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The specificities of deformations and failures of highly stressed hard rock massifs

机译:高应力硬质岩体变形和破坏的特征

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According to modern concepts, the state of highly stressed hard rock massifs is mostly caused by the effect of gravitational-tectonic stress fields. At that, a probability of brittle rock failure in a dynamic form is very high. Such failures are always accompanied by the significant energy release accumulated during the deformation process. Based on the experimental studies of deformation and failure processes in various types of rock samples from the Kola Peninsula deposits, we have proposed the criteria for classifying rocks as prone to rock bursts. The information for assessing the rock proneness to dynamic failures can be obtained by analysing the strain curve at the pre-peak section when tested on the ordinary presses and testing devices according to the standard methods. If we study the processes of rocks' deformation and energy accumulation under the triaxial loading mode, we can establish the parameters for the occurrence of dynamic failure of rocks. This, in turn, will allow identifying the conditions of such failure in the investigated rocks for a specific mining-engineering situation and, thereby, coming to a scientifically-based prediction of the rocks' proneness to dynamic rock pressure occurrences.
机译:根据现代概念,高应力硬质岩石地块的状态主要是由重力构造应力场的作用引起的。那时,以动态形式发生脆性岩石破坏的可能性非常高。此类故障总是伴随着变形过程中积累的大量能量释放。基于对可乐半岛矿床各种类型岩石样品的变形和破坏过程的实验研究,我们提出了将岩石分类为容易发生岩爆的标准。当根据标准方法在普通压机和测试设备上进行测试时,可以通过分析峰前段的应变曲线来获得评估岩石易于发生动态破坏的信息。如果研究三轴载荷模式下岩石的变形和能量积累过程,就可以为岩石动力破坏的发生建立参数。反过来,这将允许针对特定的采矿工程情况在被调查的岩石中确定这种破坏的条件,从而对岩石发生动态岩石压力的倾向性进行基于科学的预测。

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