INTEMA   05428
INSTITUTO DE INVESTIGACIONES EN CIENCIA Y TECNOLOGIA DE MATERIALES
Unidad Ejecutora - UE
artículos
Título:
Instrumented indentation of transforming and no-transforming phases in Cu-Al-Be shape memory alloys
Autor/es:
S. MONTECINOS; A. CUNIBERTI; S.N. SIMISON
Revista:
INTERMETALLICS
Editorial:
ELSEVIER SCI LTD
Referencias:
Lugar: Amsterdam; Año: 2012 vol. 28 p. 58 - 64
ISSN:
0966-9795
Resumen:
The behavior of CueAleBe alloys under instrumented indentation using a Berkovich tip was studied. The pseudoelastic effect was evidenced in the transforming b CueAleBe phase as a closed hysteresis loop between the unloadingereloading paths in the Peh curves and high depth recovery ratios. From series of indentations conducted in the (b + g2) specimens, it was found that the indentation response of the two phases is remarkably different. Unlike the pseudoelastic b phase, g2 precipitates present an elastic-plastic behavior, obtaining a complete coincidence between the unload and reload path in the load-displacement curves, and a lower recovery capacity. An average contact pressure versus the penetration depth curve was estimated for each indentation curve, and results suggest that 8 GPa and 3 GPa can be considered an elastic limit for g2 and b phase respectively under Berkovich indenter stress state. The elastic modulus and the hardness of both phases were estimated from loadedisplacement curves using the Oliver and Pharr method.