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Grinding methods effects on the synthesis of Potassium-Sodium Niobate powders by oxide mixing

机译:研磨方法对通过氧化物混合合成铌酸钠粉末的合成

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摘要

Piezoelectric materials are widely used in electronic devices and, traditionally, various lead-based materials have been implemented in such applications. However, because of the damage caused by lead, other materials with similar characteristics that do not cause a negative impact on human health and the environment have been developed. A material with those characteristics is potassium-sodium niobite K0.5Na0.5 Nbo3. In this study, we investigate the thermogravimetric, structural, and microstructural properties of powders of such system obtained through oxide mixing with the aim of establishing the effect and efficiency of grinding (using a horizontal and a planetary ball mill grinder) on the production of the final material. It was determined that horizontal grinding and calcination at 900°C create the optimal conditions for obtaining K0.5Na0.5 Nbo3 powders, by oxide mixing, with the adequate structure and microstructure to continue the densification and/or doping processes.
机译:压电材料广泛用于电子设备,传统上,在这种应用中已经在各种铅基材料中实现。然而,由于铅造成的损害,已经开发出具有对人体健康和环境产生负面影响的类似特征的其他材料。具有这些特征的材料是铌钠钠K0.5NA0.5 NBO3。在这项研究中,我们研究了通过氧化物混合获得的这种体系的粉末的热重,结构和微观结构性质,其目的是建立研磨(使用水平和行星球磨机研磨机)对生产的生产效果和效率最终材料。确定在900℃下水平研磨和煅烧在通过氧化物混合中获得k0.5na0.5 nBO3粉末的最佳条件,具有足够的结构和微观结构以继续致密化和/或掺杂方法。

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