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Original Articles

High‐temperature strength of dispersion-hardened single crystals II. Theory

&
Pages 945-962 | Received 30 Jul 1976, Accepted 11 Nov 1976, Published online: 13 Sep 2006

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. 2010. High Temperature Deformation and Fracture of Materials. High Temperature Deformation and Fracture of Materials 83 101 .
J. X. Zhang, H. Harada, Y. Koizumi & T. Kobayashi. (2010) Dislocation motion in the early stages of high-temperature low-stress creep in a single-crystal superalloy with a small lattice misfit. Journal of Materials Science 45:2, pages 523-532.
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W. Soga, Y. Kaneno, M. Yoshida & T. Takasugi. (2008) Microstructure and mechanical property in dual two-phase intermetallic alloys composed of geometrically close-packed Ni3X (X: Al and V) containing Nb. Materials Science and Engineering: A 473:1-2, pages 180-188.
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S. Shibuya, Y. Kaneno, M. Yoshida, T. Shishido & T. Takasugi. (2007) Mechanical properties of dual multi-phase single-crystal intermetallic alloy composed of geometrically close packed Ni3X (X: Al and V) type structures. Intermetallics 15:2, pages 119-127.
Crossref
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Crossref
S.C. Tjong & Y.-W. Mai. 2007. Comprehensive Structural Integrity. Comprehensive Structural Integrity 798 849 .
Bernd Reppich. 2006. Materials Science and Technology. Materials Science and Technology.
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Crossref
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Crossref
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Crossref
. (2006) Effect of Annealing on Microstructural and Mechanical Property Variation of the Oxide-Dispersion-Strengthened Cu alloy. Journal of Korean Powder Metallurgy Institute 13:1, pages 25-32.
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
Eiichi Sato, Kenshi Kawabata, Koichi Kitazono & Kazuhiko Kuribayashi. (2004) Rationalization of Plastically-Accommodated Steady-State Creep of a Composite. MATERIALS TRANSACTIONS 45:7, pages 2295-2303.
Crossref
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Crossref
J Rösler. (2003) Back-stress calculation for dislocation climb past non-interacting particles. Materials Science and Engineering: A 339:1-2, pages 334-339.
Crossref
S.C. Tjong & Y.-W. Mai. 2003. Comprehensive Structural Integrity. Comprehensive Structural Integrity 271 320 .
S Spigarelli. (2002) Interpretation of creep behaviour of dispersion-strengthened Al–Fe–V–Si alloys in terms of detachment mechanisms: an overview. Materials Science and Engineering: A 337:1-2, pages 306-314.
Crossref
Martin Heilmaier, Heinrich Cestler & Jeffery C. Gibeling. (2002) A unified description of creep in pure and dispersion-strengthened copper. Zeitschrift für Metallkunde 93:7, pages 666-671.
Crossref
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Crossref
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Crossref
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Crossref
B.Q Han & D.C Dunand. (2001) Creep of magnesium strengthened with high volume fractions of yttria dispersoids. Materials Science and Engineering: A 300:1-2, pages 235-244.
Crossref
F.R.N. Nabarro. 2001. Encyclopedia of Materials: Science and Technology. Encyclopedia of Materials: Science and Technology 1788 1795 .
A.F. WHITEHOUSE. 2000. Comprehensive Composite Materials. Comprehensive Composite Materials 371 418 .
Huseyin Sehitoglu, Tracy Smith, Xinlin Qing, Hans J. Maier & J. A. Allison. (2000) Stress-strain response of a cast 319-T6 aluminum under thermomechanical loading. Metallurgical and Materials Transactions A 31:1, pages 139-151.
Crossref
C.S. Liauo & J.C. Huang. (1999) Deformation mechanisms for AC8A/Al2O3(sf) composites over wide ranges of temperature and strain rate. Materials Science and Engineering: A 271:1-2, pages 79-90.
Crossref
Yong Li & Terence G. Langdon. (1999) Creep behavior of an AZ91 magnesium alloy reinforced with alumina fibers. Metallurgical and Materials Transactions A 30:8, pages 2059-2066.
Crossref
L.M. Peng, S.J. Zhu, Z.Y. Ma, J. Bi, H.R. Chen & F.G. Wang. (1999) High temperature creep deformation of an Al–Fe–V–Si Alloy. Materials Science and Engineering: A 259:1, pages 25-33.
Crossref
F. Carreño & O.A. Ruano. (1998) Separated contribution of particles and matrix on the creep behavior of dispersion strengthened materials. Acta Materialia 46:1, pages 159-167.
Crossref
