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Material interface effects on the topology optimizationof multi-phase structures using a level set method

机译:材料界面对水平集方法对多相结构拓扑优化的影响

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A level set method is used as a framework to study the effects of including material interface properties in the optimization of multi-phase elastic and thermoelastic structures. In contrast to previous approaches, the material properties do not have a discontinuous change across the interface that is often represented by a sharp geometric boundary between material regions. Instead, finite material interfaces with monotonic and non-monotonic property variations over a physically motivated interface zone are investigated. Numerical results are provided for several 2D problems including compliance and displacement minimization of structures composed of two and three materials. The results highlight the design performance changes attributed to the presence of the continuously graded material interface properties.
机译:使用水平集方法作为框架来研究在优化多相弹性和热弹性结构中包括材料界面属性的影响。与以前的方法相比,材料属性在整个界面上没有不连续的变化,而这通常由材料区域之间的尖锐几何边界表示。取而代之的是,研究了在物理激励的界面区域上具有单调和非单调特性变化的有限材料界面。提供了一些二维问题的数值结果,包括由两种和三种材料组成的结构的柔度和位移最小化。结果突出了归因于连续分级的材料界面特性的存在而导致的设计性能变化。

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