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STRAIN LOCALIZATION AND FRACTURE OF CYLINDRICAL ICE SPECIMENS UNDER CONFINING PRESSURE

机译:压力下圆柱冰标本的应变定位和骨折

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A group of laboratory tests were conducted at Memorial University of Newfoundland with cylindrical ice specimens. The specimens were made with both laboratory ice and iceberg ice. In each test, the cylindrical specimen was triaxially confined at different pressure levels and an external constant deviatoric stress was exerted in the longitudinal direction. During the tests, some specimens showed a band of strain location in some cases leading to shear fracture. All those specimen showing strain localization or shear fracture made of laboratory ice were confined at relative low pressure levels (≤ 10 MPa) or high pressure levels (≥ 50 MPa). There was no strain localization or shear fracture observed at medium confinement levels. Strain localization or shear fracture observed in specimens made of iceberg ice was less pressure-dependent but initial flaws were observed in each specimen before the tests. Analysis shows that nonhomogeneity in the specimen is the likely cause of the localization. This has been confirmed by finite element simulations.
机译:一组实验室测试是在纽芬兰纪念大学进行的圆柱冰标本进行。标本由实验室冰和冰山冰制成。在每个测试中,圆柱形样品在不同的压力水平下三轴限制,并且在纵向方向上施加外部恒定偏离偏离应力。在测试期间,一些标本在某些情况下显示出一种应变位置,导致剪切裂缝。所有那些显示由实验室冰制成的应变定位或剪切断裂的样本被限制在相对低压水平(≤10MPa)或高压水平(≥50MPa)处。在中等监禁水平中没有观察到应变定位或剪切断裂。在由冰山冰制成的标本中观察到的应变定位或剪切断裂是较小的压力依赖性,但在测试前在每个样品中观察到初始缺陷。分析表明,标本中的非均匀性是本地化的可能原因。这已经通过有限元模拟确认。

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