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首页> 外文期刊>Journal of Microscopy >Low-temperature-SEM study of dihedral angles in the ice-I/sulfuric acid partially molten system
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Low-temperature-SEM study of dihedral angles in the ice-I/sulfuric acid partially molten system

机译:冰-I /硫酸部分熔融体系中二面角的低温SEM研究

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The transport and mechanical properties of partially molten materials are influenced by the wetting behaviour of the melt with respect to the crystalline solid. The equilibrium microstructure of an ice + melt system was examined using low-temperature scanning electron microscopy. The samples were prepared by spraying a liquid solution of H2O-H2SO4 into liquid nitrogen and packing the frozen particulates into aluminium capsules. Samples were then sintered at -35°C or -55°C (above the eutectic temperature, TE=-62°C) for various durations and were quenched in liquid nitrogen to capture the equilibrium microstructure. This paper reports the first quantitative measurements of dihedral angle in this system. The measured median dihedral angle between the solid and vitrified melt is approximately 26 ± 2° at -35°C and increases slightly as temperature decreases and approaches the solidus (32 ± 3° at -55°C).
机译:部分熔融物料的运输和机械性能受熔体相对于结晶固体的润湿行为影响。使用低温扫描电子显微镜检查了冰+熔体系统的平衡微观结构。通过将H2O-H2SO4的液体溶液喷雾到液氮中并将冷冻的颗粒填充到铝胶囊中来制备样品。然后将样品在-35°C或-55°C(高于共晶温度,TE = -62°C)下烧结各种时间,然后在液氮中淬火以捕获平衡的微观结构。本文报道了该系统中二面角的首次定量测量。在-35°C下测得的固体和玻璃化熔体之间的中值二面角约为26±2°,并且随着温度降低并接近固相线(在-55°C时为32±3°)而略有增加。

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