School of Resources and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou, 341000, Jiangxi, China.
State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Wuhan, 430071, Hubei, China.
Sci Rep. 2023 May 15;13(1):7843. doi: 10.1038/s41598-023-35022-w.
This study investigated the influence of stress levels on the mechanical behavior and particle crushing of irregular granular materials. Granular materials with irregular sides were modelled using the discrete element method. A new method of using a shear fracture zone to characterize the deformation of irregular granular materials under high pressure was proposed. The crushing energy is analysed based on the first law of thermodynamics. The shear strength of irregular granular materials shows significantly nonlinear behavior due to particle crushing. The deformation behavior can be characterized with the help of particle rotation under low confining pressure, and can be characterized with the help of particle breakage under high confining pressure. Granular materials easily break into many single fine particles under high confining pressure. The breakage degree can be represented by the value of crushing energy. Irregular granular materials have a large breakage degree under high confining pressures. It weakens the stability of engineered structures constructed from granular materials.
本研究探讨了应力水平对不规则颗粒材料力学行为和颗粒破碎的影响。使用离散元方法对具有不规则侧面的颗粒材料进行建模。提出了一种使用剪切破碎区来描述高压下不规则颗粒材料变形的新方法。基于热力学第一定律分析破碎能量。由于颗粒破碎,不规则颗粒材料的剪切强度表现出明显的非线性行为。在低围压下,借助颗粒旋转可以对变形行为进行特征化,而在高围压下,借助颗粒断裂可以对变形行为进行特征化。在高围压下,颗粒材料很容易破碎成许多单个细颗粒。破碎程度可以用破碎能量的值来表示。不规则颗粒材料在高围压下有较大的破碎程度,这削弱了由颗粒材料构成的工程结构的稳定性。