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多晶压电材料中超过1%的电应变。

Electrostrain in excess of 1% in polycrystalline piezoelectrics.

作者信息

Narayan Bastola, Malhotra Jaskaran Singh, Pandey Rishikesh, Yaddanapudi Krishna, Nukala Pavan, Dkhil Brahim, Senyshyn Anatoliy, Ranjan Rajeev

机构信息

Department of Materials Engineering, Indian Institute of Science, Bangalore, India.

Laboratoire Structures, Propriétés et Modélisation des Solides (SPMS), CentraleSupélec, CNRS-UMR8580, Université Paris-Saclay, Gif-sur-Yvette, France.

出版信息

Nat Mater. 2018 May;17(5):427-431. doi: 10.1038/s41563-018-0060-2. Epub 2018 Apr 9.

Abstract

Piezoelectric actuators transform electrical energy into mechanical energy, and because of their compactness, quick response time and accurate displacement, they are sought after in many applications. Polycrystalline piezoelectric ceramics are technologically more appealing than single crystals due to their simpler and less expensive processing, but have yet to display electrostrain values that exceed 1%. Here we report a material design strategy wherein the efficient switching of ferroelectric-ferroelastic domains by an electric field is exploited to achieve a high electrostrain value of 1.3% in a pseudo-ternary ferroelectric alloy system, BiFeO-PbTiO-LaFeO. Detailed structural investigations reveal that this electrostrain is associated with a combination of several factors: a large spontaneous lattice strain of the piezoelectric phase, domain miniaturization, a low-symmetry ferroelectric phase and a very large reverse switching of the non-180° domains. This insight for the design of a new class of polycrystalline piezoceramics with high electrostrains may be useful to develop alternatives to costly single-crystal actuators.

摘要

压电致动器将电能转化为机械能,由于其结构紧凑、响应时间快和位移精确,在许多应用中备受青睐。多晶压电陶瓷因其加工更简单、成本更低,在技术上比单晶更具吸引力,但尚未表现出超过1%的电致应变值。在此,我们报告一种材料设计策略,即利用电场对铁电-铁弹畴进行有效切换,在伪三元铁电合金系统BiFeO-PbTiO-LaFeO中实现了1.3%的高电致应变值。详细的结构研究表明,这种电致应变与多种因素的组合有关:压电相的大自发晶格应变、畴的小型化、低对称铁电相以及非180°畴的非常大的反向切换。这种设计具有高电致应变的新型多晶压电陶瓷的见解,可能有助于开发昂贵单晶致动器的替代品。

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