An agricultural drone fertilizer granule spreading device

By designing an agricultural drone fertilizer granule spreading device with spreading, stirring and return mechanisms, the problem of uneven spreading is solved, uniform spreading of fertilizer granules and efficient fertilization are achieved, and the consistency of crop growth is improved.

CN119969038BActive Publication Date: 2025-10-03SHANDONG RUIXIANG AVIATION TECH CO LTD
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Patent Information

Application Number
CN202510382528.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-10-03
Estimated Expiration
2045-03-28

AI Technical Summary

Technical Problem

The fertilizer granule spreading device of agricultural drones is prone to uneven spreading during the spreading process, affecting the consistency of crop growth.

Method used

A fertilizer granule spreading device for agricultural drones is designed, which includes a spreading mechanism, a stirring mechanism and a return mechanism. Through the rotation of the spreading mechanism and the stirring mechanism, combined with the screening and recycling of the return mechanism, the uniformity of the fertilizer granules and compliance with the spreading standards are ensured.

Benefits of technology

It achieves uniform spreading of fertilizer particles, improves fertilization efficiency and uniformity of crop growth, prevents accumulation and blockage, and improves fertilization effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a fertilizer granule sprinkling device for an agricultural drone, comprising a shell, the top of the shell being connected to a feed pipe, a bottom of one side of the shell being provided with an air outlet, the inner wall of the shell being fixedly connected to a sprinkling mechanism, one side of the sprinkling mechanism being fixedly connected to a stirring mechanism, one side of the sprinkling mechanism being fixedly connected to a return mechanism, and the inner wall of the shell being fixedly connected to one side of the return mechanism. The present invention relates to the technical field of fertilizer granule sprinkling. The fertilizer granule sprinkling device for an agricultural drone separates the fertilizer granules falling through the filter plate through a partition plate, so that the fertilizer granules are more orderly distributed in space, which helps to achieve wider and more uniform fertilization coverage. The rotating spiral plate performs preliminary stirring on the fertilizer granules, and a plurality of circular holes are evenly opened on its surface. When the spiral rod rotates, the circular holes allow the material to flow from one side of the rod to the other side, greatly increasing the fluidity and exchangeability of the material in the stirring area.
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Description

Technical Field

[0001] The present invention relates to the technical field of fertilizer granule spreading, and in particular to a fertilizer granule spreading device for an agricultural unmanned aerial vehicle. Background Art

[0002] Pesticide and fertilizer granules can slowly release nutrients and pesticides in the soil, which can not only provide continuous nutritional support for crop growth and promote the healthy growth of crops, but also effectively prevent and control pests and diseases, reduce the damage of pests and diseases to crops, thereby improving the yield and quality of crops, while also reducing the waste of pesticides and fertilizers and reducing pollution to the environment. The agricultural drone fertilizer granule spreading device is a device installed on an agricultural drone for accurately spreading fertilizer granules. The device usually consists of a material box, a conveying mechanism, a spreading mechanism and a control system. This device can improve fertilization efficiency, reduce manual labor intensity, and ensure the uniformity and accuracy of fertilization, which helps to improve the yield and quality of crops. Compared with traditional manual spreading, it greatly improves operating efficiency and can complete the fertilization task of a large area of ​​farmland within one day, greatly saving manpower and time costs, and effectively promoting agriculture to move towards intelligence and modernization.

[0003] Agricultural fertilizer granule spreading devices are prone to uneven spreading during the spreading process, which in turn affects the consistency of crop growth. Therefore, we propose an agricultural drone fertilizer granule spreading device. Summary of the Invention

[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: a fertilizer granule spreading device for an agricultural drone, comprising a housing, a feed pipe connected to the top of the housing, an air outlet opened at the bottom of one side of the housing, a spreading mechanism fixedly connected to the inner wall of the housing, a stirring mechanism fixedly connected to one side of the spreading mechanism, a material return mechanism fixedly connected to one side of the spreading mechanism, and the inner wall of the housing fixedly connected to one side of the material return mechanism;

