Intelligent seed pelleting device
The design of the intelligent seed pelleting device solves the problems of poor atomization effect and low level of intelligence, improves the seed pelleting quality and the intelligence level of the equipment, and reduces equipment costs.
Patent Information
- Application Number
- CN202311270228.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-28
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2043-09-28
AI Technical Summary
Existing seed pelleting devices suffer from poor atomization, resulting in low seed pelleting quality. Furthermore, the equipment lacks a high level of intelligence, and imported equipment is expensive and difficult to replace parts.
An intelligent seed pelleting device was designed, including a control panel, an atomizing device, a pelleting turntable, a stirring paddle, a dust collection system, etc. By coordinating the control of airflow, rotation speed and feeding speed, seed suspension humidification and pelleting treatment are achieved. The device uses independently controlled pre-humidification nozzles and atomizing nozzles to adapt to different seed sizes and shapes, thereby improving processing efficiency and quality.
It has improved the quality of seed granulation, enhanced the atomization effect and the intelligence level of the equipment, reduced equipment costs, and simplified the problem of parts replacement.
Smart Images

Figure CN117099533B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of seed processing technology, and more specifically to an intelligent seed pelleting device. Background Technology
[0002] Seed pelleting is a new seed treatment technology developed to meet the needs of precision sowing, building upon existing seed coating technology. It employs a layered coating principle, using easily absorbent and non-corrosive fillers. With the seed at its core, multi-element micronutrient fertilizers, insecticides, fungicides, and drought-resistant water-absorbing agents are gradually mixed with non-toxic auxiliary fillers and evenly coated onto the seed surface under the action of a special binder. This process alters seed shape, increases seed volume, promotes seed germination and plant growth, and enhances seed resistance. Pelleted seeds can increase in size several times, even dozens of times, compared to the original seed size, and possess a certain compressive strength. This seed treatment technology facilitates mechanized sowing and long-distance transportation, minimizing the environmental pollution caused by chemical substances.
[0003] my country's seed pelleting technology started relatively late, and domestically produced pelleting equipment is immature, incomplete, and technologically backward. Existing seed pelleting devices suffer from problems such as low batch production capacity, uneven powder feeding, poor atomization effect, and low level of automation in actual production. Moreover, the pelleting equipment used in production is mainly imported, which not only results in high initial investment costs but also leads to difficulties in replacing equipment parts and inadequate supporting services. Summary of the Invention
[0004] The purpose of this invention is to provide an intelligent seed pelleting device to solve the problem of poor atomization effect during the seed pelleting process, which results in low seed pelleting quality.
[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0006] An intelligent seed pelleting device includes a body, control panel, hopper door, side door, storage hopper, dust collector fan, air inlet of a cooling fan, atomizing device, pelleting barrel, drive motor, controller, vortex fan, liquid supply pump, control solenoid valve, drain outlet A, drain outlet B, liquid supply port, air supply port, and power plug; the hopper door is located at the front of the body; the hopper door is connected to the front of the body via a slide rail; a side door is located on the side of the body; the control panel is suspended above the body; a feeding port is located at the top of the body; the bottom of the feeding port is connected to the storage hopper; the bottom of the storage hopper is connected to the discharge port; the bottom of the discharge port is connected to the pelleting barrel; the pelleting barrel is located at the top of the pelleting hopper; an observation window is located at the bottom of the pelleting hopper; an atomizing device is located at the top of the pelleting barrel; a pelleting barrel cover is located at the front of the pelleting barrel; a discharge device is located on the side of the bottom of the pelleting barrel; a first dust suction pipe is connected to the rear of the pelleting barrel; and a second dust suction pipe is connected to the top of the body. Two suction pipes; the first and second suction pipes are connected to a dust removal fan; the other end of the dust removal fan is connected to a dust removal port; a granulation turntable is located at the bottom of the granulation tank; a material suction port is located on the upper side wall of the granulation turntable; the material suction port is connected to a discharge device; the bottom of the granulation turntable is connected to a drive shaft; a driven turntable is connected to the bottom of the drive shaft; the driven turntable is connected to the drive turntable via a drive belt; the drive turntable is connected to a drive motor; a frequency converter is installed on the drive motor; a pre-humidification nozzle and an atomizing nozzle are respectively installed on the top of the granulation tank; the pre-humidification nozzle is located at the material discharge port of the storage tank; the atomizing nozzle is located in the middle of the granulation tank; an air inlet ring is reserved at the bottom of the granulation tank; the air inlet ring is annularly located at the bottom of the granulation turntable; the other end of the air inlet ring is connected to a vortex blower; the vortex blower is connected to the air inlet of a cold air blower via a cold air pipe; a control solenoid valve is connected next to the vortex blower; a power plug is located at the rear of the machine body.
