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Cryogenic Fluid Transfer Components Using Single Crystal Piezoelectric Actuators
Completed
Description
Cryogenic fluid transfer components using single crystal piezoelectric actuators are proposed to enable low thermal mass, minimal heat leak, low power consumption and fast response for cryogenic fluid transfer and handling systems to support NASA Lunar Lander, Ground Operations, Ares, and Lunar Surface Systems programs. Single crystal piezoelectrics are attractive because they exhibit 3 to 5 times the strain as conventional piezoelectric ceramics, have very low strain hysteresis, and retain excellent piezoelectric performance at cryogenic temperatures. Single crystal piezoelectric actuators including flextensional actuators and piezomotors were developed in Phase I and incorporated into cryogenic valves. The prototyped piezoelectric cryogenic valves were tested showing excellent flow control performance at temperature ranged from room temperature to liquid nitrogen temperature and pressure ranged from 50 psi to 3000 psi. In Phase II PMN-PT single crystal flextensional actuators and piezomotors design, fabrication and integration into cryogenic valves will be optimized, reliability of these piezoelectric cryogenic valves and actuators will be investigated. These advanced cryogenic actuators also hold promise for shape, motion and force controls in NASA, DOD and industrial applications.
Benefits
Adaptive optics for high energy laser, active vibration control and structure morphing, RF communication tuning, bio-medical manipulators, cryogenic microscopy, photonic tooling, micro/nanofabrication and nanoassembly, etc.
PMN-PT single crystal piezoelectric fluid components can be used for cryogenic fluid transfer and handling systems to support NASA Lunar Lander, Ground Operations, Ares, and Lunar Surface Systems programs. Piezoelectric actuators can also be used for NASA high precision deformable mirrors in coronagraphic instruments, interferometric telescopes, and space-based observatories. ORIGINS missions SUVO, SAFIR, and Planet Imager, Earth Science applications, such as LIDAR systems as well as Coastal Ocean Imaging systems will all benefit from this technology.
Details
| Technology area | Propulsion Systems > Electric Space Propulsion > Integrated Systems and Ancillary Technologies |
| Program | Small Business Innovation Research/Small Business Tech Transfer (SBIR/STTR) |
| Lead organization | TRS Ceramics, Inc., State College, PA |
| Start date | 2010-01-27 |
| End date | 2013-01-26 |
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This is a mature technology (TRL 7+) — the realistic path in is usually NASA's Technology Transfer Program: licensing an existing NASA patent, or a Space Act Agreement to use NASA facilities/expertise directly. NASA also runs a startup licensing program with no upfront fee for companies formed to commercialize a specific NASA technology.
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