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Ⅰ-Ⅱ-Ⅲ复合型裂纹开裂角的光弹性试验研究 被引量:1
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作者 苗张木 赖曾美 董国兴 《武汉化工学院学报》 2000年第1期46-49,共4页
通过带Ⅰ-Ⅱ-Ⅲ复合型半圆形裂纹的三维光弹性模型的破坏性试验 ,测量了 复合型裂纹前沿不同位置处的开裂角 .用应力强度因子 K 、K 、K 的测量结果和最大周向应力理论 ,计算了 复合型裂纹的开裂角 .试验测得的结果具有较好的规律... 通过带Ⅰ-Ⅱ-Ⅲ复合型半圆形裂纹的三维光弹性模型的破坏性试验 ,测量了 复合型裂纹前沿不同位置处的开裂角 .用应力强度因子 K 、K 、K 的测量结果和最大周向应力理论 ,计算了 复合型裂纹的开裂角 .试验测得的结果具有较好的规律性 。 展开更多
关键词 复合型 光弹性 准裂准则
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On the material dependence of experimental shear fracture orientation 被引量:1
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作者 Enrique GOMEZ-RIVAS Albert GRIERA 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第12期2357-2362,共6页
It is not uncommon to observe shear fractures in ductile rocks oriented at more than 45° with respect to the maximum compression direction. Since these orientations cannot be explained with the classic Mohr-Coulu... It is not uncommon to observe shear fractures in ductile rocks oriented at more than 45° with respect to the maximum compression direction. Since these orientations cannot be explained with the classic Mohr-Coulumb or Tresca yield criteria, Zheng et al.(Journal of Structural Geology, 35: 1394–1405, 2011) proposed the maximum effective moment(MEM) failure criterion. This rule suggests that shear fractures in ductile rocks form at ?55° with the maximum compression axis and that this orientation is material-independent and, therefore, universal. Zheng et al.(Science China: Earth Sciences, 57(11): 2819–2824, 2014) used data from our own experiments as supporting evidence of their failure criterion. In this contribution we discuss why shear fracture formation in ductile rocks indeed strongly depends on the mechanical properties of the deforming medium, and why experimental data should not be taken to prove the validity of the MEM criterion. The formation mechanisms and orientations of shear fractures in our experiments significantly vary depending on the material strength and degree and type of anisotropy(composite and intrinsic). We therefore demonstrate using experimental data that a universal failure angle in ductile and anisotropic rocks does not apply. Additionally, we highlight some inconsistencies of the MEM criterion. 展开更多
关键词 shear fracture ANISOTROPY fracture orientation material properties failure criteria ductile deformation
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