Greenhouse panax notoginseng harvester
A harvester and Panax notoginseng technology, applied to digging harvesters, harvesters, excavators, etc., to achieve the effects of small machine structure, improved root-soil separation method, and reduced surface damage
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Embodiment 1
[0023] Embodiment 1: as Figure 1-2 As shown, a greenhouse panax notoginseng harvester includes a frame 40, a transmission system, a walking system, an excavation system and a root-soil separation system. The soil separation system is behind the frame 40.
[0024] The transmission system is composed of a battery 1, a motor 2, a power output shaft 3, a pulley I4, a sprocket I5, a belt 6 and a transmission chain I7; the battery 1 is connected to the motor 2, and the pulley I4 and the sprocket I5 are connected to the power output On shaft 3, pulley I4 drives pulley II8 to rotate through belt 6 to provide power to the walking system, and sprocket I5 drives sprocket II27 to rotate through transmission chain I7 to provide power for the root-soil separation system.
[0025] Described walking system comprises guide rail traveling device and ground walking device, and guide rail traveling device comprises pulley II 8, track drive wheel 9, track driven wheel 10, front wheel drive shaft...
Embodiment 2
[0030] Embodiment 2: wherein the external structure of the adjustment screw 24 is fixed on the frame 40, the adjustment screw 24 is also provided with a rotating handle 25, and the rotation handle 25 drives the movement of the adjustment screw 24 up and down, and then drives and adjusts the screw 24 the support frame 22 fixed together moves up and down, and one end of the support frame 22 is welded together with the crossbeam 21, and the excavating shovel 20 is also welded together with the crossbeam 21, so the excavating shovel 20 also realizes its depth adjustment as it moves up and down , and the digging shovel 20 keeps the relative position of the shovel surface and the rotating roller 26 fixed during depth adjustment, that is, always keeps the digging shovel 20 and the root-soil separation system on the same plane, and solves the problem of the excavation shovel 20 and the root-soil separation system during depth adjustment. Convergence problem.
Embodiment 3
[0031] Embodiment 3: as Figure 4 As shown, the root-soil separation system uses five rotating rollers 26 rotating in the same direction, and also includes sprocket II27, sprocket III28, sprocket IV29, sprocket V30, sprocket VI31, sprocket VII32, sprocket VIII33, Sprocket IX34, sprocket X35, transmission chain II36, transmission chain III37, transmission chain IV38 and transmission chain V39; the power obtained by sprocket II27 is transmitted to sprocket IV29 through sprocket III28, transmission chain II36, and sprocket IV29 The power is transmitted to sprocket Ⅵ31 through sprocket Ⅴ30 and transmission chain Ⅲ37; the power obtained by sprocket Ⅱ27 is transmitted to sprocket Ⅷ33 through sprocket Ⅶ32 and transmission chain Ⅳ38, and the power obtained by sprocket Ⅷ33 is transmitted through sprocket Ⅸ34 and transmission chain Ⅴ39 to the sprocket wheel X35, thereby driving the rotating roller 26 to move in the same direction to achieve the root-soil separation effect. In addition ...
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