Title of article :
Use of time history speckle pattern and pulsed photoacoustic techniques to detect the self-accommodating transformation in a Cu–Al–Ni shape memory alloy
Author/Authors :
Sلnchez-Arévalo، نويسنده , , F.M. and Aldama-Reyna، نويسنده , , W. and Lara-Rodriguez، نويسنده , , A.G. and Garcيa-Fernلndez، نويسنده , , T. and Pulos، نويسنده , , G. and Trivi، نويسنده , , M. and Villagran-Muniz، نويسنده , , M.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Pages :
7
From page :
518
To page :
524
Abstract :
Continuous and pulsed electromagnetic radiation was used to detect the self-accommodation mechanism on a polycrystalline Cu–13.83 wt.%Al–2.34 wt.%Ni shape memory alloy. Rectangular samples of this alloy were mechanically polished to observe the austenite and martensite phases. The samples were cooled in liquid nitrogen prior to the experiments to obtain the martensite phase. Using a dynamic speckle technique with a continuous wave laser we obtained the time history of the speckle pattern image and monitored the surface changes caused by the self-accommodation mechanism during the inverse (martensitic to austenitic) transformation. Using a photoacoustic technique based on a pulsed laser source it was also possible to detect the self-accommodation phenomena in a bulk sample. For comparison purposes, we used differential scanning calorimetry (DSC) to detect the critical temperatures of transformation and use these as reference to evaluate the performance of the optical and photoacoustical techniques. In all cases, the same range of temperature was obtained during the inverse transformation. From these results, we conclude that time history speckle pattern (THSP) and pulsed photoacoustic are complementary techniques; they are non-destructive and useful to detect surface and bulk martensitic transformation induced by a temperature change.
Keywords :
Digital speckle pattern correlation , Time history speckle pattern , Photoacoustics , Shape memory alloy , CuAlNi , Martensitic transformation
Journal title :
Materials Characterization
Serial Year :
2010
Journal title :
Materials Characterization
Record number :
2267772
Link To Document :
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