Berik, PelinMaurya, DeepamKumar, PrashantKang, Min-GyuPriya, Shashank2017-03-022017-03-022017-01-011468-6996http://hdl.handle.net/10919/75216This paper is concerned with the development of a piezoelectric d<sub>15</sub> shear-induced torsion actuator made of a lead-free piezoceramic material exhibiting giant piezoelectric shear stress coefficient (e<sub>15</sub>) and piezoelectric transverse shear actuation force comparable to that of leadbased shear-mode piezoceramics. The Mn-modified 0.93(Na<sub>0.5</sub>Bi<sub>0.5</sub>Ti<sub>O3</sub>)-0.07BaTiO<sub>3</sub> (NBT-BTMn) composition exhibited excellent properties as a torsional transducer with piezoelectric shear stress coefficient on the order of 11.6 C m<sup>–2</sup>. The torsional transducer, consisting of two oppositely polarized NBT-BT-Mn d<sub>15</sub> mode piezoceramic shear patches, provided a rate of twist of 0.08 mm m<sup>–1</sup> V<sup>–1</sup> under quasi-static 150 V drive. The high value of piezoelectric shear d<sub>15</sub> coefficient in NBT-BT-Mn sample further demonstrated its potential in practical applications. These results confirm that the lead-free piezoceramics can be as effective as their lead-based counterparts.51 - 59 (9) page(s)Creative Commons Attribution 4.0 InternationalTechnologyMaterials Science, MultidisciplinaryMaterials ScienceLead-freepiezoceramicshear-modetorsionactuationINDUCED FLEXURAL VIBRATIONSCERAMICSMECHANISMEnhanced torsional actuation and stress coupling in Mn-modified 0.93(Na0.5Bi0.5TiO3)-0.07BaTiO(3) lead-free piezoceramic systemArticle - RefereedThe Author(s)Science and Technology of Advanced Materialshttps://doi.org/10.1080/14686996.2016.1254569181