首页> 外文期刊>Journal of Advanced Ceramics >Microstructure and piezoelectric properties of K_(5.70)Li_(4.07)Nb_(10.23)O_(30)-added K_(0.5)Na_(0.5)NbO3 ceramics Xuming PANG6, Jinhao QIUfl'*, Kongjun ZHUa 'State Key Laboratory of Mechanics and Control of Mechanical Structures, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China Department of Mechanical Engineering, Nanjing Tech University, Nanjing 210009, ChinaMqiu@nuaa.edu.cn
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Microstructure and piezoelectric properties of K_(5.70)Li_(4.07)Nb_(10.23)O_(30)-added K_(0.5)Na_(0.5)NbO3 ceramics Xuming PANG6, Jinhao QIUfl'*, Kongjun ZHUa 'State Key Laboratory of Mechanics and Control of Mechanical Structures, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China Department of Mechanical Engineering, Nanjing Tech University, Nanjing 210009, ChinaMqiu@nuaa.edu.cn

机译:K_(5.70)LI_(4.07)NB_(10.23)O_(30)的微观结构和压电性能 - 添加k_(0.5)NA_(0.5)NBO3陶瓷Xuming Pang6,金浩Qiufl'*,Kongjun Zhua“力学国家重点实验室 控制航空航天大学机械结构,南京科技大学机械工程系南京210016,南京210009,Chinam Qiu@nuaa.edu.cn

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摘要

Lead-free piezoelectric ceramics K_(0.5)Na_(0.5)NbO3-xmol%K_(5.70)Li_(4.07)Nb_(10.23)O_(30) (x = 0-2.5, KNN-xmol%KLN) were prepared by conventional sintering technique. The phase structure and electrical properties of KNN ceramics were investigated as a function of KLN concentration. The results showed that small amount of KLN introduced into the lattice formed a single phase perovskite structure. The KLN modification lowered the phase transition temperature of orthorhombic-tetragonal (T_(O-T)) and increased the Curie temperature (T_C). Some abnormal coarse grains were formed in a matrix when the content of KLN was relatively low (1 mol%). However, normally grown grains were only observed when the sintering aid content was increased to 2 mol%. Proper content of KLN decreased the amount of defects, thus the remanent polarization increased and the coercive field decreased markedly, and the sinterability of the KNN ceramics was simultaneously improved with significant increase of piezoelectric properties.
机译:无铅压电陶瓷K_(0.5)Na_(0.5)NBO3-Xmol%K_(5.70)Li_(4.07)Nb_(10.23)O_(30)(x = 0-2.5,x = 0-2.5,KNN-Xmol%KLN)通过常规制备烧结技术。作为KLN浓度的函数研究了KNN陶瓷的相结构和电性能。结果表明,少量KLN引入晶格形成单相钙钛矿结构。 KLN改性降低了正交 - 四方(T_(O-T))的相转变温度并增加了居里温度(T_C)。当KLN的含量相对较低(1mol%)时,在基质中形成一些异常粗晶粒。然而,当烧结助剂含量增加到2摩尔%时,才会观察到通常观察到的通常种植的晶粒。 KLN的适当含量降低了缺陷的量,从而随着压电性能的显着增加,再搅拌极化增加并且矫顽场显着降低,并且随着压电性能的显着增加,同时提高了KNN陶瓷的烧结性。

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