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微波辅助合成与烧结无铅KNL-NTS陶瓷的效果

Effect of Microwave-Assisted Synthesis and Sintering of Lead-Free KNL-NTS Ceramics.

作者信息

Lagunas-Chavarría Anggel, Navarro-Rojero María Guadalupe, Salvador María Dolores, Benavente Rut, Catalá-Civera Jose Manuel, Borrell Amparo

机构信息

Instituto de Tecnología de Materiales (ITM), Universitat Politècnica de València, Camino de Vera, s/n, 46022 Valencia, Spain.

Advance Technology Centre (CIATEQ A.C.), Av. del Retablo 150, Col. Constituyentes Fovissste, Querétaro 76150, Mexico.

出版信息

Materials (Basel). 2022 May 25;15(11):3773. doi: 10.3390/ma15113773.

Abstract

Lead-free piezoelectric powders (KNaLi)(NbTaSb)O were obtained by conventional and microwave-assisted reactive heating. Firstly, the synthesis of the material was carried out following the mixed oxide route and employing both traditional methods and microwave technology. Thermogravimetry, X-ray diffraction, field emission scanning electron microscopy and electrical properties analyses were evaluated. X-ray diffraction of the powders calcined by the microwave process shows the formation of perovskite structure with orthorhombic geometry, but it is possible to observe the presence of other phases. The presence of the secondary phases found can have a great influence on the heating rate during the synthesis on which the kinetics of the reaction of formation of the piezoelectric compound depend. The calcined powder was sintered at different temperatures by conventional and non-conventional processes. The microstructure of the ceramics sintered by microwave at 1050 °C for 10 min shows perovskite cubes with regular geometry, of size close to 2-5 µm. However, the observed porosity (8%), the presence of liquid phase and secondary phases in the microstructure of the microwave sintered materials lead to a decrease of the piezoelectric constant. The highest d value of 146 pC/N was obtained for samples obtained by conventional at 1100 °C 2 h compared to samples sintered by microwave at 1050 °C 10 min (15 pC/N).

摘要

通过传统加热和微波辅助反应加热制备了无铅压电粉末(KNaLi)(NbTaSb)O。首先,按照混合氧化物路线,采用传统方法和微波技术进行材料的合成。对热重分析、X射线衍射、场发射扫描电子显微镜和电学性能进行了评估。通过微波工艺煅烧的粉末的X射线衍射显示形成了具有正交几何结构的钙钛矿结构,但可以观察到其他相的存在。所发现的第二相的存在可能对合成过程中的加热速率有很大影响,而压电化合物形成反应的动力学取决于加热速率。通过传统工艺和非传统工艺在不同温度下对煅烧后的粉末进行烧结。在1050℃下微波烧结10分钟的陶瓷微观结构显示出几何形状规则的钙钛矿立方体,尺寸接近2-5μm。然而,在微波烧结材料的微观结构中观察到的孔隙率(约8%)、液相和第二相的存在导致压电常数降低。与在1050℃下微波烧结10分钟(约15 pC/N)的样品相比,通过传统工艺在1100℃下烧结2小时获得的样品的最高d值为146 pC/N。

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