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タイトル: | Superelastic-like nonlinear deformation hidden in ferroelectric ceramics |
著者: | Minami, Susumu ![]() ![]() ![]() Nakayama, Tomohiro Shimada, Takahiro ![]() ![]() ![]() |
著者名の別形: | 見波, 将 仲山, 智裕 嶋田, 隆広 |
キーワード: | First-principle calculations Phase transitions Piezoelectric devices Dielectric materials Ferroelectric materials Materials properties Stress strain relations Ceramics Chemical bonding |
発行日: | 7-Sep-2023 |
出版者: | AIP Publishing |
誌名: | Journal of Applied Physics |
巻: | 134 |
号: | 9 |
論文番号: | 094102 |
抄録: | The mechanical response of ferroelectric (piezoelectric) ceramics under high stress conditions has a crucial role from the perspective of engineering applications such as advanced actuator systems. In this study, we perform first-principles calculations to clarify the deformation behavior and (ideal) tensile strength for typical ferroelectric ceramics of PbTiO3 (PTO) under high mechanical loading. We find the superelastic-like nonlinear deformation behavior in ferroelectric PTO. In addition, it has several inflection points and shows a large critical strain compared to the paraelectric phase. We conclude that the unique nonlinear deformation in PTO originates from attributable to the displacement of oxygen atoms due to the ferroelectric phase transition based on analyzing the interatomic distances of each atom and an integrated crystal orbital Hamiltonian population with respect to strain. Furthermore, we also calculate the piezoelectric coefficient for PTO and reveal that it shows the singular peak at inflection points of the stress–strain curve. Unveiling and engineering the hidden superelastic-like deformation in the ferroelectric phase may open promising paradigms for functional piezoelectric devices. |
著作権等: | This article may be downloaded for personal use only. Any other use requires prior permission of the author and AIP Publishing. This article appeared in (Susumu Minami, Tomohiro Nakayama, Takahiro Shimada; Superelastic-like nonlinear deformation hidden in ferroelectric ceramics. J. Appl. Phys. 7 September 2023; 134 (9): 094102.) and may be found at https://doi.org/10.1063/5.0164669. The full-text file will be made open to the public on SEPTEMBER 05 2024 in accordance with publisher's 'Terms and Conditions for Self-Archiving'. |
URI: | http://hdl.handle.net/2433/285305 |
DOI(出版社版): | 10.1063/5.0164669 |
出現コレクション: | 学術雑誌掲載論文等 |

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