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Determination of relationships between thermal conductivity and material properties of rocks

         

摘要

Energy transfer between the adjacent parts of rocks in underground mines is widely influenced by the thermal conductivity of rocks. The relationships between the thermal conductivity and some material properties of rocks such as the uniaxial compressive strength, unit mass, tensile strength, cohesion, Young's modulus, point load strength, Schmidt rebound hardness, Shore scleroscope hardness and toughness strength were investigated. The statistical analysis of the data obtained in laboratory tests shows that the thermal conductivity increases with increasing the uniaxial compressive strength, unit mass, tensile strength, cohesion, Young's modulus, point load strength, Schmidt rebound hardness and Shore scleroscope hardness, and decreases with increasing the toughness strength.

著录项

  • 来源
    《矿物冶金与材料学报:英文版》 |2004年第4期|297-301|共5页
  • 作者

    Kazim Grgülü;

  • 作者单位

    Mining Engineering Dept.;

    Cumhuriyet University;

    58140-Sivas;

    Turkeynergy transfer between the adjacent parts of rocks in underground mines is widely influenced by the thermal conductivity of rocks. The relationships between the thermal conductivity and some material properties of rocks such as the uniaxial compressive strength;

    unit mass;

    tensile strength;

    cohesion;

    Young's modulus;

    point load strength;

    Schmidt rebound hardness;

    Shore scleroscope hardness and toughness strength were investigated. The statistical analysis of the data obtained in laboratory tests shows that the thermal conductivity increases with increasing the uniaxial compressive strength;

    unit mass;

    tensile strength;

    cohesion;

    Young's modulus;

    point load strength;

    Schmidt rebound hardness and Shore scleroscope hardness;

    and decreases with increasing the toughness strength.;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 岩石物理与岩石化学;
  • 关键词

    热传导; 材料性质; 能量转移; 地下矿; 岩石;

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