欢迎登录材料期刊网

材料期刊网

高级检索

采用非相对论第一原理分子轨道DV-Xa模型簇方法,计算了Ni基单晶超合金γ/γ'相界的电子结构,并从键重叠聚居数(QAB)、界面原子层间的部分键合强度,以及界面原子局域环境总键合强度几个方面,对Ir合金化前后γ/γ'界面的结构稳定性、脆化特性、相间断裂的难易程度等几个方面对γ/γ'相界的结构特性进行了分析.结果表明:Ir合金化能增强γ/γ'界面Ni-Ni与Ni-Al原子间的键合强度,价键强度的增加有如下的变化趋势:QNi-Ni<QNi-Al<QIr-Ni<QIr-Al,相界上,当被置换原子的种类与位置不同时,Ir合金化对γ/γ'相界结构性能的影响程度也不相同,比较而言,Ir置换γ相中的Ni最有利于提高γ/γ'相界的结构稳定性与相间抗断强度.

参考文献

[1] Harada H.Superalloys - Materials for Advanced Power Engineering[M].German:University de Liege European Commission Jülich,1998:131.
[2] Anton D L.Intermetallic Compounds[M].New York:Wiley,1994:3.
[3] Darolia R;Lahrman D F;Field R D.Superalloy[M].Warrendale P A:The Metallurgical Society Inc,1988:255.
[4] Murakami H;Honma T;Koizumi Y;Harada H.Superalloys[M].Warrendale P A:TMS,2000:747.
[5] Kobayashi T;Koizumi Y;Nakazawa S;Yamagata T, Harada H.Advances in Turbine Materials, Design and Manufacturing[M].London:The Institute of Materials,1997:766.
[6] 胡壮麒,彭平,刘轶,金涛,孙晓峰,管恒荣.镍基合金中γ′相界面的强化设计[J].金属学报,2002(11):1121-1126.
[7] Caron P;Khan T.Superalloys - Materials for Advanced Power Engineering[M].Jülich:University de Liege European Commission,1998:897.
[8] Ellis D E;Painter G S .[J].Physical Review B,1970,2:2887.
[9] Rosen A;Ellis D E;Adachi H;Averill F W .[J].Journal of Chemical Physics,1976,65:2639.
[10] Adachi H;Tsukada M;Satoko C .[J].Journal of The Physical Society of Japan,1978,45:875.
[11] Tanaka I;Mizuno M;Nakajyo S;Adachi H .[J].Acta Materialia,1998,46:6511.
[12] Mulliken R S .[J].Journal of Chemical Physics,1955,23:1833.
[13] Harada H;Ishida A;Murakami Y;Bhadeshia H K D H, Yamazaki M .[J].Surface Science Applications,1993,67:299.
[14] Liu Y;Chen K Y;Lu G;Zhang J H, Hu Z Q .[J].Acta Materialia,1997,45:1837.
[15] Morinaga M;Yukawa N;Adachi H .[J].Journal of the Physical Society of Japan,1984,53:653.
[16] Morinaga M;Yukawa N;Adachi H;Ezaki H.Superalloys[M].Warrendale P A:The Metallurgical Society of AIME,1984:523.
[17] Murakami H;Osawa M;Yokokawa T;Koizumi Y, Yamagata T and Harada H.Materials for Advanced Power Engineering[M].Jülich:University de Liege European Commission,1998:1139.
[18] Murata Y;Morinaga M;Hashizume R.Materials for Advanced Power Engineering[M].Jülich:University de Liege European Commission,1998:1381.
[19] Bruno G;Schumacher G;Cavalcanti Pinto H;Schulze C .[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2003,34A:193.
[20] Tanaka I;Mizuno M;Nakajyo S;Adachi H .[J].Acta Materialia,1998,46:6511.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%