[0007] Furthermore, the atomizing device is equipped with a mixing tank A and a mixing tank B respectively; the top of the mixing tank A and the mixing tank B are connected to a liquid supply pump; the other end of the liquid supply pump is connected to a liquid supply port; the bottom of the mixing tank A and the mixing tank B are respectively connected to atomizing pump A and atomizing pump B; atomizing pump A and atomizing pump B are respectively connected to a pre-humidification nozzle and an atomizing nozzle.
[0008] Furthermore, the granulation turntable has a concave pot bottom structure; multiple stirring paddles are symmetrically arranged inside the granulation turntable; the stirring paddles are connected to the fixing holes through stirring paddle bases; the stirring paddles have a spiral arc structure; and multiple fixing holes are arranged on the side wall of the granulation turntable.
[0009] Furthermore, the pre-humidification nozzle and the atomizing nozzle are connected and installed inside the granulation barrel via an atomizing connecting rod; the pre-humidification nozzle is horizontally arranged on the atomizing connecting rod; the pre-humidification nozzle faces the downward feed inlet; the bottom of the atomizing connecting rod is connected to the atomizing nozzle via a telescopic connecting rod; the atomizing nozzle is a rotating and movable structure; multiple atomizing nozzles are arranged on the surface of the atomizing nozzle.
[0010] Furthermore, a drainage plate is inclinedly installed inside the observation window; a gap is provided at the top of the drainage plate to connect to the bottom of the granulation tank; the end of the drainage plate is connected to drain outlet A and drain outlet B through a drain pipe.
[0011] Furthermore, a first dust suction pipe is connected to the rear of the granulation barrel; a second dust suction pipe is connected to the top of the machine body; the first and second dust suction pipes are connected to a dust removal fan; the other end of the dust removal fan is connected to a dust removal port; and exhaust valve A and exhaust valve B are respectively installed on the first and second dust suction pipes.
[0012] Furthermore, the control panel is connected via a control panel linkage; the control panel linkage has a two-section structure; a pivot A is provided in the middle of the control panel linkage; pivot A is connected to another section of the control panel linkage; the end of the control panel linkage is connected to the top of the machine body via a pivot B.
