Convertible aerial vehicle with contra-rotating wing/rotors and twin tilting wing and propeller units
View Patent ↗A micro aerial vehicle can be converted during flight between a fixed wing flight mode and a rotary wing flight mode. The canard design micro aerial vehicle includes a fuselage, two tiltable propellers and airfoils arranged at a forward portion of fuselage, a pair of coaxial drive shafts positioned aft of the tiltable propeller and airfoil arranged for contra-rotation, a stop rotor mechanism, and a pair of wing panels, each of the wing panels attached to one of the coaxial drive shafts. The wing panels act as contra-rotating rotor blades in the rotary wing flight mode, and act as fixed wing panels in the fixed wing mode.
1. A convertible aerial vehicle having a fixed wing flight mode and a rotary wing flight mode, the aerial vehicle comprising:
a fuselage;
two propellers and airfoils tiltably arranged at a forward portion of fuselage;
a pair of coaxial drive shafts positioned aft of the tiltable propeller and airfoil arranged for contra-rotation; and
a pair of wing panels, each of the wing panels attached to one of the coaxial drive shafts, the wing panels adapted to rotate in opposite directions in rotary flight mode and to lock in a fixed wing mode position in fixed wing flight mode.
2. The aerial vehicle of claim 1 , wherein each tiltable propeller is located outboard of the corresponding airfoil.
3. The aerial vehicle of claim 1 , further comprising two motors, each motor driving one of the tiltable propellers.
4. The aerial vehicle of claim 1 , wherein each airfoil and tiltable propeller has a range of more than 90 degrees.
5. The aerial vehicle of claim 1 , further comprising:
an electric motor arranged to drive the coaxial rotor shafts.
6. The aerial vehicle of claim 5 , further comprising:
a battery connected to the electric motor.
7. The aerial vehicle of claim 1 , wherein the wing panels are vertically offset from each other.
8. The aerial vehicle of claim 1 , wherein the two wing panels have a larger surface area than the airfoils.
9. The aerial vehicle of claim 1 , wherein the center of gravity of the vehicle is located between the coaxial drive shafts and the airfoils.
10. The aerial vehicle of claim 1 , wherein the coaxial drive shafts are stopped from rotating for fixed wing flight.
11. The aerial vehicle of claim 1 , further comprising a locking mechanism to fix the rotor-shafts in position during fixed wing flight.
12. The aerial vehicle of claim 1 , further comprising:
a vertical stabilizer and rudder located aft of the coaxial drive shafts.
13. The aerial vehicle of claim 12 , further comprising a push propeller arranged aft of the vertical stabilizer and rudder.
14. The aerial vehicle of claim 1 , wherein each wing panel has a leading edge and a trailing edge with a different profile than the leading edge.
15. The aerial vehicle of claim 1 , wherein the wing span is less than one meter.
16. The aerial vehicle of claim 1 , wherein the aerial vehicle has a canard configuration.
17. The aerial vehicle of claim 1 , wherein the wing panels have an equal angle of attack when contra-rotating about the axis of the rotor shafts in rotary mode.
18. The aerial vehicle of claim 17 , wherein changing the angle of attack is accomplished by changing the pitch of the vehicle.
19. An aerial vehicle having a fixed wing flight mode and a rotary wing flight mode comprising:
a fuselage;
two propellers and airfoils tiltably arranged at a forward portion of fuselage;
a pair of wing panels positioned aft of the tiltable propellers and airfoils and aft of a center of gravity of the vehicle;
a drive mechanism adapted to rotate the wing panels in opposite directions in rotary flight mode and to lock the wing panels in a fixed wing mode position in fixed wing flight mode.
20. The aerial vehicle of claim 19 , wherein the two wing panels have a larger surface area than the airfoils.