首页> 外文期刊>Finite Elements in Analysis and Design >Isogeometric topology optimization of shell structures using trimmed NURBS surfaces
【24h】

Isogeometric topology optimization of shell structures using trimmed NURBS surfaces

机译:使用修剪的NURBS曲面对壳结构进行等角拓扑优化

获取原文
获取原文并翻译 | 示例
           

摘要

In the present research, the isogeometric topology optimization of shell structures is proposed. There have been lots of successful studies on the shape optimization using isogeometric analysis (IGA). However, it is not straightforward to apply the conventional IGA to topology optimization. Topological changes of a domain are hard to be represented due to the tensor-product form of a Non-Uniform Rational B-Spline (NURBS) surface. Since only quadrilateral domains can be handled in the conventional IGA, a topologically complex domain which frequently appears during the optimization process should be built by introducing multiple untrimmed NURBS patches for analysis. Trimmed surface analysis (TSA) is the IGA where trimming techniques are employed, and it can handle a topologically complex domain with a single NURBS patch effectively. In the present work, the basic concept of the two-dimensional TSA is appropriately adapted to shell structures in order to handle the complex topologies. The whole optimization process includes the topological change step and the shape optimization step. The criteria based on the topological derivatives are used for the judgement of new hole creation and the decision of the hole position. Holes are represented by introducing NURBS trimming curves. The trimming curve control points as well as the surface control points are set as design variables for the shape optimization. In the optimization process, updating of the trimming curves is performed in adaptive manners to maintain smooth boundary representation and robust convergence. With numerical examples, it is shown that the proposed method gives appropriate and acceptable shell structure designs. By the inner or outer boundaries of a domain which are described by trimming curves, the smooth material layout is derived without gray scales or checkerboard patterns. Since the same IGES standard is used throughout the process, the final design derived by the present method can be directly communicated with CAD systems without any additional treatments. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本研究中,提出了壳结构的等几何拓扑优化。使用等几何分析(IGA)进行形状优化的成功研究很多。但是,将常规IGA应用于拓扑优化并非易事。由于非均匀有理B样条(NURBS)表面的张量积形式,因此很难表示域的拓扑变化。由于在常规IGA中只能处理四边形域,因此应通过引入多个未修剪的NURBS补丁进行分析,来构建在优化过程中经常出现的拓扑复杂域。修剪表面分析(TSA)是采用微调技术的IGA,它可以有效地利用单个NURBS补丁处理拓扑复杂的域。在当前的工作中,二维TSA的基本概念适合于壳结构,以便处理复杂的拓扑。整个优化过程包括拓扑变化步骤和形状优化步骤。基于拓扑导数的标准用于判断新孔的产生和孔位置的确定。通过引入NURBS修整曲线来表示孔。将修整曲线控制点和表面控制点设置为形状优化的设计变量。在优化过程中,修整曲线的更新以自适应方式执行,以保持平滑的边界表示和稳健的收敛性。通过数值算例表明,所提出的方法给出了适当且可接受的壳结构设计。通过用修整曲线描述的区域的内部或外部边界,可以获得平滑的材料布局,而没有灰度或棋盘图案。由于在整个过程中使用相同的IGES标准,因此通过本方法得出的最终设计可以直接与CAD系统进行通信,而无需任何其他处理。 (C)2016 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号