Directional garlic seed throwing mechanism and control method of the same
11419259 ยท 2022-08-23
Assignee
Inventors
- Jingxin Shen (Shandong, CN)
- Yitian Sun (Shandong, CN)
- Yongjia Sun (Shandong, CN)
- Gang Chen (Shandong, CN)
- Qing Long Li (Shandong, CN)
- Xian Ying Feng (Shandong, CN)
- Jun Zhou (Shandong, CN)
- Peng Yan (Shandong, CN)
Cpc classification
A01C7/04
HUMAN NECESSITIES
A01C7/16
HUMAN NECESSITIES
A01C14/00
HUMAN NECESSITIES
International classification
A01C7/16
HUMAN NECESSITIES
A01C14/00
HUMAN NECESSITIES
A01C7/04
HUMAN NECESSITIES
Abstract
A directional garlic seed throwing mechanism includes a base, a rotating device, a vision sensor, a seed throwing guide plate, a seed guide pipe and a plurality of bulbil adjusting devices. The rotating device includes a rotating motor detachably connected to the base and a turntable connected to an output end of the rotating motor. The seed throwing guide plate is arranged on the turntable to enable garlic seeds of seed containing bowls to fall into the seed guide pipe. The seed guide pipe has an upper port right below the bulbil adjusting devices and arranged on the base. An even number of the bulbil adjusting devices are fixed on the turntable uniformly and symmetrically and include the seed containing bowls and bulbil direction control devices for driving the bowls to rotate 180 degrees.
Claims
1. A directional garlic seed throwing mechanism, comprising: a base, a rotating device, a vision sensor, a seed throwing guide plate, a seed guide pipe and a plurality of bulbil adjusting devices, wherein the rotating device comprises a rotating motor and a turntable; the rotating motor is detachably connected to the base; an output end of the rotating motor is connected with the turntable; an even number of the bulbil adjusting devices are provided and fixedly mounted on the turntable uniformly and symmetrically; the bulbil adjusting devices comprise seed containing bowls and bulbil direction control devices used for driving the seed containing bowls to rotate 180 degrees; an upper port of the seed guide pipe is located right below the bulbil adjusting devices and the seed guide pipe is arranged on the base; and the seed throwing guide plate is arranged on the base, such that garlic seeds in the seed containing bowls fall into the seed guide pipe.
2. The directional garlic seed throwing mechanism according to claim 1, wherein the bulbil direction control device comprises a cam device and a rotary guide device; the cam device comprises a cam, a sliding rod and a roller; a driving end of the sliding rod is provided with the roller that abuts against a curved surface of the cam; a resetting device for driving the roller on the sliding rod to abut against the cam is arranged on a mounting seat; the rotary guide device is arranged on the mounting seat and moves along a curve of a surface of the sliding rod to drive the sliding rod to rotate; one of the seed containing bowls is arranged above the resetting device and connected with the sliding rod; the directional garlic seed throwing mechanism further comprises an electromagnet for enabling operation of the cam device; the electromagnet is detachably connected below a support which is fixedly connected to the base; and a reinforcing plate is arranged between the support and the base.
3. The directional garlic seed throwing mechanism according to claim 2, wherein the rotary guide device comprises a fixed seat, a vertical rod and a cantilever shaft; the fixed seat is detachably connected with the turntable; two ends of the vertical rod are respectively connected with the fixed seat and the cantilever shaft; a bearing is mounted at a tail end of the cantilever shaft, and is matched with a guide groove, along the curve, on the surface of the sliding rod.
4. The directional garlic seed throwing mechanism according to claim 2, wherein the resetting device comprises a pressure spring, a linear bearing and a flange plate; the linear bearing is connected with a fixed seat of the rotary guide device, and is in sliding connection with the sliding rod; the flange plate is arranged at an upper end of the sliding rod and connected with a bottom portion of the one of the seed containing bowls; the pressure spring is disposed about the sliding rod; and one end of the pressure spring is in contact with the flange plate, and the other end of the pressure spring is in contact with the linear bearing.
5. The directional garlic seed throwing mechanism according to claim 2, further comprising a controller, wherein the controller is respectively connected with a touch display screen, the vision sensor, the electromagnets, the rotating motor and a speed sensor.
6. A control method of the directional garlic seed throwing mechanism according to claim 5, comprising following steps: (1) inputting a seed spacing of garlic sowing through a touch display screen; (2) pressing a confirm button to display a working interface by the touch display screen; (3) reading, by the controller, a speed detected by the speed sensor, and simultaneously calculating a rotating speed and an action time interval of the rotating motor according to the set seed spacing; (4) when the bulbil adjusting devices for receiving garlic seeds rotate to a position below a vision sensor, acquiring, by the vision sensor, garlic seed image information; (5) analyzing, by the controller, the garlic seed image information, and determining a garlic bulbil direction; (6) driving, by the rotating motor, the bulbil adjusting devices to rotate; (7) when the garlic bulbil direction is consistent with a desired direction, the electromagnets does not work, and when the garlic bulbil direction is opposite to the desired direction, controlling, by the controller, the electromagnets to operate such that the bulbil adjusting devices rotate 180 degrees to complete adjustment of the bulbil direction; and (8) driving, by the rotating motor, the bulbil adjusting devices to rotate to a seed throwing position, and driving the seed containing bowls to tilt under an action of the seed throwing guide plate to enable the garlic seeds to slide into the seed guide pipe under an action of gravity and then slide into an indenting tool having a duck-bill shape by keeping the bulbil direction upward under restriction of the seed guide pipe, and completing directional seed throwing.