[0005] The spreading mechanism includes a connecting ring plate and a discharge cylinder. The discharge cylinder is fixed and can further refine and homogenize the fertilizer particles during the friction with the rotating screening cylinder. This friction can break up some larger particles or sticky fertilizer particles, making the fertilizer particles finally thrown out more dense and uniform, thereby improving the fertilization effect. The bottom of the connecting ring plate is fixedly connected to the screening cylinder, and the inner wall of the screening cylinder is fixedly connected to a partition plate. The partition plate separates the fertilizer particles falling through the filter plate, so that the fertilizer particles are more orderly distributed in space, which helps to achieve wider and more uniform fertilization coverage. The bottom of the inner wall of the discharge cylinder is fixedly connected to a sleeve, and the bottom of the inner wall of the discharge cylinder is fixedly connected to a motor. The drive shaft of the motor is fixedly connected to a round rod, and the top of the partition plate is fixedly connected to There is a folding rod, and a rectangular hole is opened on one side of the discharge cylinder. The folding rod rotates as the round rod rotates. During the rotation process, the screening cylinder and the partition plate rotate together under the drive of the motor, and the centrifugal force is used to sprinkle the fertilizer particles to the outside, thereby realizing large-area and high-efficiency fertilizer sprinkling and improving the fertilization efficiency. An oblique ring plate is fixedly connected to the round rod, and the oblique ring plate blocks the fertilizer particles falling near the center, allowing these fertilizer particles to slide obliquely outward to between the partition plates, effectively preventing the fertilizer particles from falling onto the sleeve and causing accumulation or blockage. The top of the connecting ring plate is fixedly connected to the bottom of the return mechanism, and the top of the discharge cylinder is fixedly connected to the bottom of the shell. The end of the folding rod away from the partition plate is fixedly connected to one side of the round rod. There are multiple folding rods, and the multiple folding rods are evenly distributed on the round rod.

[0006] Furthermore, the stirring mechanism includes a spiral plate, and the rotating spiral plate performs preliminary stirring on the fertilizer particles. The spiral plate is provided with circular holes, and multiple circular holes are evenly opened on the surface. When the spiral rod rotates, the circular holes allow the material to flow from one side of the rod to the other side, which greatly increases the fluidity and exchangeability of the material in the stirring area, which avoids the limitation that the material moves only along the surface of the spiral rod, so that the material can be more fully mixed in the axial and radial directions, and the uniformity of stirring is improved. A round rod T-shaped scraper is fixedly connected to one side of the spiral plate. As the round rod rotates, the round rod T-shaped scraper rotates synchronously, which can It can effectively scrape the ring plate to prevent fertilizer particles from adhering to the ring plate, and avoid affecting the equipment operation efficiency due to fertilizer accumulation. The round rod T-shaped scraper is sleeved and rotatably connected with an annular sleeve plate, and the annular sleeve plate is fixedly connected with a stirring plate. The stirring plate sleeved on the round rod T-shaped scraper starts to rotate with the round rod T-shaped scraper as the rotation axis, further breaking up the fertilizer particles and making the particle size distribution of the fertilizer particles more uniform. One side of the spiral plate is fixedly connected to one side of the round rod, and a plurality of round rod T-shaped scrapers are provided, and the plurality of round rod T-shaped scrapers are evenly distributed on one side of the spiral plate.

