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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Optimization of structures with thin-layer functional device on its surface through a level set based multiple-type boundary method
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Optimization of structures with thin-layer functional device on its surface through a level set based multiple-type boundary method

机译:通过基于水平集的多类型边界方法优化表面具有薄层功能器件的结构

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摘要

Functional structure, i.e., native base structure equipped with thin-layer functional devices on its surface, is important in many engineering applications. The performance of such a functional structure is seriously affected by the configuration of the base structure and the surface functional devices, and the optimization of configuration is a simultaneous topology optimization of the boundaries that belong to different types. In the present study, load cell is taken as an example of the functional structure, and strain gauge is taken as an example of the functional device. The task of designing a load cell is accomplished by solving a multi-objective topology optimization problem whose objective makes a compromise between stiffness and flexibility of the base structure. The design variables include two types of boundaries: functional boundary where a strain gauge is installed, the free boundary where there does not exist any connection to the environment. The optimization problem is solved by using a level set based multiple-type boundary method. Two level set functions are used to represent a functional structure and the two types of boundaries. Evolution of the two boundaries is modeled by two independent Hamilton-Jacobi equations. Re-meshing is conducted in each iteration of optimization. Quadrilateral body-fitted mesh is used for the finite element analysis, and the artificial weak material is not used. Numerical examples in two dimensions are investigated. (C) 2016 Elsevier B.V. All rights reserved.
机译:功能结构,即在其表面配备有薄层功能设备的本地基础结构,在许多工程应用中很重要。这种功能结构的性能受到基础结构和表面功能设备的配置的严重影响,并且配置的优化是对属于不同类型的边界的同时拓扑优化。在本研究中,以称重传感器为功能结构的示例,以应变仪为功能装置的示例。设计称重传感器的任务是通过解决多目标拓扑优化问题来完成的,该问题的目标是在基础结构的刚度和柔韧性之间做出折衷。设计变量包括两种类型的边界:安装应变计的功能边界,与环境不存在任何连接的自由边界。通过使用基于水平集的多类型边界方法解决了优化问题。两个级别集函数用于表示功能结构和两种类型的边界。通过两个独立的汉密尔顿-雅各比方程对两个边界的演化进行建模。重新网格化在优化的每个迭代中进行。四边形贴身网格用于有限元分析,而人造弱材料则不使用。研究了二维的数值示例。 (C)2016 Elsevier B.V.保留所有权利。

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