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Particle Characteristics’ Influence on FLASH Sintering of Potassium Sodium Niobate: A Relationship with Conduction Mechanisms

机译:粒子特征对铌酸钠蒸汽烧结的影响:导通机构的关系

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摘要

The considerable decrease in temperature and time makes FLASH sintering a more sustainable alternative for materials processing. FLASH also becomes relevant if volatile elements are part of the material to be processed, as in alkali-based piezoelectrics like the promising lead-free K0.5Na0.5NbO3 (KNN). Due to the volatile nature of K and Na, KNN is difficult to process by conventional sintering. Although some studies have been undertaken, much remains to be understood to properly engineer the FLASH sintering process of KNN. In this work, the effect of FLASH temperature, TF, is studied as a function of the particle size and impurity content of KNN powders. Differences are demonstrated: while the particle size and impurity degree markedly influence TF, they do not significantly affect the densification and grain growth processes. The conductivity of KNN FLASH-sintered ceramics and KNN single crystals (SCs) is compared to elucidate the role of particles’ surface conduction. When particles’ surfaces are not present, as in the case of SCs, the FLASH process requires higher temperatures and conductivity values. These results have implications in understanding FLASH sintering towards a more sustainable processing of lead-free piezoelectrics.
机译:温度和时间的相当大降低使得闪光烧结更可持续的材料加工替代品。如果挥发性元件是待加工的材料的一部分,闪光也变得相关,如在基于碱基的压电中,如有前途的无铅K0.5na0.5No3(KNN)。由于K和Na的挥发性,常规烧结难以处理KNN。虽然已经进行了一些研究,但仍有待理解的是妥善工程仪的闪光烧结过程。在这项工作中,闪光温度TF的效果是研究了KNN粉末的粒度和杂质含量的函数。证明差异:虽然粒度和杂质程度显着影响TF,但它们不会显着影响致密化和晶粒生长过程。比较KNN闪光烧结陶瓷和KNN单晶(SCS)的导电性,以阐明颗粒表面传导的作用。当颗粒表面不存在时,如SCS的情况下,闪光过程需要更高的温度和电导率。这些结果对了解闪光烧结朝着更可持续的无铅压电的处理方面的影响。

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