Artículo
Effect of loading strain rate on nano-indentation response of an aerospace grade epoxy polymer
Fecha de publicación:
04/2023
Editorial:
Budapest University of Technology and Economics
Revista:
Express Polymer Letters
ISSN:
1788-618X
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Depth sensing indentation holds the promise of local mechanical properties determination. However, the number of studies for materials that exhibit time dependent and hydrostatic pressure dependent behavior is still scarce. This paper aims to understand the effect of loading strain rate on the nanoindentation response of an aerospace epoxy resin by combining physical measurements and numerical simulations. Physical nanoindentation tests were carried out using a Berkovich indenter at different constant loading strain rates (0.01 to 1.25 s-1). It was observed that as the loading strain rate increases, the penetration displacement at which the target load is reached decreases while the maximum displacement attained at the end of the load-hold period increases. To get insight into the phenomenon, indentation response was numerically simulated by finite element analysis. The polymer behavior was described by a nine-parameter elastic-viscoplastic constitutive model (EVP-9). Constitutive parameters were calibrated from uniaxial tensile and compression experimental data. Simulations agreed reasonably well with physical experiments being able to reproduce the loading strain rate effect observed in physical nanoindentation tests.
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Articulos(INTEMA)
Articulos de INST.DE INV.EN CIENCIA Y TECNOL.MATERIALES (I)
Articulos de INST.DE INV.EN CIENCIA Y TECNOL.MATERIALES (I)
Citación
Fasce, Laura Alejandra; Sanchez Fellay, Lucas; Frontini, Patricia Maria; Effect of loading strain rate on nano-indentation response of an aerospace grade epoxy polymer; Budapest University of Technology and Economics; Express Polymer Letters; 17; 6; 4-2023; 647-659
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