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A Fully Coupled Finite Element Formlation for Multi-Physics Micro Domains

机译:用于多物理微域的完全耦合的有限元制片

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In the analysis and modeling of MEMS devices, a general modeling approach is necessary to solve a multi-disciplinary domain of the device with large number of nodes and elements. In this paper, we present a step by step finite element formulation for automated modeling of multi-disciplinary domains. The electro-thermo-mechanical domain is explained and an algorithmic approach for sequential analysis of an arbitrary ground structure with multi-disciplinary boundaries is developed and implemented in Matlab with a graphical user interface. The results of the finite element approach is compared and verified with exact solutions and test results from literature. The agreement of results verifies the application of proposed finite element formulation to the analysis of elector-thermo-mechanical domains. This formulation provides a fast and reliable tool to analyze electro-thermo-elastic devices which allows large flexibility in the selection of mechanical, thermal and electrical boundary conditions.
机译:在MEMS器件的分析和建模中,必须采用大量节点和元素来解决设备的多学科域的常规建模方法。在本文中,我们逐步逐步有限元配方,用于多学科域的自动建模。解释了电热机械域,并在Matlab中开发和实现了具有多学科边界的任意地面结构顺序分析的算法方法,并在Matlab中实现了图形用户界面。比较有限元方法的结果,并用精确的解决方案和研究结果验证。结果协议验证了提出的有限元制剂在选矿 - 热机械结构域分析中的应用。该配方提供了一种快速可靠的工具来分析电热弹性装置,其在机械,热和电气边界条件的选择方面允许大的灵活性。

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