三维动静组合加载下混凝土动态力学特性及模拟研究
CSTR:
作者:
作者单位:

1.昆明理工大学,公共安全与应急管理学院,昆明 650093;2.昆明理工大学,国土资源工程学院,昆明 650093;3.云南省中-德蓝色矿山与特殊地下空间开发利用重点实验室,昆明 650093

作者简介:

陈信作(1996-),男,硕士. 主要从事火灾安全研究,(E-mail)13350341263@163.com。

通讯作者:

刘磊,博士,教授,(E-mail)kgliulei@kust.edu.cn。

中图分类号:

TU354

基金项目:

云南省“兴滇英才支持计划”(KKXX202521089);云南省重大科技专项(202202AG050014)。


Dynamic mechanical behavior and numerical simulation of concrete under three-dimensional coupled static-dynamic loading
Author:
Affiliation:

1.Faculty of Public Security and Emergency Management;2.Faculty of Land Resources Engineering, Kunming University of Science and Technology, Kunming 650093, P. R. China,;3.Yunnan Key Laboratory of Sino-German Blue Mining and Utilization of Special Underground Space, Kunming 650093, P. R. China

Fund Project:

Supported by Yunnan Province’s “Xingdian Talent Support Program” (KKXX202521089), and Yunnan Province’s Major Science and Technology Special Project (202202AG050014).

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 资源附件
  • |
  • 文章评论
    摘要:

    为研究三维动静组合加载下混凝土的动态力学特性,开展了轴压、围压和冲击载荷组合的分离式霍普金森压杆(SHPB)实验,并在LS-DYNA程序中引入应力初始化方法,利用“隐式静态分析”“显式动态分析”分步加载方式对动静组合加载实验进行了模拟,分析了不同静载组合对混凝土材料强度特性和破坏特征的影响。结果表明,相同冲击速度下,混凝土的动态强度与围压值呈正相关,围压对试件具有保护作用;轴压存在压密临界值,在临界值前后对混凝土材料分别表现出增强和劣化作用。模拟中引入应力初始化方法可以较好地实现动态分析前恒定预应力的加载,实验与模拟结果对比分析得出静载组合作为外部结构荷载改变试件内部应力分布是影响试件动态强度的主要因素。数值模拟可以较好地呈现混凝土在动静组合加载下冲击破坏过程,混凝土的破坏特征为压剪破坏。通过分析损伤变量时程曲线可较好地对混凝土的破坏程度进行预测。

    Abstract:

    To study the dynamic mechanical behavior of concrete under three-dimensional coupled static-dynamic loading, split Hopkinson pressure bar (SHPB) experiments were carried out under combined axial compression, confining pressure, and impact loading. A stress initialization method was introduced into the LS-DYNA program, and a sequential analysis approach consisting of implicit static loading followed by explicit transient dynamic loading was used to simulate the coupled static-dynamic loading process. The influence of different static load combinations on the strength and failure characteristics of concrete was systematically analyzed. The results show that, at the same impact velocity, the dynamic compressive strength of concrete increases with increasing confining pressure, which provides a protective effect on the specimen. A critical axial compression value is observed: below this threshold, axial compression enhances specimen strength, whereas beyond it, axial compression leads to strength deterioration. The introduction of the stress initialization method enables accurate realization of constant pre-stress conditions before dynamic analysis. Comparative analysis between experimental and numerical results shows that static loading provides limited compaction enhancement, while changes in static load combination significantly alter the internal stress distribution, which is the main factor affecting the dynamic strength of concrete. Numerical simulations effectively capture the failure process of concrete under three-dimensional coupled static-dynamic loading, revealing that the dominant failure mode is compressive-shear failure. Furthermore, the damage evolution of concrete can be reliably predicted by analyzing the time-history curves of damage variables in the numerical model.

    参考文献
    相似文献
    引证文献
引用本文

陈信作,蔡勇智,梁霁兴,刘磊,徐泽辉.三维动静组合加载下混凝土动态力学特性及模拟研究[J].重庆大学学报,2026,49(3):107-122.

复制
分享
相关视频

文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2025-03-16
  • 最后修改日期:
  • 录用日期:
  • 在线发布日期: 2026-04-02
  • 出版日期:
文章二维码