TY - JOUR
T1 - Some recent advances in the integrated layout design of multicomponent systems
AU - Zhang, Weihong
AU - Xia, Liang
AU - Zhu, Jihong
AU - Zhang, Qiao
PY - 2011
Y1 - 2011
N2 - We provide an introduction and state of the art overview of integrated layout design of multicomponent systems. We review several packing optimization and overlap detection strategies, some tree-based methods, such as octrees and spheretrees, and a finite circle method (FCM) proposed to favor gradient-based optimization algorithms. Integrated layout design techniques for simultaneous packing and structure topology optimization of multicomponent systems are reviewed; two typical approaches for system stiffness maximization are reviewed and compared in detail. Design of multicomponent systems under inertia forces is presented using polynomial interpolation models; constraints to the centroid position, moment of inertia, and volume fraction are included. Applications to piezoelectric multi-actuated microtools and integrated layout design of bridge systems are presented. Finally, the effectiveness of the FCM, applications to 3D problems, and local optimum phenomena are discussed.
AB - We provide an introduction and state of the art overview of integrated layout design of multicomponent systems. We review several packing optimization and overlap detection strategies, some tree-based methods, such as octrees and spheretrees, and a finite circle method (FCM) proposed to favor gradient-based optimization algorithms. Integrated layout design techniques for simultaneous packing and structure topology optimization of multicomponent systems are reviewed; two typical approaches for system stiffness maximization are reviewed and compared in detail. Design of multicomponent systems under inertia forces is presented using polynomial interpolation models; constraints to the centroid position, moment of inertia, and volume fraction are included. Applications to piezoelectric multi-actuated microtools and integrated layout design of bridge systems are presented. Finally, the effectiveness of the FCM, applications to 3D problems, and local optimum phenomena are discussed.
KW - integrated layout design
KW - multicomponent systems
KW - packing optimization
KW - topology optimization
UR - https://www.scopus.com/pages/publications/80455168776
U2 - 10.1115/1.4005083
DO - 10.1115/1.4005083
M3 - 文章
AN - SCOPUS:80455168776
SN - 1050-0472
VL - 133
JO - Journal of Mechanical Design
JF - Journal of Mechanical Design
IS - 10
M1 - 104503
ER -