CN219352370U - Biological bacterial fertilizer applying device suitable for tomorrow leaf - Google Patents

Biological bacterial fertilizer applying device suitable for tomorrow leaf Download PDF

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Publication number
CN219352370U
CN219352370U CN202320131782.7U CN202320131782U CN219352370U CN 219352370 U CN219352370 U CN 219352370U CN 202320131782 U CN202320131782 U CN 202320131782U CN 219352370 U CN219352370 U CN 219352370U
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China
Prior art keywords
water pump
connecting rod
biological bacterial
scooter
bacterial fertilizer
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CN202320131782.7U
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Chinese (zh)
Inventor
袁毅灵
胡慧雅
金贵琳
刘峰
蒋劢博
宋天祥
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Ningbo City College of Vocational Technology
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Ningbo City College of Vocational Technology
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Abstract

The application provides a biological bacterial fertilizer injection unit suitable for tomorrow leaf belongs to and is specially adapted to liquid fertilizer fertilization machinery technical field. The automatic stirring device comprises a plate vehicle, a mixing barrel, a water pump, an armrest and a roller, wherein the roller is positioned below the plate vehicle, the armrest, the water pump and the mixing barrel are all arranged on the plate vehicle, stirring blades are arranged at the bottom of the mixing barrel, and the stirring blades are driven by a motor to rotate; the bottom of the mixing barrel is provided with a discharge hole with adjustable size, and the discharge hole is connected with the inlet of the water pump through a conveying pipe; the outlet of the water pump is connected with a discharge pipe, and the outlet end of the discharge pipe is provided with a plurality of spray heads. The application is applied to the mixing and dissolving of the powder materials such as the biological bacterial fertilizer of the plants such as the angelica keiskei, and has the advantages of uniform spraying, wide fertilization range and the like.