[0007] Furthermore, the material return mechanism includes a filter plate and a fixed rod. After the fertilizer particles are broken up, they are screened through the filter plate, and the fertilizer particles that meet the throwing diameter are screened out and enter the bottom for throwing. The particles that do not meet the diameter remain on the filter plate, ensuring that the particle size of the thrown fertilizer meets the expected standard, avoiding the influence of fertilizer particles that are too large or too small on the fertilization effect. The top of the filter plate is fixedly connected to a hollow ring plate, and a semi-ring hole 1 is provided on one side of the inner wall of the hollow ring plate, and a semi-ring hole 2 is provided on the side of the inner wall of the hollow ring plate away from the semi-ring hole 1. The inner wall of the hollow ring plate is fixedly connected to The ventilation plate, one side of the inner wall of the hollow ring plate is fixedly connected with an oblique plate. After the fertilizer particles enter the hollow ring plate, a part of them stays at the ventilation plate, and a part of them slides along the oblique plate to the lifting plate. The oblique plate guides the fertilizer particles to slide. One side of the hollow ring plate is fixedly connected with a ventilation splint 1, and one side of the hollow ring plate is fixedly connected with a ventilation splint 2. After starting the air pump, the ventilation splint 1 and the ventilation splint 2 will directly guide the wind direction obliquely downward to the surface of the filter plate, and the fertilizer particles that have not been screened on the surface will be sucked into the interior of the hollow ring plate, so as to realize the recovery and reprocessing of unqualified fertilizer particles. The hollow ring plate is away from A lifting plate is provided on one side of the ventilation splint, and an air pipe is connected to one side of the hollow ring plate. An end of the air pipe away from the hollow ring plate is connected to an air pump. One side of the lifting plate is fixedly connected to the moving end of a linear electric slide rail, and the top of the hollow ring plate is fixedly connected to a ring plate. A feeding hole is provided on one side of the ring plate, and the linear electric slide rail drives the lifting plate to move upward and stops at the feeding hole. The lifting plate transports the fertilizer particles to the feeding port for the fertilizer particles to re-enter and be stirred. One end of the fixed rod is fixedly connected to a scraper, and the top of the scraper is fixedly connected to a semi-ring baffle. The motor is again The start-up drives the fixed rod and the scraper to rotate, and the scraper scrapes the fertilizer particles on the lifting plate so that they are squeezed and accumulated. The semi-ring baffle is fixed on the top of the scraper to prevent the fertilizer particles from overflowing and can only fall from the feed port. The bottom of the filter plate is fixedly connected to the top of the connecting ring plate, and the top of the ring plate is fixedly connected to the inner wall of the shell. The side of the linear electric slide away from the lifting plate is fixedly connected to the inner wall of the shell, and the end of the fixed rod away from the scraper is fixedly connected to the round rod. One side of the filter plate passes through the round rod and is rotatably connected to the round rod. The bottom of the air pump is fixedly connected to the bottom of the inner wall of the shell.

[0008] The present invention provides a fertilizer granule spreading device for an agricultural drone. It has the following beneficial effects:

[0009] 1. This agricultural drone fertilizer particle spreading device is equipped with a partition plate to separate the fertilizer particles falling through the filter plate, so that the fertilizer particles are more orderly distributed in space, which helps to achieve wider and more uniform fertilizer coverage. The rotating spiral plate preliminarily stirs the fertilizer particles, and multiple circular holes are evenly opened on its surface. When the spiral rod rotates, the circular holes allow the material to flow from one side of the rod to the other side, greatly increasing the fluidity and exchangeability of the material in the stirring area, which avoids the limitation of the material moving only along the surface of the spiral rod, so that the material can be more fully mixed in the axial and radial directions. After being broken up, the fertilizer particles are screened through the filter plate, and the fertilizer particles that meet the spreading diameter are screened out and enter the bottom for spreading, while those that do not meet the diameter remain on the filter plate, ensuring that the particle size of the final spread fertilizer meets the expected standard.

[0010] 2. This agricultural drone fertilizer particle spreading device is provided with a spreading mechanism. The partition plate separates the fertilizer particles falling through the filter plate, so that the fertilizer particles are more orderly distributed in space, which helps to achieve wider and more uniform fertilizer coverage. The oblique ring plate blocks the fertilizer particles falling near the center, allowing these fertilizer particles to slide obliquely outward to the partition plate, effectively preventing the fertilizer particles from falling on the sleeve and causing accumulation or blockage. The folding rod rotates with the rotation of the round rod. During the rotation, the screening cylinder and the partition plate rotate together under the drive of the motor, and use centrifugal force to spread the fertilizer particles to the outside, realizing large-area and high-efficiency fertilizer spreading and improving fertilization efficiency. The discharge cylinder is fixed and in the process of friction with the rotating screening cylinder, it further refines and homogenizes the fertilizer particles. This friction can break up some larger particles or sticky fertilizer particles, making the fertilizer particles finally scattered more fine and uniform, thereby improving the fertilization effect.

