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The Impact of Partial Crystallization on the Permeation Properties Bulk Amorphous Glass Hydrogen Separation Membranes

机译:部分结晶对渗透性质的影响散装块状非晶玻璃氢分离膜

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It is recognized that hydrogen separation membranes are a key component of the emerging hydrogen economy. A potentially exciting material for membrane separations are bulk metallic glass materials due to their low cost, high elastic toughness and resistance to hydrogen "embrittlement" as compared to crystalline Pd-based membrane systems. However, at elevated temperatures and extended operation times structural changes including partial crystallinity may appear in these amorphous metallic systems. A systematic evaluation of the impact of partial crystallinity/devitrification on the diffusion and solubility behavior in multi-component Metallic Glass materials would provide great insight into the potential of these materials for hydrogen applications. This study will report on the development of time and temperature crystallization mapping and their use for interpretation of "in-situ" hydrogen permeation at elevated temperatures.
机译:据认识到氢分离膜是新出现的氢气经济的关键组成部分。与基于晶体Pd基膜系统相比,由于它们的低成本,高弹性韧性和对氢气“脆化”的低成本,高弹性韧性和耐氢的耐受性,是膜分离的潜在令人兴奋的材料。然而,在升高的温度下并且在这些无定形金属系统中可能出现包括部分结晶度的结构变化的延长操作时间。系统评估部分结晶度/缺乏对多组分金属玻璃材料中的扩散和溶解度行为的影响将提供很大的洞察氢应用这些材料的潜力。本研究将报告时间和温度结晶测绘的开发及其用于解释升高温度下的“原位”氢渗透的用途。

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