[0013] Compared with the prior art, the present invention can achieve one of the following beneficial effects:
[0014] 1. A hopper door is located at the front of the machine body; the hopper door is connected to the front of the machine body via a sliding rail; a side door is located on the side of the machine body; a control panel is suspended on the upper part of the machine body; a feeding port is located on the top of the machine body; a storage tank is connected to the bottom of the feeding port; a discharge port is located at the bottom of the storage tank; a granulation tank is connected to the bottom of the discharge port; the granulation tank is located on the top of the granulation chamber; an observation window is located at the bottom of the granulation chamber; an atomizing device is installed at the inside of the observation window; an atomizing device is located on the top of the granulation tank; a granulation tank cover is installed at the front of the granulation tank; a discharge device is located on the bottom side of the granulation tank; a first dust suction pipe is connected to the rear of the granulation tank; the machine body A second suction pipe is connected to the top; the first and second suction pipes are connected to a dust removal fan; the other end of the dust removal fan is connected to a dust removal port; a granulation turntable is located at the bottom of the granulation tank; a material suction port is located on the upper side wall of the granulation turntable; the material suction port is connected to a discharge device; a drive shaft is connected to the bottom of the granulation turntable; a driven turntable is connected to the bottom of the drive shaft; the driven turntable is connected to the drive turntable via a drive belt; the drive turntable is connected to a drive motor; a frequency converter is installed on the drive motor; a pre-humidification nozzle and an atomizing nozzle are respectively installed on the top of the granulation tank; the pre-humidification nozzle... The atomizing nozzle is located at the feed inlet of the storage hopper; the atomizing nozzle is located in the middle of the granulation hopper; an air inlet ring is pre-installed at the bottom of the granulation hopper; the air inlet ring is annularly positioned at the bottom of the granulation turntable; the other end of the air inlet ring is connected to a vortex blower; the vortex blower is connected to the air inlet of a cold air blower via a cold air pipe; a control solenoid valve is connected next to the vortex blower; a power plug is located at the rear of the machine body, enabling the feeding of seed granules into the storage hopper through the feed inlet at the bottom of the storage hopper, with the feed evenly supplied to the granulation hopper. Before this step, the air inlet of the cold air blower is connected to the vortex blower to supply air to the granulation hopper. A constant, uniformly blowing cold airflow from the bottom suspends the seeds fed into the granulation tank. An atomizing device then humidifies and granulates the suspended seeds. A controller and frequency converter gradually reduce the speed of the vortex blower and granulation turntable, causing the granulated seeds to fall back into the turntable. Finally, the seeds are extracted from the storage tank's discharge port, completing the entire granulation process. Throughout this process, multiple controls work together to optimize airflow, rotation speed, and feeding rate, ensuring high-quality seed granulation.
[0015] 2. The atomizing device is equipped with a mixing storage tank A and a mixing storage tank B. The top of the mixing storage tank A and the mixing storage tank B are connected to a liquid supply pump. The other end of the liquid supply pump is connected to a liquid supply port. The bottom of the mixing storage tank A and the mixing storage tank B are respectively connected to atomizing pump A and atomizing pump B. Atomizing pump A and atomizing pump B are respectively connected to a pre-humidification nozzle and an atomizing nozzle. The two pre-humidification nozzles and atomizing nozzles can be independently controlled and the spray volume of the pre-humidification nozzles and atomizing nozzles can be independently adjusted according to actual operation needs, thereby further improving the efficiency of seed granulation processing.
[0016] 3. The granulation turntable has a concave pot-bottom structure; multiple stirring paddles are symmetrically arranged inside the granulation turntable; the stirring paddles are connected to the fixing holes via stirring paddle bases; the stirring paddles have a spiral arc structure; multiple fixing holes are arranged on the side wall of the granulation turntable, which allows for convenient adjustment of the spacing and number of stirring paddles, improving stirring efficiency. Furthermore, the spacing and angle of the stirring paddles can be appropriately adjusted according to the size and shape of different seeds, thus improving the seed granulation quality during the granulation process.
[0017] 4. The pre-humidification nozzle and the atomizing nozzle are connected and installed inside the granulation tank via an atomizing connecting rod; the pre-humidification nozzle is horizontally arranged on the atomizing connecting rod; the pre-humidification nozzle faces the downward feed inlet; the bottom of the atomizing connecting rod is connected to the atomizing nozzle via a telescopic connecting rod; the atomizing nozzle has a rotating and movable structure; multiple atomizing nozzles are arranged on the surface of the atomizing nozzle, which can achieve the pre-humidification treatment of the seed particles fed from the downward feed inlet by the separately arranged pre-humidification nozzle and the atomizing nozzle, thereby increasing the moisture content of the seed surface, and then the seed particles suspended in the granulation tank are granulated by the uniformly rotating atomizing nozzle, thereby improving the granulation quality and efficiency. The telescopic connecting rod with a telescopic structure can adjust the atomization spray height according to different types of seeds, which is beneficial to processing.
