About: Impact of Heat Treatment Environment of Microstructure and Transformation Path in NiTi Shape Memory Alloy     Goto   Sponge   NotDistinct   Permalink

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  • We report results of differential scanning calorimetry (DSC) experiments in which heat flow (T) from and to Ti-50.9at%Ni shape memory samples was recorded during the temperature scan through a B2 B19’ transformation range. Prior to the DSC experiments, the samples were separately annealed in evacuated quartz capsules containing different hydrogen and helium mixtures with an overall filling pressure of 900 mbar. The quartz tubes containing the annealed samples were subsequently quenched into cold water. After quenching, the capsules were opened, martensitic transformations were investigated by DSC and the microstructure of the samples was assessed by transmission electron microscopy (TEM). Annealing in the mixtures with an increasing partial pressure of hydrogen led to a considerable drop in the latent heat associated with the B2 B19’ martensitic transformation. Results obtained using TEM suggest that hydrogen may function as a catalytic substance that accelerates the long range ordering of Ni atoms in early stages of Ni4Ti3-phase precipitation. The selected area diffraction study focused on patterns in <100>B2 and <110>B2 zones and provided evidence for diffuse scattering due to spatial modulations of the lattice constant. These variations in the background electron intensities might be related to a precursor of Ni4Ti3 phase in its early state of formation.
  • We report results of differential scanning calorimetry (DSC) experiments in which heat flow (T) from and to Ti-50.9at%Ni shape memory samples was recorded during the temperature scan through a B2 B19’ transformation range. Prior to the DSC experiments, the samples were separately annealed in evacuated quartz capsules containing different hydrogen and helium mixtures with an overall filling pressure of 900 mbar. The quartz tubes containing the annealed samples were subsequently quenched into cold water. After quenching, the capsules were opened, martensitic transformations were investigated by DSC and the microstructure of the samples was assessed by transmission electron microscopy (TEM). Annealing in the mixtures with an increasing partial pressure of hydrogen led to a considerable drop in the latent heat associated with the B2 B19’ martensitic transformation. Results obtained using TEM suggest that hydrogen may function as a catalytic substance that accelerates the long range ordering of Ni atoms in early stages of Ni4Ti3-phase precipitation. The selected area diffraction study focused on patterns in <100>B2 and <110>B2 zones and provided evidence for diffuse scattering due to spatial modulations of the lattice constant. These variations in the background electron intensities might be related to a precursor of Ni4Ti3 phase in its early state of formation. (en)
Title
  • Impact of Heat Treatment Environment of Microstructure and Transformation Path in NiTi Shape Memory Alloy
  • Impact of Heat Treatment Environment of Microstructure and Transformation Path in NiTi Shape Memory Alloy (en)
skos:prefLabel
  • Impact of Heat Treatment Environment of Microstructure and Transformation Path in NiTi Shape Memory Alloy
  • Impact of Heat Treatment Environment of Microstructure and Transformation Path in NiTi Shape Memory Alloy (en)
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  • RIV/68081723:_____/11:00376020!RIV12-AV0-68081723
http://linked.open...avai/predkladatel
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  • P(GA106/09/1913), Z(AV0Z20410507)
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  • 203671
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  • RIV/68081723:_____/11:00376020
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  • heat treatment atmosphere; nickel-rich NiTi shape memory alloys; heat flow (en)
http://linked.open.../riv/klicoveSlovo
http://linked.open...ontrolniKodProRIV
  • [264641745D9F]
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  • Brno
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  • Ostrava
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  • METAL 2011 Conference Proceedings
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  • Barták, Tomáš
  • Dlouhý, Antonín
  • Zálešák, Jakub
  • Čermák, Jiří
  • Kuběnová, Monika
http://linked.open...vavai/riv/typAkce
http://linked.open.../riv/zahajeniAkce
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  • TANGER, spol. s r.o.
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  • 978-80-87294-22-2
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