Title of article
Drucker–Prager–Cap creep modelling of pebble beds in fusion blankets
Author/Authors
Hofer، نويسنده , , D. and Kamlah، نويسنده , , M.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
13
From page
105
To page
117
Abstract
Modelling of thermal and mechanical behaviour of pebble beds for fusion blankets is an important issue to understand the interaction of solid breeder and beryllium pebble beds with the surrounding structural material. Especially the differing coefficients of thermal expansion of these materials cause high stresses and strains during irradiation induced volumetric heating. To describe this process, the coupled thermomechanical behaviour of both pebble bed materials has to be modelled. Additionally, creep has to be considered contributing to bed deformations and stress relaxation. Motivated by experiments, we use a continuum mechanical approach called Drucker–Prager/Cap theory to model the macroscopic pebble bed behaviour. The model accounts for pressure dependent shear failure, inelastic hardening, and volumetric creep. The elastic part is described by a nonlinear elasticity law. The model has been implemented by user-defined routines in the commercial finite-element code ABAQUS. To check the numerics, the implementation is compared to an analytical solution. Furthermore, the Drucker–Prager/Cap tool is applied to a single ceramic breeder bed subject to creep under volumetric heating.
Keywords
Ceramic breeder material , Pebble beds , Thermomechanics , HARDENING , Volumetric creep , Drucker–Prager
Journal title
Fusion Engineering and Design
Serial Year
2005
Journal title
Fusion Engineering and Design
Record number
2351931
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