Ianniciello, LuciaRomanini, MichelaMañosa, LluísPlanes Vila, AntoniEngelbrecht, KurtVives i Santa-Eulàlia, Eduard2020-07-032021-04-232020-04-230003-6951https://hdl.handle.net/2445/167537We have tracked the dynamics of the martensitic transformation in a Cu-Al-Ni single crystal by means of acoustic emission and infrared imaging techniques. A Fourier equation-based post-processing of temperature maps has enabled us to reveal the inhomogeneous and discontinuous character of heat power sources and sinks during the transiton. A good correlation between the dynamics of thermal and mechanical energy release has been evidenced. It has also been shown that the merging of martensitic interfaces results in an enhanced heat absorptionapplication/pdfeng(c) American Institute of Physics , 2020TermodinàmicaMaterials intel·ligentsCalorimetriaThermodynamicsSmart materialsCalorimetryTracking the dynamics of power sources and sinks during the martensitic transformation of a Cu-Al-Ni single crystalinfo:eu-repo/semantics/article7024712020-07-03info:eu-repo/semantics/openAccess