Torque-sensitive locking and release mechanism for a bistable pitch propeller
In response to a torque that is applied to a clutch module not exceeding a torque threshold, the clutch module is locked where a blade is configured to be at a first pitch angle in response to the clutch module being locked. In response to the torque that is applied to the clutch module exceeding the torque threshold, the clutch module is released where the blade has a range of motion which extends from the first pitch angle to a second pitch angle in response to the clutch module being released.
1. A bistable pitch propeller, comprising:
a clutch module, which includes a ball, a detent, and a Belleville spring, that is configured to:
in response to a torque that is applied to the clutch module not exceeding a torque threshold, lock the clutch module, including by using the Belleville spring to press the ball into the detent; and
in response to the torque that is applied to the clutch module exceeding the torque threshold, release the clutch module, including by popping the ball out of the detent; and
a blade that is configured to:
be at a first pitch angle in response to the clutch module being locked; and
have a range of motion which extends from the first pitch angle to a second pitch angle in response to the clutch module being released.
2. The bistable pitch propeller recited in claim 1 further comprising a pitch module that is mechanically coupled to the clutch module and the blade, wherein:
releasing the clutch module includes permitting at least part of the clutch module to rotate about a first axis of rotation; and
the pitch module mechanically translates the rotation by at least part of the clutch module about the first axis of rotation into rotation by the blade about a second axis of rotation.
3. The bistable pitch propeller recited in claim 1 , wherein the clutch module includes one or more springs configured to lock the clutch module by default such that the first pitch angle is a default position of the blade.
4. A bistable pitch propeller, comprising:
a clutch module that is configured to:
in response to a torque that is applied to the clutch module not exceeding a torque threshold, lock the clutch module; and
in response to the torque that is applied to the clutch module exceeding the torque threshold, release the clutch module;
a blade that is configured to:
be at a first pitch angle in response to the clutch module being locked; and
have a range of motion which extends from the first pitch angle to a second pitch angle in response to the clutch module being released; and
a pitch module that is mechanically coupled to the clutch module and the blade, wherein:
the pitch module includes a wedge, a first connector to a first blade, a second connector to a second blade, and a spring;
in response the wedge separating the first connector and the second connector, the first blade and the second blade are rotated to be at the first pitch angle; and
in response to the spring pushing the first connector and the second connector together when the wedge does not separate the first connector and the second connector, the first blade and the second blade are rotated to be at the second pitch angle.
5. The bistable pitch propeller recited in claim 4 further comprising a pitch module that is mechanically coupled to the clutch module and the blade, wherein:
releasing the clutch module includes permitting at least part of the clutch module to rotate about a first axis of rotation; and
the pitch module mechanically translates the rotation by at least part of the clutch module about the first axis of rotation into rotation by the blade about a second axis of rotation.
6. The bistable pitch propeller recited in claim 4 , wherein the clutch module includes one or more springs configured to lock the clutch module by default such that the first pitch angle is a default position of the blade.
7. A method, comprising:
in response to a torque that is applied to a clutch module not exceeding a torque threshold, locking the clutch module, which includes a ball, a detent, and a Belleville spring, including by using the Belleville spring to press the ball into the detent, wherein a blade is configured to be at a first pitch angle in response to the clutch module being locked; and
in response to the torque that is applied to the clutch module exceeding the torque threshold, releasing the clutch module, including by popping the ball out of the detent, wherein the blade has a range of motion which extends from the first pitch angle to a second pitch angle in response to the clutch module being released.
8. The method recited in claim 7 , wherein:
there is a pitch module that is mechanically coupled to the clutch module and the blade;
releasing the clutch module includes permitting at least part of the clutch module to rotate about a first axis of rotation; and
the pitch module mechanically translates the rotation by at least part of the clutch module about the first axis of rotation into rotation by the blade about a second axis of rotation.
9. The method recited in claim 7 , wherein the clutch module includes one or more springs configured to lock the clutch module by default such that the first pitch angle is a default position of the blade.
10. A method, comprising:
in response to a torque that is applied to a clutch module not exceeding a torque threshold, locking the clutch module, wherein a blade is configured to be at a first pitch angle in response to the clutch module being locked; and
in response to the torque that is applied to the clutch module exceeding the torque threshold, releasing the clutch module, wherein the blade has a range of motion which extends from the first pitch angle to a second pitch angle in response to the clutch module being released, wherein:
there is a pitch module that is mechanically coupled to the clutch module and the blade;
the pitch module includes a wedge, a first connector to a first blade, a second connector to a second blade, and a spring;
in response the wedge separating the first connector and the second connector, the first blade and the second blade are rotated to be at the first pitch angle; and
in response to the spring pushing the first connector and the second connector together when the wedge does not separate the first connector and the second connector, the first blade and the second blade are rotated to be at the second pitch angle.
11. The method recited in claim 10 , wherein:
there is a pitch module that is mechanically coupled to the clutch module and the blade;
releasing the clutch module includes permitting at least part of the clutch module to rotate about a first axis of rotation; and
the pitch module mechanically translates the rotation by at least part of the clutch module about the first axis of rotation into rotation by the blade about a second axis of rotation.
12. The method recited in claim 10 , wherein the clutch module includes one or more springs configured to lock the clutch module by default such that the first pitch angle is a default position of the blade.