[0011] 3. This agricultural drone fertilizer granule sprinkling device is provided with a stirring mechanism. The rotating spiral plate performs preliminary stirring on the fertilizer granules. There are multiple circular holes evenly opened on its surface. When the spiral rod rotates, the circular holes allow the material to flow from one side of the rod to the other side, which greatly increases the fluidity and exchangeability of the material in the stirring area. This avoids the limitation that the material moves only along the surface of the spiral rod, so that the material can be more fully mixed in the axial and radial directions, and the uniformity of stirring is improved. As the round rod rotates, the round rod T-shaped scraper rotates synchronously, which can effectively scrape the ring plate to prevent the fertilizer granules from adhering to the ring plate, and avoid affecting the equipment operation efficiency due to fertilizer accumulation. The stirring plate mounted on the round rod T-shaped scraper starts to rotate with the round rod T-shaped scraper as the rotation axis, further breaking up the fertilizer granules and making the particle size distribution of the fertilizer granules more uniform.

[0012] 4. This agricultural drone fertilizer particle spreading device is equipped with a return mechanism. After the fertilizer particles are broken up, they are screened through a filter plate. Fertilizer particles that meet the spreading diameter are screened out and enter the bottom for spreading. Those that do not meet the diameter remain on the filter plate, ensuring that the particle size of the spread fertilizer meets the expected standard and avoiding the fertilization effect affected by fertilizer particles that are too large or too small. After starting the air pump, ventilation splint 1 and ventilation splint 2 will directly guide the wind direction obliquely downward to the surface of the filter plate, and suck the unscreened fertilizer particles on the surface into the hollow ring plate, thereby realizing the recycling and reprocessing of unqualified fertilizer particles. After the fertilizer particles enter the hollow ring plate, a part of them stays at the ventilation plate, and a part slides along the inclined plate to the lifting plate. The inclined plate guides the fertilizer particles to slide, and the linear electric slide rail drives the lifting plate to move upward, rises to the feed hole and stops, and the lifting plate transports the fertilizer particles to the feed port, making it convenient for the fertilizer particles to re-enter and be stirred. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic cross-sectional view of the structure of the fertilizer granule spreading device for an agricultural drone according to the present invention;

[0014] Figure 2 This is a schematic diagram of the second cross-section structure of the fertilizer granule spreading device for an agricultural drone of the present invention;

[0015] Figure 3 It is a schematic structural diagram of the throwing mechanism of the present invention;

[0016] Figure 4 Schematic diagram of the cross-sectional structure of the spreading mechanism of the present invention;

[0017] Figure 5 This is a schematic structural diagram of the stirring mechanism of the present invention;

[0018] Figure 6 This is a schematic diagram of the side structure of the stirring mechanism of the present invention;

[0019] Figure 7 This is a schematic structural diagram of the material return mechanism of the present invention;

[0020] Figure 8 It is a schematic diagram of the cross-sectional structure of the material return mechanism of the present invention.

[0021] Figure: 1, housing; 2, feed pipe; 3, air outlet; 4, spreading mechanism; 5, stirring mechanism; 6, material return mechanism; 41, connecting ring plate; 42, screening cylinder; 43, partition plate; 44, discharge cylinder; 45, sleeve; 46, motor; 47, round rod; 48, folding rod; 49, rectangular hole; 410, oblique ring plate; 51, spiral plate; 52, round hole; 53, round rod T-shaped scraper; 54, annular sleeve plate ; 55. Stirring plate; 61. Filter plate; 62. Hollow ring plate; 63. Semi-ring hole one; 64. Semi-ring hole two; 65. Ventilation plate; 66. Oblique plate; 67. Ventilation splint one; 68. Ventilation splint two; 69. Lifting plate; 610. Air pipe; 611. Air pump; 612. Linear electric slide rail; 613. Ring plate; 614. Feed hole; 615. Fixed rod; 616. Scraper; 617. Semi-ring baffle. DETAILED DESCRIPTION

