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Numerical simulation on rock failure under combined static and dynamic loading during SHPB tests

机译:SHPB试验中静,动态联合载荷作用下岩石破坏的数值模拟

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摘要

The failure process of rock subjected to combined static and dynamic loading constitutes the mechanism of many engineering applications such as rockburst prediction, rock fragmentation, as well as rock drilling and blasting. In this study, the basic principle for simulating the damage and failure process of rock under combined static and dynamic loading is introduced, and it is implemented into RFPA-Dynamics (Rock Failure Process Analysis for Dynamics), a finite element package to analyze the failure process of rock-like media subjected to dynamic loading. The extended RFPA-Dynamics code is firstly validated by simulating the stress distribution and damage evolution in rock specimens during conventional SHPB (Split Hopkinson Pressure Bar) tests. Then, it is utilized to simulate the failure process of rock under combined static and dynamic SHPB tests, and the effects of axial static stress and dynamic stress on the damage and failure process of rock are examined. The strength increase factor (SIF) under combined static and dynamic loading, depending on the rock heterogeneity, static stress and strain rate, is predicted using numerical simulations, and the mechanisms associated with the increase of dynamic strength of rock subjected to the combined static and dynamic loading are clarified. The rock strength predicted with numerical simulations, which is closely related to the rock heterogeneity, is in qualitative agreement with that observed in laboratory SHPB tests, although the predicted rock strength under combined static and dynamic loading is still lower than those from experiments.
机译:岩石在静,动态载荷作用下的破坏过程,构成了许多工程应用的机理,例如岩爆预测,碎石以及凿岩爆破。本研究介绍了模拟岩石在静态和动态载荷作用下的破坏和破坏过程的基本原理,并将其应用到RFPA-Dynamics(动力学的岩石破坏过程分析)中,这是一个用于分析破坏的有限元程序包岩石介质承受动态载荷的过程。扩展的RFPA-Dynamics代码首先通过在常规SHPB(分裂霍普金森压力棒)测试过程中模拟岩石样本中的应力分布和损伤演化来验证。然后,利用它来模拟岩石在静态和动态SHPB试验下的破坏过程,并考察轴向静应力和动应力对岩石破坏和破坏过程的影响。利用数值模拟预测静,动态组合载荷下的强度增加因子(SIF),具体取决于岩石的非均质性,静应力和应变率,以及在静,动态组合作用下与岩石动强度增加相关的机理阐明了动态加载。数值模拟预测的岩石强度与岩石的非均质性密切相关,与实验室SHPB测试中观察到的定性一致,尽管静态和动态组合载荷下的预测岩石强度仍低于实验值。

著录项

  • 来源
    《International journal of impact engineering》 |2012年第2012期|p.142-157|共16页
  • 作者

    W.C. Zhu; Y. Bai; X.B. Li; L.L. Niu;

  • 作者单位

    Center for Rock Instability and Seismicity Research, Northeastern University, Shenyang 110819, China;

    Center for Rock Instability and Seismicity Research, Northeastern University, Shenyang 110819, China;

    School of Resources and Safety Engineering, Central South University, Changsha 410083, China;

    Center for Rock Instability and Seismicity Research, Northeastern University, Shenyang 110819, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    rock damage; SHPB; combined static and dynamic loading; numerical simulation;

    机译:岩石破坏;SHPB;静态和动态组合加载;数值模拟;

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