Independent suspension
An independent suspension for vehicles, in particular for the transport of people and/or materials, including a hub defining a rotation axis of the vehicle wheel, an electric motor, operatively connected to the hub and configured to put the hub in rotation. The electric motor extends along a development axis thereof parallel to the rotation axis of the hub.
1. An independent suspension for a vehicle for transport of at least one chosen from people and materials, comprising:
a hub defining a rotation axis of a wheel of the vehicle;
an electric motor, operatively connected to said hub and configured to put said hub in rotation, said electric motor extending along a first development axis thereof;
wherein said first development axis of the electric motor is parallel to the rotation axis;
said electric motor extending towards said hub along said development axis from a starting point where the electric motor drivingly connects to the hub, to a final point of the electric motor opposite the starting point, where said final point faces towards said hub.
2. The independent suspension according to claim 1 , further comprising a transmission system, for putting the wheel hub in rotation by said electric motor, comprising a speed reducer developing along a second development axis thereof perpendicular to said rotation axis and first development axis, an input shaft between the electric motor and the speed reducer, and an output shaft between the speed reducer and the hub.
3. The independent suspension according to claim 2 , wherein at least said input shaft and said speed reducer include cylindrical gears geared to each other or realize a motion transmission by drive belts.
4. The independent suspension according to claim 2 , and further, comprising a support element including a first support portion and a second support portion defining a substantially horizontal hinge point for a respective cross arm end.
5. The independent suspension according to claim 4 , and further comprising a junction element formed as a homokinetic joint, wherein said output shaft is connected to said hub and to said speed reducer by the junction element.
6. The independent suspension according to claim 5 , wherein said support element includes an opening configured to allow passage and accommodation of said junction element.
7. The independent suspension according to claim 4 , comprising a steering spindle comprising an outer portion, defining said rotation axis, and an inner portion extending transversely to the outer portion along a steering axis.
8. The independent suspension according to claim 7 , wherein the support element is rotatably coupled to the inner portion of the steering spindle to allow a relative rotation around the steering axis.
9. The independent suspension according to claim 4 , wherein said first support portion includes a spring or damper and wherein said second support portion includes a shock absorber.
10. The independent suspension according to claim 2 , wherein said transmission system is configured as a single speed transmission or a multiple speed transmission.
11. The independent suspension according to claim 2 , wherein said transmission system comprises an epicyclic gear system installed on the hub.
12. The independent suspension according to claim 2 , wherein said electric motor is positioned between said hub and said speed reducer.
13. The independent suspension according to claim 1 , wherein said first development axis of the electric motor and said rotation axis lie on a plane obliquely arranged with respect to a horizontal or vertical reference plane passing through said rotation axis.
14. The independent suspension according to claim 1 , wherein said first development axis of the electric motor and said rotation axis lie on a same vertical plane or on a same horizontal plane.
15. A vehicle for transport of at least one chosen from persons and materials comprising the independent suspension according to claim 1 for each wheel of the vehicle, said independent suspensions coupled to each other having a corridor between 500 and 1000 mm to define an auxiliary load volume.
16. The vehicle according to claim 15 , further comprising a loading platform for loading luggage or other materials having a main load volume and a number of auxiliary load volumes equal to a number of pairs of independent suspensions present in the vehicle, each auxiliary load volume having a width equal to said corridor.
17. The vehicle according to claim 16 , further comprising a tailgate for loading the at least one chosen from people and materials.
18. The vehicle according to claim 15 , further comprising a plane configured to support passengers and including, near said independent suspensions, an abutment width substantially equal to said corridor.