[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0023] For the first embodiment, please refer to Figure 1-Figure 4 The present invention is a fertilizer granule spreading device for an agricultural drone, comprising a housing 1, a feed pipe 2 connected to the top of the housing 1, an air outlet 3 opened at the bottom of one side of the housing 1, a spreading mechanism 4 fixedly connected to the inner wall of the housing 1, a stirring mechanism 5 fixedly connected to one side of the spreading mechanism 4, a material return mechanism 6 fixedly connected to one side of the spreading mechanism 4, and the inner wall of the housing 1 fixedly connected to one side of the material return mechanism 6;

[0024] The spreading mechanism 4 includes a connecting ring plate 41 and a discharging cylinder 44. The bottom of the connecting ring plate 41 is fixedly connected to the sieve cylinder 42. The inner wall of the sieve cylinder 42 is fixedly connected to a partition plate 43. The bottom of the inner wall of the discharging cylinder 44 is fixedly connected to a sleeve 45. The bottom of the inner wall of the discharging cylinder 44 is fixedly connected to a motor 46. The driving shaft of the motor 46 is fixedly connected to a round rod 47. The top of the partition plate 43 is fixedly connected to a folding rod 48. A rectangular hole 49 is provided on one side of the discharging cylinder 44. An oblique ring plate 410 is fixedly connected to the round rod 47. The top of the connecting ring plate 41 is fixedly connected to the bottom of the return mechanism 6. The top of the discharging cylinder 44 is fixedly connected to the bottom of the shell 1. The end of the folding rod 48 away from the partition plate 43 is fixedly connected to one side of the round rod 47. There are multiple folding rods 48, and the multiple folding rods 48 are evenly distributed on the round rod 47. When in use, the fertilizer particles are put into the shell 1 from the feed pipe 2, and the spreading mechanism 4 is started. , drives the stirring mechanism 5 to stir and crush the fertilizer particles. The crushed fertilizer particles are screened by the returning mechanism 6, and the fertilizer particles that are crushed to meet the throwing diameter enter the spreading mechanism 4 and are thrown onto the crops after the rotation of the spreading mechanism 4. The fertilizer particles that do not meet the throwing diameter enter the returning mechanism 6, and the fertilizer particles re-enter the stirring mechanism 5, are stirred and crushed again, until all the fertilizer particles meet the throwing diameter and are separated by the partition plate 43. The fertilizer particles near the center are blocked by the oblique ring plate 410 when falling, and slide obliquely outward to fall between the partition plates to prevent them from falling onto the sleeve 45. The motor 46 drives the round rod 47 to rotate. At the same time, the folding rod 48 fixedly connected to the round rod 47 rotates, and the partition plate 43 rotates together with the screening cylinder 42. Due to centrifugal force, the fertilizer particles are thrown to the outside, and the discharging cylinder 44 is fixed. During the rotation friction with the screening cylinder 42, the fertilizer particles are thrown more finely and evenly.

[0025] For the second embodiment, please refer to Figures 1-8 The present invention provides an agricultural drone fertilizer granule spreading device: the stirring mechanism 5 includes a spiral plate 51, a circular hole 52 is opened on the spiral plate 51, a round rod T-shaped scraper 53 is fixedly connected to one side of the spiral plate 51, an annular sleeve 54 is sleeved and rotatably connected to the round rod T-shaped scraper 53, and a stirring plate 55 is fixedly connected to the annular sleeve 54. One side of the spiral plate 51 is fixedly connected to one side of the round rod 47. A plurality of round rod T-shaped scrapers 53 are provided, and the plurality of round rod T-shaped scrapers 53 are evenly distributed on one side of the spiral plate 51;