[0018] 5. A drainage plate is inclinedly installed inside the observation window; a gap is provided at the top of the drainage plate to connect to the bottom of the granulation tank; the end of the drainage plate is connected to drain outlet A and drain outlet B through a drain pipe, which can filter out and discharge excess water generated during granulation processing in the granulation tank through the drainage plate.
[0019] 6. The rear of the granulation tank is connected to a first dust suction pipe; a second dust suction pipe is connected to the top of the machine body; the first and second dust suction pipes are connected to a dust removal fan; the other end of the dust removal fan is connected to a dust removal port; exhaust valve A and exhaust valve B are respectively installed on the first and second dust suction pipes, which can realize the removal of dust pollution in the granulation tank and granulation chamber through the first and second dust suction pipes respectively, thereby improving the cleanliness of the operating equipment.
[0020] 7. The control panel is connected via a control panel linkage; the control panel linkage has a two-section structure; a pivot A is provided in the middle of the control panel linkage; pivot A is connected to the other section of the control panel linkage; the end of the control panel linkage is connected to the top of the machine body via a pivot B, which enables the control panel to be easily moved by the universal structure of the control panel linkage, improving the convenience of operation. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of the present invention.
[0022] Figure 2This is a schematic diagram of the cross-sectional structure of the back of the present invention.
[0023] Figure 3 This is a schematic diagram of the front structure of the present invention.
[0024] Figure 4 This is a schematic diagram of the rear structure of the present invention.
[0025] Figure 5 This is a schematic diagram of the granulation barrel structure of the present invention.
[0026] Figure 6 This is a schematic diagram of the granulation turntable structure of the present invention.
[0027] Figure 7 This is a schematic diagram of the atomizing nozzle structure of the present invention. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0029] Example 1
[0030] An intelligent seed pelleting device includes a body 1, a control panel 2, a hopper door 3, a side door 4, a storage bin 5, a dust removal fan 6, a cool air inlet 7, an atomizing device 8, a pelleting bin 9, a drive motor 10, a controller 11, a vortex fan 12, a liquid supply pump 13, a control solenoid valve 14, a drain outlet A 15, a drain outlet B 16, a liquid supply port 17, an air supply port 18, and a power plug 19; the hopper door 3 is located at the front of the body 1; the hopper door 3 is connected to the front of the body 1 via a slide rail 301; a side door 4 is located on the side of the body 1; the control panel 2 is suspended above the body 1; the body... The top of the machine body 1 is equipped with a feeding port 501; the bottom of the feeding port 501 is connected to a storage tank 5; the bottom of the storage tank 5 is equipped with a discharge port 502; the bottom of the discharge port 502 is connected to a granulation tank 9; the granulation tank 9 is located on top of the granulation chamber 102; the bottom of the granulation chamber 102 is equipped with an observation window 101; a drainage plate 108 is inclinedly installed inside the observation window 101; the top of the granulation tank 9 is equipped with an atomizing device 8; the front of the granulation tank 9 is equipped with a granulation tank cover 901 that flips over; the bottom side of the granulation tank 9 is equipped with a discharge device 902; the rear of the granulation tank 9 is connected to a first dust suction pipe 601; the top of the machine body 1 is connected to a second dust suction pipe 601. Suction pipe 603; First suction pipe 601 and second suction pipe 603 are connected to dust removal fan 6; the other end of dust removal fan 6 is connected to dust removal port 605; granulation drum 9 is provided with granulation turntable 903 at the bottom; suction port 904 is provided on the upper side wall of granulation turntable 903; suction port 904 is connected to discharge device 902; bottom of granulation turntable 903 is connected to drive shaft 107; driven turntable 106 is connected to bottom of drive shaft 107; driven turntable 106 is connected to drive turntable 104 via drive belt 105; drive turntable 104 is connected to drive shaft 107. The drive motor 10 is