A peanut breeding multi-point double-sided automatic dibbler
By designing a multi-point, double-sided automatic seeder for peanut seed production, and utilizing an adjustable feeding structure and transmission components, the problems of seed drop and pipe blockage in existing technologies have been solved, achieving efficient control of seeding position and frequency.
Patent Information
- Application Number
- CN202510641199.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2045-05-19
AI Technical Summary
Existing peanut planters lack effective buffering and storage mechanisms when changing planting positions, leading to problems such as seed falling and pipe blockage.
A multi-point, double-sided automatic seeding device for flowering plants was designed, comprising a large storage rack, a small storage rack, a guiding component, a feeding component, a conveying component, a first seeding component, and a second seeding component. Through the adjustable guiding structure and the conveying component, temporary storage of seeds and control of seeding frequency can be achieved when the position is adjusted.
It effectively prevents seeds from falling out and pipes from clogging during positioning, meets the needs of different planting modes, and improves the accuracy and efficiency of sowing.
Smart Images

Figure CN120202790B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of seeding equipment, and particularly relates to a peanut breeding multi-point double-sided automatic point seeder. BACKGROUND
[0002] The peanut point seeder is a high-efficiency and convenient agricultural machine, which is specially designed for seeding in the process of peanut breeding; the peanut point seeder integrates a precise seed distribution, arrangement and delivery system, can accurately spread peanut seeds into the soil according to the preset row spacing, plant spacing and depth, greatly improves the precision and efficiency of seeding; at the same time, the peanut point seeder has compact structure, is easy to operate and maintain, and is one of indispensable seeding tools in modern agriculture. SUMMARY
[0003] In order to overcome the problem that, in the process of changing the seeding position of the peanut point seeder in the prior art, if the point seeder does not set an effective buffering and storage mechanism to temporarily store the seeds to be seeded, the seeds may fall off due to the untimely position adjustment, and the lack of the buffering mechanism also increases the risk of accumulation and blockage of the seeds in the pipeline.
[0004] The technical scheme of the present application is as follows: a peanut breeding multi-point double-side automatic dibbler, comprising a rack, a large storage rack, a small storage rack, a material guiding assembly, a material feeding assembly, a feeding assembly, a transmission assembly, a first seeding assembly and a second seeding assembly; the upper portion of the rack is provided with the large storage rack, one side of the rack is provided with the small storage rack, the inner side of the rack is provided with the material guiding assembly, the upper portion of the material guiding assembly is provided with the material feeding assembly, the lower portion of the material feeding assembly is provided with the feeding assembly, one side of the rack is provided with the transmission assembly, and the inner side of the rack is provided with the second seeding assembly; the material guiding assembly comprises a first motor, a threaded rod, a moving frame, a first material guiding pipe, a second material guiding pipe, a first material guiding frame, a third material guiding pipe and a second material guiding frame; one side of the rack is provided with the first motor, the output end of the first motor is provided with the threaded rod, the outer side of the threaded rod is provided with the moving frame, the moving frame is threadedly connected with the threaded rod, the lower portion of the moving frame is provided with the first material guiding pipe, the lower portion of the moving frame is provided with the second material guiding pipe, the lower portion of the second material guiding pipe is provided with the first material guiding frame, one side of the first material guiding frame is provided with the third material guiding pipe, and one end of the third material guiding pipe is provided with the second material guiding frame; the material feeding assembly comprises a material feeding pipe, a second motor, a first rotating shaft and a spiral frame; the upper portion of the second material guiding frame is provided with the material feeding pipe, one end of the material feeding pipe is provided with the second motor, the output end of the second motor is provided with the first rotating shaft, and the outer side of the first rotating shaft is provided with the spiral frame; the feeding assembly comprises a fourth material guiding frame and a feeding pipe; the lower portion of the material feeding pipe is provided with the fourth material guiding frame, and the lower portion of the fourth material guiding frame is provided with the feeding pipe.
