日本機械学会論文集 C編
Online ISSN : 1884-8354
Print ISSN : 0387-5024
構造設計における断面形状最適化のための一解法(<特集>D&D2009)
下田 昌利本多 真由美榎畑 義憲
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2010 年 76 巻 765 号 p. 1076-1082

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In this paper, we present a numerical solution to optimize a cross section shape of a solid structure, which is often demanded at the early stage in structural designs. The cross section area is minimized subject to the constraints of sectional properties including the torsional constant, the second moment of area, the center of figure and the boundary length. The problem is formulated as a distributed shape optimization problem, and the shape gradient function is derived using the Lagrange multipliers and the material derivative method. The traction method, which was proposed as a gradient method in the Hilbert space, is applied to determine the smooth optimal shape. The constraint conditions are efficiently satisfied using the modified feasible direction method. The validity of this method is verified through several design examples for obtaining the optimal shape of the cross section under the constraints of sectional properties.

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