...
首页> 外文期刊>Advances in civil engineering >Investigation of Energy and Damage Evolutions in Rock Specimens with Large-Scale Inclined Prefabricated Cracks by Uniaxial Compression Test and AE Monitoring
【24h】

Investigation of Energy and Damage Evolutions in Rock Specimens with Large-Scale Inclined Prefabricated Cracks by Uniaxial Compression Test and AE Monitoring

机译:通过单轴压缩试验和AE监测对大规模倾斜预制裂缝进行岩石标本能量和损伤演进的调查

获取原文
           

摘要

To explore the energy dissipation mechanism and damage evolution characteristics of rock specimens under compressive loading, we performed the acoustic emission (AE) testing under uniaxial compression in intact rock specimens and those with large-scale prefabricated cracks. The basic mechanical properties of both types of specimens were analyzed comprehensively, and the evolution patterns of strain energy indicators (total strain, elastic, and dissipative energies) in rock specimens before the peak on the stress-strain curve were identified. We further revealed the effect of the prefabricated crack dip angle, which controlled the surplus energy conversion of the following peak deformation and failure in the rock specimens. Using the modified equation of rock specimen damage evolution characterized by the AE energy and examining the fracture surface morphology via the scanning electron microscopy (SEM), the AE distribution law for rock specimen damage was revealed. An increase in the prefabricated crack dip angle was shown to reduce the peak stress and strain of rock specimens, which experienced a transition from the tensile and splitting failure mode to shear and slip one. Cracked rock specimens exhibited strain energy accumulation at the elastic deformation stage of the stress-strain diagram and rapid energy consumption at the plastic stage. By contrast, the intact rock specimens had a smoother energy evolution pattern. As the prefabricated crack dip angle increased, the dissipated and surplus strain energies’ shares increased. Moreover, the first peak of the AE energy occurred earlier, and the stress needed for its occurrence decreased as the dip angle increased. According to the damage evolution equation for rock specimens, their damage process can be subdivided into the initial damage, stable damage increase, and the accelerating damage increase stages. An increase in the prefabricated crack dip angle accelerated the damage accumulation in rock specimens. The locking effect of the sawtooth-like structures on the fracture surface was less conspicuous, and the fracture surface roughness increased. Thus, microcracks gradually developed, and rock specimens became more susceptible to sudden unstable failure.
机译:为了探讨压缩载荷下岩石样品的能量耗散机制和损伤演化特性,我们在完整岩石标本的单轴压缩下进行了声发射(AE)测试,具有大规模预制裂缝的声音发射(AE)测试。鉴定了全面分析了两种类型样本的基本力学性能,鉴定了在应力 - 应变曲线上峰值之前的岩石标本中的应变能量指示剂(总应变,弹性和耗散能)的演化模式。我们进一步揭示了预制裂纹倾角的影响,该裂缝倾角控制了以下峰值变形和失效的剩余能量转换。使用AE能量的岩石样品损伤进化的改性方程通过扫描电子显微镜(SEM)检查骨折表面形态,揭示了岩石标本损伤的AE分配法。示出了预制裂纹倾角的增加,以降低岩石标本的峰值应力和菌株,其经历了从拉伸和分裂失效模式的过渡到剪切和滑动。破裂的岩石标本在应力 - 应变图的弹性变形阶段表现出应变能量积聚,并在塑料阶段的快速消耗。相比之下,完整的岩石标本具有更平滑的能量进化模式。随着预制裂缝倾角的增加,耗散和剩余的应变能量的股票增加。此外,AE能量的第一峰值之前发生,并且随着倾角的增加而发生的应力降低。根据岩石标本的损伤演化方程,它们的损坏过程可以细分为初始损害,稳定的伤害增加,加速损坏增加阶段。预制裂纹倾角的增加加速了岩石标本中的损伤积累。锯齿状结构在裂缝表面上的锁定效果较小,并且断裂表面粗糙度增加。因此,微裂纹逐渐发展,岩石标本变得更容易受到突然不稳定的故障。

著录项

相似文献

  • 外文文献
  • 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