FDEM Modelling of Rock Fracture Process during Three-Point Bending Test under Quasistatic and Dynamic Loading Conditions
Author:
Affiliation:
1. Faulty of Public Security and Emergency Management, Kunming University of Science and Technology, Kunming 650093, China
2. School of Engineering, College of Science and Engineering, University of Tasmania, Hobert, Tasmania 7001, Australia
Abstract
Funder
Yunnan Provincial Department of Education
Publisher
Hindawi Limited
Subject
Mechanical Engineering,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Condensed Matter Physics,Civil and Structural Engineering
Link
http://downloads.hindawi.com/journals/sv/2021/5566992.pdf
Reference36 articles.
1. Development of a GPGPU‐parallelized hybrid finite‐discrete element method for modeling rock fracture
2. A micro-mechanics based viscoplastic model for clayey rocks
3. Numerical homogenization of elastic properties and plastic yield stress of rock-like materials with voids and inclusions at same scale
4. A micromechanics-based enhanced plastic damage model including localization analysis for heterogeneous geomaterials
5. Hybrid finite-discrete element modelling of rock fracture during conventional compressive and tensile strength tests under quasi-static and dynamic loading conditions;A. Huaming;Latin American Journal of Solids and Structures,2020
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2. Investigation of the Dynamic Pure-Mode-II Fracture Initiation and Propagation of Rock during Four-Point Bending Test Using Hybrid Finite–Discrete Element Method;Sustainability;2022-08-17
3. The State of the Art and New Insight into Combined Finite–Discrete Element Modelling of the Entire Rock Slope Failure Process;Sustainability;2022-04-19
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