most citedMultiscale modeling of hydrogen diffusion in iron considering the effect of dislocations

7 citations · 7 across the 5 of their papers we have counts for

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cond-mat.mtrl-sci2025

A Phase-Field Approach to Fracture and Fatigue Analysis: Bridging Theory and Simulation

M. Castillón, I. Romero, J. Segurado

This article presents a novel, robust and efficient framework for fatigue crack-propagation that combines the principles of Linear Elastic Fracture Mechanics (LEFM) with phase-fiel…

cond-mat.mtrl-sci2025

Effective toughness estimation by FFT based phase field fracture: application to composites and polycrystals

Pedro Aranda, Javier Segurado

An estimate of the effective toughness of heterogeneous materials is proposed based on the Phase Field Fracture model implemented in an FFT homogenization solver. The estimate is b…

cond-mat.mtrl-sci20257 cited

Multiscale modeling of hydrogen diffusion in iron considering the effect of dislocations

Gonzalo Álvarez, Álvaro Ridruejo, Javier Segurado

Modeling hydrogen diffusion and its absorption in traps is a fundamental first step towards the understanding and prediction of hydrogen embrittlement. In this study, a multiscale…

cond-mat.mtrl-sci2024

A crack-length control technique for phase field fracture in FFT homogenization

Pedro Aranda, Javier Segurado

Modeling the propagation of cracks at the microscopic level is fundamental to understand the effect of the microstructure on the fracture process. Nevertheless, microscopic propaga…

cond-mat.mtrl-sci2024

An FFT based approach to account for elastic interactions in OkMC: Application to dislocation loops in iron

Rodrigo Santos-Güemes, Christophe J. Ortiz, Javier Segurado

Object kinetic Montecarlo (OkMC) is a fundamental tool for modeling defect evolution in volumes and times far beyond atomistic models. The elastic interaction between defects is cl…