A precipitate evolution-based continuum damage mechanics model of creep behaviour in welded 9Cr steel at high temperature

Author:

Ó Murchú C12,Leen SB23,O’Donoghue PE12,Barrett RA23

Affiliation:

1. Civil Engineering, College of Engineering and Informatics, NUI Galway, Ireland, H91 HX31

2. Ryan Institute for Enironmental, Marine and Energy Research, NUI Galway, Ireland, H91 HX31

3. Mechanical Engineering, College of Engineering and Informatics, NUI Galway, Ireland, H91 HX31

Abstract

A multiaxial, physically based, continuum damage mechanics methodology for creep of welded 9Cr steels is presented, incorporating a multiple precipitate-type state variable, which simulates the effects of strain- and temperature-induced coarsening kinematics. Precipitate volume fraction and initial diameter for carbide and carbo-nitride precipitate types are key microstructural variables controlling time to failure in the model. The heat-affected zone material is simulated explicitly utilising measured microstructural data, allowing detailed investigation of failure mechanisms. Failure is shown to be controlled by a combination of microstructural degradation and Kachanov-type damage for the formation and growth of creep cavities. Comparisons with experimental data demonstrate the accuracy of this model for P91 material.

Funder

Irish Research Council

Science Foundation Ireland

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Materials Science

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