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Experimental characterization of the intragranular strain field in columnar ice during transient creep

机译:瞬态蠕变过程中柱状冰晶内应变场的实验表征

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摘要

A digital image correlation (DIC) technique has been adapted to polycrystalline ice specimens in order to characterize the development of strain heterogeneities at an intragranular scale during transient creep deformation (compression tests). Specimens exhibit a columnar microstructure so that plastic deformation is essentially two-dimensional, with few in-depth gradients, and therefore surface DIC analyses are representative of the whole specimen volume. Local misorientations at the intragranular scale were also extracted from microstructure analyses carried out with an automatic texture analyzer before and after deformation. Highly localized strain patterns are evidenced by the DIC technique. Local equivalent strain can reach values as much as an order of magnitude larger than the macroscopic average. The structure of the strain pattern does not evolve with strain in the transient creep regime. Almost no correlation between the measured local strain and the Schmid factor of the slip plane of the underlying grain is observed, highlighting the importance of the mechanical interactions between neighboring grains resulting from the very large viscoplastic anisotropy of ice crystals. Finally, the experimental microstructure was introduced in a full-field fast Fourier transform polycrystal model; simulated strain fields are a good match with experimental ones.
机译:为了在瞬态蠕变变形(压缩测试)过程中表征颗粒内尺度应变异质性的发展,已经将数字图像相关(DIC)技术应用于多晶冰标本。样品具有柱状微观结构,因此塑性变形基本上是二维的,几乎没有深度梯度,因此表面DIC分析可代表整个样品体积。变形前和变形后,还使用自动纹理分析仪从微观结构分析中提取了颗粒内尺度的局部取向错误。通过DIC技术证实了高度局部的应变模式。局部等效应变可以达到比宏观平均值大一个数量级的值。在瞬态蠕变状态下,应变模式的结构不会随应变而变化。几乎没有观察到测量的局部应变与下层颗粒滑动面的Schmid因子之间的相关性,这突出了由非常大的冰晶粘塑性各向异性导致的相邻颗粒之间机械相互作用的重要性。最后,在全场快速傅里叶变换多晶模型中引入了实验组织。模拟应变场与实验场很好匹配。

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