Description

Biological bacterial fertilizer applying device suitable for tomorrow leaf
Technical Field
The application relates to a biological bacterial fertilizer applying device suitable for angelica keiskei, belonging to the technical field of liquid fertilizer applying machinery.
Background
The Angelica keiskei Koidzumi is a vegetable used as both medicine and food, and belongs to Angelica genus plant of Umbelliferae; the appearance is similar to celery, the plant height is 80-120 cm, basal leaves are clustered, the plant has long handles, and the basal parts are enlarged to hold stems. In the planting process, in order to increase the growth speed and the disease and pest resistance, fertilizer is usually applied to the soil in a cutting mode, and a common mode is to apply fertilizer by a spraying machine, but the following defects are caused:
(1) The stirring of fertilizer is incomplete, so that the mixing of the fertilizer is uneven, and partial particles can cause congestion even at the spray head of the spraying machine.
(2) The releasable area of the fertilizer is small and uneven, resulting in uneven fertilization of the angelica keiskei.
(3) The spraying machine is clumsy to run under the condition of cultivation density like the tomorrow leaf, especially in boundary position, more easily causes fertilization dead angle.
Disclosure of Invention
In view of the above, the application provides a biological bacterial fertilizer applying device suitable for the angelica keiskei, and realizes uniform and efficient fertilization of the angelica keiskei.
Specifically, the application is realized through the following scheme:
the biological bacterial fertilizer applying device suitable for the tomorrow leaf comprises a plate vehicle, a mixing drum, a water pump, an armrest and a roller, wherein the roller is positioned below the plate vehicle, the armrest, the water pump and the mixing drum are all arranged on the plate vehicle,
the bottom of the mixing barrel is provided with stirring blades which are driven by a motor to rotate;
the bottom of the mixing barrel is provided with a discharge hole with adjustable size, and the discharge hole is connected with the inlet of the water pump through a conveying pipe;
the outlet of the water pump is connected with a discharge pipe, and the outlet end of the discharge pipe is provided with a plurality of spray heads.
According to the device, the mixing barrel is stirred at the bottom, and when the fertilizers such as biological bacterial fertilizers and the like and water are added into the mixing barrel, the motor is started to drive the stirring blades to rotate, so that the dissolution of the fertilizers can be accelerated; the fertilizer can be covered by the self gravity of the fertilizer, so that the fertilizer can be fully dissolved in water without generating stirring dead angles; the water pump pressurizes and sends the fertilizer obtained by dissolution to the spray head through the mixing barrel for spraying and releasing, so that the whole fertilizer applying device is endowed with larger fertilizer applying area and more uniform fertilizer applying frequency; the whole fertilizer application device is driven by the roller, so that the contact surface between the device and soil is increased, and the device can freely run even in soft soil.
Further, as preferable:
the rollers are replaced by crawler wheels, so that the whole drive is endowed with a crawler type structure.
The stirring blade is obliquely upwards arranged at 45 degrees relative to the horizontal plane.
The stirring blade can adopt a three-blade fan-shaped structure.
The discharging pipe is positioned in the plate trailer, and discharging stability is ensured.
Six spray heads are arranged, and one discharge pipe corresponds to the six spray heads, so that the spraying coverage is widened, and the fertilization efficiency is improved; and the discharging pressure is homogenized on the premise of ensuring the fertilizing amount, so that the impact on the cultivation ground caused by overlarge pressure is avoided.
The water pump and the motor are both positioned between the mixing bucket and the handrail, and the spray head is positioned at the other side opposite to the handrail.
The armrest is connected with the scooter through a rotating shaft.
The discharge gate department is provided with the apron, and apron and compounding bucket bottom hub connection stir the apron and make it leave the discharge gate, then the discharge gate is opened, otherwise closes. More preferably, the cover plate is connected with a deflector rod, and the deflector rod is higher than the highest liquid level position of the mixing barrel, which allows the load to be highest, so that the cover plate is convenient to stir.
The handrail comprises a connecting rod, a holding part and a control part, wherein one end of the connecting rod is connected with the scooter, the other end of the connecting rod is provided with a platform, a holding part is formed at a slotting part on the platform, a starting switch, a stirring button and a spraying button are arranged at a non-slotting part to form the control part, and the starting switch is a master switch, so that the motor and the water pump are in a standby state; the stirring button controls the starting state of the motor to control the working state of the stirring blade; the spray button controls the working state of the water pump and controls the discharge by matching with the opening of the discharge hole. More preferably, the scooter also comprises a pulling sheet switch to realize turning of the whole scooter. And pipelines between the starting switch and the motor and between the starting switch and the water pump are distributed in the connecting rod.
