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1)  single-wing sliding crack
单翼滑动裂纹
1.
Considering the complexity the complexity and inhomogeneity of rock, especially the presence of some interfaces of weak strength between mineralgrains,an analysis on the single-wing sliding crack (SWSC),is presented.
针对岩石的复杂性和非均质性,特别是岩石中一些强度相对较弱的晶界的存在等,本文对形状较为复杂的单翼滑动裂纹的应力强度因子进行了分析。
2)  slip crack
滑动裂纹
3)  wing crack
翼型裂纹
1.
The model is based on the damage micromechanics and on wing crack nucleation and growth under dynamic compression.
运用细观损伤力学理论,从动态压缩载荷下陶瓷材料内翼型裂纹的产生和扩展的损伤机理出发,建立了陶瓷材料的弹脆性动态损伤本构模型,给出相应的损伤演化方程。
4)  flange slab crack
翼板裂纹
5)  winged crack
翼形裂纹
6)  sliding crack model
滑动裂纹模型
1.
The sliding crack model has been widely applied in the damage and fracture analysis of the rock-like materials.
滑动裂纹模型被广泛应用于岩石类材料压剪断裂分析及损伤分析。
2.
Compared with the classical sliding crack model,the influences on the SIFs due to the angle of wing crack with respect to the main crack,the length of wing crack and the presence of confining pressure are discussed in detai.
结合经典的滑动裂纹模型 ,讨论了裂纹起裂角、侧压以及翼裂长度等对应力强度因子的影响 。
3.
Compared with the classical sliding crack model,the influences on theSIFs due to the angle of wing crack with respect to the main crack,the length of wing crack and the presence of confining pressure are discussedin detail.
讨论了裂纹起裂角、翼裂长度以及侧压等对应力强度因子的影响,并和经典的滑动裂纹模型的结果相比较。
补充资料:滑动
一个物体在另一物体上接触面不变地移动,如滑冰时冰刀在冰上的运动。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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