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Volume 14 Issue 2
Oct.  2021
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Article Contents
Wu Xingfang, Chen Qizhi, Chen Qing, Ke Jun. TEM Study of Displacive phase Transformation[J]. Chinese Journal of Engineering, 1992, 14(2): 206-211. doi: 10.13374/j.issn1001-053x.1992.02.014
Citation: Wu Xingfang, Chen Qizhi, Chen Qing, Ke Jun. TEM Study of Displacive phase Transformation[J]. Chinese Journal of Engineering, 1992, 14(2): 206-211. doi: 10.13374/j.issn1001-053x.1992.02.014

TEM Study of Displacive phase Transformation

doi: 10.13374/j.issn1001-053x.1992.02.014
  • Received Date: 1991-10-13
    Available Online: 2021-10-16
  • The displacive phase transformation in an appoximately equiatomic Ti-Ni alloy and Fe-Ni-V-C alloy has been studied by TEM. The results show that the stress has strong effects on the lattice instability. A tensile stress promotes soft modes which relate to the nucleation of the R-phase and the Martensite phase. It has been identified that the diffuse streaks in the electron diffraction arise from the softening of phonons which <111>olarization vectors which results from the softening of Coff<111>. The R-phase nucleus formed on the plate of Ti11Ni14 where a tensile stress field was good to R-transfor-mation. The regular shape of the R-phase is the comprehensive effect of strain energy and interface energy. The special dislocation constitution has been observed in Fe-Ni-V-C alloy. An array of shorter dislocation which b =1/2 [011]fcc piled up within long envelope dislocation with b = 1/2[110]fcc. It provide necessary atomic displacement (in double-shear) and can transform into butterfly martensite.

     

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