High-efficient stable output air motor
An air motor and stable output technology, applied in the direction of engine components, variable displacement engines, machines/engines, etc., can solve the problems of low working efficiency, low energy utilization rate, and energy waste of air motors, and achieve simple and practical structure, improve Efficiency, creative unique effect
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Embodiment 1
[0023] Such as figure 1 , figure 2 , image 3 As shown, a high-efficiency and stable output air motor includes a cylinder 2, a piston 3, a connecting rod 4 and a crankshaft 5, the crankshaft 5 is provided with a crank 6, one end of the above-mentioned connecting rod 4 is connected to the piston 3, and the other end is connected to the Above crank 6, the piston 3 is arranged in the cylinder 2, and the crankshaft 5 is provided with an overrunning clutch (not shown) for limiting the rotation direction of the power output end, and the crankshaft 5 is the power output end.
[0024] Such as figure 1 , figure 2 , image 3 As shown, the above-mentioned cylinder 2 is provided with two high-pressure air ports, which are respectively the first high-pressure air port 21 and the second high-pressure air port 22; the above-mentioned cylinder 2 is provided with a detection and adjustment device 7 for detecting the intake air volume of the cylinder 2; the above-mentioned The air motor ...
Embodiment 2
[0028] Such as Figure 4 As shown, compared with Embodiment 1, the biggest difference of this embodiment is that it includes four groups of power mechanisms and power output shafts 1 distributed on the same circumferential plane, the power output shaft 1 is the power output end, and the power output shaft 1 set is provided with an output shaft gear 11, and the crankshaft 5 sets on each set of power mechanisms are provided with a crankshaft gear 51 for one-way transmission. The kinetic energy acts uniformly on the above-mentioned power output shaft 1, so that the power output shaft 1 continuously and efficiently outputs kinetic energy to the outside, so that the kinetic energy of the high-pressure gas can be fully utilized. Other structures and principles are the same as in the first embodiment , will not be repeated here.
Embodiment 3
[0030] Such as Figure 5 Shown: Compared with Embodiment 2, the biggest difference of this embodiment is that it includes eight groups of power mechanisms and power output shafts 1, wherein every four groups of power mechanisms are distributed on the same circumferential plane, and the power mechanisms on two circumferential planes Cooperate on the power output shaft 1; other structures and implementation principles are the same as those in Embodiment 2, and will not be repeated here.
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