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Level set-based topology optimisation of a compliant mechanism design using mathematical programming

机译:使用数学编程的依从机制设计的基于级别集的拓扑优化

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摘要

We propose a structural optimisation method, based on the level set method and using mathematical programming such as the method of moving asymptotes (MMA), which we apply to the design of compliant mechanisms. A compliant mechanism is a monolithic joint-free mechanism designed to be flexible to obtain a specified motion. In the design of compliant mechanisms, several requirements such as the direction of the deformation and stress concentrations must be considered to obtain the specified mechanical function. Topology optimisation, the most flexible type of structural optimisation, has been successfully used as a design optimisation method for compliant mechanisms, but the utility of topology optimisation results is often spoiled by a plethora of impractical designs such as structures containing grayscale areas. Level set-based topology optimisation methods are immune to the problem of grayscales since the boundaries of the optimal configuration are implicitly represented using the level set function. The proposed method updates the level set function using mathematical programming to facilitate the treatment of constraint functionals. To verify its capability, we apply our method to compliant mechanism design problems that include displacement constraints and stress constraints.
机译:我们提出了一种基于水平集方法并使用数学编程(例如移动渐近线(MMA)方法)的结构优化方法,并将其应用于顺应性机制的设计中。顺应性机构是单片无接头机构,旨在灵活地获得指定的运动。在顺应机构的设计中,必须考虑一些要求,例如变形方向和应力集中,以获得指定的机械功能。拓扑优化是结构优化的最灵活类型,已成功地用作顺应性机制的设计优化方法,但是拓扑优化结果的实用性通常会因大量不切实际的设计(例如包含灰度区域的结构)而受到破坏。基于级别集的拓扑优化方法不受灰度问题的困扰,因为使用级别集函数隐式表示了最佳配置的边界。所提出的方法使用数学编程来更新水平集函数,以促进约束函数的处理。为了验证其功能,我们将我们的方法应用于包括位移约束和应力约束在内的顺应性机构设计问题。

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