[0005] Preferably, the peanut seeds are guided into the first seeding assembly through the large storage rack, the threaded rod is driven to rotate by starting the first motor, the moving frame is linearly moved by the rotation of the threaded rod, the positions of the first material guiding pipe and the second material guiding pipe are adjusted by the linear movement of the moving frame, when the position of the first material guiding pipe is moved to the lower portion of the first seeding assembly, the peanut seeds are discharged along the first material guiding pipe to the land for seeding, when it is necessary to change the seeding position, the second material guiding pipe is moved to the lower portion of the first seeding assembly, the peanut seeds are guided into the first material guiding frame along the second material guiding pipe, the peanut seeds on the first material guiding frame are guided into the second material guiding frame through the third material guiding pipe, the first rotating shaft is driven to rotate by starting the second motor, the spiral frame is driven to rotate by the rotation of the first rotating shaft, the peanut seeds in the second material guiding frame are lifted by the rotation of the spiral frame, and are discharged to the fourth material guiding frame from the slot structure on the side of the material feeding rack, and the peanut seeds are guided into the small storage rack through the feeding pipe, so that when the seeding position and the seeding frequency of the peanut seeds are adjusted, the seeds being seeded are prevented from falling and causing waste, and the seeds are prevented from accumulating in the seeding pipeline and causing blockage.
[0006] Preferably, the transmission assembly comprises a driving wheel and a first toothed belt; one side of the rack is provided with the driving wheel, the outer side of the driving wheel has a grid structure, one side of the driving wheel is provided with a first gear, and the driving wheel and the first toothed belt are connected through gear structure.
[0007] As preferred, the transmission assembly further comprises a first transmission gear and a second rotating shaft; the inner side of the first tooth belt is provided with the first transmission gear, the first transmission gear and the first tooth belt are in meshing connection, the first transmission gear and the inner side are provided with the second rotating shaft, and the second rotating shaft and the first transmission gear are in key groove connection.
[0008] As preferred, the transmission assembly further comprises a second transmission gear and a second tooth belt; one side of the frame is provided with the second tooth belt, the inner side of the second tooth belt is provided with the second transmission gear, the second transmission gear is provided with a plurality of groups, and the second transmission gear and the second tooth belt are in meshing connection.
[0009] As preferred, the first seeding assembly comprises a third rotating shaft and a first seeding frame; the inner side of the other second transmission gear is provided with the third rotating shaft, and the outer side of the third rotating shaft is provided with the first seeding frame.
[0010] As preferred, the first seeding assembly further comprises a material guiding wheel; the outer side of the third rotating shaft is provided with the material guiding wheel, and the material guiding wheel and the third rotating shaft are in key groove connection.
[0011] As preferred, the first seeding assembly further comprises a first material outlet pipe; the lower side of the first seeding frame is provided with the first material outlet pipe.
[0012] As preferred, the second seeding assembly comprises a fourth rotating shaft, a first bevel gear and a second bevel gear; the inner side of the other second transmission gear is provided with the fourth rotating shaft, the outer side of the fourth rotating shaft is provided with the first bevel gear, one side of the first bevel gear is provided with the second bevel gear, and the first bevel gear and the second bevel gear are in meshing connection.
[0013] As preferred, the second seeding assembly further comprises a fifth rotating shaft, a material guiding disc and a material outlet hole; the inner side of the second bevel gear is provided with the fifth rotating shaft, the inner side of the small material storage frame is provided with the material guiding disc, the material guiding disc and the fifth rotating shaft are in key groove connection, and the inner side of the material guiding disc is provided with the material outlet hole.
[0014] As preferred, the second seeding assembly further comprises a material outlet frame and a second material outlet pipe; one side of the small material storage frame is provided with the material outlet frame, and the lower side of the material outlet frame is provided with the second material outlet pipe.
[0015] The beneficial effects of the present application are as follows:
[0016] 1. Compared to existing peanut planters, if the planter lacks an effective buffering and storage mechanism to temporarily store the seeds to be planted during the replanting process, these seeds may fall due to untimely repositioning. Furthermore, the lack of a buffering mechanism increases the risk of seed accumulation and blockage within the pipes. This invention, through an adjustable feeding structure, allows for simultaneous planting at different locations, meeting the needs of various planting modes. When the replanting position needs to be changed, seeds can be temporarily stored to prevent them from falling and being wasted, while also avoiding the problem of seed accumulation and blockage within the planting pipes. Attached Figure Description
[0017] Fig. 1 The diagram shown is a first three-dimensional structural schematic of the multi-point double-sided automatic seeding device for flowering plants according to the present invention.
[0018] Fig. 2 The diagram shown is a second three-dimensional structural schematic of the multi-point double-sided automatic seeding device for flowering plants according to the present invention.
[0019] Fig. 3 The diagram shown is a third-dimensional structural schematic of the multi-point double-sided automatic seeder for flowering plants according to the present invention.
