Stiffener layout optimization of complex surfaces is fulfilled within the framework of topology optimization. A combined parameterization method is developed in two aspects. One is to parameterize the material distribution of the stiffener layout by means of B-spline. The other is to build the mapping relationship from the known 3D surface mesh of the thin-walled structure to its parametric domain by means of mesh parameterization. The influence of mesh parameterization upon the stiffener layout is discussed to reveal the matching issue of the combined parameterization. 3D complex surfaces represented by the triangular mesh can be dealt with even though analytical parametric equations are not available. Some numerical examples are solved to demonstrate the direct advantage and effectiveness of the proposed method.
翻译:Stiffener 复杂表面的布局优化是在地形优化框架内实现的。在两个方面开发了一种综合参数化方法。一个是通过B-spline对硬质布局的物质分布进行参数化;另一个是通过网状参数化,从薄壁结构已知的3D表面网格到其参数域,建立映射关系。讨论了网状参数化对坚硬布局的影响,以揭示综合参数化的匹配问题。即使没有分析参数方程式,三角网格所代表的3D复杂表面也可以处理。一些数字示例被解答,以表明拟议方法的直接优势和有效性。