle root system of growing vigor, and improve the volume of empting, avoid omitting the flower needle, there is air pump 141 through bolted connection in the awl bucket of falling 8, air pump 141 gives vent to anger the end and has outlet manifold 142 through bolted connection, outlet manifold 142 stretches out the awl bucket 8 downside of falling, it has inlet port 143 to open on the awl bucket 8 upside of falling.
In operation, the air pump 141 is started and stopped by the air blowing switch at the control box 17, and the air pump 141 pumps air to the air outlet manifold 142, so that the air outlet manifold 142 can blow the root system of the floral needle around the air outlet manifold 142 to topple.
As shown in fig. 14, the device further comprises a photosensitive sensor 15, the interior of the crush cone 8 is connected with the photosensitive sensor 15 through a bolt, and a light hole 16 is formed in the lower side of the crush cone 8.
This embodiment is when operating, when 8 downstream of the awl bucket of falling down, when approaching gradually and being enclosed by peanut seedling, the light trap 16 of the awl bucket of falling down 8 downside will be blocked to reduce the reflected light intensity in the awl bucket of falling down 8, photosensitive sensor 15 will detect this luminous intensity change, thereby through the stop motion of the first electronic slide rail 2 downstream in-process of control box 17 automatic control, avoid 8 extrusion of the awl bucket of falling down that manual operation carelessly leads to destroy peanut seedling.
Example 3
As shown in fig. 1, fig. 15 and 16 show, still include control box 17, there is control box 17 on the right side of first electronic slide rail 2 through bolted connection, control box 17 includes switching power supply, AC-DC power module and control module MCU, there is the power master switch through the line connection on the AC-DC power module, through electric connection between control module MCU and the DC-DC power module, control module MCU is last to be equipped with the down switch with electric connection's mode, starting switch and the switch of blowing, photosensitive sensor 15 is through circuit and control module MCU line connection, microcontroller MCU is last to be connected with the 24C02 circuit, first electronic slide rail 2, driving motor 111, second electronic slide rail 122 and air pump 141 all pass through peripheral circuit with microcontroller MCU and are connected.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.

Claims (8)