[0020] Fig. 4 The diagram shown is a schematic representation of the fourth three-dimensional structure of the multi-point double-sided automatic seeder for flowering plants according to the present invention.
[0021] Fig. 5 The diagram shown is a third-dimensional structural schematic of the multi-point double-sided automatic seeder for flowering plants according to the present invention.
[0022] Fig. 6 The diagram shown is a three-dimensional cross-sectional view of the multi-point, double-sided automatic seeder for flowering plants according to the present invention.
[0023] Explanation of reference numerals in the attached drawings: 1. Frame; 201. First motor; 202. Threaded rod; 203. Moving frame; 204. First guide pipe; 205. Second guide pipe; 206. First guide frame; 207. Third guide pipe; 208. Second guide frame; 301. Feeding pipe; 302. Second motor; 303. First rotating shaft; 304. Screw frame; 401. Fourth guide frame; 402. Feed pipe; 501. Drive wheel; 502. First toothed belt; 503. 504. First transmission gear; 505. Second rotating shaft; 506. Second transmission gear; 507. Second toothed belt; 608. Third rotating shaft; 609. First seeding rack; 6000. Guide wheel; 6001. First discharge pipe; 701. Fourth rotating shaft; 702. First bevel gear; 703. Second bevel gear; 704. Fifth rotating shaft; 705. Guide plate; 706. Discharge hole; 707. Discharge rack; 708. Second discharge pipe; 8. Large storage rack; 9. Small storage rack. Detailed Implementation
[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0025] Please see Figs. 1-2 This invention provides an embodiment of a multi-point, double-sided automatic seeder for flowering plants, comprising a frame 1, a large storage rack 8, a small storage rack 9, a guiding component, a feeding component, a conveying component, a transmission component, a first seeding component, and a second seeding component. The large storage rack 8 is located above the frame 1, and the small storage rack 9 is located on one side of the frame 1. The guiding component is located inside the frame 1, with the feeding component above and below it. The transmission component is located on one side of the frame 1, and the second seeding component is located inside the frame 1. The guiding component includes a first motor 201, a threaded rod 202, a moving frame 203, a first guiding pipe 204, a second guiding pipe 205, a first guiding frame 206, a third guiding pipe 207, and a second guiding frame 208. The first motor 201 is located on one side of the frame 1, with a threaded rod 202 at the output end of the first motor 201, and a moving frame 203 located outside the threaded rod 202. The movable frame 203 and the threaded rod 202 are threadedly connected. A first guide pipe 204 is provided below the movable frame 203, a second guide pipe 205 is provided below the movable frame 203, a first guide frame 206 is provided below the second guide pipe 205, a third guide pipe 207 is provided on one side of the first guide frame 206, and a second guide frame 208 is provided at one end of the third guide pipe 207. The feeding assembly includes a feeding pipe 301, a second motor 302, and a first rotating shaft 3. 03 and screw frame 304; a feeding pipe 301 is provided above the second guide frame 208, a second motor 302 is provided at one end of the feeding pipe 301, a first rotating shaft 303 is provided at the output end of the second motor 302, and a screw frame 304 is provided on the outside of the first rotating shaft 303; the feeding assembly includes a fourth guide frame 401 and a feeding pipe 402; a fourth guide frame 401 is provided below the feeding pipe 301, and a feeding pipe 402 is provided below the fourth guide frame 401.
[0026] Please see Figs. 3-4In the embodiment, the transmission assembly comprises the driving wheel 501 and the first toothed belt 502; one side of the frame 1 is provided with the driving wheel 501, the outer side of the driving wheel 501 is provided with a grid structure, one side of the driving wheel 501 is provided with the first gear, the driving wheel 501 and the first toothed belt 502 are connected through the gear structure, in use, when the device is driven by the agricultural walking equipment to move, the driving wheel 501 rotates along the ground with the movement of the equipment, the first toothed belt 502 rotates through the rotation of the driving wheel 501, the transmission assembly further comprises the first transmission gear 503 and the second rotating shaft 504; the inner side of the first toothed belt 502 is provided with the first transmission gear 503, the first transmission gear 503 and the first toothed belt 502 are connected, the first transmission gear 503 is provided with the second rotating shaft 504 on the inner side, the second rotating shaft 504 and the first transmission gear 503 are connected through the key groove, in use, the first transmission gear 503 rotates through the rotation of the first toothed belt 502, the second rotating shaft 504 rotates through the rotation of the first transmission gear 503, the transmission assembly further comprises the second transmission gear 505 and the second toothed belt 506; one side of the frame 1 is provided with the second toothed belt 506, the inner side of the second toothed belt 506 is provided with the second transmission gear 505, the second transmission gear 505 is provided with multiple groups, the second transmission gear 505 and the second toothed belt 506 are connected, in use, the second transmission gear 505 rotates through the rotation of the second rotating shaft 504, the second toothed belt 506 rotates through the rotation of the second transmission gear 505.
