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NASA NTRS · 20050217175

Potential High-Temperature Shape-Memory-Alloy Actuator Material Identified

Abstract

Shape-memory alloys are unique "smart materials" that can be used in a wide variety of adaptive or "intelligent" components. Because of a martensitic solid-state phase transformation in these materials, they can display rather unusual mechanical properties including shape-memory behavior. This phenomenon occurs when the material is deformed at low temperatures (below the martensite finish temperature, Mf) and then heated through the martensite-to-austenite phase transformation. As the material is heated to the austenite finish temperature Af, it is able to recover its predeformed shape. If a bias is applied to the material as it tries to recover its original shape, work can be extracted from the shape-memory alloy as it transforms. Therefore, shape-memory alloys are being considered for compact solid-state actuation devices to replace hydraulic, pneumatic, or motor-driven systems.

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BibTeXRIS

Noebe, Ronald D., Gaydosh, Darrell J., Biles, Tiffany A., Garg, Anita. 2005-06-01. Potential High-Temperature Shape-Memory-Alloy Actuator Material Identified. https://ntrs.nasa.gov/citations/20050217175

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