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MAPS FOR BRITTLE AND BRITTLE-LIKE FAILURE IN ICE

机译:冰中脆性和脆性故障的地图

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The strain rate and stress required for faulting in ice under low to moderate confinement are well understood and can be quantified in terms of independently measured materials parameters. Under high confinement, defined as confinement sufficient to suppress frictional sliding, brittle-like failure is still observed, even at pressure well below that required for faulting associated with phase transformations. While previous work has qualitatively suggested that high-confinement faults not associated with phase transformations, here termed P-faults, are likely associated with adiabatic instabilities, the failure map for P-faulting remains incomplete because of the lack of a quantitative understanding of the P-faulting terminal failure stress. We develop a new quantitative model for the P-faulting terminal failure stress that is consistent with recent experimental observations and then use this model to complete the failure map for compressive brittle and brittle-like failure of freshwater ice.
机译:在中低密闭条件下,冰断层所需的应变率和应力已广为人知,并可根据独立测量的材料参数进行量化。在高密闭度(定义为足以抑制摩擦滑动的密闭度)下,即使在远低于与相变相关的断层所需压力的压力下,仍观察到脆性破坏。尽管先前的工作从质上暗示了与相变无关的高约束故障(这里称为P故障)可能与绝热不稳定性相关,但由于缺乏对P的定量理解,P故障的故障图仍然不完整。 -故障终端故障应力。我们为P断层终端破坏应力开发了一个新的定量模型,该模型与最近的实验观察结果一致,然后使用该模型来完成淡水冰的脆性和脆性破坏的破坏图。

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