International audienceSlow crack growth in a model of homogenous brittle elastic material is described as a thermal activation process where stress fluctuations allow to overcome a breaking threshold through a series of irreversible steps. We study the case of a single crack in a flat sheet for which analytical predictions can be made, and compare them with results from the equivalent problem of a 2D spring network. Good statistical agreement is obtained for the crack growth profile and final rupture time. The specific scaling of the energy barrier with stress intensity factor appears as a consequence of irreversibility. In addition, the model brings out a characteristic growth length whose physical meaning could be tested experimentally
We study the competition between thermal fluctuations and stress enhancement in the failure process ...
In this thesis work numerical procedures are developed for modeling dynamic fracture of discontinuou...
Taking into account stress fluctuations due to thermal noise, we study thermally activated irreversi...
International audienceSlow crack growth in a model of homogenous brittle elastic material is describ...
Abstract. The properties of slow crack growth in brittle materials are analyzed both theoretically a...
published in EPJ (European Physical Journal)The properties of slow crack growth in brittle materials...
International audienceWe review some theoretical and experimental works describing the slow, thermal...
Elisabeth BOUCHAUD RapporteurSergio CILIBERTO InvitéPeter HOLDSWORTH ExaminateurJean-Pierre HULIN Ra...
In any domain involving some stressed solids, that is, from seismology to general engineering, the s...
In any domain involving some stressed solids, that is, from seismology to general engineering, the s...
This paper describes the propagation of an edge crack in a structured thermo-elastic solid. A rapid ...
International audienceTaking into account stress fluctuations due to thermal noise, we study thermal...
International audienceWe study experimentally the slow growth of a single crack in a fibrous materia...
International audienceWe study experimentally the slow growth of a single crack in a fibrous materia...
AbstractThis paper describes the propagation of an edge crack in a structured thermoelastic solid. A...
We study the competition between thermal fluctuations and stress enhancement in the failure process ...
In this thesis work numerical procedures are developed for modeling dynamic fracture of discontinuou...
Taking into account stress fluctuations due to thermal noise, we study thermally activated irreversi...
International audienceSlow crack growth in a model of homogenous brittle elastic material is describ...
Abstract. The properties of slow crack growth in brittle materials are analyzed both theoretically a...
published in EPJ (European Physical Journal)The properties of slow crack growth in brittle materials...
International audienceWe review some theoretical and experimental works describing the slow, thermal...
Elisabeth BOUCHAUD RapporteurSergio CILIBERTO InvitéPeter HOLDSWORTH ExaminateurJean-Pierre HULIN Ra...
In any domain involving some stressed solids, that is, from seismology to general engineering, the s...
In any domain involving some stressed solids, that is, from seismology to general engineering, the s...
This paper describes the propagation of an edge crack in a structured thermo-elastic solid. A rapid ...
International audienceTaking into account stress fluctuations due to thermal noise, we study thermal...
International audienceWe study experimentally the slow growth of a single crack in a fibrous materia...
International audienceWe study experimentally the slow growth of a single crack in a fibrous materia...
AbstractThis paper describes the propagation of an edge crack in a structured thermoelastic solid. A...
We study the competition between thermal fluctuations and stress enhancement in the failure process ...
In this thesis work numerical procedures are developed for modeling dynamic fracture of discontinuou...
Taking into account stress fluctuations due to thermal noise, we study thermally activated irreversi...