A level set solution to the stress-based structural shape and topology optimization

► We present a level set solution to stress-based shape and topology optimization. ► A novel global measure of stress is proposed. ► Shape sensitivity analysis is performed via the material derivative method. ► Artificial weak material usually used in level set method to mimic void is avoided. ► Pea...

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Bibliographic Details
Published inComputers & structures Vol. 90-91; pp. 55 - 64
Main Authors Xia, Qi, Shi, Tielin, Liu, Shiyuan, Wang, Michael Yu
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier Ltd 01.01.2012
Elsevier
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Summary:► We present a level set solution to stress-based shape and topology optimization. ► A novel global measure of stress is proposed. ► Shape sensitivity analysis is performed via the material derivative method. ► Artificial weak material usually used in level set method to mimic void is avoided. ► Peak stress can be effectively controlled. We present a level set solution to the stress-based structural shape and topology optimization. First, a novel global measure of stress is proposed, and the optimization problem is formulated to minimize the global measure of stress subject to a constraint of material volume. In order to solve this optimization problem, the level set method is employed. The finite element analysis is accomplished by modifying a fixed background mesh, and the artificial weak material that is conventionally used in the level set method to mimic void is avoided in the present work.
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ISSN:0045-7949
1879-2243
DOI:10.1016/j.compstruc.2011.10.009