Multi-purpose and tunable pressure chamber for pyrotechnic actuator
View Patent ↗A pressurized gas-powered actuator includes a housing and a piston movably positioned within the housing. The piston has a drive pocket formed therein. A gas generator is positioned exterior of the piston and in fluid communication with the drive pocket.
1. A pressurized gas-powered actuator comprising:
a housing;
a piston assembly movably positioned within the housing, the piston assembly comprising a piston and a piston rod, the piston defining a drive pocket formed therein;
a gas generator positioned exterior of the piston and in fluid communication with the drive pocket; and
the piston rod efining an expansion cavity extending from an end of the drive pocket and extending through at least a portion of the piston rod, the expansion cavity having a constant volume;
wherein a radial outermost dimension of the expansion cavity is greater than a radial outermost dimension of the drive pocket.
2. The actuator of claim 1 wherein the radial outermost dimension of the expansion cavity is a first radial outermost dimension of a first portion of the expansion cavity, and the expansion cavity has a second portion having a second radial outermost dimension, the second radial outermost dimension being less than the radial outermost dimension of the drive pocket.
3. The actuator of claim 1 wherein the expansion cavity comprises a blind hole.
4. The actuator of claim 1 wherein walls defining the drive pocket form a shape corresponding to a drive pocket/expansion cavity configuration of the actuator.
5. A pressurized gas-powered actuator comprising:
a housing;
a piston rod movably positioned within the housing, the piston rod defining an expansion cavity that extends into the piston rod; and
a gas generator positioned exterior of the piston rod and in fluid communication with the expansion cavity,
wherein:
the piston rod defines a continuous passage extending axially through the piston rod from a first axial end of the piston rod to a second axial end of the piston rod opposite the first axial end, at least a portion of the continuous passage defining the expansion cavity; and
wherein the expansion cavity has a first portion with a first radial outermost dimension and a second portion with a second radial outermost dimension different from the first radial outermost dimension, wherein the first portion is disposed between the gas generator and the second portion, and the first radial outermost dimension is less than the second radial outermost dimension.
6. The actuator of claim 5 wherein the expansion cavity is tapered along at least a portion of an axial length of the cavity.
7. The actuator of claim 1 wherein the expansion cavity is tapered along at least a portion of an axial length of the cavity.
8. The actuator of claim 5 wherein a drive pocket attachment is formed as a part separate from the piston rod and is attached to the piston rod, and the drive pocket attachment defines a drive pocket.
9. The actuator of claim 5 wherein the piston rod further defines a drive pocket interposed between the gas generator and the expansion cavity.
10. The actuator of claim 1 wherein the piston rod comprises a metallic outer shell and at least one polymeric portion positioned in an interior of the outer shell.
11. The actuator of claim 5 wherein the piston rod comprises a metallic outer shell and at least one polymeric portion positioned in an interior of the outer shell.
12. The actuator of claim 5 further comprising a plug positionable at a predetermined location within the continuous passage of the piston rod so as to define a limit of the expansion cavity.