Topology optimization and conventional structural sizing optimization procedures are used together to obtain optimum designs for plate structures. A three‐layer, Mindlin‐Reissner plate model is first used with topology optimization to determine optimal stiffening zones. The central layer represents the unstiffened plate and the symmetrically located upper and lower layers are potential stiffening zones. A stiffening volume is specified and the objective is to minimize the strain energy. From these stiffening zones, a set of centre lines of equivalent stiffening Timoshenko beam elements is selected. A sizing optimization procedure is then used to optimize the stiffener dimensions. The objective of the design in the final sizing optimization stage is to minimise the strain energy keeping the total stiffened plate volume constant. The efficiency and accuracy of the proposed strategy is illustrated through several applications.
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1 December 1999
Research Article|
December 01 1999
Integrated design optimization of stiffened plate structures
F. Belblidia;
F. Belblidia
Department of Civil Engineering, University of Wales, Swansea, UK
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S.M.B. Afonso;
S.M.B. Afonso
Departamento de Engenharia Civil, Universidade Federal de Pernambuco, Recife, Brasil
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E. Hinton;
E. Hinton
Department of Civil Engineering, University of Wales, Swansea, UK, and
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G.C.R. Antonino
G.C.R. Antonino
Departamento de Engenharia Civil, Universidade Federal de Pernambuco, Recife, Brasil
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Publisher: Emerald Publishing
Online ISSN: 1758-7077
Print ISSN: 0264-4401
© MCB UP Limited
1999
Engineering Computations (1999) 16 (8): 934–952.
Citation
Belblidia F, Afonso S, Hinton E, Antonino G (1999), "Integrated design optimization of stiffened plate structures". Engineering Computations, Vol. 16 No. 8 pp. 934–952, doi: https://doi.org/10.1108/02644409910304185
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