[0027] Please refer to Figs. 5-6In the embodiment, the first sowing assembly comprises a third rotating shaft 601 and a first sowing frame 602; the inner side of the second transmission gear 505 is provided with the third rotating shaft 601, and the outer side of the third rotating shaft 601 is provided with the first sowing frame 602; in use, the third rotating shaft 601 is driven to rotate by the second transmission gear 505, the first sowing assembly further comprises a material guiding wheel 603; the outer side of the third rotating shaft 601 is provided with the material guiding wheel 603, and the material guiding wheel 603 is connected with the third rotating shaft 601 in a key groove manner; in use, the material guiding wheel 603 is driven to rotate by the third rotating shaft 601, and the peanut seeds are guided at a certain frequency by the material guiding wheel 603, the first sowing assembly further comprises a first discharge pipe 604; the lower side of the first sowing frame 602 is provided with the first discharge pipe 604; in use, the peanut seeds guided out by the material guiding wheel 603 are discharged by the first discharge pipe 604, the second sowing assembly comprises a fourth rotating shaft 701, a first bevel gear 702 and a second bevel gear 703; the inner side of the second transmission gear 505 is provided with the fourth rotating shaft 701, the outer side of the fourth rotating shaft 701 is provided with the first bevel gear 702, one side of the first bevel gear 702 is provided with the second bevel gear 703, and the first bevel gear 702 and the second bevel gear 703 are connected in a meshing manner; in use, the fourth rotating shaft 701 is driven to rotate by the second transmission gear 505, the first bevel gear 702 is driven to rotate by the fourth rotating shaft 701, and the second bevel gear 703 is driven to rotate by the first bevel gear 702, the second sowing assembly further comprises a fifth rotating shaft 704, a material guiding disc 705 and a discharge hole 706; the inner side of the second bevel gear 703 is provided with the fifth rotating shaft 704, the inner side of the small storage frame 9 is provided with the material guiding disc 705, the material guiding disc 705 is connected with the fifth rotating shaft 704 in a key groove manner, and the inner side of the material guiding disc 705 is provided with the discharge hole 706; in use, the fifth rotating shaft 704 is driven to rotate by the second bevel gear 703, the material guiding disc 705 is driven to rotate by the fifth rotating shaft 704, and the position of the discharge hole 706 is rotated by the material guiding disc 705, when the discharge hole 706 and the slot hole structure on the side of the small storage frame 9 are aligned, the peanut seeds in the small storage frame 9 are discharged from the discharge hole 706, the second sowing assembly further comprises a discharge frame 707 and a second discharge pipe 708; one side of the small storage frame 9 is provided with the discharge frame 707, and the lower side of the discharge frame 707 is provided with the second discharge pipe 708; in use, the peanut seeds are discharged from the discharge hole 706 to the discharge frame 707, and are discharged to the ground by the second discharge pipe 708 below the discharge frame 707 for sowing.
[0028] When the device is moved by the agricultural walking equipment, the driving wheel 501 rotates along with the movement of the equipment, the first toothed belt 502 rotates driven by the driving wheel 501, the first transmission gear 503 rotates driven by the first toothed belt 502, the second transmission gear 505 rotates driven by the second rotating shaft 504, and the second toothed belt 506 rotates driven by the second transmission gear 505.
[0029] Meanwhile, the third rotating shaft 601 rotates driven by the second transmission gear 505, the material guiding wheel 603 rotates driven by the third rotating shaft 601, and the peanut seeds are guided and processed at a certain frequency by the material guiding wheel 603, and the peanut seeds guided out of the material guiding wheel 603 are discharged through the first discharge pipe 604.
