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Grain growth by multiple ordered coalescence of nanocrystals during spark plasma sintering of SrTiO_3 nanopowders

机译:SrTiO_3纳米粉体火花等离子体烧结过程中纳米晶多重有序聚结的晶粒长大

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摘要

Sintering is the most widely applied densification process for manufacturing polycrystalline materials in powder metallurgy and cera mic industries. Grain growth behavior during sintering has a crucial influence on the final microstructure and thus the achieved perfor mance. So far, it has been accepted that grain growth, based on classic crystal growth theory, takes place via atomic diffusion driven by excess interfacial energy. This paper presents a novel grain growth mechanism resulting from multiple ordered coalescence of nanocrys tals via the activation of rapid grain motions. In rapid solid-state sintering of a strontium titanate (SrTiO_3) nandpowder, individual SrTiO_3 nanocrystals can act as the building blocks and self-assemble to form larger grains. A quasi-liquid interfacial film achieved by surface melting of the nanocrystals plays an essential role in this new process by facilitating the grain motion and ordered coalescence of nanocrystals. The imperfect ordered coalescence of nanocrystals introduce deep structural heterogeneities characterized by the unique quasi-interfaces inside grown grains of single crystal signature. The quasi-interfaces consist of the vacancy arrays and/or aggregated line defects.
机译:烧结是粉末冶金和陶瓷工业中制造多晶材料应用最广泛的致密化工艺。烧结过程中的晶粒生长行为对最终的微观结构有至关重要的影响,从而对所达到的性能有至关重要的影响。到目前为止,人们已经接受,基于经典晶体生长理论的晶粒生长是通过由过量界面能驱动的原子扩散发生的。本文提出了一种新的晶粒生长机理,该机理由纳米晶粒的多重有序聚结通过激活晶粒快速运动而产生。在钛酸锶 (SrTiO_3) nandpowder 的快速固态烧结中,单个SrTiO_3纳米晶体可以充当构建块并自组装以形成更大的晶粒。通过纳米晶体表面熔融实现的准液体界面膜通过促进纳米晶体的晶粒运动和有序聚结,在这一新工艺中起着至关重要的作用。纳米晶体的不完全有序聚结引入了深层结构异质性,其特征是单晶特征生长晶粒内部独特的准界面。准接口由空位阵列和/或聚合线路缺陷组成。

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