肖福坤, 于涵, 刘刚. 煤样变形破坏过程中全应变场分布规律[J]. 煤矿安全, 2017, 48(12): 9-11,15.
    引用本文: 肖福坤, 于涵, 刘刚. 煤样变形破坏过程中全应变场分布规律[J]. 煤矿安全, 2017, 48(12): 9-11,15.
    XIAO Fukun, YU Han, LIU Gang. Distribution of the Whole Strain Field During the Deformation and Failure of Coal Samples[J]. Safety in Coal Mines, 2017, 48(12): 9-11,15.
    Citation: XIAO Fukun, YU Han, LIU Gang. Distribution of the Whole Strain Field During the Deformation and Failure of Coal Samples[J]. Safety in Coal Mines, 2017, 48(12): 9-11,15.

    煤样变形破坏过程中全应变场分布规律

    Distribution of the Whole Strain Field During the Deformation and Failure of Coal Samples

    • 摘要: 为了研究煤样变形破坏过程中全应变场的分布规律,利用TYJ-500KN微机控制电液伺服剪切流变试验系统和XTDIC三维光学数字散斑系统对煤岩样进行单轴压缩试验。根据数字散斑的计算结果对煤样全程的加载过程的位移演化进行研究。得到结论,在煤样剪切破坏时,数字散斑图像中位移集中带出现较早,且位移集中区域辨别明显。通过对煤加载破坏全过程监测,数字散斑系统可以准确预测破坏形式和试样的破坏位置。因此,对于煤样的破坏,数字散斑监测数据分析判别为较准确预测试样破坏位置起到重要作用,对探究煤样破坏位置及变化集中带分布规律也具有重要意义。

       

      Abstract: In order to study the strain distribution of the whole field of coal deformation and failure in the process of uniaxial compression tests on coal samples, we use TYJ-500KN computer controlled electro-hydraulic servo shear rheological test system and XTDIC 3D optical digital speckle system. According to the calculation results of the digital speckle, displacement evolution loading process of coal samples is studied. We get the conclusion that when the shear failure is in coal sample, digital speckle image displacement concentration appears earlier, and the displacement area is obvious. Through monitoring the whole process of coal loading failure, the digital speckle system can accurately predict the destruction of the form and the location of the sample. Therefore, for the destruction of coal samples, the analysis of digital speckle monitoring data can be used to predict the damage position of the sample, and it is also important to explore the location and distribution of coal sample damage.

       

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