We report on experiments aimed at comparing the hysteretic response of a Cu-Zn-Al single crystal undergoing a martensitic transition under strain-driven and stress-driven conditions. Strain-driven experiments were performed using a conventional tensile machine while a special device was designed to perform stress-driven experiments. Significant differences in the hysteresis loops were found. The strain-driven curves show reentrant behavior yield point which is not observed in the stress-driven case. The dissipated energy in the stress-driven curves is larger than in the strain-driven ones. Results from recently proposed models qualitatively agree with experiments
A thermodynamic theory for the lower-bound hysteresis in martensitic transformations is developed. I...
The present work investigates the hysteretic behaviour of Cu–Zn–Al single crystal submitted to super...
The stress-induced martensitic reorientation of two kinds of Cu-Zn-Al polycrystalline shape memory a...
The hysteresis loop, described during the formation of stressinduced pseudoelastic martensite in a C...
The elastocaloric effect in the vicinity of the martensitic transition of a Cu-Zn-Al single crystal ...
Mechanical damping applications could benefit from the large hysteresis, large pseudoelastic strain ...
This work presents a collection of experimental pseudoelastic hysteresis cycles associated with the ...
The stress-induced martensitic transformation has been studied at different temperatures T>Ms. The a...
The hysteretic behaviour of Cu-Al-X single-crystals (with X = Zn, Mn, Ni) deforming in the martensit...
We study experimentally the intermittent progress of the mechanically induced martensitic transforma...
We present an experimental study of phase-transition avalanches during the stress-induced formation ...
Martensitic transformations are shape-deforming phase transitions which can be induced in certain al...
We deal with the hysteretic behavior of partial cycles in the two¿phase region associated with the m...
On the one hand, biaxial dead load (σ1,σ2) on a Cu Al Ni single crystal martensite plate have been p...
The stress-induced martensitic transformation has been studied at different temperatures T>Ms. Th...
A thermodynamic theory for the lower-bound hysteresis in martensitic transformations is developed. I...
The present work investigates the hysteretic behaviour of Cu–Zn–Al single crystal submitted to super...
The stress-induced martensitic reorientation of two kinds of Cu-Zn-Al polycrystalline shape memory a...
The hysteresis loop, described during the formation of stressinduced pseudoelastic martensite in a C...
The elastocaloric effect in the vicinity of the martensitic transition of a Cu-Zn-Al single crystal ...
Mechanical damping applications could benefit from the large hysteresis, large pseudoelastic strain ...
This work presents a collection of experimental pseudoelastic hysteresis cycles associated with the ...
The stress-induced martensitic transformation has been studied at different temperatures T>Ms. The a...
The hysteretic behaviour of Cu-Al-X single-crystals (with X = Zn, Mn, Ni) deforming in the martensit...
We study experimentally the intermittent progress of the mechanically induced martensitic transforma...
We present an experimental study of phase-transition avalanches during the stress-induced formation ...
Martensitic transformations are shape-deforming phase transitions which can be induced in certain al...
We deal with the hysteretic behavior of partial cycles in the two¿phase region associated with the m...
On the one hand, biaxial dead load (σ1,σ2) on a Cu Al Ni single crystal martensite plate have been p...
The stress-induced martensitic transformation has been studied at different temperatures T>Ms. Th...
A thermodynamic theory for the lower-bound hysteresis in martensitic transformations is developed. I...
The present work investigates the hysteretic behaviour of Cu–Zn–Al single crystal submitted to super...
The stress-induced martensitic reorientation of two kinds of Cu-Zn-Al polycrystalline shape memory a...