[0030] Meanwhile, the threaded rod 202 rotates driven by the first motor 201, the moving frame 203 linearly moves driven by the threaded rod 202, the positions of the first material guiding pipe 204 and the second material guiding pipe 205 are adjusted by the linear movement of the moving frame 203, when the position of the first material guiding pipe 204 moves to the lower side of the first seeding assembly, the peanut seeds are discharged onto the land along the first material guiding pipe 204 for seeding, when it is needed to change the seeding position, the second material guiding pipe 205 is moved to the lower side of the first seeding assembly, the peanut seeds are guided into the first material guiding frame 206 along the second material guiding pipe 205, the peanut seeds on the first material guiding frame 206 are guided into the second material guiding frame 208 through the third material guiding pipe 207, the first rotating shaft 303 rotates driven by the second motor 302, the screw frame 304 rotates driven by the first rotating shaft 303, the peanut seeds in the second material guiding frame 208 are lifted and discharged to the fourth material guiding frame 401 through the slot structure on the side of the material guiding frame, and the peanut seeds are guided into the small material storage frame 9 through the feeding pipe 402.
[0031] Meanwhile, the fourth rotating shaft 701 rotates driven by the second transmission gear 505, the first bevel gear 702 rotates driven by the fourth rotating shaft 701, the second bevel gear 703 rotates driven by the first bevel gear 702, the fifth rotating shaft 704 rotates driven by the second bevel gear 703, the material guiding disc 705 rotates driven by the fifth rotating shaft 704, the position of the discharge hole 706 rotates driven by the material guiding disc 705, when the discharge hole 706 and the slot structure on the side of the small material storage frame 9 are aligned, the peanut seeds in the small material storage frame 9 are discharged from the discharge hole 706, the peanut seeds are discharged to the discharge frame 707 through the discharge hole 706, and the peanut seeds are discharged to the ground for seeding through the second discharge pipe 708 below the discharge frame 707.
[0032] Through the above steps, the peanut seeds are introduced into the first seeding assembly by the large storage rack 8, the threaded rod 202 is rotated by starting the first motor 201, the moving frame 203 is linearly moved by the rotation of the threaded rod 202, the positions of the first guide pipe 204 and the second guide pipe 205 are adjusted by the linear movement of the moving frame 203, when the position of the first guide pipe 204 is moved to the lower side of the first seeding assembly, the peanut seeds are discharged along the first guide pipe 204 to the land for seeding, when the seeding position needs to be changed, the second guide pipe 205 is moved to the lower side of the first seeding assembly, the peanut seeds are introduced into the first guide frame 206 along the second guide pipe 205, the peanut seeds on the first guide frame 206 are introduced into the second guide frame 208 by the third guide pipe 207, the first shaft 303 is rotated by starting the second motor 302, the spiral frame 304 is rotated by the rotation of the first shaft 303, the peanut seeds in the second guide frame 208 are lifted by the rotation of the spiral frame 304, and are discharged to the fourth guide frame 401 from the slot structure on the side of the feeding frame, the peanut seeds are introduced into the small storage rack 9 by the feeding pipe 402, so that when the peanut seed seeding position and the seeding frequency are adjusted, the seeds being seeded are prevented from falling and causing waste, and the seeds are prevented from accumulating in the seeding pipeline and causing blockage.
[0033] The embodiments of the present application are described in detail above with reference to the drawings, but the present application is not limited to the above-described embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the purpose of the present application.
Claims
1. A peanut breeding multi-point double-sided automatic dibbler, comprising a rack (1); characterized in that: It also includes a large storage rack (8), a small storage rack (9), a guide assembly, a feeding assembly, a feed assembly, a transmission assembly, a first seeding assembly, and a second seeding assembly; a large storage rack (8) is provided above the frame (1), a small storage rack (9) is provided on one side of the frame (1), a guide assembly is provided on the inner side of the frame (1), a feeding assembly is provided above the guide assembly, a feed assembly is provided below the feeding assembly, a transmission assembly is provided on one side of the frame (1), and a second seeding assembly is provided on the inner side of the frame (1); the guide assembly The frame includes a first motor (201), a threaded rod (202), a moving frame (203), a first guide tube (204), a second guide tube (205), a first guide frame (206), a third guide tube (207), and a second guide frame (208). The first motor (201) is provided on one side of the frame (1), and the output end of the first motor (201) is provided with a threaded rod (202). The moving frame (203) is provided on the outside of the threaded rod (202), and the moving frame (203) and the threaded rod (202) are threadedly connected. A first guide pipe (204) is provided below the movable frame (203), a second guide pipe (205) is provided below the movable frame (203), a first guide frame (206) is provided below the second guide pipe (205), a third guide pipe (207) is provided on one side of the first guide frame (206), and a second guide frame (208) is provided at one end of the third guide pipe (207); the feeding assembly includes a feeding pipe (301), a second motor (302), a first rotating shaft (303), and a screw frame (304). A feeding pipe (301) is provided above the second guide frame (208), a second motor (302) is provided at one end of the feeding pipe (301), a first rotating shaft (303) is provided at the output end of the second motor (302), and a screw frame (304) is provided on the outside of the first rotating shaft (303); the feeding assembly includes a fourth guide frame (401) and a feeding pipe (402); a fourth guide frame (401) is provided below the feeding pipe (301), and a feeding pipe (402) is provided below the fourth guide frame (401).
