An agricultural seed storage device
A storage device and a technology for agricultural seeds, which are applied in fruit hanging devices, agricultural machinery and tools, gardening, etc., can solve the problems of moisture-prone germination, unfavorable seed storage, and unfavorable improvement of seed air permeability, etc., to achieve smooth mesh and good The effect of ventilated and dry storage and the effect of simultaneous realization of efficient seed selection for dry storage of seeds
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Embodiment 1
[0029] see Figure 1-8 , an agricultural seed storage device, comprising a support frame 1, the upper cover of the support frame 1 is provided with a sealing cover 2, the side wall of the sealing cover 2 is provided with a ventilation strip hole 32, and the support frame 1 is installed with a vertical frame in the sealing cover 2 15. The vertical frame 15 is provided with a transmission sleeve 12 that is driven and rotated by a driving mechanism. The transmission sleeve 12 is extended with an air intake pipe 3, the air intake pipe 3 is filled with hot air, and the side wall of the air intake pipe 3 is installed with a through transmission sleeve. At least one pair of extension pipes 18 on the side walls of 12, the extension pipes 18 are all sleeved with a rotating mesh barrel 17, and a transmission mechanism is installed between the rotating mesh barrel 17 and the extension pipe 18, and the transmission sleeve 12 is driven when the transmission sleeve 12 rotates. The mechanism...
Embodiment 2
[0035]On the basis of Embodiment 1, in addition, the device is also provided with an elastic pushing mechanism, including a fixed sleeve plate 19 that is fixedly sleeved on the transmission sleeve 12, and a push sleeve plate is reciprocally slidably installed on the transmission sleeve 12. 21. A spring ring 20 is connected between the thrust sleeve plate 21 and the fixed sleeve plate 19, and a transmission rod 23 is hinged between the thrust sleeve plate 21 and the ring plate 6.
[0036] The elastic pushing mechanism also includes a bevel gear IV16 and a bevel gear I8 inside the gear box 24. The bevel gear I8 is coaxially connected to the output shaft of the servo motor 10, and the bevel gear IV16 is drivingly connected to abutting the push sleeve plate 21. cam 22.
[0037] Through the above arrangement, while the transmission sleeve 12 is driven to rotate by the driving mechanism, the servo motor 10 drives the bevel gear I8 to rotate, the bevel gear I8 drives the bevel gear I...
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