A high-efficiency fertilizing device for forage planting
A fertilization device and feed technology, which is applied in fertilization devices, fertilizer distributors, agriculture, etc., can solve the problems of affecting the efficiency of fertilization and feeding, mud mixed into the trough, etc., and achieve the effect of accelerating folding deformation and increasing traction power
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Embodiment 1
[0031] as attached figure 1 to the attached Figure 7 shown:
[0032] The present invention provides a high-efficiency fertilizing device for forage forage planting. At the lower position, the lower end of the fertilization device 3 passes through the bottom of the push frame 1, the motor 4 is connected and movably cooperated with the transmission belt 5, the motor 4 is located on the side of the fertilization device 3 and cooperates, and the moving wheel 6 is movable Connected to the left and right sides of the push frame 1.
[0033] The fertilizing device 3 is provided with a hopper 31, a feeding trough 32, and a feeding device 33. The feeding hopper 31 and the feeding trough 32 are of an integrated structure and are arranged at the top of the hopper 31. The feeding device 33 is embedded and connected to the feeding device. The bottom of the groove 32 communicates with each other inside.
[0034] The unloading device 33 is provided with a cone cavity 331, a guide rail 33...
Embodiment 2
[0041] as attached Figure 8 to the attached Figure 9 shown:
[0042] Wherein, the lower plate a34 is provided with a plate body t1, an air flow port t2, an engaging frame t3, and a rolling ball t4. The air flow port t2 and the plate body t1 are of an integrated structure and are arranged through and through. The end is slidably connected to the inner side of the air flow port t2, the rolling ball t4 moves inside the plate body t1, the front end of the engaging frame t3 moves outside the lower end surface of the plate body t1, the engaging frame t3 is provided with three places, the rolling There are four balls t4, the interior of the plate body t1 is in a cavity state, and the engaging frame t3 slides with the force, which is convenient to make the air flow port t2 in a transparent state, so that the air flow can be circulated by the rolling ball t4. The plate body t1 moves, and a collision force is generated inside it to prevent mud from adhering to the outside of the end...
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