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兵工学报 ›› 2025, Vol. 46 ›› Issue (S1): 250690-.doi: 10.12382/bgxb.2025.0690

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颗粒体系致密化过程力学特性及力链演化的数值模拟

于洋1, 陈凡秀1,*(), 谌俊2, 刘睿3, 周近强3, 吴成成3   

  1. 1 青岛理工大学 理学院, 山东 青岛 266520
    2 重庆红宇精密工业集团有限责任公司, 重庆 402760
    3 北京理工大学 机电学院, 北京 100081
  • 收稿日期:2025-07-28 上线日期:2025-11-06
  • 通讯作者:

Numerical Simulation of Mechanical Properties and Force Chain Evolution of Granular System during Densification Process

YU Yang1, CHEN Fanxiu1,*(), SHEN Jun2, LIU Rui3, ZHOU Jinqiang3, WU Chengcheng3   

  1. 1 School of ScienceQingdao University of Technology, Shandong 266033,Qingdao, China
    2 Chongqing Hongyu Precision Industry Group Co.Ltd., Chongqing 402760, China
    3 School of Mechanical EngineeringBeijing Institute of Technology, Beijing 100081, China
  • Received:2025-07-28 Online:2025-11-06

摘要:

为探索颗粒体系致密化过程力学特性及细观机理,提出位置自动调节的测量球生成方法,建立颗粒体系单轴压缩离散元数值模型,分析了颗粒体系致密化过程位移场与速度场演化规律,研究粒径和加载速度对颗粒体系孔隙率及配位数的影响规律,分析了颗粒体系致密化过程的力链网络演化特性,揭示了颗粒体系致密化过程力学性质影响规律和细观机理。研究结果表明,颗粒体系致密化过程可以分为快速压密、缓慢压密与平稳3个阶段,较宽的粒径分布有助于提高颗粒的填充密度并加快致密化进程,致密化过程中位移场和速度场出现中心化现象;加载速度对孔隙率影响较大,速度在0.05m/s、0.5m/s、1.5m/s与3m/时,孔隙率由35.23%分别下降至27.50%、26.2%、24.4%与22.3%,提高加载速度有利于颗粒体系的压密;颗粒粒径越大,加载过程中颗粒变形越大,接触强度越大。0.8~1.5mm混合粒径组合会显著影响力链的形成方式及受力均匀性,颗粒体系致密化过程中趋于短链主导、长链收缩的稳定状态。

关键词: 颗粒体系, 力学特性, 力链演化, 离散元

Abstract:

To explore the mechanical properties and microscopic mechanisms of particle system densification process,a measurement ball generation method with automatic position adjustment is proposed and a uniaxial compression discrete element numerical model of particle system is established.The evolution laws of displacement field and velocity field of particle system during densification process are analyzed,and the influence laws of particle size and loading speed on porosity and coordination number of particle system are studied.The evolution characteristics of force chain network of particle system during densification process are analyzed,and the influence laws and microscopic mechanisms of mechanical properties of particle system during densification process are revealed.The research results indicate that the densification process of particle systems can be divided into three stages:rapid densification,slow densification,and steady densification.A wider particle size distribution is conducive to improving the filling density of particles and accelerating the densification process.During the densification process,the displacement field and velocity field exhibit a centralization phenomena.The loading speed has a significant impact on porosity The porosity decreases from 35.23% to 27.50%,26.2%,24.4%,and 22.3%,respectively,at speeds of 0.05m/s,0.5m/s,1.5m/s,and 3m/s.Increasing the loading speed is beneficial for the compaction of the particle system.The larger the particle size is,the greater the particle deformation and contact strength are during the loading process.The combination of 0.8-1.5mm mixed particle sizes significantly affects the formation of force chains and the uniformity of stress,leading to a stable state of short chain dominance and long chain shrinkage during the densification process of particle system.

Key words: particle system, mechanical property, force chain evolution, discrete element