[0026] The material return mechanism 6 includes a filter plate 61 and a fixing rod 615. A hollow ring plate 62 is fixedly connected to the top of the filter plate 61. A semi-ring hole 1 63 is provided on one side of the inner wall of the hollow ring plate 62. A semi-ring hole 2 64 is provided on the side of the inner wall of the hollow ring plate 62 away from the semi-ring hole 1 63. A ventilation plate 65 is fixedly connected to one side of the inner wall of the hollow ring plate 62. An oblique plate 66 is fixedly connected to one side of the inner wall of the hollow ring plate 62. A ventilation splint 1 67 is fixedly connected to one side of the hollow ring plate 62. A ventilation splint 2 68 is fixedly connected to one side of the hollow ring plate 62. A lifting plate 69 is provided on the side of the hollow ring plate 62 away from the ventilation splint 1 67. An air pipe 610 is connected to one side of the hollow ring plate 62. An end of the air pipe 610 away from the hollow ring plate 62 is connected to an air pump 611. One side of the lifting plate 69 is fixedly connected to the moving end of the linear electric slide 612, the top of the hollow ring plate 62 is fixedly connected to the ring plate 613, a feed hole 614 is opened on one side of the ring plate 613, one end of the fixed rod 615 is fixedly connected to the scraper 616, the top of the scraper 616 is fixedly connected to the semi-ring baffle 617, the bottom of the filter plate 61 is fixedly connected to the top of the connecting ring plate 41, the top of the ring plate 613 is fixedly connected to the inner wall of the shell 1, the side of the linear electric slide 612 away from the lifting plate 69 is fixedly connected to the inner wall of the shell 1, the end of the fixed rod 615 away from the scraper 616 is fixedly connected to the round rod 47, one side of the filter plate 61 passes through the round rod 47 and is rotatably connected to the round rod 47, the bottom of the air pump 611 is fixedly connected to the bottom of the inner wall of the shell 1, During use, after the fertilizer particles enter the shell 1, the motor 46 is started, driving the round rod 47 to rotate, and the spiral plate 51 fixedly connected to the round rod 47 rotates accordingly to perform preliminary stirring on the fertilizer particles. While the spiral plate 51 rotates, it drives the round rod T-shaped scraper 53 to rotate, so that the round rod T-shaped scraper scrapes the ring plate 613 to prevent the fertilizer particles from adhering to the ring plate 613. The stirring plate 55 sleeved on the round rod T-shaped scraper 53 starts to rotate due to the speed, and further breaks up the fertilizer particles. A plurality of circular holes 52 are evenly arranged on the surface of the spiral plate 51, so that the material flows from one side of the rod to the other side when the spiral rod rotates, thereby increasing the fluidity and exchangeability of the material in the stirring area, avoiding the material from moving only along the surface of the spiral rod, and making the material more fully distributed in the axial and radial directions. The mixing is improved to improve the uniformity of mixing. After the fertilizer particles are broken up, the motor 46 is turned off, and the fertilizer particles are screened through the filter plate 61. The fertilizer particles that meet the throwing diameter enter the bottom for throwing, and the fertilizer particles that do not meet the throwing diameter remain on the filter plate 61. The air pump 611 is started, and the air pump 611 exhausts the inside of the ring plate 613 through the air pipe 610 and the ventilation plate 65. The ventilation splint 1 67 and the ventilation splint 2 68 direct the wind direction directly obliquely downward to the surface of the filter plate 61, and the fertilizer particles that have not been screened on the surface are sucked into the hollow ring plate 62. After the fertilizer particles enter the hollow ring plate 62, part of them stay at the ventilation plate 65 due to the suction force, and part of them slide along the oblique plate 66 to the lifting plate 69. After all the fertilizer particles are sucked into the hollow ring plate 62,When the air pump 611 is turned off, the fertilizer particles slide down the inclined plate 66 due to gravity and onto the lifting plate 69. At this time, the linear electric slide 612 is activated, driving the lifting plate 69 to move upward. The lifting plate 69 rises to the feed hole 614 and stops. The motor 46 is restarted, driving the fixed rod 615 and scraper 616 to rotate. The scraper 616 scrapes the fertilizer particles on the lifting plate 69. The fertilizer particles are squeezed and accumulated. A semi-annular baffle 617 is fixed on the top of the scraper 616 to prevent the fertilizer particles from overflowing. They can only fall through the feed hole and are stirred and broken up again. Fertilizer particles that meet the throwing diameter fall through the filter plate 61.

