IP Library Granted Patent US 10,788,088
Granted Patent B2
US 10,788,088 · App. 16/274,520 · Granted Sep 29, 2020

Multimode powertrains for rotorcraft

Inventors: Eric Stephen Olson (Fort Worth, TX); Mark Alan Przybyla (Keller, TX); David R. Bockmiller (Forth Worth, TX)
Assignee: Bell Textron Inc.
F16D41/07B64C27/12B64D35/08F16D1/10F16D2001/103F16D2121/04
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Quick Facts
Patent No.
US 10,788,088
App. No.
16/274,520
Granted
Sep 29, 2020
Kind
B2
Abstract

A selectable clutch assembly for a multimode powertrain of a rotorcraft. The selectable clutch assembly includes a freewheeling unit having input and output sides. The freewheeling unit has a driving mode wherein torque applied to the input side is transferred to the output side and an over running mode wherein torque applied to the output side is not transferred to the input side. A bypass assembly is coupled to and rotatable with the output side of the freewheeling unit and is actuatable between engaged and disengaged positions with the input side of the freewheeling unit. In the disengaged position, the freewheeling unit is operable in the driving and the over running modes such that the selectable clutch assembly is configured for unidirectional torque transfer. In the engaged position, the over running mode of the freewheeling unit is disabled such that the selectable clutch assembly is configured for bidirectional torque transfer.

Claims (46)

1. A multimode powertrain for a rotorcraft, the multimode powertrain comprising:

a main drive system including a main engine, a main rotor gearbox coupled to the main engine and a tail rotor gearbox coupled to the main rotor gearbox;

a secondary drive system including a secondary engine; and

a selectable clutch assembly positioned between the main and the secondary drive systems, the selectable clutch assembly including:

a freewheeling unit having an input side coupled to the main drive system and an output side coupled to the secondary drive system, the freewheeling unit having a driving mode wherein torque applied to the input side is transferred to the output side and an over running mode wherein torque applied to the output side is not transferred to the input side; and

a bypass assembly coupled to the output side of the freewheeling unit and rotatable therewith, the bypass assembly actuatable between an engaged position and a disengaged position with the input side of the freewheeling unit;

wherein, in the disengaged position of the bypass assembly, the freewheeling unit is operable in the driving mode and the over running mode such that the selectable clutch assembly is configured for unidirectional torque transfer from the input side to the output side;

wherein, in the engaged position of the bypass assembly, the over running mode of the freewheeling unit is disabled such that the selectable clutch assembly is configured for bidirectional torque transfer from the input side to the output side and from the output side to the input side; and

wherein, in a high efficiency configuration, the selectable clutch assembly is in the engaged position, the secondary engine is not operating, the main engine provides power to the main rotor gearbox, the tail rotor gearbox and the secondary drive system through the selectable clutch assembly to power at least one rotorcraft accessory coupled to the secondary drive system.

2. The multimode powertrain as recited in claim 1 wherein the bypass assembly further comprises an actuator configured to shift the bypass assembly between the engaged position and the disengaged position.

3. The multimode powertrain as recited in claim 1 wherein, in a preflight configuration, the selectable clutch assembly is in the disengaged position, the main engine is not operating and the secondary engine provides power to at least one rotorcraft accessory coupled to the secondary drive system.

4. The multimode powertrain as recited in claim 1 wherein, in an enhanced power configuration, the selectable clutch assembly is in the engaged position, the main engine provides power to the main rotor gearbox and the tail rotor gearbox and the secondary engine provides power to at least one rotorcraft accessory coupled to the secondary drive system and to the main drive system through the selectable clutch assembly.

5. The multimode powertrain as recited in claim 1 wherein the bypass assembly further comprises a locking assembly configured to maintain the bypass assembly in the engaged position and in the disengaged position.

6. The multimode powertrain as recited in claim 1 wherein, in an enhanced autorotation configuration, the selectable clutch assembly is in the engaged position, the main engine is not operating and the secondary engine provides power to the main drive system through the selectable clutch assembly including to the main rotor gearbox.

7. The multimode powertrain as recited in claim 1 wherein the secondary engine is configured to generate between about 5 percent and about 20 percent of the power of the main engine.

8. The multimode powertrain as recited in claim 1 wherein the secondary engine is configured to generate between about 10 percent and about 15 percent of the power of the main engine.

9. A rotorcraft comprising:

a main drive system including a main engine, a main rotor gearbox coupled to the main engine and a tail rotor gearbox coupled to the main rotor gearbox;

a main rotor coupled to the main rotor gearbox and rotatable thereby;

a tail rotor coupled to the tail rotor gearbox and rotatable thereby;

a secondary drive system including a secondary engine; and

a selectable clutch assembly positioned between the main and the secondary drive systems, the selectable clutch assembly including:

a freewheeling unit having an input side coupled to the main drive system and an output side coupled to the secondary drive system, the freewheeling unit having a driving mode wherein torque applied to the input side is transferred to the output side and an over running mode wherein torque applied to the output side is not transferred to the input side; and

a bypass assembly coupled to the output side of the freewheeling unit and rotatable therewith, the bypass assembly actuatable between an engaged position and a disengaged position with the input side of the freewheeling unit;

wherein, in the disengaged position of the bypass assembly, the freewheeling unit is operable in the driving mode and the over running mode such that the selectable clutch assembly is configured for unidirectional torque transfer from the input side to the output side;

wherein, in the engaged position of the bypass assembly, the over running mode of the freewheeling unit is disabled such that the selectable clutch assembly is configured for bidirectional torque transfer from the input side to the output side and from the output side to the input side; and

wherein, in an enhanced autorotation configuration, the selectable clutch assembly is in the engaged position, the main engine is not operating and the secondary engine provides power to the main drive system through the selectable clutch assembly including to the main rotor gearbox.

