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冲击载荷作用下煤体应力、应变及能量动态分布特征的数值模拟

Numerical simulation of the dynamic distribution characteristics of the stress, strain and energy of coal mass under impact loads.

作者信息

Zhu Hongqing, Fang Shuhao, Zhang Yilong, Wu Yan, Guo Jinlin, Li Feng

机构信息

School of Emergency Management and Safety Engineering, China University of Mining and Technology-Beijing, Beijing, 100083, China.

State Key Laboratory Coal Resources and Safe Mining, China University of Mining and Technology-Beijing, Beijing, 100083, China.

出版信息

Sci Rep. 2020 Oct 8;10(1):16849. doi: 10.1038/s41598-020-74063-3.

Abstract

To research the dynamic response characteristics of coal mass under impact loads, based on LS-DYNA software, rigid body bars are simulated to impact coal mass under different speed conditions, and the dynamic distribution characteristics of the stress, strain and energy of coal mass are analyzed. The results demonstrate that (1) the peaks of the axial and radial stresses and strain on the central axis and the radial line obey the power function distribution; at the same position, the axial and the radial stress peaks are close, and the axial strain peak is from much larger than the radial strain peak to close to. (2) The axial and radial stresses generate tensile stresses in the axial and radial propagation directions, respectively, and the coal mass is prone to damage under tensile stress. (3) When the speed is large, the axial stress-strain curve is similar to that of the dynamic load experiment. The axial stress peak, axial strain peak, critical effective stress, critical time and secant modulus have a linear relationship with the velocity. (4) When the dynamic load is large, most of the energy is in the form of kinetic energy, and the total energy loss also increases.

摘要

为研究冲击载荷作用下煤体的动态响应特性,基于LS-DYNA软件,模拟刚体杆在不同速度条件下冲击煤体,分析煤体应力、应变及能量的动态分布特征。结果表明:(1)中轴线和径向线上轴向和径向应力及应变峰值均服从幂函数分布;在同一位置,轴向和径向应力峰值相近,轴向应变峰值由远大于径向应变峰值变为接近。(2)轴向和径向应力分别在轴向和径向传播方向产生拉应力,煤体在拉应力作用下易发生破坏。(3)速度较大时,轴向应力-应变曲线与动载实验曲线相似。轴向应力峰值、轴向应变峰值、临界有效应力、临界时间和割线模量与速度呈线性关系。(4)动载较大时,大部分能量以动能形式存在,总能量损失也增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3d9/7544829/4d18d2a388d1/41598_2020_74063_Fig1_HTML.jpg

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