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Phase Formation, Microstructures, and Mechanical Properties of Lead-free BNKT Ferroelectric Ceramics Doped with BZZ

机译:无铅BNKT铁电陶瓷的相形成,微观结构和机械性能掺杂有凸泽掺杂

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In this research, the effects of bismuth zinc zirconate (BZZ) additive on phase formation, microstructural and mechanical properties of bismuth sodium potassium titanate (BNKT) ceramics were investigated. The BZZ-doped BNKT ceramics were prepared using solid state reaction technique. The pure phase of BZZ-doped BNKT powders were achieved for a calcinations temperature of 850 °C for 4h. The obtained powders were pressed into small pellets and sintered at optimum temperature to form dense ceramics. The XRD analysis of the ceramics shows that all ceramic samples exhibited a pure phase perovskite structure. The bulk densities of samples were about 5.82-6.03 g/cm~3 which measured using the Archimedes method. The mechanical properties were measured using micro hardness tester. The microstructural of sintered surface was investigated using scanning electron microscopy (SEM). Average grain size increased with increasing BZZ content. The relations of these results were discussed and compared to the previous works.
机译:在本研究中,研究了铋锌锌锆(BZZ)添加剂对钛酸钠(BNKT)陶瓷碳酸钠(BNKT)陶瓷的相形成,微观结构和力学性能的影响。使用固态反应技术制备熔化掺杂的BNKT陶瓷。实现了抗掺杂BNKT粉末的纯相对于850℃的煅烧温度4h。将所得粉末压入小粒料中并在最佳温度下烧结以形成致密的陶瓷。陶瓷的XRD分析表明,所有陶瓷样品都表现出纯相钙钛矿结构。样品的堆积密度约为5.82-6.03g / cm〜3,其使用Archimedes方法测量。使用微硬度测试仪测量机械性能。使用扫描电子显微镜(SEM)研究了烧结表面的微观结构。随着BZZ含量的增加,平均晶粒尺寸增加。讨论了这些结果的关系,并与之前的作品进行了讨论。

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