马氏体
材料科学
凝聚态物理
亚稳态
合金
结晶学
磁滞
格子(音乐)
形状记忆合金
衍射
相(物质)
热滞后
四方晶系
晶体结构
冶金
相变
化学
光学
微观结构
物理
有机化学
声学
作者
Petr Veřtát,Hanuš Seiner,Ladislav Straka,Milan Klicpera,A. Sozinov,Oscar Fabelo,Oleg Heczko
标识
DOI:10.1088/1361-648x/abfb8f
摘要
Abstract Modulated structure of Ni–Mn–Ga-based alloys is decisive in their magnetic shape memory (MSM) functionality. However, the precise nature of their five-layered modulated 10M martensite is still an open question. We used x-ray and neutron diffraction experiments on single crystals to investigate structural changes within 10M-modulated martensite of the Ni 50 Mn 27 Ga 22 Fe 1 MSM alloy. The modulation vector gradually increases upon cooling from commensurate q = (2/5) g 110 , where g 110 is the reciprocal lattice vector, to incommensurate with q up to pseudo-commensurate q = (3/7) g 110 . Upon heating, reverse changes are observed with a thermal hysteresis of ≈60 K. The same hysteretic behaviour was detected in the electrical resistivity and the effective elastic modulus. Scanning electron microscopy showed that the changes are accompanied by the refinement of the a / b laminate. These observations indicate that the commensurate state is a metastable form of 10M martensite. Upon cooling, this phase evolves through nanotwinning into a more irregular and more stable incommensurate structure.
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