Brojan Miha, Terwagne Denis, Lagrange Romain, Reis Pedro M
Departments of Mechanical Engineering.
Civil and Environmental Engineering, and.
Proc Natl Acad Sci U S A. 2015 Jan 6;112(1):14-9. doi: 10.1073/pnas.1411559112. Epub 2014 Dec 22.
We present the results of an experimental investigation on the crystallography of the dimpled patterns obtained through wrinkling of a curved elastic system. Our macroscopic samples comprise a thin hemispherical shell bound to an equally curved compliant substrate. Under compression, a crystalline pattern of dimples self-organizes on the surface of the shell. Stresses are relaxed by both out-of-surface buckling and the emergence of defects in the quasi-hexagonal pattern. Three-dimensional scanning is used to digitize the topography. Regarding the dimples as point-like packing units produces spherical Voronoi tessellations with cells that are polydisperse and distorted, away from their regular shapes. We analyze the structure of crystalline defects, as a function of system size. Disclinations are observed and, above a threshold value, dislocations proliferate rapidly with system size. Our samples exhibit striking similarities with other curved crystals of charged particles and colloids. Differences are also found and attributed to the far-from-equilibrium nature of our patterns due to the random and initially frozen material imperfections which act as nucleation points, the presence of a physical boundary which represents an additional source of stress, and the inability of dimples to rearrange during crystallization. Even if we do not have access to the exact form of the interdimple interaction, our experiments suggest a broader generality of previous results of curved crystallography and their robustness on the details of the interaction potential. Furthermore, our findings open the door to future studies on curved crystals far from equilibrium.
我们展示了一项关于通过弯曲弹性系统起皱获得的酒窝图案晶体学的实验研究结果。我们的宏观样品包括一个薄的半球形壳,它与一个同样弯曲的柔性基底相连。在压缩下,壳表面会自组织形成酒窝的晶体图案。应力通过表面外屈曲和准六边形图案中缺陷的出现得以松弛。使用三维扫描对地形进行数字化。将酒窝视为点状堆积单元会产生球形Voronoi镶嵌,其单元多分散且扭曲,偏离其规则形状。我们分析了晶体缺陷的结构与系统尺寸的函数关系。观察到了位错,并且在阈值以上,位错随系统尺寸迅速增殖。我们的样品与其他带电粒子和胶体的弯曲晶体表现出惊人的相似性。也发现了差异,这归因于我们图案的远离平衡性质,这是由于随机且最初冻结的材料缺陷作为成核点、物理边界的存在代表了额外的应力源以及酒窝在结晶过程中无法重新排列。即使我们无法获得酒窝间相互作用的确切形式,我们的实验表明弯曲晶体学先前结果具有更广泛的普遍性以及它们对相互作用势细节的稳健性。此外,我们的发现为未来对远离平衡的弯曲晶体的研究打开了大门。