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A study of grain-boundary structure in rare-earth doped aluminas using an EBSD technique

机译:利用EBSD技术研究稀土掺杂氧化铝的晶界结构

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摘要

Oversized rare-earth dopant ions such as Y3+, Nd3+, and La3+ segregate to grain boundaries and reduce the tensile creep rate of α-Al2O3 by 2-3 orders of magnitude. It has been speculated that these dopant ions can modify the grain boundary structure in alumina by promoting the formation of special grain boundaries. If this were indeed the case, it would provide a possible explanation for the aforementioned creep rate retardation. In order to test this hypothesis, electron backscatter diffraction (EBSD) has been used to assess both the proportion of coincidence-site lattice boundaries, and the grain boundary misorientation distribution, in aluminas doped with various ions (Zr, Y, Nd, La, Nd/Zr). The results show that the grain boundary structure in alumina is not significantly altered by the addition of the above dopants, implying that the change in grain boundary chemistry is primarily responsible for the observed creep behavior.
机译:Y3 + ,Nd3 + 和La3 + 之类的超大稀土掺杂离子会偏析到晶界,从而降低α-Al2 O3 的拉伸蠕变速率。 2-3个数量级。已经推测这些掺杂离子可以通过促进特殊晶界的形成来改变氧化铝中的晶界结构。如果确实如此,则将为前述的蠕变速率延迟提供可能的解释。为了验证这一假设,已使用电子背散射衍射(EBSD)来评估掺杂有各种离子(Zr,Y,Nd,La, Nd / Zr)。结果表明,通过添加上述掺杂剂,氧化铝中的晶界结构没有显着改变,这表明晶界化学变化主要是所观察到的蠕变行为的原因。

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  • 来源
    《Journal of Materials Science 》 |2002年第1期| 59-64| 共6页
  • 作者单位

    Materials Research Center Whitaker Laboratory Lehigh University;

    Materials Research Center Whitaker Laboratory Lehigh University;

    Materials Research Center Whitaker Laboratory Lehigh University;

    Materials Research Center Whitaker Laboratory Lehigh University;

    Materials Research Center Whitaker Laboratory Lehigh University;

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