[0027] When the present invention is in operation, fertilizer particles are put into the shell 1 from the feed pipe 2, the spreading mechanism 4 is started, and the stirring mechanism 5 is driven to stir and crush the fertilizer particles. The crushed fertilizer particles are screened by the return mechanism 6, and the fertilizer particles that are crushed to meet the throwing diameter enter the spreading mechanism 4, and are thrown onto the crops after the rotation of the spreading mechanism 4, while the fertilizer particles that do not meet the throwing diameter enter the return mechanism 6, and the fertilizer particles re-enter the stirring mechanism 5, and are stirred and crushed again until all the fertilizer particles meet the throwing diameter. After the fertilizer particles enter the shell 1, the motor 46 is started, driving the round rod 47 to rotate, and the spiral plate 51 fixedly connected to the round rod 47 rotates accordingly, and the fertilizer particles are preliminarily stirred. While the spiral plate 51 rotates, The movable round rod T-shaped scraper 53 rotates, so that the round rod T-shaped scraper scrapes the ring plate 613 to prevent the fertilizer particles from adhering to the ring plate 613. The stirring plate 55 sleeved on the round rod T-shaped scraper 53 starts to rotate due to the speed, and the fertilizer particles are further broken up. A plurality of circular holes 52 are evenly opened on the surface of the spiral plate 51, so that the material flows from one side of the rod to the other side when the spiral rod rotates, thereby increasing the fluidity and exchangeability of the material in the stirring area, avoiding the material from moving only along the surface of the spiral rod, so that the material can be more fully mixed in the axial and radial directions, and improving the uniformity of stirring. After the fertilizer particles are broken up, the motor 46 is turned off, and the fertilizer particles are sieved through the filter plate 61. The fertilizer particles that meet the throwing diameter enter the bottom for throwing, and the fertilizer particles that do not meet the throwing diameter are not thrown. When the particles remain on the filter plate 61, the air pump 611 is started. The air pump 611 exhausts the inside of the ring plate 613 through the air pipe 610 and the ventilation plate 65. The ventilation splint 1 67 and the ventilation splint 2 68 guide the wind direction directly downward to the surface of the filter plate 61, and the fertilizer particles that have not been screened on the surface are sucked into the hollow ring plate 62. After the fertilizer particles enter the hollow ring plate 62, part of them stays at the ventilation plate 65 due to suction, and part of them slides along the oblique plate 66 to the lifting plate 69. After all the fertilizer particles are sucked into the hollow ring plate 62, the air pump 611 is turned off. Due to gravity, the fertilizer particles slide along the oblique plate 66 to the lifting plate 69. At this time, the linear electric slide rail 612 is started, driving the lifting plate 69 to move upward, and the lifting plate 69 rises to the feeding hole 614. Stop, the motor 46 starts again, driving the fixed rod 615 and the scraper 616 to rotate, the scraper 616 scrapes the fertilizer particles on the lifting plate 69, and the fertilizer particles are squeezed and accumulated. A semi-annular baffle 617 is fixed on the top of the scraper 616 to prevent the fertilizer particles from overflowing. They can only fall from the feed port and are stirred and broken up again. The fertilizer particles that meet the throwing diameter fall through the filter plate 61 and are separated by the partition plate 43. The fertilizer particles near the center are blocked by the oblique ring plate 410 when falling, and slide obliquely outward to the partition plate to prevent them from falling onto the sleeve 45. The motor 46 drives the round rod 47 to rotate. At the same time, the folding rod 48 fixedly connected to the round rod 47 rotates, and the partition plate 43 rotates together with the screening cylinder 42. Due to centrifugal force, the fertilizer particles are thrown to the outside.The discharge cylinder 44 is fixed and rotates and rubs with the screening cylinder 42, so that the fertilizer particles are scattered more finely and evenly.

[0028] Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field and related fields without making creative efforts should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention shall be implemented in accordance with conventional means in the field unless otherwise specified or limited.