7. The directional garlic seed throwing mechanism according to claim 1, wherein the seed throwing guide plate is welded and connected with the base, and a longitudinal central surface of the seed throwing guide plate faces a center of circle of the turntable and is tangential to rotation of the rotating motor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings provide further understandings of the present disclosure, and constitute one part of the description. The drawings are used for interpreting the present disclosure together with the embodiments of the present disclosure, not for limiting the present disclosure.
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DESCRIPTION OF THE EMBODIMENTS
(9) The preferred embodiments of the present disclosure will be explained in details below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are merely to illustrate and explain the present disclosure, not to limit the present disclosure.
(10) Referring to
(11) Referring to
(12) In the present embodiment, the seed throwing guide plate 11 is welded and connected with the base 6, and a longitudinal central surface of the seed throwing guide plate 11 faces the circle center of the turntable 3 and tangential to the rotation of the rotating motor 10.
(13) Referring to
(14) Referring to
(15) The controller 13 drives the rotating motor 10 to rotate through a PWM (Pulse Width Modulation) signal.
(16) A control method of a directional garlic seed throwing mechanism includes following steps.
(17) (1) A seed spacing of garlic sowing is input through a touch display screen 12.
(18) (2) A confirm button is pressed to display a working interface by the touch display screen 12;
(19) (3) The controller 13 reads a speed of the speed sensor 14, and simultaneously calculates a rotating speed and an action time interval of the rotating motor 10 according to the set seed spacing.
(20) (4) In a rotating process of the rotating motor 10, a position sensor 19 detects a position of a bulbil adjusting mechanism 16, wherein when the bulbil adjusting mechanism 16 is detected, the rotating motor 10 stops working, and at this moment, the bulbil adjusting devices for receiving garlic seeds rotate below a vision sensor 1, and the vision sensor 1 acquires garlic seed image information.
(21) (5) The controller 13 analyzes the garlic seed image information, and determines a garlic bulbil direction.
(22) (6) The rotating motor 10 drives the bulbil adjusting devices to rotate.
(23) (7) When the garlic bulbil direction is consistent with a desired direction, electromagnets does not work, and when the garlic bulbil direction is opposite to the desired direction, the controller controls the electromagnets 7 to operate such that the bulbil adjusting devices rotate 180 degrees to complete adjustment of the bulbil direction.
(24) (8) The rotating motor 10 drives the bulbil adjusting devices to rotate to a seed throwing position, and drives the seed containing bowls to tilt under an action of a seed throwing guide plate to enable the garlic seeds to slide into the seed guide pipe 5 under an action of the gravity and then slide into an indenting tool having a duck-bill shape by keeping the bulbil direction upward under the restriction of the seed guide pipe 5, thereby completing directional seed throwing.
(25) During the operation, the directional garlic seed throwing mechanism is mounted below a seed taking mechanism, and the garlic seeds taken out by the seed taking mechanism fall into a first bulbil adjusting mechanism 17. The rotating motor 10 drives the turntable to rotate 45 degrees. The vision sensor 1 acquires image information of the garlic seeds in the first bulbil adjusting mechanism 17, and uploads the image information to the controller 13. Meanwhile, the rotating motor 10 rotates 90 degrees to drive the first bulbil adjusting mechanism 17 to rotate to a position of a third bulbil adjusting mechanism 15. When the bulbil direction needs to be adjusted, the electromagnets 7 act to enable the first bulbil adjusting mechanism 17 to rotate 180 degrees to realize adjustment of the garlic bulbil direction. The rotating motor 10 rotates 90 degrees to drive the first bulbil adjusting mechanism 17 to rotate to a position of a fourth bulbil adjusting mechanism 16. Under the action of the guide plate 11, an upper part of the first bulbil adjusting mechanism 17 tilts, and the baffle plate 4 is opened to enable garlic bulbils to fall into the seed guide pipe 5 in an upward direction to complete directional seed throwing. In this process, the position sensor 19 detects the position of the fourth bulbil adjusting mechanism 16. When the fourth bulbil adjusting mechanism 16 is detected, the-rotating motor 10 stops the action.
(26) Finally, it should be noted that the above is only preferred embodiments of the present disclosure, and is not intended to limit the present disclosure. Although the present disclosure has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions disclosed in all the foregoing embodiments, or make equivalent substitutions to partial technical features thereof. Any modifications, equivalent substitutions, improvements and the like that are made without departing from the spirit and principle of the present disclosure shall all fall within the protection scope of the present disclosure.