...
首页> 外文期刊>Advances in civil engineering >Crack Initiation Behaviors of Granite Specimens Containing Crossing-Double-Flaws with Different Lengths under Uniaxial Loading
【24h】

Crack Initiation Behaviors of Granite Specimens Containing Crossing-Double-Flaws with Different Lengths under Uniaxial Loading

机译:单轴载荷下含有不同长度的横穿双缺陷的花岗岩样品的裂纹启动行为

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Crack initiation is an important stage in the failure process of rock masses. In this paper, crack initiation behaviors (crack initiation model, crack initiation location, crack initiation angle, and crack initiation stress) of granite specimens containing crossing-double-flaws with different lengths were investigated using PFC2D software. Crack initiation models were all tensile wing cracks, which did not exactly initiate from the main flaw with a length of 30?mm. They can initiate from the secondary flaw with a length 20?mm at α of 30° (included angle between main flaw and horizontal direction) and β of 90° (included angle between main and secondary flaws) and from main and secondary flaws at α of 30° and β of 60°. These were mainly induced by the superposition of stress fields around the main and secondary flaws as β varied from 0° to 90°, especially the tensile force concentration zones superposition. The tensile forces concentration zone around flaw shrank towards flaw tips with the increase of flaw’s inclinations measured horizontally. Under stress field superposition effects, the crack initiation stress decreased firstly and then increased with β at α of 30° and 45°. Crack initiation locations were close to flaw tips but not restricted to them. The distances between crack initiation locations and flaw tips, and the crack initiation angles depended on the flaw where first macrocracks initiated from. Microdisplacement field distributions of granite specimens to reveal the mesomechanism of crack initiation behaviors were discussed.
机译:裂纹启动是岩体失败过程中的一个重要阶段。本文采用PFC2D软件研究了含有不同长度的交叉双缺陷的花岗岩样本的裂纹起始行为(裂纹启动模型,裂纹启动位置,裂纹发起角度和裂纹起始应力)。裂纹启动模型是所有拉伸翼裂缝,其并不完全从主缺陷开始,长度为30Ωmm。它们可以从次级缺陷发出长度为20Ωmm的30°(主缺陷与水平方向之间的角度之间的角度),β为90°(主要和二次缺陷之间的角度),并且来自α的主缺陷和二次缺陷30°和β为60°。这些主要由主缺陷周围的应力场的叠加引起,因为β在0°到90°变化,尤其是拉力浓度区域叠加。缺陷型张力浓缩区朝向漏洞尖端缩小,随水平测量的缺陷的倾斜度。在应力场叠加效应下,裂纹起始应力首先降低,然后在α的α处增加30°和45°。裂缝启动位置接近缺陷尖端,但不限于它们。裂缝启动位置和漏洞尖端之间的距离以及裂缝启动角度取决于从中发起的第一MacRecracks的缺陷。讨论了花岗岩标本的微量剥离场分布,揭示了裂缝启动行为的裂缝机制。

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