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首页> 外文期刊>Journal of Materials Science >Design of two-dimensional horseshoe layout for stretchable electronic systems
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Design of two-dimensional horseshoe layout for stretchable electronic systems

机译:可伸缩电子系统的二维马蹄形布局设计

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摘要

Using appropriate layout in the design of the stretchable electronics is very important, since the optimized layout is capable of making the electronic system stretchable and maintaining the electrical performance and structural reliability. In this paper, a unit cell model with periodic boundary condition is proposed to investigate the stretchability and optimize the structure of the stretchable electronic systems with the 2D "horseshoe" layout. Unlike the monotonous trends in the cases of the "wavy", "mesh", and 1D "horseshoe" layout, each impact factor (metal wire thickness, metal wire width, eccentric angle) has an optimized value for the stretchability to reach its maximum. To comprehensively investigate the influence of these impact factors on the stretchability, we employ the response surface method and obtain the quadratic response surface function to mathematically explore the relationship between these impact factors and the stretchability of interest. The response surface method proposes an optimal design of the 2D "horseshoe" layout for the maximum stretchability, which agrees well with the finite element simulations results. The findings here provide a more programmable scheme and can be useful in formulating designs for the stretchable electronic systems. Introduction
机译:在可伸缩电子设备的设计中使用适当的布局非常重要,因为优化的布局能够使电子系统可伸缩并保持电气性能和结构可靠性。在本文中,提出了具有周期性边界条件的晶胞模型,以研究可拉伸性并优化具有二维“马蹄形”布局的可拉伸电子系统的结构。与“波浪形”,“网格”和一维“马蹄形”布局的单调趋势不同,每种影响因素(金属线粗细,金属线宽,偏心角)都有一个最佳值,以使可拉伸性达到最大。 。为了全面研究这些影响因素对可拉伸性的影响,我们采用响应面方法并获得二次响应表面函数,以数学方式探索这些影响因素与目标可拉伸性之间的关系。响应面方法提出了二维“马蹄形”布局的最佳设计,以实现最大的可拉伸性,这与有限元模拟结果十分吻合。此处的发现提供了一种更具可编程性的方案,可用于制定可伸缩电子系统的设计。介绍

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