2. The automatic multi-point, double-sided seeding device for flowering plants according to claim 1, characterized in that: The transmission assembly includes a drive wheel (501) and a first toothed belt (502); a drive wheel (501) is provided on one side of the frame (1), the drive wheel (501) has a grid structure on the outside, a first gear is provided on one side of the drive wheel (501), and the drive wheel (501) and the first toothed belt (502) are meshed and connected through the gear structure.
3. The automatic multi-point, double-sided seeding device for flowering plants according to claim 2, characterized in that: The transmission assembly also includes a first transmission gear (503) and a second rotating shaft (504); the first transmission gear (503) is provided on the inner side of the first toothed belt (502), the first transmission gear (503) and the first toothed belt (502) are meshed and connected, the second rotating shaft (504) is provided on the inner side of the first transmission gear (503), and the second rotating shaft (504) and the first transmission gear (503) are connected by a keyway.
4. The automatic multi-point, double-sided seeding device for flowering plants according to claim 3, characterized in that: The transmission assembly also includes a second transmission gear (505) and a second toothed belt (506); a second toothed belt (506) is provided on one side of the frame (1), a second transmission gear (505) is provided on the inner side of the second toothed belt (506), and multiple sets of the second transmission gear (505) are provided, and the second transmission gear (505) and the second toothed belt (506) are meshed and connected.
5. The automatic multi-point, double-sided seeding device for flowering plants according to claim 4, characterized in that: The first sowing assembly includes a third rotating shaft (601) and a first sowing frame (602); the third rotating shaft (601) is disposed on the inner side of another second transmission gear (505), and the first sowing frame (602) is disposed on the outer side of the third rotating shaft (601).
6. The automatic multi-point, double-sided seeding device for flowering plants according to claim 5, characterized in that: The first seeding assembly also includes a guide wheel (603); the guide wheel (603) is provided on the outer side of the third rotating shaft (601), and the guide wheel (603) and the third rotating shaft (601) are connected by a keyway.
7. The automatic multi-point, double-sided seeding device for flowering plants according to claim 6, characterized in that: The first seeding assembly also includes a first discharge pipe (604); the first discharge pipe (604) is provided below the first seeding frame (602).
8. The automatic multi-point, double-sided seeding device for flowering plants according to claim 7, characterized in that: The second seeding assembly includes a fourth rotating shaft (701), a first bevel gear (702), and a second bevel gear (703); the fourth rotating shaft (701) is disposed on the inner side of another second transmission gear (505), the first bevel gear (702) is disposed on the outer side of the fourth rotating shaft (701), and the second bevel gear (703) is disposed on one side of the first bevel gear (702), and the first bevel gear (702) and the second bevel gear (703) are meshed together.
9. A multi-point, double-sided automatic seeding device for flowering plants according to claim 8, characterized in that: The second seeding assembly also includes a fifth rotating shaft (704), a guide plate (705), and a discharge hole (706); the fifth rotating shaft (704) is provided on the inner side of the second bevel gear (703), the guide plate (705) is provided on the inner side of the small storage rack (9), the guide plate (705) and the fifth rotating shaft (704) are connected by a keyway, and the discharge hole (706) is opened on the inner side of the guide plate (705).
10. A multi-point, double-sided automatic seeding device for flowering plants according to claim 9, characterized in that: The second seeding assembly also includes a discharge rack (707) and a second discharge pipe (708); the discharge rack (707) is provided on one side of the small storage rack (9), and the second discharge pipe (708) is provided below the discharge rack (707).
Citation Information
Patent Citations
Multi-point double-side automatic dibbler for peanut breeding
CN115735483A
Multi-point automatic dibbler for peanut breeding
CN118715941A