Development of a novel phase-field method for local stress-based shape and topology optimization

Citations

WEB OF SCIENCE

38
Citations

SCOPUS

44

초록

This research develops a stress-based topology optimization method (STOM) using the phase-field method representing topological changes. This research shows that to apply the phase field method, regional and localized stress constraints should be addressed. Thus, we use an Augmented Lagrange multiplier approach for the stress constraints and present a new numerical solution for the Lagrange multipliers inside the Allen-Cahn equation with the topological derivatives. Through several two dimensional illustrative problems, the results of the phase-field method have larger objective values, but are robust from a stress point of view compared with the results of the STOM by the density method.

키워드

Stress-based topology optimizationPhase-field methodAugmented Lagrange multiplier methodTopological derivativeLEVEL SET METHODCONTINUUM STRUCTURESRELAXATIONMODELSDESIGN
제목
Development of a novel phase-field method for local stress-based shape and topology optimization
저자
Jeong, Seung HyunYoon, Gil HoTakezawa, AkihiroChoi, Dong-Hoon
DOI
10.1016/j.compstruc.2013.11.004
발행일
2014-02
유형
Article
저널명
Computers and Structures
132
페이지
84 ~ 98