1. An intelligent pouring and slurry filling device for promoting growth of a root system of a peanut seedling comprises:
an installation frame (1), a first electric slide rail (2), a moving frame (3), a lifting frame (4), a lifting pipe (5), a rotating ring (6), a fixed frame (7), a pressing conical barrel (8) and an enclosing frame (9), the left side and the right side of the installation frame (1) are fixedly connected with a first electric slide rail (2), a moving part of the first electric slide rail (2) is fixedly connected with a moving frame (3), a lifting frame (4) is fixedly connected between the movable frames (3), a lifting pipe (5) is fixedly connected with the lower side of the lifting frame (4), the lower side surface of the lifting pipe (5) is rotationally connected with a rotating ring (6), the front side and the rear side of the rotating ring (6) are both fixedly connected with a fixed frame (7), a pressing cone barrel (8) is fixedly connected to the lower side of the fixing frame (7), and an enclosing frame (9) is fixedly connected between the left sides of the fixing frames (7);
it is characterized by also comprising a moving device (10), a reversing device (11), a flow guide device (12) and a blanking device (13), the front side and the rear side of the mounting frame (1) are respectively provided with a moving device (10), the moving devices (10) are used for adjusting height difference and moving, a reversing device (11) is arranged between the lower side of the lifting pipe (5) and the rotating ring (6), the reversing device (11) is used for rotating, a flow guide device (12) is arranged between the surrounding frame (9) and the fixed frame (7), the flow guide device (12) is used for pouring peanut seedling roots and guiding slurry filling, a blanking device (13) is arranged between the upper side of the installation frame (1) and the lifting pipe (5), the discharging device (13) is used for storing and discharging slurry, and the flow guide device (12) blocks the discharging device (13).
2. The intelligent peanut seedling root system growth facilitating pouring and slurry filling equipment as claimed in claim 1, wherein the moving device (10) comprises:
screw rod pair (101), first sliding pair (102), bumper shock absorber (103) and wheelset frame (104), the installation frame (1) front and back side all rotary type be connected with screw rod pair (101) and have through bolted connection first sliding pair (102), adjacent screw rod pair (101) moving member with all interconnect between the moving member of first sliding pair (102), the moving member department of first sliding pair (102) all fixed mounting has bumper shock absorber (103), the active end department of bumper shock absorber (103) all fixed mounting has wheelset frame (104).
3. The intelligent peanut seedling root system growth promoting pouring and slurry filling device as claimed in claim 2, wherein the reversing device (11) comprises:
driving motor (111), straight-teeth gear (112) and ring gear frame (113), fall way (5) downside fixedly connected with driving motor (111), driving motor (111) output shaft department has straight-teeth gear (112) through the coupling joint, rotatory ring (6) department fixedly connected with ring gear frame (113), ring gear frame (113) with straight-teeth gear (112) cooperation.
4. The intelligent peanut seedling root system growth-promoting pouring and slurry filling equipment as claimed in claim 3, wherein the diversion device (12) comprises:
the second moving pair (121), the second electric sliding rail (122), the guide frame (123) and the blocking piece (124), the fixing frame (7) is provided with the second moving pair (121), the surrounding frame (9) is provided with the second electric sliding rail (122) in a lower side, the moving piece of the second electric sliding rail (122) is connected with the moving piece of the second moving pair (121), the right side of the moving piece of the second moving pair (121) is fixedly connected with the guide frame (123), the guide frame (123) is of an inclined structure, the guide frame (123) is provided with the blocking piece (124) in a centripetal position, and the blocking piece (124) is matched with the blanking device (13).
5. The intelligent pouring and slurry filling device for the growth promotion of the floral needle root system of peanut seedlings as claimed in claim 4, wherein the blanking device (13) comprises:
store storehouse (131), fixed pipe (132), the flexible pipe of gomphosis (134) and lower thick liquid pipe (135), installation frame (1) upside fixedly connected with stores storehouse (131), store the fixed pipe of storehouse (131) downside fixedly connected with (132), fixed pipe (132) downside with crane (4) contact, fixed pipe (132) endotheca has the flexible pipe of gomphosis (134), the flexible pipe of gomphosis (134) is located fixed pipe (132) with in fall-up pipe (5), the flexible pipe of gomphosis (134) downside is connected with lower thick liquid pipe (135), lower thick liquid pipe (135) right side downside with block piece (124) contact, block piece (124) and block lower thick liquid pipe (135), lower thick liquid pipe (135) with rotatory ring (6) fixed connection.
6. The intelligent peanut seedling root system growth-promoting pouring and slurry filling equipment as claimed in claim 5, further comprising a blowing and pressing device (14), wherein the blowing and pressing device (14) comprises:
air pump (141) and outlet manifold (142), it is equipped with and blows pressure device (14) to press awl bucket (8) department, it is used for empting peanut seedling floral needle root system that the growth vigor is high to blow pressure device (14), and improves the volume of empting, avoids omitting the floral needle, fixedly connected with air pump (141) in the awl bucket (8) of pressing, air pump (141) outlet end fixedly connected with outlet manifold (142), outlet manifold (142) stretches out the cone bucket (8) downside of pressing, it has inlet port (143) to open on the cone bucket (8) upside of pressing.
7. The intelligent pouring and slurry filling device for the growth promotion of the floral needle root system of peanut seedlings as claimed in claim 6, further comprising:
photosensitive sensor (15), fixedly connected with photosensitive sensor (15) in the awl bucket of falling (8), it has light trap (16) to open to press awl bucket (8) downside.
8. The intelligent pouring and slurry filling device for the growth promotion of the floral needle root system of peanut seedlings as claimed in claim 7, further comprising: control box (17), first electronic slide rail (2) right side fixedly connected with control box (17), control box (17) are including switching power supply, AC-DC power module and control module MCU, there is the power master switch through the line connection on the AC-DC power module, through electric connection between control module MCU and the DC-DC power module, be equipped with the decline switch with electric connection's mode on the control module MCU, starting switch and the switch of blowing, photosensitive sensor (15) are through circuit and control module MCU line connection, be connected with 24C02 circuit on the microcontroller MCU, first electronic slide rail (2), driving motor (111), second electronic slide rail (122) and air pump (141) all pass through peripheral circuit with microcontroller MCU and are connected.
CN202210250257.7A 2022-03-15 2022-03-15 Intelligent pouring and slurry filling equipment for growth promotion of root system of peanut seedlings Pending CN114631419A (en)

