We present a new mechanistic, phase field-based formulation for predicting hydrogen embrittlement. The multi-physics model developed incorporates, for the first time, a Taylor-based dislocation model to resolve the mechanics of crack tip deformation. This enables capturing the role of dislocation hardening mechanisms in elevating the tensile stress, hydrogen concentration and dislocation trap density within tens of microns ahead of the crack tip. The constitutive strain gradient plasticity model employed is coupled to a phase field formulation, to simulate the fracture process, and to a multi-trap hydrogen transport model. The analysis of stationary and propagating cracks reveals that the modelling framework presented is capable of adequate...
We present a phase field modeling framework for hydrogen assisted cracking. The model builds upon a ...
Finite element analysis of stress about a blunt crack tip, emphasizing finite strain and phenomenolo...
Hydrogen embrittlement is a long-standing issue in materials science and engineering with a multitud...
We present a new mechanistic, phase field-based formulation for predicting hydrogen embrittlement. T...
We present a new mechanistic, phase field-based formulation for predicting hydrogen embrittlement. T...
We present a gradient-based theoretical framework for predicting hydrogen assisted fracture in elast...
We present a gradient-based theoretical framework for predicting hydrogen assisted fracture in elast...
We present a gradient-based theoretical framework for predicting hydrogen assisted fracture in elast...
The phase field fracture method has emerged as a promising computational tool for modelling a variet...
We present a phase field modeling framework for hydrogen assisted cracking. The model builds upon a ...
We present a combined phase field and cohesive zone formulation for hydrogen embrittlement that reso...
This study proposes a hydrogen-assisted fracture analysis methodology considering associated deforma...
A new mechanism-based approach for hydrogen assisted cracking is proposed. The modeling framework in...
In this work hydrogen diffusion towards the fracture process zone is examined accounting for local h...
We present a combined phase field and cohesive zone formulation for hydrogen embrittlement that reso...
We present a phase field modeling framework for hydrogen assisted cracking. The model builds upon a ...
Finite element analysis of stress about a blunt crack tip, emphasizing finite strain and phenomenolo...
Hydrogen embrittlement is a long-standing issue in materials science and engineering with a multitud...
We present a new mechanistic, phase field-based formulation for predicting hydrogen embrittlement. T...
We present a new mechanistic, phase field-based formulation for predicting hydrogen embrittlement. T...
We present a gradient-based theoretical framework for predicting hydrogen assisted fracture in elast...
We present a gradient-based theoretical framework for predicting hydrogen assisted fracture in elast...
We present a gradient-based theoretical framework for predicting hydrogen assisted fracture in elast...
The phase field fracture method has emerged as a promising computational tool for modelling a variet...
We present a phase field modeling framework for hydrogen assisted cracking. The model builds upon a ...
We present a combined phase field and cohesive zone formulation for hydrogen embrittlement that reso...
This study proposes a hydrogen-assisted fracture analysis methodology considering associated deforma...
A new mechanism-based approach for hydrogen assisted cracking is proposed. The modeling framework in...
In this work hydrogen diffusion towards the fracture process zone is examined accounting for local h...
We present a combined phase field and cohesive zone formulation for hydrogen embrittlement that reso...
We present a phase field modeling framework for hydrogen assisted cracking. The model builds upon a ...
Finite element analysis of stress about a blunt crack tip, emphasizing finite strain and phenomenolo...
Hydrogen embrittlement is a long-standing issue in materials science and engineering with a multitud...