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颗粒状球柱体填料中接近零的颗粒非球形度所产生的明显结构各向异性。

Evident structural anisotropies arising from near-zero particle asphericity in granular spherocylinder packings.

作者信息

Sun Yuwen, Wang Chenyang, Yang Jing, Shi Weijia, Pang Qifan, Wang Yujie, Li Jianqi, Hu Bingwen, Xia Chengjie

机构信息

Shanghai Key Laboratory of Magnetic Resonance, School of Physics and Electronic Science, <a href="https://ror.org/02n96ep67">East China Normal University</a>, Shanghai 200241, China.

School of Physics and Astronomy, <a href="https://ror.org/0220qvk04">Shanghai Jiao Tong University</a>, Shanghai 200240, China.

出版信息

Phys Rev E. 2024 Jul;110(1-1):014903. doi: 10.1103/PhysRevE.110.014903.

Abstract

With magnetic resonance imaging experiments, we study packings of granular spherocylinders with merely 2% asphericity. Evident structural anisotropies across all length scales are identified. Most interestingly, the global nematic order decreases with increasing packing fraction, while the local contact anisotropy shows an opposing trend. We attribute this counterintuitive phenomenon to a competition between gravity-driven ordering aided by frictional contacts and a geometric frustration effect at the marginally jammed state. It is also surprising to notice that such slight particle asphericity can trigger non-negligible correlations between contact-level and mesoscale structures, manifested in drastically different nonaffine structural rearrangements upon compaction from that of granular spheres. These observations can help improve statistical mechanical models for the orientational order transformation of nonspherical granular particle packings, which involves complex interplays between particle shape, frictional contacts, and external force field.

摘要

通过磁共振成像实验,我们研究了长径比仅为2%的粒状球柱体的堆积情况。识别出了在所有长度尺度上明显的结构各向异性。最有趣的是,全局向列序随堆积分数的增加而降低,而局部接触各向异性则呈现相反的趋势。我们将这种违反直觉的现象归因于由摩擦接触辅助的重力驱动排序与在临界堵塞状态下的几何受挫效应之间的竞争。同样令人惊讶的是,如此轻微的颗粒非球形度会引发接触级和中尺度结构之间不可忽略的相关性,这表现为压实过程中与粒状球体相比截然不同的非仿射结构重排。这些观察结果有助于改进用于非球形颗粒堆积取向序转变的统计力学模型,该模型涉及颗粒形状、摩擦接触和外力场之间的复杂相互作用。

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