10. The rotorcraft as recited in claim 9 wherein, in a preflight configuration, the selectable clutch assembly is in the disengaged position, the main engine is not operating and the secondary engine provides power to at least one rotorcraft accessory coupled to the secondary drive system.

11. The rotorcraft as recited in claim 9 wherein, in an enhanced power configuration, the selectable clutch assembly is in the engaged position, the main engine provides power to the main rotor gearbox and the tail rotor gearbox and the secondary engine provides power to at least one rotorcraft accessory coupled to the secondary drive system and to the main drive system through the selectable clutch assembly.

12. The rotorcraft as recited in claim 9 wherein, in a high efficiency configuration, the selectable clutch assembly is in the engaged position, the secondary engine is not operating, the main engine provides power to the main rotor gearbox, the tail rotor gearbox and the secondary drive system through the selectable clutch assembly to power at least one rotorcraft accessory coupled to the secondary drive system.

13. The rotorcraft as recited in claim 9 wherein the bypass assembly further comprises a locking assembly configured to maintain the bypass assembly in the engaged position and in the disengaged position.

14. A multimode powertrain for a rotorcraft, the multimode powertrain comprising:

a main drive system including a main engine, a main rotor gearbox coupled to the main engine and a tail rotor gearbox coupled to the main rotor gearbox;

a secondary drive system including a secondary engine; and

a selectable clutch assembly positioned between the main and the secondary drive systems, the selectable clutch assembly including:

a freewheeling unit having an input side coupled to the main drive system and an output side coupled to the secondary drive system, the freewheeling unit having a driving mode wherein torque applied to the input side is transferred to the output side and an over running mode wherein torque applied to the output side is not transferred to the input side; and

a bypass assembly coupled to the output side of the freewheeling unit and rotatable therewith, the bypass assembly actuatable between an engaged position and a disengaged position with the input side of the freewheeling unit;

wherein, in the disengaged position of the bypass assembly, the freewheeling unit is operable in the driving mode and the over running mode such that the selectable clutch assembly is configured for unidirectional torque transfer from the input side to the output side;

wherein, in the engaged position of the bypass assembly, the over running mode of the freewheeling unit is disabled such that the selectable clutch assembly is configured for bidirectional torque transfer from the input side to the output side and from the output side to the input side; and

wherein, in an enhanced autorotation configuration, the selectable clutch assembly is in the engaged position, the main engine is not operating and the secondary engine provides power to the main drive system through the selectable clutch assembly including to the main rotor gearbox.

15. The multimode powertrain as recited in claim 14 wherein the bypass assembly further comprises an actuator configured to shift the bypass assembly between the engaged position and the disengaged position.

16. The multimode powertrain as recited in claim 14 wherein the bypass assembly further comprises a locking assembly configured to maintain the bypass assembly in the engaged position and in the disengaged position.

17. The multimode powertrain as recited in claim 14 wherein, in a preflight configuration, the selectable clutch assembly is in the disengaged position, the main engine is not operating and the secondary engine provides power to at least one rotorcraft accessory coupled to the secondary drive system.

18. The multimode powertrain as recited in claim 14 wherein, in an enhanced power configuration, the selectable clutch assembly is in the engaged position, the main engine provides power to the main rotor gearbox and the tail rotor gearbox and the secondary engine provides power to at least one rotorcraft accessory coupled to the secondary drive system and to the main drive system through the selectable clutch assembly.

19. The multimode powertrain as recited in claim 14 wherein the secondary engine is configured to generate between about 5 percent and about 20 percent of the power of the main engine.

20. The multimode powertrain as recited in claim 14 wherein the secondary engine is configured to generate between about 10 percent and about 15 percent of the power of the main engine.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2021
From: BELL TEXTRON INC.
To: TEXTRON INNOVATIONS INC.
Reel/Frame 055642/0913 →
CHANGE OF NAME Recorded Oct 31, 2019
From: BELL HELICOPTER TEXTRON INC.
To: BELL TEXTRON INC.
Reel/Frame 050900/0673 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2019
From: OLSON, ERIC STEPHEN; PRZYBYLA, MARK ALAN; BOCKMILLER, DAVID R.
To: BELL HELICOPTER TEXTRON INC.
Reel/Frame 048318/0516 →
Continuity (2)
Provisional Application 62801621 · Feb 5, 2019
Related Publication 20200248760A1 · Aug 6, 2020
Cited By (3)
US 12,281,679 US 12,291,326 US 12,292,084