High temperature creep of precipitation-strengthened Ni3Al-based alloy

[1]  U. Glatzel,et al.  Anisotropic creep of Ni3(AlTiTa) , 1997 .

[2]  R. Mason,et al.  Dispersion strengthening of intermetallics , 1997 .

[3]  R. Smallman,et al.  Single and duplex creep tests at intermediate temperatures on Ni3Al , 1997 .

[4]  I. Jones,et al.  Pre-creep strain on single crystal Ni3Al , 1997 .

[5]  J. Lapin,et al.  Effect of ageing on the microstructure and mechanical behaviour of a directionally solidified Ni3Al-based alloy , 1997 .

[6]  C. Herzig,et al.  Grain boundary self-diffusion of 63Ni in pure and boron-doped Ni3Al , 1996 .

[7]  Seetharama C. Deevi,et al.  Nickel and iron aluminides: an overview on properties, processing, and applications , 1996 .

[8]  B. Bokstein,et al.  Ni self-diffusion in alloyed Ni3Al , 1996 .

[9]  C. Ward-Close,et al.  Intermetallic-matrix composites—a review , 1996 .

[10]  I. Jones,et al.  A TEM study of 〈110〉{001} slip in crept polycrystalline Ni3Al , 1995 .

[11]  F. Delannay,et al.  Analysis of steady-state creep and creep fracture of directionally solidified eutectic γ/γ′-α alloy , 1995 .

[12]  I. Jones,et al.  Dislocation mechanisms in creep of Ni3Al at intermediate temperature , 1995 .

[13]  G. Eggeler,et al.  A micromechanical model for creep in short fibre reinforced aluminium alloys , 1995 .

[14]  H. K. Kim,et al.  Creep characteristics of single crystalline Ni3Al(Ta,B) , 1994 .

[15]  G. Eggeler,et al.  A microstructural study of creep in short fibre reinforced aluminium alloys , 1993 .

[16]  W. Nix,et al.  High-temperature creep of the intermetallic alloy Ni3Al , 1993 .

[17]  H. K. Kim,et al.  High temperature creep behavior of polycrystalline Ni3Al(Zr,B) , 1992 .

[18]  E. Arzt,et al.  Microstructure and creep properties of dispersion-strengthened aluminum alloys , 1992 .

[19]  H. K. Kim,et al.  Directional solidification of Ni3Al , 1992 .

[20]  R. Cahn,et al.  Chromium precipitation from β-Ni(Al, Ti) and γ'-Ni3(Al, Ti) in the alloy (Ni70Al20Ti10)0.9Cr0.1 , 1992 .

[21]  A. Mukherjee,et al.  Analyses of the Superplastic Behavior in Super α2 Titanium Aluminide and γ′ Nickel Aluminide , 1992 .

[22]  W. Nix,et al.  An investigation of the mechanisms that control intermediate temperature creep of Ni3Al , 1991 .

[23]  R. Cahn,et al.  A microstructural study of a Ni_2AlTi–Ni(Al, Ti)–Ni_3(Al, Ti) three-phase alloy , 1991 .

[24]  Joachim Rösler,et al.  A new model-based creep equation for dispersion strengthened materials , 1990 .

[25]  P. Veyssiére,et al.  {110} slip in Ni3Al crept at 760°C along [001] , 1989 .

[26]  E. Arzt,et al.  The kinetics of dislocation climb over hard particles—II. Effects of an attractive particle-dislocation interaction , 1988 .

[27]  E. Arzt,et al.  The kinetics of dislocation climb over hard particles—I. Climb without attractive particle-dislocation interaction , 1988 .

[28]  M. Nathal,et al.  High temperature creep behavior of single crystal gamma prime and gamma alloys , 1988 .

[29]  J. Čadek Creep in metallic materials , 1988 .

[30]  E. Arzt,et al.  Threshold stresses for dislocation climb over hard particles: The effect of an attractive interaction , 1986 .

[31]  M. Mclean The contribution of friction stress to the creep behaviour of the nickel-base in situ composite, γ—γ'-Cr3C2 , 1980, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.

[32]  R. Rawlings,et al.  Steady-state creep of an alloy based on the intermetallic compound Ni3Al(γ′) , 1977 .

[33]  W. Nix,et al.  High temperature creep of Ni-20Cr-2ThO2 single crystals , 1976 .

[34]  J. B. Wachtman,et al.  Elastic Constants of Single‐Crystal Ni3Al from 10° to 850°C , 1969 .