论文标题
压力积累与形状在沮丧的,扭曲的jigsaw粒子组件中变平
Stress accumulation versus shape flattening in frustrated, warped-jigsaw particle assemblies
论文作者
论文摘要
几何沮丧的组装已成为一种具有自限制,有限平衡维度的理解和工程组件的有吸引力的范式。我们提出并研究了一种基于所谓的“旋转拼图”(WJ)形状设计的新型2D粒子:沿多粒子行沿多粒子行沿多粒子行弯曲的方向键,使2D晶格顺序感到沮丧。我们使用数值模拟和连续弹性的组合研究了大规模组装内应力梯度如何从颗粒的显微镜特性中出现。 WJ颗粒可以有利于各向异性色带组件,其横向宽度可能是自限制的,具体取决于凝聚力与组件中弹性力的相对强度,我们表明,我们表明相互作用的范围和形状失误程度来控制。自限制尺寸的上限受到组装中的两个弹性模式之间的交叉控制:剪切的积累,宽度在较小的宽度下增加宽度,使您不得不脱离首选行曲率,使组装可以增长至无限尺寸。我们表明,控制不同的弹性模式的刚度由排斥和有吸引力的结合区域的组合和放置,提供了一种将累积应力范围扩展到尺寸范围远远超过单个粒径的方法,我们通过可变相互作用的离散粒子的数值研究来证实。最后,我们将模型的基态能力与沿色带边界宽度的波动设置的平衡组件大小控制上的下层和上限相关联。
Geometrically frustrated assembly has emerged as an attractive paradigm for understanding and engineering assemblies with self-limiting, finite equilibrium dimensions. We propose and study a novel 2D particle based on a so-called "warped jigsaw" (WJ) shape design: directional bonds in a tapered particle favor curvature along multi-particle rows that frustrate 2D lattice order. We investigate how large-scale intra-assembly stress gradients emerge from the microscopic properties of the particles using a combination of numerical simulation and continuum elasticity. WJ particles can favor anisotropic ribbon assemblies, whose lateral width may be self-limiting depending on the relative strength of cohesive to elastic forces in the assembly, which we show to be controlled by the range of interactions and degree of shape misfit. The upper limits of self-limited size are controlled by the crossover between two elastic modes in assembly: the accumulation of shear with increasing width at small widths giving way to unbending of preferred row curvature, permitting assembly to grow to unlimited sizes. We show that the stiffness controlling distinct elastic modes is governed by combination and placement of repulsive and attractive binding regions, providing a means to extend the range of accumulating stress to sizes that are far in excess of the single particle size, which we corroborate via numerical studies of discrete particles of variable interactions. Lastly, we relate the ground-state energetics of the model to lower and upper limits on equilibrium assembly size control set by the fluctuations of width along the ribbon boundary.