In the phase-field description of brittle fracture, the fracture-surface area can be expressed as a functional of the phase field (or damage field). In this work we study the applicability of this explicit expression as a (non-linear) path-following constraint to robustly track the equilibrium path in quasi-static fracture propagation simulations, which can include snap-back phenomena. Moreover, we derive a fracture-controlled staggered solution procedure by systematic decoupling of the path-following controlled elasticity and phase-field problems. The fracture-controlled monolithic and staggered solution procedures are studied for a series of numerical test cases. The numerical results demonstrate the robustness of the new approach, and pr...
In this paper we first recapitulate some basic notions of brittle and cohesive fracture models, as w...
The irreversibility constraint, the non-convexity of governing energy functional and the intrinsical...
A unified framework for an impromptu switching between the coupled (i.e., the monolithic), the stagg...
In the phase-field description of brittle fracture, the fracture-surface area can be expressed as a ...
International audienceThe phase field method has been widely adopted in brittle fracture analysis fo...
The Material Point Method for the analysis of deformable bodies is revisited and originally upgraded...
In contrast to discrete descriptions of fracture, phase-field descriptions do not require numerical ...
This paper concerns the analysis and implementation of a novel iterative staggered scheme for quasi-...
Fracture is a fundamental mechanism of materials failure. Propagating cracks can exhibit a rich dyna...
The phase field method uses a length scale parameter to regularize the discrete crack to a diffuse c...
The phase-field modeling of quasi-brittle fracture accounting for the irreversible growth of the reg...
Recently, phase-field approaches have gained popularity as a versatile tool for simulating fracture ...
This paper addresses the modeling of fracture in quasi-brittle materials using a phase-field approac...
The numerical assessment of fracture has gained importance in fields like the safety analysis of tec...
In this paper we first recapitulate some basic notions of brittle and cohesive fracture models, as w...
The irreversibility constraint, the non-convexity of governing energy functional and the intrinsical...
A unified framework for an impromptu switching between the coupled (i.e., the monolithic), the stagg...
In the phase-field description of brittle fracture, the fracture-surface area can be expressed as a ...
International audienceThe phase field method has been widely adopted in brittle fracture analysis fo...
The Material Point Method for the analysis of deformable bodies is revisited and originally upgraded...
In contrast to discrete descriptions of fracture, phase-field descriptions do not require numerical ...
This paper concerns the analysis and implementation of a novel iterative staggered scheme for quasi-...
Fracture is a fundamental mechanism of materials failure. Propagating cracks can exhibit a rich dyna...
The phase field method uses a length scale parameter to regularize the discrete crack to a diffuse c...
The phase-field modeling of quasi-brittle fracture accounting for the irreversible growth of the reg...
Recently, phase-field approaches have gained popularity as a versatile tool for simulating fracture ...
This paper addresses the modeling of fracture in quasi-brittle materials using a phase-field approac...
The numerical assessment of fracture has gained importance in fields like the safety analysis of tec...
In this paper we first recapitulate some basic notions of brittle and cohesive fracture models, as w...
The irreversibility constraint, the non-convexity of governing energy functional and the intrinsical...
A unified framework for an impromptu switching between the coupled (i.e., the monolithic), the stagg...