The handrail comprises a connecting rod, a holding part and a control part, wherein the connecting rod comprises a first connecting rod and a second connecting rod, one end of the first connecting rod and one end of the second connecting rod are connected with the scooter, the holding part is arranged at the other end of the first connecting rod and the second connecting rod, the control part comprises a starting switch, a stirring button and a spraying button, the starting switch is a main switch, and the motor and the water pump are in a standby state; the stirring button controls the starting state of the motor to control the working state of the stirring blade; the spray button controls the working state of the water pump and controls the discharge by matching with the opening of the discharge hole. More preferably, the first link, the grip portion and the second link form a U-shaped or H-shaped structure, and the manipulation portion is located on the link. The device also comprises an organic case, and the motor and the water pump are positioned in the case.
The device realizes three functions of mixing, outputting and releasing biological bacterial fertilizer, realizes stable conveying of the whole device by virtue of the roller or the crawler wheel, reduces compaction effect of fertilization on the ground, has simple and easy whole fertilization process and uniform fertilization, and does not generate fertilization dead angles.
Drawings
FIG. 1 is a schematic perspective view of the present application;
FIG. 2 is a schematic diagram of the front structure of the present application;
FIG. 3 is a schematic side elevational view of the present application;
FIG. 4 is a schematic top view of the present application;
fig. 5 is a schematic view of another structure of the handrail of the present application.
Reference numerals in the drawings: 1. a plate vehicle; 2. a mixing barrel; 21. a discharge port; 3. a water pump; 31. a material conveying pipe; 32. a discharge pipe; 4. an armrest; 41. a connecting rod; 411. a first link; 412. a second link; 42. a grip portion; 43. a control unit; 431. starting a switch; 432. a stirring button; 433. a spray button; 434. a toggle switch; 435.H pole; 44. a rotating shaft; 45. a platform; 5a, a roller; 5b, crawler wheels; 6. a motor; 61. stirring the leaves; 7. a spray head; 8. and a case.
Detailed Description
Example 1
The embodiment is a biological bacterial fertilizer injection unit suitable for tomorrow leaf, combines fig. 1, including scooter 1, compounding bucket 2, water pump 3, handrail 4 and gyro wheel 5a, gyro wheel 5a is located scooter 1 below, and handrail 4, water pump 3 and compounding bucket 2 all are located on the scooter 1.
Referring to fig. 2 and 4, a stirring blade 61 is provided at the bottom of the mixing tub 2, and the stirring blade 61 is driven to rotate by a motor 6.
The bottom of the mixing barrel 2 is provided with a discharge hole 21 with an adjustable opening, the discharge hole 21 is arranged close to the edge, and the discharge hole 21 is connected with an inlet (not marked in the figure) of the water pump 3 through a conveying pipe 31; the outlet (not marked in the figure) of the water pump 3 is connected with a discharging pipe 32, and six spray heads 7 are arranged at the outlet end of the discharging pipe 32.
The fertilizing device can realize three functions of dissolving and mixing, outputting and releasing biological bacterial fertilizer:
(1) The mixing barrel 2 is stirred at the bottom, the discharge hole 21 is closed, fertilizer such as biological bacterial fertilizer and water are added into the mixing barrel 2, and the motor 6 is started to drive the stirring blade 61 to rotate, so that the dissolution of the fertilizer can be quickened; in the dissolving and mixing process, the fertilizer automatically sinks to the bottom of the mixing barrel 2 under the action of self gravity, and the fertilizer is moved along with water again under the action of the stirring blade 61, so that all the fertilizer is fully contacted and dissolved with the water, and no dead angle is generated in the mixing process of the biological bacterial fertilizer and the water.
(2) When reaching the dissolution time, the discharge hole 21 is opened, the discharge hole 21 is communicated with the conveying pipe 31, the water pump 3 works, the fertilizer mixture in the conveying pipe 31 is conveyed to the spray head 7 through the discharge pipe 32 by pressurization, and the spray release is carried out, so that the whole fertilizer application device is endowed with a larger fertilizing area and a more uniform fertilizing frequency.
(3) The roller 5a drives the whole fertilizer application device, so that the contact surface between the device and soil is increased, and the device can freely run in soft soil.
In the above scheme, the stirring blade 61 can be arranged in a manner of being inclined upwards by 45 degrees relative to the horizontal plane, so that the turbulent condition of the liquid material is improved, and the mixing and dissolving effects are enhanced. The stirring blade 61 may have a three-blade fan structure.
In connection with fig. 2, the discharge pipe 32 and part of the feed pipe 31 are positioned in the scooter, ensuring stable discharge.
Example 2
