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Evaluation of strength anisotropy and empirical models for estimating strength of rock materials with inclined weakness planes using block punch index test

机译:利用块冲头指数试验评估强度各向异性和经验模型,以评估具有弱势平面的岩石材料的强度

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摘要

Yet the difficulties in preparation of the test specimens according to test standards or suggested methods, and provisions for expensive testing equipment and testing durations motivated the investigators to develop simpler and index type test methods for determination of the mechanical properties. One of these tests is the Block Punch Index (BPI) test accepted by ISRM to indirectly estimate the uniaxial compressive strength (UCS). While the highest strength is obtained in vertical direction to weakness planes in rocks, in case of application of the load to discontinuities at any angle different than vertical, same strength values in every direction can not be obtained due to anisotropy. This study aims to investigate the strength anisotropy associated with discontinuity orientation by performing BPI and UCS tests, and to develop some empirical relationships for estimating the BPI and UCS in the strongest direction, and the UCS from the BPI determined at any angle between the loading direction and weakness plane. The experimental results obtained from six rock types fall into the moderate-to-low strength anisotropy classes. The comparison between the observed and predicted UCS values indicated that the prediction performances of the equations developed are quite well.
机译:然而,根据测试标准或建议的方法来准备测试样品的困难,以及昂贵的测试设备和测试持续时间的规定,促使研究人员开发出更简单和指数型的测试方法来确定机械性能。这些测试之一是ISRM接受的块冲孔指数(BPI)测试,用于间接估计单轴抗压强度(UCS)。尽管在垂直于岩石软弱面的方向上获得了最高的强度,但是如果将载荷施加到与垂直面不同的任何角度的不连续处,则由于各向异性而无法在每个方向上获得相同的强度值。这项研究旨在通过执行BPI和UCS测试来研究与不连续性取向相关的强度各向异性,并建立一些经验关系来估算最强方向上的BPI和UCS,以及从BPI在负载方向之间的任何角度确定的UCS和弱点飞机。从六种岩石类型获得的实验结果属于中低强度各向异性类别。 UCS观测值与预测值之间的比较表明,所开发方程的预测性能非常好。

著录项

  • 来源
    《Sinorock 2009》|2009年|p.1-5|共5页
  • 会议地点 Hong Kong(CN);Hong Kong(CN);Hong Kong(CN)
  • 作者

    H.Karakul; R.Ulusay;

  • 作者单位

    General Directorate of Mineral Research and Exploration, Feasibility Studies Department, Rock and Soil Mechanics Division, Ankara, Turkey;

    Hacettepe University, Department of Geological Engineering, 06800 Beytepe, Ankara, Turkey;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 岩石(岩体)力学及岩石测试;
  • 关键词

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