دوره 1، شماره 3 - ( 6-1390 )                   جلد 1 شماره 3 صفحات 397-417 | برگشت به فهرست نسخه ها


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Yang X, Huang X, Xie Y, Li Q, Rong J. TOPOLOGY OPTIMIZATION OF COMPOSITE MATERIALS WITH OPTIMAL STIFFNESS AND THERMAL CONDUCTIVITY. International Journal of Optimization in Civil Engineering. 2011; 1 (3) :397-417
URL: http://ijoce.iust.ac.ir/article-1-47-fa.html
TOPOLOGY OPTIMIZATION OF COMPOSITE MATERIALS WITH OPTIMAL STIFFNESS AND THERMAL CONDUCTIVITY. دانشگاه علم و صنعت ایران. 1390; 1 (3) :397-417

URL: http://ijoce.iust.ac.ir/article-1-47-fa.html


چکیده:   (5519 مشاهده)
This paper presents the bidirectional evolutionary structural optimization (BESO) method for the design of two-phase composite materials with optimal properties of stiffness and thermal conductivity. The composite material is modelled by microstructures in a periodical base cell (PBC). The homogenization method is used to derive the effective bulk modulus and thermal conductivity. BESO procedures are presented to optimize the two individual properties and their various combinations. Three numerical examples are studied. The results agree well with those of the benchmark microstructures and the Hashin-Shtrikman (HS) bounds.
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نوع مطالعه: پژوهشي | موضوع مقاله: Optimal design
دریافت: ۱۳۹۰/۱۱/۳

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