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首页> 外文期刊>International Journal of Solids and Structures >Micromechanical model for sintering and damage in viscoelastic porous ice and snow. Part I: Model and calibration
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Micromechanical model for sintering and damage in viscoelastic porous ice and snow. Part I: Model and calibration

机译:粘弹性多孔冰雪烧结和损伤的微机械模型。 第一部分:模型和校准

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摘要

Ice and snow are usually classi?ed as a viscoelastic or viscoplastic materials according to temperature, strain rate, pressure and time scale. Throughout experimental studies presented in the literature, it has been observed that at very low temperatures or high strain rates, porous ice and snow exhibit brittle be-havior, but experience high viscous and plastic ?ow at temperatures close to the melting point and low rates. At the macroscopic level, nonlinearity is not necessarily attributed to permanent changes in the material or yielding but mainly to micro cracks, intergranular sliding, porosity collapse and crack propa-gation. In this paper, this complex behavior is described with a full microstructure-based model. Classical rheological models and beam theory are used to describe aspects of creep and fracture of granular ice and snow.
机译:冰雪通常是根据温度,应变速率,压力和时间尺度作为粘弹性或粘液材料。 在整个文献中提出的实验研究中,已经观察到,在非常低的温度或高应变率,多孔冰和雪地表现出脆性的冰,但在靠近熔点和低速率的温度下经历高粘稠和塑料件 。 在宏观水平下,非线性不一定归因于材料的永久变化或屈服,而是主要用于微裂缝,晶间滑动,孔隙率塌陷和裂纹PROPA-Gation。 在本文中,描述了这种基于微结构的模型的复杂行为。 古典流变模型和光束理论用于描述颗粒冰雪骨折的蠕变和骨折的方面。

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