Self-balancing elevator for smart cities
A self-balancing and elevator technology, which is applied to elevators in buildings, household heating, lifting equipment in mines, etc. It can solve problems such as multiple traction ropes or guide rails with different pressures, elevator center of gravity deviation, and affecting safety performance. , to achieve the effect of promoting communication with the outside world, reducing the difficulty of layout, and improving safety performance
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Embodiment 1
[0025] Such as Figure 1-3 As shown, a self-balancing elevator for smart cities comprises an elevator case 1, the upper end of the elevator case 1 is fixedly connected with a traction rope 2, both sides of the elevator case 1 are provided with guide rails 3, and the sides of the elevator case 1 The inner bottom surface is fixedly connected with a cylindrical fixed seat 4, and a plurality of pedals 5 are arranged in an equidistant circular array on the side wall of the fixed seat 4. The pedals 5 are rotationally connected with the fixed seat 4, and the lower surface of the pedal 5 is fixedly connected with a compressed air bag. 6. The lower end of the compressed airbag 6 is fixedly connected to the inner bottom surface of the elevator box 1. The upper surface of the compressed airbag 6 is inclined and the angle with the horizontal plane is 15°. When a person steps on the pedal 5, the compressed airbag 6 is squeezed Shrink, now pedal 5 is in horizontal state, is convenient for p...
Embodiment 2
[0032] Such as Figure 4 As shown, the difference between this embodiment and Embodiment 1 is that: a plurality of ventilation holes 18 are provided on the side wall of the elevator case 1, and a ventilation fan 19 is connected with rotation in the ventilation holes 18, and a ventilation fan 19 is arranged in the ventilation holes 18. There is a driving mechanism 20 for driving the ventilation fan 19 to rotate. The driving mechanism 20 includes a gear 21 coaxially fixed with the ventilation fan 19. The upper end of the permanent magnet block 11 is fixedly connected with a rack 22, and the upper end of the rack 22 extends into the ventilation hole 18. And mesh with gear 21.
[0033] In this embodiment, when the permanent magnet block 11 slides under the action of inertia, it can drive the rack 22 to move, and the rack 22 drives the gear 21 meshed with it to rotate, and then drives the ventilation fan 19 to rotate, so as to promote the air in the elevator box 1 and External exc...
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