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A numerical simulation study on mechanical behaviour of coal with bedding planes under coupled static and dynamic load

         

摘要

To investigate the bedding influence on coal mechanical behaviour in underground environments such as coal or rock burst,simulations of dynamic SHPB tests of pre-stressed coal specimens with different bedding angles were carried out using a particle flow code 2-dimensional(PFC2D).Three impact velocities of 4,8 and 12 m/s were selected to study dynamic behaviours of coal containing bedding planes under different dynamic loads.The simulation results showed that the existence of bedding planes leads to the degradation of the mechanical properties and their weakening effect significantly depends on the angle h between the bedding planes and load direction.Withθincreaseing from 0 to 90,the strength first decreased and subsequently increased and specimens became most vulnerable when h was 30 or 45.Five failure modes were observed in the specimens in the context of macro-cracks.Furthermore,energy characteristics combined with ultimate failure patterns revealed that maximum accumulated energy and failure intensity have a positive relation with the strength of specimen.When bedding planes were parallel or perpendicular to loading direction,specimens absorbed more energy and experienced more violent failure with increased number of cracks.In contrast,bedding planes with h of 30 or 45 reduced the specimens’ability of storing strain energy to the lowest with fewer cracks observed after failure.

著录项

  • 来源
    《矿业科学技术学报:英文版》 |2018年第5期|P.791-797|共7页
  • 作者单位

    [1]School of Civil;

    Mining and Environmental Engineering;

    University of Wollongong;

    NSW 2522;

    Australia;

    [2]School of Resources and Safety Engineering;

    Central South University;

    Changsha 410083;

    China;

    [1]School of Civil;

    Mining and Environmental Engineering;

    University of Wollongong;

    NSW 2522;

    Australia;

    [1]School of Civil;

    Mining and Environmental Engineering;

    University of Wollongong;

    NSW 2522;

    Australia;

    [1]School of Civil;

    Mining and Environmental Engineering;

    University of Wollongong;

    NSW 2522;

    Australia;

    [3]School of Civil and Environmental Engineering;

    University of Science and Technology;

    Beijing 100083;

    China;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 矿业工程;
  • 关键词

    Static–dynamic coupled loads; SHPB; Coal bedding angle; Strain energy; PFC2D;

    机译:静动力耦合载荷;SHPB;煤层倾角;应变能;PFC2D;
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