Claims

1. An agricultural drone fertilizer granule spreading device, comprising a housing (1), characterized in that: The top of the shell (1) is connected to a feed pipe (2), an air outlet (3) is provided at the bottom of one side of the shell (1), the inner wall of the shell (1) is fixedly connected to a sprinkling mechanism (4), one side of the sprinkling mechanism (4) is fixedly connected to a stirring mechanism (5), one side of the sprinkling mechanism (4) is fixedly connected to a return mechanism (6), and the inner wall of the shell (1) is fixedly connected to one side of the return mechanism (6); The throwing mechanism (4) includes a connecting ring plate (41) and a discharging cylinder (44), the bottom of the connecting ring plate (41) is fixedly connected to a sieve cylinder (42), the inner wall of the sieve cylinder (42) is fixedly connected to a partition plate (43), the bottom of the inner wall of the discharging cylinder (44) is fixedly connected to a sleeve (45), the bottom of the inner wall of the discharging cylinder (44) is fixedly connected to a motor (46), the driving shaft of the motor (46) is fixedly connected to a round rod (47), the top of the partition plate (43) is fixedly connected to a folding rod (48), a rectangular hole (49) is opened on one side of the discharging cylinder (44), and an oblique ring plate (410) is fixedly connected to the round rod (47); The stirring mechanism (5) comprises a spiral plate (51), a circular hole (52) is formed on the spiral plate (51), a round rod T-shaped scraper (53) is fixedly connected to one side of the spiral plate (51), an annular sleeve (54) is sleeved on the round rod T-shaped scraper (53) and rotatably connected, and a stirring plate (55) is fixedly connected to the annular sleeve (54); The top of the connecting ring plate (41) is fixedly connected to the bottom of the material return mechanism (6), and the top of the discharge cylinder (44) is fixedly connected to the bottom of the housing (1); One end of the folding rod (48) away from the partition plate (43) is fixedly connected to one side of the round rod (47). A plurality of folding rods (48) are provided, and the plurality of folding rods (48) are evenly distributed on the round rod (47).

2. The agricultural drone fertilizer granule spreading device according to claim 1, characterized in that: One side of the spiral plate (51) is fixedly connected to one side of the round rod (47), and a plurality of round rod T-shaped scrapers (53) are provided, and the plurality of round rod T-shaped scrapers (53) are evenly distributed on one side of the spiral plate (51).

3. The agricultural drone fertilizer granule spreading device according to claim 1, characterized in that: The material return mechanism (6) comprises a filter plate (61) and a fixing rod (615), the top of the filter plate (61) is fixedly connected to a hollow ring plate (62), one side of the inner wall of the hollow ring plate (62) is provided with a semi-ring hole (63), the inner wall of the hollow ring plate (62) is provided with a semi-ring hole (64) on a side away from the semi-ring hole (63), a ventilation plate (65) is fixedly connected to one side of the inner wall of the hollow ring plate (62), an oblique plate (66) is fixedly connected to one side of the inner wall of the hollow ring plate (62), a ventilation splint (67) is fixedly connected to one side of the hollow ring plate (62), and a ventilation splint (68) is fixedly connected to one side of the hollow ring plate (62). 8), a lifting plate (69) is provided on the side of the hollow ring plate (62) away from the ventilation splint (67), one side of the hollow ring plate (62) is connected to an air pipe (610), and one end of the air pipe (610) away from the hollow ring plate (62) is connected to an air pump (611), one side of the lifting plate (69) is fixedly connected to the moving end of the linear electric slide rail (612), the top of the hollow ring plate (62) is fixedly connected to a ring plate (613), a feeding hole (614) is opened on one side of the ring plate (613), one end of the fixed rod (615) is fixedly connected to a scraper (616), and the top of the scraper (616) is fixedly connected to a semi-ring baffle (617).

4. The agricultural drone fertilizer granule spreading device according to claim 3, characterized in that: The bottom of the filter plate (61) is fixedly connected to the top of the connecting ring plate (41), and the top of the ring plate (613) is fixedly connected to the inner wall of the housing (1).

5. The agricultural drone fertilizer granule spreading device according to claim 3, characterized in that: The side of the linear electric slide rail (612) away from the lifting plate (69) is fixedly connected to the inner wall of the shell (1), and the end of the fixing rod (615) away from the scraper (616) is fixedly connected to the round rod (47).

6. The agricultural drone fertilizer granule spreading device according to claim 3, characterized in that: One side of the filter plate (61) passes through the round rod (47) and is rotatably connected to the round rod (47), and the bottom of the air pump (611) is fixedly connected to the bottom of the inner wall of the housing (1).

Citation Information

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