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Plate/shell topological optimization subjected to linear buckling constraints by adopting composite exponential filtering function
Authors:Hong-Ling Ye  Wei-Wei Wang  Ning Chen  Yun-Kang Sui
Institution:College of Mechanical Engineering and Applied Electronics Technology, Beijing University of Technology, Beijing 100124, China
Abstract:In this paper, a model of topology optimization with linear buckling constraints is established based on an independent and continuous mapping method to minimize the plate/shell structure weight. A composite exponential function (CEF) is selected as filtering functions for element weight, the element stiffness matrix and the element geomet-ric stiffness matrix, which recognize the design variables, and to implement the changing process of design variables from“discrete”to“continuous”and back to“discrete”. The buck-ling constraints are approximated as explicit formulations based on the Taylor expansion and the filtering function. The optimization model is transformed to dual programming and solved by the dual sequence quadratic programming algo-rithm. Finally, three numerical examples with power function and CEF as filter function are analyzed and discussed to demonstrate the feasibility and efficiency of the proposed method.
Keywords:Topological optimization  Plate/shell struc-ture  Linear buckling constraint  Independent continuous and mapping (ICM) method  Filter function
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