Device for automatically digging holes and synchronously applying base fertilizer based on dendrobium planting
An automatic and dendrobium technology, applied in fertilization devices, planting methods, applications, etc., can solve the problems of waste of resources, poor mobility, low work efficiency, etc., and achieve the goal of simplifying the structure, increasing the controllability of operation, and ensuring stability Effect
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Embodiment 1
[0032] Embodiment 1, the present invention simplifies the structure of the mobile frame 1, and uses the hands and feet of the planter to carry out the operation of the mobile frame, wherein the hand holds the handle position of the mobile bracket 12 on the mobile The frame 1 is moved to the place to be punched, and the drill bit 3 is aligned with the punching position. One foot is on the stepping part of the motor bracket 11. When ready, the motor switch button on the control box 13 is activated, and the motor 2 starts to drive the drill bit. 3 works, and switch the control button of the air pump 14 on the control box 13 to slow down the inflation rate to the inflatable pad 4, and open the deflation valve 18 to deflate the air. At this time, the drill bit 3 starts to dig a hole and as the air volume in the inflatable pad 4 decreases, the bit 3 As the motor bracket 11 deflects downward relative to the moving bracket 12 to increase the depth of the digging hole, and the manpower ...
Embodiment 2
[0033] Then, when the digging reaches a certain level, the fertilizer in the hopper 4 can also be discharged into the digging hole through the discharge pipe 15. At this time, the controller can control the hopper 4 to automatically discharge and fertilize during the digging process. It is also possible to wait for the end of the digging to perform automatic fertilization, and the specific operation can be seen in Example 2;
[0034]Embodiment 2, in Embodiment 1, the present invention expounds the specific process of digging a pit, and briefly explains a variety of automatic fertilization methods; this embodiment pays attention to and fully describes the specific methods of automatic fertilization. In the invention, the air release valve 18 is opened to deflate the air cushion 6 at the beginning of digging, and the released gas is discharged into the hopper 4 to form a pressurized environment. At this time, the pressure value in the box is detected by the pressure sensing devic...
Embodiment 3
[0037] In the third embodiment, in order to enable the motor 2 and the hopper 4 in the above-mentioned first and second embodiments to always keep moving up and down in the vertical direction as the depth of the drilling pit increases, the present invention places the motor 2 and the hopper 4 at the connecting parts of the motor bracket respectively. , the shaft and the coil spring are added, and the telescopic cylinder 7 with the output end facing downward is set on one side of the motor 2. When the depth of the digging hole gradually increases, the controller 13 receives the deflation feedback from the air cushion 6 and then turns on the air pump 14. The control of the air supply of the telescopic cylinder 7 extends and touches the ground other than the digging position. Since the telescopic cylinder 7 is connected with the motor 2, the motor 2 is also It will maintain the level with the ground, that is, it will deflect relative to the motor bracket 11 under the action of the...
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