Schunter David J, Brandenbourger Martin, Perriseau Sophia, Holmes Douglas P
Mechanical Engineering, Boston University, Boston, Massachusetts 02215, USA.
Phys Rev Lett. 2018 Feb 16;120(7):078002. doi: 10.1103/PhysRevLett.120.078002.
Confinement of a slender body into a granular array induces stress localization in the geometrically nonlinear structure, and jamming, reordering, and vertical dislodging of the surrounding granular medium. By varying the initial packing density of grains and the length of a confined elastica, we identify the critical length necessary to induce jamming, and demonstrate how folds couple with the granular medium to localize along grain boundaries. Above the jamming threshold, the characteristic length of elastica deformation is shown to diverge in a manner that is coupled with the motion and rearrangement of the grains, suggesting the ordering of the granular array governs the deformation of the slender structure. However, overconfinement of the elastica will vertically dislodge grains, a form of stress relaxation in the granular medium that illustrates the intricate coupling in elastogranular interactions.
将细长物体限制在颗粒阵列中会在几何非线性结构中引起应力局部化,以及周围颗粒介质的堵塞、重新排列和垂直位移。通过改变颗粒的初始堆积密度和受限弹性体的长度,我们确定了引起堵塞所需的临界长度,并展示了褶皱如何与颗粒介质耦合以沿晶界局部化。在堵塞阈值以上,弹性体变形的特征长度以与颗粒的运动和重新排列相关的方式发散,这表明颗粒阵列的有序性控制着细长结构的变形。然而,弹性体的过度限制会使颗粒垂直位移,这是颗粒介质中应力松弛的一种形式,说明了弹性颗粒相互作用中的复杂耦合。