Compound gear box for ridging of miniature cultivator
A cultivator and gearbox technology, which is applied in the field of gearboxes, can solve problems such as the inability to maximize economic benefits, heavy and bloated machines, and uncertain safety, and achieve the effects of improved convenience, compact structure, and improved safety
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Embodiment 1
[0024] see Figure 1-3 , a compound gearbox for micro cultivator ridges, including a casing, the casing is a herringbone structure, the casing includes a left casing 1 and a right casing 2, and the left casing 1 and the right casing 2 They are connected by screw fitting, and the left casing 1 and the right casing 2 are connected by screw fitting, which is convenient for later disassembly and assembly of the left casing 1 and the right casing 2 for maintenance.
[0025]The casing is rotatably connected with a power input shaft 6 which is rotatably connected with an external engine, a second shaft 7 matched with the input shaft 6, a third shaft 9 with the power output function of beating, and a first shaft 9 matched with the input shaft 6. Four shafts 13, fifth shaft 17 matched with fourth shaft 13, sixth shaft 21 matched with fifth shaft 17, eighth shaft 27 with working power output function, seventh shaft with walking power output function 29. The first shift fork shaft 30 an...
Embodiment 2
[0027] This embodiment is a further elaboration on the basis of Embodiment 1. The fourth shaft 13 is sequentially sleeved with the second sliding gear 14 that cooperates with the shift fork 32 and the double shifting gear 5 from left to right. The matched fourth gear 15 and the fifth gear 16 matched with the double shift gear 5, the second sliding gear 14 is installed on the fourth shaft 13 through spline fit, the fourth gear 15 and the first The five gears 16 are all installed on the fourth shaft 13 through spline fit, and the fifth shaft 17 is sequentially sleeved with a double welded gear 18 matching with the second sliding gear 14, a sixth The gear 19 and the seventh gear 20, the double welded gear 18 and the fifth shaft 17 are connected through a needle bearing, and the sixth gear 19 and the seventh gear 20 are mounted on the second gear through a spline fit. On the five shafts 17, the sixth shaft 21 is provided with the eighth gear 22 matched with the second sliding gear...
Embodiment 3
[0029] This embodiment is a further elaboration on the basis of Embodiment 2. The left housing 1 is embedded with a parking pin 40 matching the eighth gear 22, and a flat washer is sleeved on the parking pin 40. 42 and the second spring 39 matched with the flat washer 42 and the left housing 1 respectively. The parking pin 40 is provided with an elastic cylindrical pin 41 matched with the flat washer 42. When the brake is applied, the parking pin is pulled by an external pull wire. Pin 40 cooperates with the eighth gear 22 to release the stay wire to release the brake.
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