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A B-spline multi-parameterization method for multi-material topology optimization of thermoelastic structures

机译:一种用于热弹性结构的多材料拓扑优化的B样式多参数化方法

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摘要

A B-spline multi-parameterization method (MPM) is presented in this paper for topology optimization of thermoelastic structures. As thermoelastic topology optimization belongs to a kind of design-dependent problems that are complicated to deal with, this method is aimed to solve thermoelastic problems with multiple materials by means of B-spline parameterization that integrates together the recursive multiphase material interpolation (RMMI) and the uniform multiphase material interpolation (UMMI) schemes. The commonly used discrete pseudo-density variables related to the finite element model are thus replaced with continuous pseudo-density fields dominated by control parameters in the B-spline space. In this sense, B-spline multi-parameterization is used for the first time to represent multiple pseudo-density fields and multi-material properties including elasticity matrix and thermal stress coefficient. Compared with traditional pseudo-density method, the current method has the advantage of not only attaining a reduction of design variables in number but also achieving a regularized distribution of pseudo-density fields with a clear material layout over the whole structure domain. Numerical results show that the stable convergences are achieved with the avoidance of gray elements, checkerboards, and multi-material overlapping owing to the high continuity of B-spline preserved for multi-material distributions. Besides, it is found that the RMMI scheme distributes less stiff materials around stiff materials, while the UMMI scheme tends to gather less stiff materials together.
机译:本文提出了一种B样条曲线多参数化方法(MPM),用于热弹性结构的拓扑优化。随着热弹性拓扑优化属于一种与处理复杂的设计依赖性问题,该方法旨在通过B样条参数化解决多种材料的热弹性问题,该参数化递归多相材料插值(RMMI)和均匀的多相材料插值(UMMI)方案。因此,与有限元模型相关的常用的离散伪密度变量由由B样条空间中的控制参数支配的连续伪密度字段替换。从这个意义上讲,第一次使用B样条多参数化来表示多个伪密度字段和多材料特性,包括弹性矩阵和热应力系数。与传统的伪密度法相比,电流方法的优点是不仅可以获得数量中的设计变量的减少,而且还具有在整个结构域上用清晰的材料布局实现伪密度场的正则化分布。数值结果表明,由于避免灰色元件,棋盘和多材料重叠,由于为多材料分布而保留的B样条曲线的高连续性,实现了稳定的收敛。此外,发现RMMI方案在僵硬材料周围分布较少的僵硬材料,而UMMI方案趋于在一起收集更少的僵硬材料。

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