Influence of synthesis methods on structural, piezoelectric, ferroelectric and mechanical properties of lead-free K0.5Na0.5NbO3 (KNN) ceramics

Mahfooz Alam, Sukhamoy Khilari, K. Shree, D. Das
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Abstract

In this work lead free perovskite ferroelectric ceramics, K0.5Na0.5NbO3 (KNN), has been synthesized by two different methods, conventional solid state (SS) and co-precipitation (CPP), from the same starting materials, Nb2O5, Na2CO3 and K2CO3 and their properties have been compared. Double calcination, 700 °C for 7h followed by 850 °C for 6h, of the co-precipitation precursor resulted in single phase perovskite structure (JCPDS card No. 01-077-0038), whereas for solid state precursor a triple calcination, 850 °C for 5h, 1000 °C for 5h followed by 1050 °C for 5h, ended up with producing the cubic perovskite KNN phase. Both samples were sintered at 1120 °C for 2h under atmospheric condition in a muffle furnace. FESEM is used to find the microstructural features. Energy dispersive X-ray spectroscopy is used to confirm the chemical composition of the samples. Evolution of the phase structure and variation in Curie temperature, dielectric constant, piezoelectric voltage coefficient (g33), piezoelectric charge coefficient (d33) as well as mechanical properties such as hardness, stiffnesshave been studied and compared for the KNN samples prepared by two different synthesis methods.
合成方法对无铅K0.5Na0.5NbO3 (KNN)陶瓷结构、压电、铁电和力学性能的影响
本文以Nb2O5、Na2CO3和K2CO3为原料,采用常规固相法(SS)和共沉淀法(CPP)制备了无铅钙钛矿铁电陶瓷K0.5Na0.5NbO3 (KNN),并对其性能进行了比较。对共沉淀前驱体进行两次煅烧,700℃,7h, 850℃,6h,得到单相钙钛矿结构(JCPDS卡号:01-077-0038),而对固态前驱体进行三次煅烧,850℃,5h, 1000℃,5h, 1050℃,5h,最终得到立方钙钛矿KNN相。两种样品在常压条件下在马弗炉中1120℃烧结2h。利用FESEM分析材料的微观组织特征。能量色散x射线光谱学用于确定样品的化学成分。研究并比较了两种不同合成方法制备的KNN样品的相结构演变、居里温度、介电常数、压电电压系数(g33)、压电电荷系数(d33)以及硬度、刚度等力学性能的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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