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Volume 10 Issue 3
Nov.  2021
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Article Contents
Du Guowei, Du Yongliang, Zhang Xiaoyan. The Grain Growth of Fe-Cr-Al Alloy and the Rare Earth in Alloy[J]. Chinese Journal of Engineering, 1988, 10(3): 368-373. doi: 10.13374/j.issn1001-053x.1988.03.016
Citation: Du Guowei, Du Yongliang, Zhang Xiaoyan. The Grain Growth of Fe-Cr-Al Alloy and the Rare Earth in Alloy[J]. Chinese Journal of Engineering, 1988, 10(3): 368-373. doi: 10.13374/j.issn1001-053x.1988.03.016

The Grain Growth of Fe-Cr-Al Alloy and the Rare Earth in Alloy

doi: 10.13374/j.issn1001-053x.1988.03.016
  • Received Date: 1986-04-15
    Available Online: 2021-11-15
  • The experiments have been performed to investigate the grain growth, the characterization of grain boundary migration and the interfacial phenomena at high temperature for Fe-25Cr-5Al-RE alloy. The results show that the rare earth (landium is main) has a certain effect on the grain growth of alloy; La2O3 may be the nuclear center of titanium nitride phases that precipitate in the matrix of the alloy; for Fe-Cr-Al-RE (RE<0.1%) fine titanium nitride may precipitate on the grain boundaries and inhibite the migration of grain boundaries; by repeated heating and cooling, the rare earth increases the permeation of O2- ions through the oxide scale, lanthanum atoms diffuse towards the interfaces and precipitate as lanthana. There is no doubt that the precipitates lanthana and alumina in matrix as a trapping of vacancies greatly increase the oxidation resistance and the life of the electric heating alloy.

     

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