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Shape-memory transformations of NiTi: minimum-energy pathways between austenite, martensites, and kinetically limited intermediate states.

作者信息

Zarkevich N A, Johnson D D

机构信息

The Ames Laboratory, U.S. Department of Energy, Ames, Iowa 50011-3020, USA.

The Ames Laboratory, U.S. Department of Energy, Ames, Iowa 50011-3020, USA and Materials Science & Engineering, Iowa State University, Ames, Iowa 50011-2300, USA.

出版信息

Phys Rev Lett. 2014 Dec 31;113(26):265701. doi: 10.1103/PhysRevLett.113.265701. Epub 2014 Dec 24.

Abstract

NiTi is the most used shape-memory alloy; nonetheless, a lack of understanding remains regarding the associated structures and transitions, including their barriers. Using a generalized solid-state nudged elastic band method implemented via density-functional theory, we detail the structural transformations in NiTi relevant to shape memory: those between a body-centered orthorhombic (bco) ground state and a newly identified stable austenite ("glassy" B2-like) structure, including energy barriers (hysteresis) and intermediate structures (observed as a kinetically limited R phase), and between martensite variants (bco orientations). All results are in good agreement with available experiment. We contrast the austenite results to those from the often-assumed, but unstable B2. These high- and low-temperature structures and structural transformations provide much needed atomic-scale detail for transitions responsible for NiTi shape-memory effects.

摘要

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