...
首页> 外文期刊>Advances in civil engineering >Relationship between Brittleness Index and Crack Initiation Stress Ratio for Different Rock Types
【24h】

Relationship between Brittleness Index and Crack Initiation Stress Ratio for Different Rock Types

机译:不同岩石类型的脆性指数和裂纹启动应力比的关系

获取原文
           

摘要

Brittleness and crack initiation stress (σci) are important rock mechanical properties and intrinsically related to rock deformation and failure. We establish the relationship between σci and uniaxial tensile strength (σt) based on the Griffith stress criterion of brittle failure and introduce brittleness indexes B1–B4 based on the ratio of uniaxial compressive strength (σc) to σt. The crack initiation stress ratio (K) is defined as the ratio of σci to crack damage stress. The relationship between brittleness index and K is obtained from laboratory mechanics tests including uniaxial compression and Brazilian splitting tests. The results show that B1 and B2 have an inversely proportional and variant inversely proportional relationship with K, respectively, whereas no apparent relationship is observed between B3 and B4 and K. The fitting of experimental data from igneous, metamorphic, and sedimentary rocks shows that B1 and B2 have a power and linear relationship with K, respectively, whereas no functional relationship is observed between B3 and B4 and K. We collected 70 different types of uniaxial compression test data for igneous, metamorphic, and sedimentary rocks and obtained laws that are consistent within each rock type. The experimental data are used to verify K estimations using a specified constant α based on the experimental data. According to results of the limestone tests, α?=?3 for σc??60?MPa (high porosity), α?=?5 for 60?MPa?≤?σc?≤?90?MPa (moderate porosity), and α?=?8 for σc??90?MPa (low porosity) as well as for igneous and metamorphic rocks. Estimates of K for 127 different rock types using the newly defined brittleness index are in good agreement with the experimental results. This study provides an important new brittleness index calculation method and a simple and reliable method for estimating K.
机译:脆性和裂纹启动应力(ΣCI)是重要的岩石机械性能,与岩石变形和失效有关。基于脆性衰竭的Griffith应力标准,建立了ΣCI和单轴拉伸强度(σt)的关系,并基于单轴抗压强度(σc)与σt的比率引入脆性指标B1-B4。裂纹启动应力比(K)定义为ΣCI与裂纹损伤应力的比率。脆性指数和k之间的关系是从实验室力学测试中获得的,包括单轴压缩和巴西分裂试验。结果表明,B1和B2分别具有与k的成反比度和变型与k的成反比关系,而在B3和B4和K之间没有观察到明显的关系。从火油,变质和沉积岩的实验数据的配合显示B1和B2分别具有与k的力量和线性关系,而B3和B4和K之间没有观察到功能关系。我们收集了70种不同类型的单轴压缩测试数据,用于导火,变质和沉积岩石,并获得了一致的法律在每个岩石类型内。实验数据用于验证基于实验数据的指定常数α的k估计。根据石灰石测试的结果,α=θ3为ΣC<??60?兆帕(高孔隙率),α=?5 60?兆帕?≤?ΣC?≤?90?兆帕(中等孔隙率), σ=Δ=σ=α>θεηλελ0≤0≤0.MPa(低孔隙度)以及导火和变质岩石。使用新定义的脆性指数的127种不同岩石类型的K估计与实验结果很好。该研究提供了一种重要的新脆性指数计算方法和一种简单可靠的估计k。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号