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Full crystallographic orientation ( c and a ?axes) of warm, coarse-grained ice in a shear-dominated setting: a case study, Storglaci?ren, Sweden

机译:在剪切占地设置中温暖,粗粒冰的全晶体取向(C和a?轴):案例研究,Storglaci?瑞典

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Microstructures provide key insights into understanding the mechanical behavior of ice. Crystallographic preferred orientation (CPO) develops during plastic deformation as ice deforms dominantly by dislocation glide on the basal plane, modified and often intensified by dynamic recrystallization. CPO patterns in fine-grained ice have been relatively well characterized and understood in experiments and nature, whereas CPO patterns in “warm” ( T - 10 ° C ), coarse-grained, natural ice remain enigmatic. Previous microstructural studies of coarse-grained ice have been limited to c -axis orientations using light optical measurements. We present the first study of a ?axes as well as c ?axes in such ice by application of cryo-electron backscatter diffraction (EBSD) and do so in a shear-dominated setting. We have done this by developing a new sample preparation technique of constructing composite sections, to allow us to use EBSD to obtain a representative, bulk CPO on coarse-grained ice. We draw attention to the well-known issue of interlocking grains of complex shape and suggest that a grain sampling bias of large, branching crystals that appear multiple times as island grains in thin sections may result in the typical multimaxima CPOs previously identified in warm, coarse-grained ice that has been subjected to prolonged shear. CPOs combined from multiple samples of highly sheared ice from Storglaci?ren provide a more comprehensive picture of the microstructure and yield a pronounced cluster of c ?axes sub-normal to the shear plane and elongate or split in a plane normal to the shear direction as well as a concomitant girdle of a ?axes parallel to the shear plane with a maximum perpendicular to the shear direction. This pattern compares well with patterns produced by subsampling datasets from ice sheared in laboratory experiments at high homologous temperatures up to strains of ~1.5 . Shear strains in the margin of Storglaci?ren are much higher than those in experimental work. At much lower natural strain rates, dynamic recrystallization, particularly grain boundary migration, may have been more effective so that the CPO represents a small, final fraction of the shear history. A key result of this study is that multimaxima CPOs in coarse-grained ice reported in previous work may be due to limited sample sizes and a sampling bias related to the presence of island grains of a single host that appear several times in a thin section.
机译:微观结构提供了理解冰的机械行为的关键见解。结晶优选的取向(CPO)在塑性变形期间发育,因为冰块通过位于基底平面上的位错滑动,通过动态再结晶进行修改并经常加强。在实验和性质中,细粒度冰中的CPO模式已经表征和理解,而“温暖”(T> - 10°C),粗粒,天然冰保持神秘的CPO模式。以前的粗粒冰的微观结构研究限于使用光学测量的C轴方向。我们通过应用冷冻电子反散衍射(EBSD)来提出对A轴以及如此冰的第一研究。我们通过开发建造复合部分的新样品准备技术来实现这一目标,以便我们使用EBSD在粗粒冰上获得代表,批量CPO。我们提请注意复杂形状的互锁颗粒的众所周知的颗粒,并表明大型分支晶体的谷物采样偏差,这些晶粒在薄部分中的岛粒可能导致先前识别的典型的多元菊属CPO,以温暖,粗糙 - 已经受到长时间剪切的冰。 CPOS从Storglaci的多个高度剪切冰上的CPOS组合给予微观结构的更全面的图像,并产生一个明显的C簇,将剪切平面沿剪切平面延伸或分成正常到剪切方向的平面中。以及一个伴随的束带a的轴线平行于剪切平面,其最大垂直于剪切方向。该图案与通过在实验室实验中剪切的冰川剪切在高同源温度的菌株中产生的图案相比,其良好。 Storglaci裕度的剪切株?rer远高于实验工作中的剪切菌株。在较低的天然应变速率下,动态重结晶,特别是晶界迁移,可能更有效,使得CPO代表剪切历史的一小部分。本研究的一个关键结果是在以前的工作中报告的粗粒冰中的多元菊花CPO可能是由于样本尺寸有限,并与单个主体的岛谷物的存在相关的采样偏差,这些粒子在薄部分中出现多次。

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