equipped with a frequency converter 103; the top of the granulation tank 9 is equipped with a pre-humidification nozzle 806 and an atomizing nozzle 807; the pre-humidification nozzle 806 is located at the material discharge port 502 of the storage tank; the atomizing nozzle 807 is located in the middle of the granulation tank 9; an air inlet ring 905 is reserved at the bottom of the granulation tank 9; the air inlet ring 905 is arranged in a ring at the bottom of the granulation turntable 903; the other end of the air inlet ring 905 is connected to the vortex blower 12; the vortex blower 12 is connected to the air inlet 7 of the cold air blower through the cold air pipe 701; a control solenoid valve 14 is connected next to the vortex blower 12.A power plug 19 is located at the rear of the machine body 1. The machine allows for the feeding of seeds into a storage bin via a feeding port at the bottom of the storage bin. Before this step, a constant flow of cold air is uniformly blown from the bottom of the granulation bin through a vortex blower connected to a cold air blower inlet, suspending the seeds within. An atomizing device then humidifies and granulates the suspended seeds. A controller and frequency converter gradually reduce the speed of the vortex blower and granulation disc, causing the granulated seeds to fall into the granulation disc. Finally, the feeding port 502 of the storage bin extracts the granulated seeds, completing the entire granulation process. Throughout this process, multiple controls work together to optimize airflow, speed, and feeding rate, ensuring high-quality seed granulation.
[0031] Example 2
[0032] Based on Example 1, the atomizing device 8 is equipped with a mixing storage tank A801 and a mixing storage tank B803. The top of the mixing storage tank A801 and the mixing storage tank B803 are connected to a liquid supply pump 13. The other end of the liquid supply pump 13 is connected to a liquid supply port 17. The bottom of the mixing storage tank A801 and the mixing storage tank B803 are connected to an atomizing pump A802 and an atomizing pump B804, respectively. The atomizing pump A802 and the atomizing pump B804 are connected to a pre-humidification nozzle 806 and an atomizing nozzle 807, respectively. This allows for independent control of the two pre-humidification nozzles and the atomizing nozzles. The spray volume of the pre-humidification nozzles and the atomizing nozzles can be adjusted independently according to actual operating needs, further improving the efficiency of seed granulation processing.
[0033] Example 3
[0034] Based on Example 1, the granulation turntable 903 has a concave pot-bottom structure; multiple stirring paddles 9031 are symmetrically arranged inside the granulation turntable 903; the stirring paddles 9031 are connected to the fixing holes 9033 through stirring paddle bases 9032; the stirring paddles 9031 have a spiral arc structure; multiple fixing holes 9033 are arranged on the side wall of the granulation turntable 903, which can facilitate the adjustment of the gap and number of stirring paddles through the multiple stirring paddle fixing holes, improve stirring efficiency, and appropriately adjust the spacing and angle of the stirring paddles according to the size and shape of different seeds, thereby improving the seed granulation quality during the granulation process.
[0035] Example 4
[0036] Based on Example 1, the pre-humidification nozzle 806 and the atomizing nozzle 807 are connected and installed inside the granulation barrel 9 via an atomizing connecting rod 805; the pre-humidification nozzle 806 is horizontally arranged on the atomizing connecting rod 805; the pre-humidification nozzle 806 is aligned with the downward feed inlet 502; the bottom of the atomizing connecting rod 805 is connected to the atomizing nozzle 807 via a telescopic connecting rod; the atomizing nozzle 807 is a rotating and movable structure; multiple atomizing nozzles 809 are arranged on the surface of the atomizing nozzle 807, which enables the pre-humidification treatment of the seed particles fed from the downward feed inlet using the separately arranged pre-humidification nozzle and the atomizing nozzle, thereby increasing the moisture content of the seed surface. Then, the seed particles suspended in the granulation barrel are granulated by the uniformly rotating atomizing nozzles, improving the granulation quality and efficiency. The telescopic connecting rod with a telescopic structure can adjust the atomization spray height according to different types of seeds, which is beneficial for processing.
