Identification and validation of an extended Stewart-Cazacu micromechanics damage model applied to Ti-6Al-4V specimens exhibiting positive stress triaxialities

Primer Autor
Tuninetti, Victor
Título
Identification and validation of an extended Stewart-Cazacu micromechanics damage model applied to Ti-6Al-4V specimens exhibiting positive stress triaxialities
Editorial
SAGE PUBLICATIONS LTD
Revista
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART L-JOURNAL OF MATERIALS-DESIGN AND APPLICATIONS
Lenguaje
en
Tipo de Recurso
artículo original
Derecho de Acceso
metadata
Description
The author(s) disclosed receipt of the following financial support for the research, authorship, and/or publication of this article: This work was funded by the National Agency for Research and Development (ANID) Fondecyt 11170002 and the cooperation agreement WBI/AGCID SUB2019/419031 (DIE19-0005). As research director of FRS-FNRS, A.M. Habraken thanks the Belgian Scientific Research Fund FNRS for the financial support. The authors also acknowledge FONDEQUIP EQM130014.
doi
10.1177/14644207211009933
Formato Recurso
pdf
Palabras Claves
Finite element modeling
micromechanics damage model
Cazacu yield criterion
ductile fracture
hcp material
coupled damage law
Ubicación del archivo
Categoría OCDE
Ciencia de Materiales, Multidisciplinar
Materias
Modelado de elementos finitos
modelo de daño micromecánico
criterio de rendimiento de Cazacu
fractura dúctil
material hcp
ley de daño acoplado
Disciplinas de la OCDE
Ingeniería de los Materiales
Id de Web of Science
WOS:000651168900001
Access Rights
metadata
Derechos de acceso
metadata
Título de la cita (Recomendado-único)
Identification and validation of an extended Stewart-Cazacu micromechanics damage model applied to Ti-6Al-4V specimens exhibiting positive stress triaxialities
Identificador del recurso (Mandatado-único)
artículo original
Versión del recurso (Recomendado-único)
version publicada
Editorial
SAGE PUBLICATIONS LTD
Revista/Libro
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART L-JOURNAL OF MATERIALS-DESIGN AND APPLICATIONS
Categoría WOS
Ciencia de Materiales, Multidisciplinar
Idioma
en
ISSN
1464-4207
Descripción
The author(s) disclosed receipt of the following financial support for the research, authorship, and/or publication of this article: This work was funded by the National Agency for Research and Development (ANID) Fondecyt 11170002 and the cooperation agreement WBI/AGCID SUB2019/419031 (DIE19-0005). As research director of FRS-FNRS, A.M. Habraken thanks the Belgian Scientific Research Fund FNRS for the financial support. The authors also acknowledge FONDEQUIP EQM130014.
Referencia del Financiador (Mandatado si es aplicable-repetible)
ANID FONDECYT 11170002
ANID FONDEQUIP EQM130014
Tipo de ruta
hibrida
verde
Formato
pdf
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