IP Library Granted Patent US 10,329,014
Granted Patent B2
US 10,329,014 · App. 15/606,213 · Granted Jun 25, 2019

Aircraft having M-wings

Inventors: John Richard McCullough (Fort Worth, TX); Paul K. Oldroyd (Fort Worth, TX)
Assignee: Bell Helicopter Textron Inc.
B64C29/0033B64C3/10B64C3/32B64C5/10B64C11/46B64C2201/108
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Quick Facts
Patent No.
US 10,329,014
App. No.
15/606,213
Granted
Jun 25, 2019
Kind
B2
Abstract

An aircraft has a vertical takeoff and landing fight mode and a forward flight mode. The aircraft includes an airframe with first and second M-wings each having a pair of leading apexes with swept forward and swept back portions extending therefrom at a swept angle. A propulsion system includes a plurality of propulsion assemblies each attached to the airframe proximate one of the leading apexes. Each of the propulsion assemblies includes a rotor assembly having a tilting degree of freedom. A flight control system is operable to control the propulsion assemblies including tilting the rotor assemblies to generate variable thrust vectors that have a maximum angle that is generally congruent with the swept angles of the M-wings.

Claims (34)

1. An aircraft having a vertical takeoff and landing fight mode and a forward flight mode, the aircraft comprising:

an airframe including first and second M-wings each having a pair of leading apexes with swept forward and swept back portions extending therefrom at a swept angle;

a propulsion system including a plurality of propulsion assemblies each attached to the airframe proximate one of the leading apexes, the propulsion assemblies each having a rotor assembly with a tilting degree of freedom; and

a flight control system operable to control the propulsion assemblies including tilting the rotor assemblies to generate variable thrust vectors;

wherein, a maximum angle of the thrust vectors is generally congruent with the swept angles of the M-wings.

2. The aircraft as recited in claim 1 wherein, the swept angles of the swept forward portions of the M-wings are generally congruent with the swept angles of the swept back portions of the M-wings.

3. The aircraft as recited in claim 1 wherein, the propulsion system further comprises a versatile propulsion system.

4. The aircraft as recited in claim 1 wherein, the propulsion assemblies are interchangeably attachable to the airframe.

5. The aircraft as recited in claim 4 wherein, the propulsion assemblies are mechanically coupled to the airframe.

6. The aircraft as recited in claim 4 wherein, the propulsion assemblies are electrically coupled to the airframe.

7. The aircraft as recited in claim 4 wherein, the propulsion assemblies are fluidically coupled to the airframe.

8. The aircraft as recited in claim 4 wherein, the propulsion assemblies are communicably coupled to the airframe.

9. The aircraft as recited in claim 1 wherein, the airframe includes a plurality of stanchions each positioned proximate one of the leading apexes;

wherein, each of the propulsion assemblies is attached to one of the stanchions; and

wherein, the stanchions provide standoff between the propulsion assemblies and the M-wings.

10. The aircraft as recited in claim 1 wherein, each of the propulsion assemblies further comprises a line replaceable unit.

11. The aircraft as recited in claim 1 wherein, the flight control system is operable to independently control each of the propulsion assemblies.

12. The aircraft as recited in claim 1 wherein, the maximum angle of the thrust vectors is between about ten degrees and about thirty degrees.

13. The aircraft as recited in claim 1 wherein, the maximum angle of the thrust vectors is between about fifteen degrees and about twenty-five degrees.

14. The aircraft as recited in claim 1 wherein, the maximum angle of the thrust vectors is about twenty degrees.

15. The aircraft as recited in claim 1 further comprising a pod assembly selectively attachable to the airframe; and

wherein, the airframe is rotatable about the pod assembly such that the pod assembly remains in a generally horizontal attitude in the vertical takeoff and landing fight mode, the forward flight mode and transitions therebetween.

16. The aircraft as recited in claim 15 wherein, in the vertical takeoff and landing flight mode, the first wing is forward of the pod assembly and the second wing is aft of the pod assembly and wherein, in the forward flight mode, the first wing is below the pod assembly and the second wing is above the pod assembly.

17. An aircraft having a vertical takeoff and landing fight mode and a forward flight mode, the aircraft comprising:

an airframe including first and second M-wings each having a pair of leading apexes with swept forward and swept back portions extending therefrom at a swept angle and a plurality of stanchions each positioned proximate one of the leading apexes;

a propulsion system including a plurality of propulsion assemblies each attached to one of the stanchions, the propulsion assemblies each having a rotor assembly with a tilting degree of freedom;

a flight control system operable to control the propulsion assemblies including tilting the rotor assemblies to generate variable thrust vectors; and

a pod assembly selectively attachable to the airframe;

wherein, a maximum angle of the thrust vectors is generally congruent with the swept angles of the M-wings;

wherein, the airframe is rotatable about the pod assembly such that the pod assembly remains in a generally horizontal attitude in the vertical takeoff and landing fight mode, the forward flight mode and transitions therebetween; and

wherein, the stanchions provide standoff between the propulsion assemblies and the M-wings.

18. The aircraft as recited in claim 17 wherein, the swept angles of the swept forward portions of the M-wings are generally congruent with the swept angles of the swept back portions of the M-wings.

19. The aircraft as recited in claim 17 wherein, the propulsion system further comprises a versatile propulsion system and wherein, the propulsion assemblies are interchangeably attachable to the airframe as line replaceable units.

20. The aircraft as recited in claim 17 wherein, the maximum angle of the thrust vectors is about twenty degrees.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION NUMBER CHANGED TO PATENT NUMBERS PREVIOUSLY RECORDED AT REEL: 73121 FRAME: 725. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Dec 8, 2025
From: BELL HELICOPTER TEXTRON INC.
To: TEXTRON INNOVATIONS INC.
Reel/Frame 073889/0483 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2025
From: BELL HELICOPTER TEXTRON INC.
To: TEXTRON INNOVATIONS INC.
Reel/Frame 073141/0327 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 9, 2022
From: BELL HELICOPTER TEXTRON INC.
To: TEXTRON INNOVATIONS INC.
Reel/Frame 060758/0800 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2017
From: MCCULLOUGH, JOHN RICHARD; OLDROYD, PAUL K.
To: BELL HELICOPTER TEXTRON INC.
Reel/Frame 042515/0903 →
Continuity (1)
Related Publication 20180339761A1 · Nov 29, 2018
Cited By (4)
US 12,227,301 US 12,337,960 US 12,371,162 US 12,503,226