[0037] Example 5
[0038] Based on Example 1, a drainage plate 108 is inclinedly arranged inside the observation window 101; the top of the drainage plate 108 is provided with a gap connecting to the bottom of the granulation tank 9; the end of the drainage plate 108 is connected to the drain outlet A15 and the drain outlet B16 through the drain pipe 109, which can filter out and discharge the excess water generated during the granulation process in the granulation tank through the drainage plate.
[0039] Example 6
[0040] Based on Example 1, the rear of the granulation tank 9 is connected to a first dust suction pipe 601; the top of the machine body 1 is connected to a second dust suction pipe 603; the first dust suction pipe 601 and the second dust suction pipe 603 are connected to a dust removal fan 6; the other end of the dust removal fan 6 is connected to a dust removal port 605; the first dust suction pipe 601 and the second dust suction pipe 603 are respectively equipped with an exhaust valve A602 and an exhaust valve B604, which can realize the removal of dust pollution in the granulation tank and the granulation chamber through the first dust suction pipe and the second dust suction pipe respectively, thereby improving the cleanliness of the operating equipment.
[0041] Example 7
[0042] Based on Embodiment 1, the control panel 2 is connected via a control panel link 201; the control panel link 201 has a two-section structure; a pivot A202 is provided in the middle of the control panel link 201; the pivot A202 is connected to the other section of the control panel link 201; the end of the control panel link 201 is connected to the top of the body 1 via a pivot B203, which enables the control panel to be moved easily by the universal structure of the control panel link, improving the convenience of operation.
[0043] Although the invention has been described herein with reference to several illustrative embodiments, it should be understood that many other modifications and implementations can be devised by those skilled in the art, which will fall within the scope and spirit of the principles disclosed herein. More specifically, various variations and modifications can be made to the components and / or layout of the subject matter arrangement within the scope of the disclosure, drawings, and claims. Besides variations and modifications to the components and / or layout, other uses will be apparent to those skilled in the art.
Claims
1. An intelligent seed pelleting device, characterized in that: The machine includes a main body (1), a control panel (2), a bin door (3), a side door (4), a storage bin (5), a dust removal fan (6), a cold air inlet (7), an atomizing device (8), a granulation bin (9), a drive motor (10), a controller (11), a vortex fan (12), a liquid supply pump (13), a control solenoid valve (14), a drain outlet A (15), a drain outlet B (16), a liquid supply port (17), an air supply port (18), and a power plug (19). The main body (1) has a bin door (3) at the front. The bin door (3) is connected to the front of the main body (1) via a slide rail (301). The main body (1) has a side door (4) on its side. The main body (1) has a control panel (2) suspended on its upper part. The main body (1) has a feeding port (501) on its top. The bottom of the feeding port (501) is connected to the storage tank (5); the bottom of the storage tank (5) is provided with the discharge port (502); the bottom of the discharge port (502) is connected to the granulation tank (9); the granulation tank (9) is located on the top of the granulation chamber (102); the bottom of the granulation chamber (102) is provided with the observation window (101); a drainage plate (108) is inclinedly provided inside the observation window (101); the top of the granulation tank (9) is provided with the atomizing device (8); the front of the granulation tank (9) is provided with the granulation tank cover (901); the bottom side of the granulation tank (9) is provided with the discharge device (902); the rear of the granulation tank (9) is connected to the first dust suction pipe (601); the top of the machine body (1) is connected to the second dust suction pipe (603); the first dust suction pipe (601) and the second dust suction pipe (603) A dust removal fan (6) is connected to the other end of the dust removal fan (6); a dust removal port (605) is connected to the other end of the dust removal fan (6); a granulation turntable (903) is provided at the