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Strain-Detecting Composite MaterialsA composite material includes a structural material and a shape-memory alloy embedded in the structural material. The shape-memory alloy changes crystallographic phase from austenite to martensite in response to a predefined critical macroscopic average strain of the composite material. In a second embodiment, the composite material includes a plurality of particles of a ferromagnetic shape-memory alloy embedded in the structural material. The ferromagnetic shape-memory alloy changes crystallographic phase from austenite to martensite and changes magnetic phase in response to the predefined critical macroscopic average strain of the composite material. A method of forming a composite material for sensing the predefined critical macroscopic average strain includes providing the shape-memory alloy having an austenite crystallographic phase, changing a size and shape of the shape-memory alloy to thereby form a plurality of particles, and combining the structural material and the particles at a temperature of from about 100-700.degree. C. to form the composite material.
Document ID
20160014460
Acquisition Source
Headquarters
Document Type
Other - Patent
Authors
Wallace, Terryl A.
Smith, Stephen W.
Piascik, Robert S.
Horne, Michael R.
Messick, Peter L.
Alexa, Joel A.
Glaessgen, Edward H.
Hailer, Benjamin T.
Date Acquired
December 5, 2016
Publication Date
November 22, 2016
Subject Category
Structural Mechanics
Composite Materials
Report/Patent Number
Patent Application Number: US-Patent-Appl-SN-12/685,280
Patent Number: US-Patent-9,499,882
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Patent
US-Patent-9,499,882
Patent Application
US-Patent-Appl-SN-12/685,280
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