首页> 外文会议>International conference on fracture and strength of solids >Fundamentals of Mode III Fracture: A Discrete Dislocation Simulation Approach
【24h】

Fundamentals of Mode III Fracture: A Discrete Dislocation Simulation Approach

机译:III型骨折的基本原理:离散位错模拟方法

获取原文

摘要

The mode III fracture is studied based on the discrete dislocation simulation. Under a remote mode III stress, when the stress intensity factor at the crack tip K is greater than that for dislocation emission K_D, dislocations would be emitted from the crack tip. The quantity of K_D depends not only on the dislocation core radius, frictional stress and shear modulus, but also on the number of the characteristics of the type of dislocations emitted in the vicinity of crack tip. The velocity of dislocations is assumed to be proportional to the third power of effective stress. The dislocations dynamically and quasi-statically emitted from a static sharp surface crack tip during loading and upon unloading are investigated. The mechanical behavior of dislocations for the dynamic emission has an opposite trend to that for the quasi-static emission. The dislocations dynamically emitted from a propagating sharp surface crack tip are also studied. The propagation rate of the crack tip is porportional to the third power f the stress intensity factor. When the dislocations emitted and the propagating crack tip have the same velocity, the system is at steady state. Dislocations emitted in the radial directions from the radial crack tips emanating from a circular hole are considered. The effects of crack length, crack geometry and frictional stress on fracture are also analyzed.
机译:基于离散位错模拟研究了III型骨折。在远程模式III应力下,当裂纹尖端K的应力强度因子大于位错发射K_D的应力强度因子时,将会从裂纹尖端释放出位错。 K_D的量不仅取决于位错芯半径,摩擦应力和剪切模量,还取决于在裂纹尖端附近发出的位错类型的特征数。假定位错的速度与有效应力的三次方成正比。研究了在加载过程中和卸载时从静态锋利的表面裂纹尖端动态和准静态地释放出的位错。动态发射的位错的力学行为与准静态发射的位错具有相反的趋势。还研究了从传播的尖锐表面裂纹尖端动态释放的位错。裂纹尖端的传播速率与应力强度因子的三次方成正比。当发出的位错和扩展的裂纹尖端具有相同的速度时,系统处于稳定状态。考虑从圆形孔发出的径向裂纹尖端沿径向方向发射的位错。还分析了裂纹长度,裂纹几何形状和摩擦应力对断裂的影响。

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