bottom of the granulation tank (9); a suction port (904) is provided on the upper side wall of the granulation turntable (903); the suction port (904) is connected to the discharge device (902); the bottom of the granulation turntable (903) is connected to the drive shaft (107); a driven turntable (106) is connected to the bottom of the drive shaft (107); the driven turntable (106) is connected to the drive turntable (104) through a drive belt (105); A drive turntable (104) is connected to a drive motor (10); a frequency converter (103) is installed on the drive motor (10); a pre-humidification nozzle (806) and an atomizing nozzle (807) are respectively installed on the top of the granulation tank (9); the pre-humidification nozzle (806) is installed at the material discharge port (502) of the storage tank; the atomizing nozzle (807) is installed in the middle of the granulation tank (9); an air inlet ring (905) is reserved at the bottom of the granulation tank (9); the air inlet ring (905) is arranged in a ring at the bottom of the granulation turntable (903); the other end of the air inlet ring (905) is connected to a vortex blower (12); the vortex blower (12) is connected to the air inlet (7) of the cold air blower through the cold air pipe (701); a control solenoid valve (14) is connected next to the vortex blower (12); a power plug (19) is installed at the rear of the machine body (1).The atomizing device (8) is equipped with a mixing tank A (801) and a mixing tank B (803) respectively; the top of the mixing tank A (801) and the mixing tank B (803) are connected to a liquid supply pump (13); the other end of the liquid supply pump (13) is connected to a liquid supply port (17); the bottom of the mixing tank A (801) and the mixing tank B (803) are connected to an atomizing pump A (802) and an atomizing pump B (804) respectively; the atomizing pump A (802) and the atomizing pump B (804) are connected to a pre-humidifier. The granulation rotary table (903) is equipped with a pre-humidification nozzle (806) and an atomizing nozzle (807); the granulation rotary table (903) has a concave pot bottom structure; multiple stirring paddles (9031) are symmetrically arranged inside the granulation rotary table (903); the stirring paddles (9031) are connected to the fixing holes (9033) through stirring paddle bases (9032); the stirring paddles (9031) have a spiral arc structure; multiple fixing holes (9033) are arranged on the side wall of the granulation rotary table (903); the pre-humidification nozzle (806) and the atomizing nozzle (807) are equipped with a pre-humidification nozzle (806) and an atomizing nozzle (807). The nozzle (807) is connected to the granulation tank (9) via an atomizing connecting rod (805); a pre-humidification nozzle (806) is horizontally arranged on the atomizing connecting rod (805); the pre-humidification nozzle (806) is opposite to the downward feed port (502); the bottom of the atomizing connecting rod (805) is connected to the atomizing nozzle (807) via a telescopic connecting rod; the atomizing nozzle (807) is a rotating and movable structure; multiple atomizing nozzles (809) are arranged on the surface of the atomizing nozzle (807); the observation window (101) is inclined. A drainage plate (108) is provided; a gap is provided at the top of the drainage plate (108) to connect to the bottom of the granulation tank (9); the end of the drainage plate (108) is connected to drain outlet A (15) and drain outlet B (16) through a drain pipe (109); the rear of the granulation tank (9) is connected to a first dust suction pipe (601); the other end of the dust removal fan (6) is connected to a dust removal port (605); exhaust valve A (602) and exhaust valve B (604) are respectively provided on the first dust suction pipe (601) and the second dust suction pipe (603).
2. The intelligent seed pelleting device according to claim 1, characterized in that: The control panel (2) is connected by a control panel link (201); the control panel link (201) is a two-section structure; a pivot A (202) is provided in the middle of the control panel link (201); the pivot A (202) is connected to another section of the control panel link (201); the end of the control panel link (201) is connected to the top of the body (1) by a pivot B (203).
Citation Information
Patent Citations
Intelligent seed granulating device
CN114600591A
Atomizing device for seed coating agent
CN217564063U
Intelligent seed pelleting device
CN221264415U