International audienceThe multi-mechanism model devoted to the semi-crystalline polymers proposed in the recent study (Regrain et al. [1]) is generalized in this work to account for mechanical damage behaviour. To assess model reliability, finite element simulations of notched specimens subjected to creep behaviour were performed and compared successfully to experiments in terms of creep notch opening displacement. The model is able to reproduce the location of the maximum damage in a structure. This is a key information for the lifetime prediction of engineering components made of semi-crystalline polymers such as pressure vessel or pipes subjected to creep loading
International audienceThis book focuses on a particular class of models (namely Multi-Mechanism mode...
This paper presents a new approach to describe the mechanical behavior of semi-crystalline polymers,...
The mechanism of lamellar fragmentation in the semi-crystalline polymers with spherulitic structure,...
International audienceThe biphasic character of semi-crystalline polymer was modeled by the multi-me...
International audienceTwo multi-phase models called 2M1C and 2M2C which take the degree of crystalli...
International audienceNotched round bars made of a semi-crystalline polymer, polyamide 6, were submi...
International audienceIn this work, the anisotropic damage of semi-crystalline polymers is investiga...
International audiencePolyamide 6 (PA6) is a semi-crystalline polymer utilized in many structural co...
International audienceThe deformation and damage micro-mechanisms of Polyamide 6 were investigated b...
\u3cp\u3eAn initially qualitative two-phase elasto-viscoplastic micromechanical model for the mechan...
In the pressure vessel and piping and power industries, creep deformation has continued to be an imp...
International audienceThe polyamide 6 (PA6) under study exhibits non-linear time dependent (viscopla...
This paper highlights assessment of creep damage of an 11-year service-exposed reformer tube made up...
For efficient design of pressure components, and cost effective extension of lives of existing compo...
A model is presented to describe the creep behaviour of glassy polymers below the glass transition t...
International audienceThis book focuses on a particular class of models (namely Multi-Mechanism mode...
This paper presents a new approach to describe the mechanical behavior of semi-crystalline polymers,...
The mechanism of lamellar fragmentation in the semi-crystalline polymers with spherulitic structure,...
International audienceThe biphasic character of semi-crystalline polymer was modeled by the multi-me...
International audienceTwo multi-phase models called 2M1C and 2M2C which take the degree of crystalli...
International audienceNotched round bars made of a semi-crystalline polymer, polyamide 6, were submi...
International audienceIn this work, the anisotropic damage of semi-crystalline polymers is investiga...
International audiencePolyamide 6 (PA6) is a semi-crystalline polymer utilized in many structural co...
International audienceThe deformation and damage micro-mechanisms of Polyamide 6 were investigated b...
\u3cp\u3eAn initially qualitative two-phase elasto-viscoplastic micromechanical model for the mechan...
In the pressure vessel and piping and power industries, creep deformation has continued to be an imp...
International audienceThe polyamide 6 (PA6) under study exhibits non-linear time dependent (viscopla...
This paper highlights assessment of creep damage of an 11-year service-exposed reformer tube made up...
For efficient design of pressure components, and cost effective extension of lives of existing compo...
A model is presented to describe the creep behaviour of glassy polymers below the glass transition t...
International audienceThis book focuses on a particular class of models (namely Multi-Mechanism mode...
This paper presents a new approach to describe the mechanical behavior of semi-crystalline polymers,...
The mechanism of lamellar fragmentation in the semi-crystalline polymers with spherulitic structure,...