首页> 外文期刊>Geotechnical testing journal >Postpeak Deformability Parameters of Localized and Nonlocalized Damage Zones of Rocks under Cyclic Loading
【24h】

Postpeak Deformability Parameters of Localized and Nonlocalized Damage Zones of Rocks under Cyclic Loading

机译:循环载荷下岩石局部局部和非划分损伤区的后斑可畸形参数

获取原文
获取原文并翻译 | 示例
       

摘要

Previous studies on the effects of cyclic loading on the strength and deformability behavior of rocks under uniaxial conditions, i.e., strength damage together with the degradation of rocks' mechanical properties, have solely taken into account the postpeak stress strain regime. Nevertheless, rock may experience cyclic loading history in the postpeak regime as well. In this study, the effects of cyclic loading on the deformational characteristics of both the nonlocalized damage zone (NLDZ) and the localized damage zone (LDZ) of rock in the postpeak regime are investigated. A series of postpeak damage-controlled tests were carried out on three different rock types, including sandstone, limestone, and granite specimens. Three-dimensional digital image correlation was implemented to measure the strain development in the surface of the specimens. Strain localization was found to be more significant in the lateral direction and less occurrent in the axial direction. In addition, it was observed that the material located in the NLDZ experiences much less damage in contrast to material located in the LDZ. Both large irreversible strain accumulation and Young's modulus degradation were found to take place progressively in the LDZ, initially occurring at a lower rate and then faster as the number of loading-unloading cycles increased. In this regard, the extent of irreversible deformation and stiffness degradation in the LDZ is considered to be a major contributor to the global loss of strength of the entire specimen.
机译:以前关于循环加载对单轴条件下岩石强度和可变形性的影响的研究,即强度损伤以及岩石力学性能的降解,仅考虑了蛋糕应力应变制度。尽管如此,岩石可能也会在蛋糕制度中经历循环的装载历史。在这项研究中,研究了循环加载对后局制度中岩石中的非限制性损伤区(NLDZ)和局部损伤区(LDZ)的变形特性的影响。在三种不同的岩石类型中进行了一系列折断损伤控制测试,包括砂岩,石灰石和花岗岩样品。实施了三维数字图像相关性以测量样本表面的应变发育。在横向方向上发现应变定位在横向方向上更显着,轴向较少。此外,观察到位于NLDZ中的材料与位于LDZ中的材料相比,物质造成的损坏大得多。发现大不可逆应变积累和杨氏模量劣化在LDZ中逐渐发生,最初以较低的速率发生,然后随着装载卸载循环的数量增加而更快地发生。在这方面,LDZ中不可逆变形和刚度降解的程度被认为是全局对整个样本强度丧失的主要贡献者。

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