Competition between Glassy Five-Fold Structures and Locally Dense Packing Structures Governs Two-Stage Compaction of Granular Hexapods

Fuente: arXiv
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Main Authors: Luo, Rudan, Yuan, Houfei, Xing, Yi, Huang, Yeqiang, Liu, Jiahao, Huang, Wei, Lu, Haiyang, Ge, Zhuan, Jiang, Yonglun, Xia, Chengjie, Zeng, Zhikun, Wang, Yujie
Format: Preprint
Published: 2025
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author Luo, Rudan
Yuan, Houfei
Xing, Yi
Huang, Yeqiang
Liu, Jiahao
Huang, Wei
Lu, Haiyang
Ge, Zhuan
Jiang, Yonglun
Xia, Chengjie
Zeng, Zhikun
Wang, Yujie
author_facet Luo, Rudan
Yuan, Houfei
Xing, Yi
Huang, Yeqiang
Liu, Jiahao
Huang, Wei
Lu, Haiyang
Ge, Zhuan
Jiang, Yonglun
Xia, Chengjie
Zeng, Zhikun
Wang, Yujie
contents Using X-ray tomography, we experimentally investigate the structural evolution of packings composed of 3D-printed hexapod particles, each formed by three mutually orthogonal spherocylinders, during tap-induced compaction. We identify two distinct structural compaction mechanisms: an initial stage dominated by enhanced particle interlocking, which yields local mechanically stable structures through strong geometric entanglement, and a later stage characterized by the formation of dense polytetrahedral aggregates and a sharp increase in the number of five-ring motifs. The emergence of these five-fold symmetric structures indicates that, despite their highly concave geometry, hexapod packings can be effectively treated as hard-sphere-like systems and exhibit similar glass-like disordered configurations. The frustration between local mechanically stable structures and global glassy order suggests a universal organizational principle underlying the structure of uniform and isotropic disordered granular materials.
format Preprint
id arxiv_https___arxiv_org_abs_2511_00856
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Competition between Glassy Five-Fold Structures and Locally Dense Packing Structures Governs Two-Stage Compaction of Granular Hexapods
Luo, Rudan
Yuan, Houfei
Xing, Yi
Huang, Yeqiang
Liu, Jiahao
Huang, Wei
Lu, Haiyang
Ge, Zhuan
Jiang, Yonglun
Xia, Chengjie
Zeng, Zhikun
Wang, Yujie
Soft Condensed Matter
Using X-ray tomography, we experimentally investigate the structural evolution of packings composed of 3D-printed hexapod particles, each formed by three mutually orthogonal spherocylinders, during tap-induced compaction. We identify two distinct structural compaction mechanisms: an initial stage dominated by enhanced particle interlocking, which yields local mechanically stable structures through strong geometric entanglement, and a later stage characterized by the formation of dense polytetrahedral aggregates and a sharp increase in the number of five-ring motifs. The emergence of these five-fold symmetric structures indicates that, despite their highly concave geometry, hexapod packings can be effectively treated as hard-sphere-like systems and exhibit similar glass-like disordered configurations. The frustration between local mechanically stable structures and global glassy order suggests a universal organizational principle underlying the structure of uniform and isotropic disordered granular materials.
title Competition between Glassy Five-Fold Structures and Locally Dense Packing Structures Governs Two-Stage Compaction of Granular Hexapods
topic Soft Condensed Matter
url https://arxiv.org/abs/2511.00856