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Elinvar Effect by Nanoscale Displacive Phase Transformation in Martensites

  • Die Liu
  • , Yao Liu
  • , Junming Gou
  • , Tianyu Ma
  • , Xiaobing Ren
  • Frontier Institute of Science and Technology
  • Yongjiang Laboratory

科研成果: 期刊稿件文章同行评审

摘要

Ferroelastic alloys suffer modulus softening prior to the martensitic transformation, but still exhibit normal cooling-hardening effect below the martensitic transformation finish temperature, Mf. Here we report an unprecedented phenomenon that a martensitic state can show nearly temperature-independent modulus (i.e., Elinvar effect) below Mf, as exhibited in Ni-Fe-Mn-Ti alloys. The Elinvar martensites have a hierarchical domain structure, where two types of orthorhombic nanomartensites with distinct atomic modulation periods and magnetic states coexist within an individual ferroelastic domain. Their small free-energy difference gives rise to a nanoscale displacive phase transformation from one to another, and the moderate modulus softening compensates for the ever-present elastic hardening, leading to the wide temperature range Elinvar effect. This finding is a new insight of martensitic phase transformation, which might help to discover technically desired properties, such as the temperature-independent modulus and good ductility at cryogenic temperatures.

源语言英语
期刊论文编号016101
期刊Physical Review Letters
137
1
DOI
出版状态已出版 - 3 7月 2026
已对外发布

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