Atomistic investigation of deformation and fracture of individual structural components of metal matrix composites

Fuente: arXiv
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Autores principales: Maździarz, Marcin, Nosewicz, Szymon
Formato: Preprint
Publicado: 2024
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author Maździarz, Marcin
Nosewicz, Szymon
author_facet Maździarz, Marcin
Nosewicz, Szymon
contents This paper focuses on the development of the atomistic framework for determining the lower scale mechanical parameters of single components of a metal matrix composite for final application to a micromechanical damage model. Here, the deformation and failure behavior of NiAl-Al$_2$O$_3$ interfaces and their components, metal and ceramic, are analyzed in depth using molecular statics calculations. A number of atomistic simulations of strength tests, uniaxial tensile, uniaxial compressive and simple shear, have been performed in order to obtain a set of stiffness tensors and strain-stress characteristics up to failure for 30 different crystalline and amorphous systems. Characteristic points on the strain-stress curves in the vicinity of failure are further analyzed at the atomistic level, using local measures of lattice disorder. Numerical results are discussed in the context of composite damage at upper microscopic scale based on images of the fracture surface of NiAl-Al$_2$O$_3$ composites.
format Preprint
id arxiv_https___arxiv_org_abs_2403_05371
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Atomistic investigation of deformation and fracture of individual structural components of metal matrix composites
Maździarz, Marcin
Nosewicz, Szymon
Materials Science
Mesoscale and Nanoscale Physics
This paper focuses on the development of the atomistic framework for determining the lower scale mechanical parameters of single components of a metal matrix composite for final application to a micromechanical damage model. Here, the deformation and failure behavior of NiAl-Al$_2$O$_3$ interfaces and their components, metal and ceramic, are analyzed in depth using molecular statics calculations. A number of atomistic simulations of strength tests, uniaxial tensile, uniaxial compressive and simple shear, have been performed in order to obtain a set of stiffness tensors and strain-stress characteristics up to failure for 30 different crystalline and amorphous systems. Characteristic points on the strain-stress curves in the vicinity of failure are further analyzed at the atomistic level, using local measures of lattice disorder. Numerical results are discussed in the context of composite damage at upper microscopic scale based on images of the fracture surface of NiAl-Al$_2$O$_3$ composites.
title Atomistic investigation of deformation and fracture of individual structural components of metal matrix composites
topic Materials Science
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2403.05371