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  • Magnetic-field-induced reorientation in Ni–Mn–Ga five-layered martensite (10 M)mediated by the motion of single twin boundary was evaluated from magnetization measurements between 20 and 300 K. At 300 K, the single twin boundary moved in an exceptionally small field of 25 kA/m. Twinning stress, as a measure of the twin boundary mobility, was determined from the magnetization curves using a magnetic-energy-based model; it increased from 0.1 MPa at 300 K to 0.8 MPa at 20 K. The dependence is discussed in terms of thermal activation and the effect of intermartensitic transformation is considered.
  • Magnetic-field-induced reorientation in Ni–Mn–Ga five-layered martensite (10 M)mediated by the motion of single twin boundary was evaluated from magnetization measurements between 20 and 300 K. At 300 K, the single twin boundary moved in an exceptionally small field of 25 kA/m. Twinning stress, as a measure of the twin boundary mobility, was determined from the magnetization curves using a magnetic-energy-based model; it increased from 0.1 MPa at 300 K to 0.8 MPa at 20 K. The dependence is discussed in terms of thermal activation and the effect of intermartensitic transformation is considered. (en)
Title
  • Temperature dependence of single twin boundary motion in Ni–Mn–Ga martensite
  • Temperature dependence of single twin boundary motion in Ni–Mn–Ga martensite (en)
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  • Temperature dependence of single twin boundary motion in Ni–Mn–Ga martensite
  • Temperature dependence of single twin boundary motion in Ni–Mn–Ga martensite (en)
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  • RIV/68378271:_____/11:00374025!RIV12-AV0-68378271
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  • Z(AV0Z10100520)
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  • 14
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  • 234595
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  • RIV/68378271:_____/11:00374025
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  • magnetic shape memory effect; modulated martensite; Ni-Mn-Ga; mobility of twin boundary (en)
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  • US - Spojené státy americké
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  • [20D394E852D2]
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  • Applied Physics Letters
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  • 98
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  • Heczko, Oleg
  • Hänninen, H.
  • Straka, L.
http://linked.open...ain/vavai/riv/wos
  • 000289297800017
http://linked.open...n/vavai/riv/zamer
issn
  • 0003-6951
number of pages
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  • 10.1063/1.3573860
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