Materials Research Express (Jan 2022)

A study of laves phase in high Nb non-oriented silicon steel for electric automobiles

  • Zibo Lin,
  • Zhongwang Wu,
  • Yiming Li,
  • Huiping Ren,
  • Zili Jin

DOI
https://doi.org/10.1088/2053-1591/ac92c9
Journal volume & issue
Vol. 9, no. 9
p. 096518

Abstract

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In the study of precipitates in high-Nb non-oriented silicon steel for the rotor of electric automobiles, it was found that mass dispersed Nb-rich precipitates were formed during the rolling process of the steel, these precipitates are presumed to be Laves phases in published literatures. In this regard, two types of Laves phases of high-Nb non-oriented silicon steel for electric automobiles and their crystallographic relationship with the Fe matrix were determined using SAED, FFT and IFFT, and calculation of steel strength enhancement by precipitation strengthening. The results showed the elliptical Laves phase is Fe _16 Nb _6 Si _7 and the rectangular strip Laves phase is Nb _7 P _4 , and the orientation relationship between Fe _16 Nb _6 Si _7 phase and Fe matrix is : [001] _Fe16Nb6Si7 ∥[001] _Fe , [101] _Fe16Nb6Si7 ∥[110] _Fe , [113] _Fe16Nb6Si7 ∥[112] _Fe , the orientation relationship between Nb _7 P _4 phase and Fe matrix is : [130] _Nb7P4 ∥[001] _Fe , [102] _Nb7P4 ∥[110] _Fe , [110] _Nb7P4 ∥[112] _Fe ; Both Fe _16 Nb _6 Si _7 and Nb _7 P _4 precipitates have a good coherent relationship with the Fe matrix; The calculation results show that Fe _16 Nb _6 Si _7 , Nb _7 P _4 and other precipitates can improve the yield strength of non-oriented silicon steel, but at the same time, the magnetic properties of the steel are expected to be negatively impacted. The research results can provide important theoretical guidance on the influence of thermo-mechanical processing on balancing the mechanical and magnetic properties of high niobium non-oriented silicon steel for electric vehicle rotor.

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