节点文献
内核/壳层微结构上应力诱导点阵花样研究
Stressed patterns on core/shell microstructures
【摘要】 力学性能失配较大的多层结构自高温状态冷却收缩时会积聚很大的应力,其应力失稳模式可表现为多种有序的应力花样,可用于微纳米结构的自组装,其中支撑面的几何结构对其上的应力分布点阵具有决定性的影响.本文介绍了在球形和圆盘形内核/壳层上通过应力工程形成的三角铺排和菲波纳契螺旋花样,探讨了以相互排斥粒子的最小能量构型为模型的特征应力花样与其支撑结构的几何之间关系的普适性,并将此模型用于解释自然界中花叶序的多样性与特征不变性.
【Abstract】 Large stress develops in the interface of a mechanically mismatched core/shell microstructures that shrink due to cooling from high temperature,and the stress-driven buckling mode can manifest various ordered patterns.This procedure can be utilized beneficially for the self-assembly of micro-and nanostructures,and the geometry of the supporting surface plays a pivotal role in determining the stress patterns eventually available.In this review article,we present the fabrication of triangular tessellations and Fibonacci parastichous spirals on the spherical and disc-like core/shell micro-structures via stress engineering,and make a brief discussion over the universality of the relation between the stressed patterns,modeled as least-energy configurations for mutually repulsive parti-cles,and the geometry of the supporting surfaces.The rationale can be also applied to the explana-tion of the variety and robustness of phyllotactic patterns in nature.
【Key words】 stress engineering; triangular tessellation; Fibonacci parastichous spirals; topology; phyllotaxy; micro-and nanofabrication;
- 【文献出处】 科学通报 ,Chinese Science Bulletin , 编辑部邮箱 ,2009年07期
- 【分类号】TB121
- 【被引频次】2
- 【下载频次】125