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Strength classification of rock material based on textural properties

机译:基于纹理特性的岩石材料强度分类

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Rock, as a construction material, has great importance during the construction and service phases in a rock environment. The classification of rock materials based on their strength behavior provides a simple and fast solution to determine the type and application of support system as well as the method for opening underground structures. Intact rock materials are generally classified with regard to the strength, such as uniaxial compressive and point load strength. Rock texture, which consists of grains and matrix, directly affects the strength. The relation between the textural and mechanical properties of rock materials has been investigated, and rock texture was quantified from the texture coefficient (TC). The coefficient can be used to put a number on rock textures with experimental studies carried out on thin sections of rock material using image analysis. The main scope of this research is to classify the rock material according to its TC values based on the binary and fuzzy domain. In this study, TC is divided into five classes from very low to very high, and a fuzzy model is proposed to predict the uniaxial compressive strength from TC. A dataset is prepared to construct an objective study with 12 litho-type rock materials from 19 locations in Turkey. The binary and fuzzy classification as well as fuzzy model for the prediction of compressive strength is also applied to the dataset to illustrate the use of the proposed classification and model for underground construction in rock engineering. The model is applied to determine the intact rock material's rating in rock mass rating classification (RMR) from the proposed classification as well as from the fuzzy model. The results of the example encourage the application of the proposed methods, especially for pre-feasibility studies of rock engineering projects.
机译:岩石作为建筑材料,在岩石环境中的施工和服务阶段非常重要。根据岩石材料的强度特性对岩石材料进行分类,为确定支撑系统的类型和应用以及打开地下结构的方法提供了一种简单快捷的解决方案。完整的岩石材料通常根据强度进行分类,例如单轴抗压强度和点荷载强度。由晶粒和基体组成的岩石质地直接影响强度。研究了岩石材料的质地和力学性能之间的关系,并根据纹理系数(TC)量化了岩石纹理。通过使用图像分析对岩石材料的薄截面进行实验研究,可以将该系数用于岩石质地的数值。本研究的主要范围是基于二进制和模糊域,根据岩石的TC值对岩石材料进行分类。在这项研究中,TC从非常低到非常高分为五类,并提出了一个模糊模型来预测TC的单轴抗压强度。准备了一个数据集,以使用来自土耳其19个地点的12种岩石型岩石材料来构建客观研究。将二元和模糊分类以及用于预测抗压强度的模糊模型也应用于数据集,以说明所提出的分类和模型在岩土工程中的应用。该模型适用于根据拟议的分类以及模糊模型确定岩体质量等级(RMR)中完整的岩石材料的等级。实例的结果鼓励了所提出方法的应用,尤其是在岩石工程项目的预可行性研究中。

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