弹性各向异性和晶界滑动作用下的柱状冰裂纹成核

R.C. Picu, V. Gupta
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引用次数: 27

摘要

在抑制位错堆积过程的加载速率下,研究了柱状淡水冰中晶粒三重结的裂纹形核现象。本文探讨了两种机制。首先,研究了弹性各向异性诱导的奇异应力场在三结点处引起的裂纹形核。为此,给出了与裂纹形核相关的奇点指数和能量释放值,用于晶粒的晶界和材料轴的随机取向。计算出的能量释放率值远远低于成核所需的值。其次,假设晶界为线性粘性响应,计算晶界滑动引起的应力集中,得到的能量释放率值足够高,足以克服裂纹成核障碍。在- 10°C下晶界滑动引起的边界脱黏的实验证据在合著的论文中提出。在这样的温度下,即使加载的应变率引起多晶体的整体脆性反应,滑动也会被激活。
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Crack nucleation in columnar ice due to elastic anisotropu and grain boundary sliding

The phenomenon of crack nucleation from grain triple junctions is investigated in columnar freshwater ice at rates of loading where the dislocation pile-up process is inhibited. Two mechanisms are explored. First, crack nucleation due to elastic anisotropy-induced singular stress field at the triple junction is investigated. To this end, both the singularity exponent and the energy release values associated with crack nucleation are provided for random orientations of the grain boundaries and material axes of the grains. The computed energy release rate values fall much short of those required for nucleation. Next, by assuming a linear viscous response for the boundary, the stress concentrations due to grain boundary sliding are computed, and the resulting energy release rate values are shown to be sufficiently high to overcome the barrier for crack nucleation. Experimental evidence for grain boundary sliding-induced boundary decohesions at — 10°C are presented in the companion paper. At such temperatures, sliding is activated even though the strain rate of loading invokes an overall brittle response from the polycrystal.

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