Cheng Li-Qian, Xu Ze, Zhao Chunlin, Thong Hao-Cheng, Cen Zhen-Yong, Lu Wei, Lan Yu, Wang Ke
Department of Materials Science and Engineering, China University of Mining & Technology (Beijing) Beijing 100083 China
State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University Beijing 100084 China.
RSC Adv. 2018 Oct 17;8(62):35594-35599. doi: 10.1039/c8ra06421k. eCollection 2018 Oct 15.
A high-performance piezoelectric material, 0.95Pb(ZrTi)O-0.05Pb(MnNb)O (PZT-PMnN) ceramic, was prepared by using a spark plasma sintering (SPS) method. By systematically comparing the electrical properties, the spark-plasma-sintered sample was demonstrated to be superior to a conventionally sintered sample. With respect to conventionally sintered ceramic, the of spark-plasma-sintered ceramic increases from 323 pC/N to 412 pC/N, and the increases from 318 pm V to 553 pm V. More importantly, the mechanical quality factor ( ) reaches 583, which is three times higher than the conventionally sintered sample ( ∼ 182). Furthermore, the SPS method was found to be capable of promoting other electrical properties simultaneously. Therefore, the SPS method is proposed to be an effective processing method to fabricate PZT-PMnN ceramics of higher performance.
采用放电等离子烧结(SPS)法制备了一种高性能压电材料0.95Pb(ZrTi)O-0.05Pb(MnNb)O(PZT-PMnN)陶瓷。通过系统比较电学性能,证明放电等离子烧结样品优于传统烧结样品。相对于传统烧结陶瓷,放电等离子烧结陶瓷的压电常数从323 pC/N增加到412 pC/N,机电耦合系数从318 pm/V增加到553 pm/V。更重要的是,机械品质因数( )达到583,比传统烧结样品( ~182)高出三倍。此外,发现SPS方法能够同时提升其他电学性能。因此,提出SPS方法是制备高性能PZT-PMnN陶瓷的有效加工方法。