This embodiment is identical to the arrangement of embodiment 1, except that: the water pump 3 and the motor 6 can be arranged in the space between the mixing barrel 2 and the handrail 4, and the spray head 7 is positioned at the other side opposite to the handrail 4.
Example 3
This embodiment is identical to the arrangement of embodiment 1, except that: the armrest 4 is connected with the scooter 1 through a rotating shaft 44, so that the height of the armrest 4 is convenient to adjust.
Example 4
This embodiment is identical to the arrangement of embodiment 1, except that: the discharge port 21 is provided with a cover plate (not shown in the figure, the cover plate is connected with the bottom shaft of the mixing drum 2, and the cover plate is poked to leave the discharge port 21, so that the discharge port 21 is opened, and otherwise, the cover plate is closed.
As an alternative: the cover plate can be connected with a deflector rod, the deflector rod is higher than the highest liquid level position of the mixing barrel 2 which allows the load, so that the deflector rod is always higher than the liquid level, the cover plate can be conveniently and manually stirred to control the opening and closing state of the discharge port 21, and biological bacterial manure cannot be dyed.
Example 5
This embodiment is identical to the arrangement of embodiment 1, except that: referring to fig. 1, the armrest 4 includes a connecting rod 41, a holding portion 42 and a control portion 43, one end of the connecting rod 41 is connected with the scooter 1, the other end is provided with a platform 45, a holding portion 42 is formed at a slotted position on the platform 45, a starting switch 431, a stirring button 432 and a spraying button 433 are arranged at a non-slotted position to form the control portion 43, and the starting switch 431 is a main switch, so that both the motor 6 and the water pump 3 are in a standby state; the stirring button 432 controls the start state of the motor 6 to control the operation state of the stirring blade 61; the spray button 433 controls the working state of the water pump 3, and controls the discharge by matching with the opening of the discharge port 21.
As an alternative, the control portion 43 is further provided with a paddle switch 434, and when the head of the paddle switch 434 rotates to twelve o 'clock, the roller 5a is driven to drive the scooter 1 to move forward, and when the roller rotates to three o' clock, the right side wheel does not move to the left side wheel, whereas when the roller rotates to nine o 'clock, the roller moves backward, and the six o' clock is retracted, so that the whole scooter 1 turns.
In the above-mentioned scheme, the pipeline connection between the starting switch 431 and the motor 6 and the water pump 3 is connected in a conventional manner, and the connection pipelines and necessary sensors and the like can be distributed in the connecting rod 41 without being expanded.
Example 6
This embodiment is identical to the arrangement of embodiment 1, except that: referring to fig. 5, the armrest 4 includes a connecting rod 41, a holding portion 42, and a control portion 43, the connecting rod 41 includes a first connecting rod 411 and a second connecting rod 412, one end of the first connecting rod 411 and one end of the second connecting rod 412 are connected with the scooter 1, the holding portion 42 is installed at the other end, the control portion 43 includes a start switch 431, a stirring button 432, and a spraying button 433, and the start switch 432 controls the total power supply to make the motor 6 and the water pump 3 in standby states; the stirring button 432 controls the start state of the motor 6 to control the operation state of the stirring blade 61; the spray button 433 controls the working state of the water pump 3, and controls the discharge by matching with the opening of the discharge port 21. Wherein, the start switch 431 and the spray switch 433 can be installed on the first connecting rod 411, and the stirring switch 432 is installed at the end of the second connecting rod 412.
In the above-described embodiment, the start switch 432 is turned on, the H-bar 435 is held in contact with the holding portion 42, the whole device is started, and the whole device is stopped when released.
Preferably, the first link 411, the grip portion 42, and the second link 412 are connected in a U-shaped structure as shown in fig. 5, or the three may be connected in an H-shaped structure, and the manipulation portion 43 may be disposed on the link 41 near the grip portion 42.
As an alternative, the steering portion 43 further includes a paddle switch 434, where the paddle switch 434 is mounted on the first link 411, for implementing turning of the entire scooter 1.
The connection of the starting switch 431 to the motor 6 and the water pump 3 is conventionally performed, and these connection lines and necessary sensors may be distributed in the link 41, not described here.
In this scheme, a casing 8 may be further provided, and power devices such as the water pump 3 and the motor 6, and a part of pipelines may be disposed in the casing 8.
The device realizes continuous operation of mixing, outputting and releasing biological bacterial fertilizer, realizes stable conveying of the whole device by virtue of the roller 5a or the crawler wheel 5b, reduces compaction effect of fertilization on the ground, has simple and easy whole fertilization process and uniform fertilization, and does not generate fertilization dead angles.

