(Institución)
 
 

Docu-menta > Tecnología > Artículos de Tecnología >

Por favor, use este identificador para citar o enlazar este ítem: http://documenta.ciemat.es/handle/123456789/2453

Título : Round Robin into Best Practices for the Determination of Indentation Size Effects
Autor : Ruiz-Moreno, Ana
Hähner, Peter
Kurpaska, Lukasz
Jagielski, Jacek
Spätig, Philippe
Trebala, Michal
Hannula, Simo-Pekka
Merino, Susana
Diego, Gonzalo
Namburi, Hygreeva
Libera, Ondrej
Terentyev, Dimitry
Khvan, Tymofii
Heintzeand, Cornelia
Jennet, Nigel
Palabras clave : nanoindentation; nano-mechanical; small scale testing; pile-up
modulus correction; indentation size e ect; ferritic/martensitic steel
Fecha de publicación : 8-feb-2024
Citación : Nanomaterials;10 (1)
Resumen : The paper presents a statistical study of nanoindentation results obtained in seven European laboratories that have joined a round robin exercise to assess methods for the evaluation of indentation size e ects. The study focuses on the characterization of ferritic/martensitic steels T91 and Eurofer97, envisaged as structural materials for nuclear fission and fusion applications, respectively. Depth-controlled single cycle measurements at various final indentation depths, force-controlled single cycle and force-controlled progressive multi-cycle measurements using Berkovich indenters at room temperature have been combined to calculate the indentation hardness and the elastic modulus as a function of depth applying the Oliver and Pharr method. Intra- and inter-laboratory variabilities have been evaluated. Elastic modulus corrections have been applied to the hardness data to compensate for materials related systematic errors, like pile-up behaviour, which is not accounted for by the Oliver and Pharr theory, and other sources of instrumental or methodological bias. The correction modifies the statistical hardness profiles and allows determining more reliable indentation size e ects.
URI : http://documenta.ciemat.es/handle/123456789/2453
ISSN : 2079-4991
Aparece en las colecciones: Artículos de Tecnología

Ficheros en este ítem:

Fichero Descripción Tamaño Formato
2020 nanomaterials 10-130.pdf3.78 MBAdobe PDFVisualizar/Abrir
View Statistics

Los ítems de Docu-menta están protegidos por una Licencia Creative Commons, con derechos reservados.

 

Información y consultas: documenta@ciemat.es | Documento legal