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Preferred crystallographic orientation in the ice I->II transformation and the flow of ice II

机译:冰I-> II转变和冰II流动中的首选晶体学取向

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The preferred crystallographic orientation developed during the ice I --> II transformation and during the plastic flow of ice II was measured in polycrystalline deuterium oxide (D2O) specimens using low-temperature neutron diffraction. Samples partially transformed from ice I to II under a non-hydrostatic stress developed a preferred crystallographic orientation in the ice II. Samples of pure ice II transformed from ice I under a hydrostatic stress and then when compressed axially, developed a strong preferred orientation of compression axes parallel to (10 (1) over bar 0). A match to the observed preferred orientation using the viscoplastic self-consistent theory was obtained only when (10 (1) over bar 0) [0001] was taken as the predominant slip system in ice II.
机译:使用低温中子衍射在多晶氧化氘(D2O)标本中测量了在冰I→II转变以及冰II塑性流动期间形成的优选晶体学取向。在非静水压力下部分从冰I转变为冰II的样品在冰II中表现出较好的晶体取向。纯冰II的样品在静水压力下从冰I转变为轴向I,然后轴向压缩后,形成了强烈的优选压缩轴方向,该方向平行于(0(0)上的(10(1)))。仅当将(10(1)超过0条)(0001)用作冰II中的主要滑移系统时,才使用粘塑性自洽理论获得与观察到的首选方向的匹配。

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