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CN202210250257.7A CN114631419A (en) 2022-03-15 2022-03-15 Intelligent pouring and slurry filling equipment for growth promotion of root system of peanut seedlings

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CN202210250257.7A CN114631419A (en) 2022-03-15 2022-03-15 Intelligent pouring and slurry filling equipment for growth promotion of root system of peanut seedlings

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CN201878527U (en) * 2010-11-12 2011-06-29 新疆机械研究院股份有限公司 Soil-covering device of up-mulch transplanter
JP2012070663A (en) * 2010-09-28 2012-04-12 Iseki & Co Ltd Seedling transplanter
CN204069723U (en) * 2014-09-05 2015-01-07 农业部南京农业机械化研究所 The plant feed unit of rape blanket seedling Automatic Transplanter
CN106613182A (en) * 2016-11-30 2017-05-10 河南科技大学 Planting method for dry land peanut
CN108575228A (en) * 2018-06-01 2018-09-28 江苏卓燃工程咨询有限公司 A kind of reading intelligent agriculture earthing mechanical equipment
CN109169261A (en) * 2018-10-08 2019-01-11 驻马店市农业科学院 A kind of peanut hybridization breeding marking method
CN210183873U (en) * 2019-05-10 2020-03-27 河北工业大学 Membrane-breaking seedling-guiding hiller based on infrared technology
CN212753225U (en) * 2020-06-24 2021-03-23 刘广富 Agricultural seedling edge earth filling equipment
CN112616368A (en) * 2020-12-23 2021-04-09 阜阳市鸿福农业科技股份有限公司 Earthing device for strawberry planting
CN113748808A (en) * 2021-09-29 2021-12-07 江西环境工程职业学院 Eggplant tree is planted with supplementary planting device of forest
CN114027033A (en) * 2021-10-28 2022-02-11 李红梅 Sweep type intelligent blueberry fruit picking and blade separating equipment

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002084819A (en) * 2000-09-14 2002-03-26 Kubota Corp Sowing unit for growing seedling
JP2012070663A (en) * 2010-09-28 2012-04-12 Iseki & Co Ltd Seedling transplanter
CN201878527U (en) * 2010-11-12 2011-06-29 新疆机械研究院股份有限公司 Soil-covering device of up-mulch transplanter
CN204069723U (en) * 2014-09-05 2015-01-07 农业部南京农业机械化研究所 The plant feed unit of rape blanket seedling Automatic Transplanter
CN106613182A (en) * 2016-11-30 2017-05-10 河南科技大学 Planting method for dry land peanut
CN108575228A (en) * 2018-06-01 2018-09-28 江苏卓燃工程咨询有限公司 A kind of reading intelligent agriculture earthing mechanical equipment
CN109169261A (en) * 2018-10-08 2019-01-11 驻马店市农业科学院 A kind of peanut hybridization breeding marking method
CN210183873U (en) * 2019-05-10 2020-03-27 河北工业大学 Membrane-breaking seedling-guiding hiller based on infrared technology
CN212753225U (en) * 2020-06-24 2021-03-23 刘广富 Agricultural seedling edge earth filling equipment
CN112616368A (en) * 2020-12-23 2021-04-09 阜阳市鸿福农业科技股份有限公司 Earthing device for strawberry planting
CN113748808A (en) * 2021-09-29 2021-12-07 江西环境工程职业学院 Eggplant tree is planted with supplementary planting device of forest
CN114027033A (en) * 2021-10-28 2022-02-11 李红梅 Sweep type intelligent blueberry fruit picking and blade separating equipment

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