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PRELIMINARY STUDY ON NANOMETER-SCALE GAMMA-ALUMINA POWDER DENSIFICATION THROUGH VIBRATION

机译:纳米级γ-氧化铝粉体振动致密化的初步研究

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摘要

Lightweight, compact hydrogen storage has been one of the major bottlenecks in developing fuel cell systems applicable to powering ground vehicles. In this study, preliminary experimental examinations have been performed to evaluate vibratory densification of nanometer-scale powder particles, which directly affects the volume and weight of storage systems based on complex hydrides such as NaAlH_4. Since NaAlH_4 is is reactive with moisture and oxygen, and thus not possible to test in air, γ-alumina (gamma-aluminum oxide) with a similar average particle size (~50 nm) is applied as a surrogate material in this preliminary investigation. An apparatus including a tube test section to quantify the densification of a column of powder was developed for this study. Comprehensive testing has been carried out to identify the optimal vibration conditions achieving the highest densities. The study investigates the effectiveness of 1-dimensional and 2-dimensional vibration, as well as the impact of frequency patterns (constant frequency and frequency sweeping). Offering fundamental understanding of nano-powder densification using shakers, this experimental investigation provides guidelines for further study of vibration-based hydride powder densification.
机译:轻巧,紧凑的氢存储一直是开发适用于为地面车辆提供动力的燃料电池系统的主要瓶颈之一。在这项研究中,已经进行了初步的实验检查,以评估纳米级粉末颗粒的振动致密化,这直接影响了基于复杂氢化物(例如NaAlH_4)的存储系统的体积和重量。由于NaAlH_4与水分和氧气具有反应性,因此无法在空气中进行测试,因此在此初步研究中,将平均粒径相似(约50 nm)的γ-氧化铝(γ-氧化铝)用作替代材料。为这项研究开发了一种设备,该设备包括用于量化粉末柱密度的试管部分。已经进行了综合测试,以确定达到最高密度的最佳振动条件。该研究调查了一维和二维振动的有效性,以及频率模式(恒定频率和扫频)的影响。本实验研究提供了使用振动器对纳米粉末致密化的基本了解,为进一步研究基于振动的氢化物粉末致密化提供了指导。

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