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A comprehensive study of feature definitions with solids and voids for topology optimization

机译:包含实体和空隙的特征定义的全面研究,用于拓扑优化

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In this paper, we present a CAD-oriented and feature-driven topology optimization methodology for engineering structures with freeform design domains. Mixed solid-void features are adopted as basic design primitives to build a unified formulation of feature definition, while pure solid or pure void features are considered as two special cases. Topology optimization is achieved as a Boolean intersection process between the so-called topology variation modeler (TVM) and freeform design domain modeler (FDDM) in terms of level-set functions (LSFs). The TVMs constructed with solid and/or void features are applied to clip the FDDM through Boolean operations. It is shown that sensitivity analysis with boundary integral scheme is independent of the mathematical expressions of the LSF. Numerical problems with freeform and periodic design domains are dealt with to demonstrate the proposed topology optimization method. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,我们为具有自由形式设计域的工程结构提供了一种面向CAD和特征驱动的拓扑优化方法。混合的实体-无效特征被用作基本设计原语,以建立统一的特征定义表述,而纯实体或纯虚空特征被视为两种特殊情况。拓扑优化是根据级别集函数(LSF)在所谓的拓扑变化建模器(TVM)和自由形式设计域建模器(FDDM)之间进行布尔交叉处理而实现的。具有实心和/或空隙特征的TVM通过布尔运算应用于裁剪FDDM。结果表明,采用边界积分方案的灵敏度分析与LSF的数学表达式无关。处理自由形式和周期性设计域的数值问题,以证明所提出的拓扑优化方法。 (C)2017 Elsevier B.V.保留所有权利。

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