Claims (10)

1. Biological bacterial manure fertilizer injection unit suitable for tomorrow leaf, its characterized in that: comprises a scooter, a mixing bucket, a water pump, an armrest and a roller, wherein the roller is positioned below the scooter, the armrest, the water pump and the mixing bucket are all arranged on the scooter,
the bottom of the mixing barrel is provided with stirring blades which are driven by a motor to rotate;
the bottom of the mixing barrel is provided with a discharge hole with adjustable size, and the discharge hole is connected with the inlet of the water pump through a conveying pipe;
the outlet of the water pump is connected with a discharge pipe, and the outlet end of the discharge pipe is provided with a plurality of spray heads.
2. The biological bacterial fertilizer applicator for tomorrow leaf according to claim 1, wherein: the roller is replaced by a crawler wheel.
3. The biological bacterial fertilizer applicator for tomorrow leaf according to claim 1, wherein: the discharging pipe is positioned in the plate trailer.
4. The biological bacterial fertilizer applicator for tomorrow leaf according to claim 1, wherein: the water pump and the motor are both positioned between the mixing bucket and the handrail, and the spray head is positioned on the other side of the scooter opposite to the handrail.
5. The biological bacterial fertilizer applicator for tomorrow leaf according to claim 1, wherein: the armrest is connected with the scooter through a rotating shaft.
6. The biological bacterial fertilizer applicator for tomorrow leaf according to claim 1, wherein: the discharge gate department is provided with the apron, apron and compounding bucket bottom hub connection.
7. The biological bacterial fertilizer applicator for tomorrow leaf of claim 6, wherein: the cover plate is connected with a deflector rod, and the deflector rod is higher than the highest liquid level position of the mixing barrel which allows the load.
8. A biological bacterial fertilizer applicator for tomorrow leaf according to any one of claims 1-7, characterized in that: the handrail comprises a connecting rod, a holding part and a control part, wherein one end of the connecting rod is connected with the scooter, the other end of the connecting rod is provided with a platform, a holding part is formed at a slotting part on the platform, a starting switch, a stirring button and a spraying button are arranged at a non-slotting part to form the control part, and the starting switch is a master switch, so that the motor and the water pump are in a standby state; the stirring button controls the starting state of the motor to control the working state of the stirring blade; the spray button controls the working state of the water pump and controls the discharge by matching with the opening of the discharge hole.
9. The biological bacterial fertilizer applicator for tomorrow leaf of claim 8, wherein: the device also comprises a pulling sheet switch for controlling the running direction of the scooter.
10. A biological bacterial fertilizer applicator for tomorrow leaf according to any one of claims 1-7, characterized in that: the handrail comprises a connecting rod, a holding part and a control part, wherein the connecting rod comprises a first connecting rod and a second connecting rod, the first connecting rod and the second connecting rod are connected with the scooter, the holding part is arranged at the other end of the connecting rod, the control part comprises a starting switch, a stirring button and a spraying button, the starting switch is a main switch, and the motor and the water pump are in a standby state; the stirring button controls the starting state of the motor to control the working state of the stirring blade; the spray button controls the working state of the water pump and controls the discharge by matching with the opening of the discharge hole.
CN202320131782.7U 2023-01-13 2023-01-13 Biological bacterial fertilizer applying device suitable for tomorrow leaf Active CN219352370U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320131782.7U CN219352370U (en) 2023-01-13 2023-01-13 Biological bacterial fertilizer applying device suitable for tomorrow leaf

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320131782.7U CN219352370U (en) 2023-01-13 2023-01-13 Biological bacterial fertilizer applying device suitable for tomorrow leaf

Publications (1)

Publication Number Publication Date
CN219352370U true CN219352370U (en) 2023-07-18

Family

ID=87146703

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320131782.7U Active CN219352370U (en) 2023-01-13 2023-01-13 Biological bacterial fertilizer applying device suitable for tomorrow leaf

Country Status (1)

Country Link
CN (1) CN219352370U (en)

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