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Nanoparticles formation mechanisms through the spark erosion of alloys in cryogenic liquids

机译:低温液体中合金的火花腐蚀形成纳米颗粒的机理

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Mechanisms of the formation of nanoparticles of some B2 shape memory intermetallic compounds, glass-forming Zr-based alloy, and pure Ti obtained by spark erosion method in liquid nitrogen and argon are considered. One of peculiarity is a foam-like structure, which covers the surface of micron-sized particles that appear during spark erosion. Such morphology is related to the nanosized particles gathered in agglomerates. Detailed examination of those particles allows proposed several mechanisms of their formation. The mechanisms explains two kinds of nanosized particles: particles of several tens and even hundreds of nanometers are formed due to explosion of molten droplets while the smaller particles having in turn a different structure and morphology are formed as a result of condensation of evaporated constituents under different conditions. The latter have the composition usually different from the target composition while the composition of the former is very close to the target (master alloy) composition.
机译:考虑了在液氮和氩气中一些B​​2形状记忆金属间化合物,玻璃形成的Zr基合金和通过火花腐蚀法获得的纯钛形成纳米颗粒的机理。其中一种是泡沫状结构,它覆盖了在电火花腐蚀过程中出现的微米级颗粒的表面。这种形态与聚集物中聚集的纳米级颗粒有关。对那些颗粒的详细检查允许提出其形成的几种机理。该机理解释了两种纳米尺寸的颗粒:由于熔融液滴的爆炸而形成数十甚至数百纳米的颗粒,而由于蒸发的成分在不同条件下的凝结而形成具有不同结构和形态的较小颗粒。条件。后者的组成通常与目标组成不同,而前者的组成非常接近目标(中间合金)组成。

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