Frame structure design method based on H<sup>1</sup> gradient method using shape, size and topology optimization

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Other Title
  • 幾何形状・断面寸法・トポロジー最適化を用いるH<sup>1</sup>勾配法に基づく骨組構造体設計法

Abstract

<p>In this study, we propose a non-parametric shape-topology optimization method for tailoring the static deformation of micro-frame structures. The design objective is to minimize the sum of squared error norms for achieving the desired displacements on specified members. The shape gradient function, the size gradient function, the topology gradient function, and the optimality conditions for this problem are theoretically derived with the Lagrange multiplier method, the material derivative method, adjoint variable method, GSIMP method. The sensitivity functions for this problem are applied for the H1 gradient method for frame structures. With the proposed method, the optimal arbitrarily formed frame structures will be obtained without any shape, size and topology parameterization while maintaining their smoothness. Optimum design examples are demonstrated and the results are discussed.</p>

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