Similarity-driven Topology Optimization for Statics and Crash via Energy Scaling Method

IF 2.9 3区 工程技术 Q2 ENGINEERING, MECHANICAL Journal of Mechanical Design Pub Date : 2023-07-11 DOI:10.1115/1.4062943
M. S. Yousaf, D. Detwiler, F. Duddeck, S. Menzel, Satchit Ramnath, Nathan Zurbrugg, M. Bujny
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引用次数: 1

Abstract

Topology Optimization (TO) is used in the initial design phase to optimize certain objective functions under given boundary conditions by finding suitable material distributions in a specified design domain. Currently available methods in industry work very efficiently to get topologically-optimized design concepts under static and dynamic load cases. However, conventional methods do not address the designer's preferences about the final material layout in the optimized design. In practice, the final design might be required to have a certain degree of local or global structural similarity with an already present good reference design because of economic, manufacturing and assembly limitations or the desire to re-use parts in different systems. In this article, a heuristic Energy Scaling Method (ESM) for similarity-driven TO under static as well as dynamic loading conditions is presented and thoroughly evaluated. A 2D cantilever beam under static point load is used to show that the proposed method can be coupled with gradient-based and also heuristic, non-gradient methods to get designs of varying similarity w.r.t. a reference design. Further testing of the proposed method for similarity-driven TO on a 2D crash test case and a large-scale 3D hood model of a car body indicates the effectiveness of the method for a wide range of problems in the industry. Finally, the application of similarity-driven TO is further extended to show that ESM also has the potential for sensitivity analysis of performance w.r.t. the extension of design domain.
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基于能量缩放法的静态和碰撞的相似驱动拓扑优化
拓扑优化(TO)是在初始设计阶段,在给定的边界条件下,通过在指定的设计域中寻找合适的材料分布来优化某些目标函数。目前工业上可用的方法可以非常有效地获得静态和动态载荷情况下的拓扑优化设计概念。然而,在优化设计中,传统的方法并不能满足设计者对最终材料布局的偏好。在实践中,由于经济、制造和装配的限制或在不同系统中重复使用零件的愿望,最终设计可能需要与已经存在的良好参考设计具有一定程度的局部或全局结构相似性。在本文中,提出了一种启发式能量标度方法(ESM)用于静态和动态加载条件下的相似驱动TO,并进行了全面的评估。以静态点荷载作用下的二维悬臂梁为例,表明该方法可以与基于梯度的方法和启发式非梯度方法相结合,得到与参考设计不同的相似度设计。在2D碰撞测试案例和大型3D车身引擎盖模型上对所提出的相似驱动TO方法的进一步测试表明,该方法对行业中广泛的问题是有效的。最后,进一步扩展了相似驱动模型的应用,表明随着设计域的扩展,ESM也具有性能敏感性分析的潜力。
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来源期刊
Journal of Mechanical Design
Journal of Mechanical Design 工程技术-工程:机械
CiteScore
8.00
自引率
18.20%
发文量
139
审稿时长
3.9 months
期刊介绍: The Journal of Mechanical Design (JMD) serves the broad design community as the venue for scholarly, archival research in all aspects of the design activity with emphasis on design synthesis. JMD has traditionally served the ASME Design Engineering Division and its technical committees, but it welcomes contributions from all areas of design with emphasis on synthesis. JMD communicates original contributions, primarily in the form of research articles of considerable depth, but also technical briefs, design innovation papers, book reviews, and editorials. Scope: The Journal of Mechanical Design (JMD) serves the broad design community as the venue for scholarly, archival research in all aspects of the design activity with emphasis on design synthesis. JMD has traditionally served the ASME Design Engineering Division and its technical committees, but it welcomes contributions from all areas of design with emphasis on synthesis. JMD communicates original contributions, primarily in the form of research articles of considerable depth, but also technical briefs, design innovation papers, book reviews, and editorials.
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