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Mechanical behaviour of Lac du Bonnet granite after high-temperature treatment using bonded-particle model and moment tensor

机译:Lac Du Bonnet花岗岩使用粘合粒子模型及力矩张量后高温处理后的力学行为

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摘要

The thermal cracking mechanism has been increasingly investigated to analyse and solve the mechanical behaviour of rocks in deep underground engineering. Classic laboratory tests bear the intrinsic limitation of nonrepeatability and lack of direct observation of the interaction effect between thermal stresses and thermal microcracks. In this paper, the bonded-particle model and moment tensor is used to simulate the process of thermally induced micro-and macro-cracks in Lac du Bonnet granite to help provide insight into the detailed influence temperature on mechanical properties and acoustic emission characteristic of granite. During modelling, macroand microscopic responses are quantified and compared against other laboratory data in the literature. The results indicate thermal stresses and thermally induced micro-cracks increase with increasing temperatures during heating, and cooling generally reduces the thermal stresses and increases the micro-cracks slightly. Grainsize distribution has a significant influence on thermal micro-cracks, thermal stress and the mechanical behaviours of granite. The increase in thermally induced tensile intergranular micro-cracks density mainly contributes to reduction of mechanical properties in granite samples subjected to heating-cooling cycles. It is also observed that the nature of sources and the b-value are associated with temperature, which gives some light on underground engineering in high temperature environments.
机译:越来越多地研究了热裂化机理,以分析和解决深层地下工程中岩石的力学行为。经典实验室试验承担了非再释放性的内在限制,缺乏热应力与热微裂纹之间的相互作用效果的直接观察。在本文中,粘合粒子模型和时刻张量用于模拟Lac du Bonnet Granite中热诱导的微型和宏观裂纹的过程,以帮助深入了解花岗岩机械性能和声发射特性的详细影响温度。在建模期间,量化显微镜反应并与文献中的其他实验室数据进行比较。结果表明热应力和热诱导的微裂纹随着加热期间的升高而增加,冷却通常会降低热应力并略微增加微裂纹。谷物化分布对热微裂纹,热应力和花岗岩的机械行为产生了显着影响。热诱导的拉伸晶状体微裂纹密度的增加主要有助于降低经受加热冷却循环的花岗岩样品中的机械性能。还观察到,源和B值的性质与温度相关,在高温环境中对地下工程提供一些光。

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  • 来源
    《Computers and Geotechnics》 |2021年第7期|104132.1-104132.22|共22页
  • 作者单位

    Univ Sci & Technol Beijing Minist Educ Efficient Min & Safety Met Mine Key Lab Beijing 100083 Peoples R China;

    Univ Sci & Technol Beijing Minist Educ Efficient Min & Safety Met Mine Key Lab Beijing 100083 Peoples R China|Kunming Univ Sci & Technol Fac Land Resource Engn Kunming 650093 Yunnan Peoples R China;

    Univ Sci & Technol Beijing Minist Educ Efficient Min & Safety Met Mine Key Lab Beijing 100083 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Discrete element method; Granite; Heating-cooling cycle; Mechanical properties; Acoustic emission;

    机译:离散元素法;花岗岩;加热冷却循环;机械性能;声发射;

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