E. Arzt & E. Göhring. (1998) A model for dispersion strengthening of ordered intermetallics at high temperatures. Acta Materialia 46:18, pages 6575-6584.
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Crossref
S.H. Wang & P.W. Kao. (1998) The strengthening effect of Al3Ti in high temperature deformation of Al–Al3Ti composites. Acta Materialia 46:8, pages 2675-2682.
Crossref
A. Brahmi, T. Gerique, M. Torralba & M. Lieblich. (1998) The threshold stress in a rapidly solidified Al–5Cr–2Zr alloy. Materials Science and Engineering: A 246:1-2, pages 55-60.
Crossref
Farghalli A Mohamed. (1998) Correlation between creep behavior in Al-based solid solution alloys and powder metallurgy Al alloys. Materials Science and Engineering: A 245:2, pages 242-256.
Crossref
Yong LI & T.G. Langdon. (1998) Creep behavior of a reinforced Al-7005 alloy: Implications for the creep processes in metal matrix composites. Acta Materialia 46:4, pages 1143-1155.
Crossref
K. Oh-ishi, Z. Horita & M. Nemoto. (1997) Microstructure and strength of B2-ordered NiAl containing L21-Ni2AlHf precipitates. Materials Science and Engineering: A 239-240, pages 472-478.
Crossref
A.M. Jansen & D.C. Dunand. (1997) Creep of metals containing high volume fractions of unshearable dispersoids—Part II. Experiments in the AlAl2O3 system and comparison to models. Acta Materialia 45:11, pages 4583-4592.
Crossref
D.C. Dunand & A.M. Jansen. (1997) Creep of metals containing high volume fractions of unshearable dispersoids—Part I. Modeling the effect of dislocation pile-ups upon the detachment threshold stress. Acta Materialia 45:11, pages 4569-4581.
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Yong Li & Terence G. Langdon. (1997) Creep behavior of an Al-6061 metal matrix composite reinforced with alumina particulates. Acta Materialia 45:11, pages 4797-4806.
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Yong Li & F.A. Mohamed. (1997) An investigation of creep behavior in an SiC2124 Al composite. Acta Materialia 45:11, pages 4775-4785.
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J Čadek, M Pahutová, V Šustek & A Dlouhý. (1997) On the role of recovery in creep of precipitation-strengthened polycrystalline nickel-base alloys. Materials Science and Engineering: A 238:2, pages 391-398.
Crossref
E. Arzt, R. Behr, E. Göhring, P. Grahle & R.P. Mason. (1997) Dispersion strengthening of intermetallics. Materials Science and Engineering: A 234-236, pages 22-29.
Crossref
K. Maruyama, K. Sawada, J. Koike, H. Sato & K. Yagi. (1997) Examination of deformation mechanism maps in 2.25Cr—1Mo steel by creep tests at strain rates of 10−11 to 10−6 s−1. Materials Science and Engineering: A 224:1-2, pages 166-172.
Crossref
R. Behr, J. Mayer & E. Arzt. (1997) TEM-study of the interaction between superdislocations and dispersoids in a Ni3Al alloy. Scripta Materialia 36:3, pages 341-345.
Crossref
L. Kloc, S. Spigarelli, E. Cerri, E. Evangelista & T.G. Langdon. (1997) Creep behavior of an aluminum 2024 alloy produced by powder metallurgy. Acta Materialia 45:2, pages 529-540.
Crossref
Luboš Kloc, Emanuela Cerri, Stefano Spigarelli, Enrico Evangelista & Terence G. Langdon. (1996) Significance of continuous precipitation during creep of a powder mettallurgy aluminum alloy. Materials Science and Engineering: A 216:1-2, pages 161-168.
Crossref
G.C. Davies & D.R.H. Jones. (1996) Creep of metal—Type organic compounds—III. Friction stress models for creep in particle—Hardened systems. Scripta Materialia 35:4, pages 523-528.
Crossref
A. Pichler & E. Arzt. (1996) Creep of dispersion strengthened alloys controlled by jog nucleation. Acta Materialia 44:7, pages 2751-2758.
Crossref
S. E. Broyles, K. R. Anderson, J. R. Groza & J. C. Gibeling. (1996) Creep Deformation of Dispersion-Strengthened Copper. Metallurgical and Materials Transactions A 27:5, pages 1217-1227.
Crossref
D. Mukherji & R.P. Wahi. (1996) Some implications of the particle and climb geometry on the climb resistance in nickel-base superalloys. Acta Materialia 44:4, pages 1529-1539.
Crossref
O. Prakash & D.R.H. Jones. (1996) Creep of metal-type organic compounds—II. Indentation creep. Acta Materialia 44:3, pages 891-897.
Crossref
Y.S. Lee, T.J. Batt & S.C. Hwang. (1996) Strengthening caused by power law creep deformation of dispersed particles in an elastic matrix. International Journal of Mechanical Sciences 38:2, pages 203-218.
Crossref
Kouichi MARUYAMA & Jun-ichi KOIKE. (1996) High temperature deformation and creep高温変形・クリープの基礎. Journal of Japan Institute of Light Metals 46:6, pages 307-315.
Crossref
Yutaka TSUCHIDAYukio TSUDAYoshikuni TOKUNAGA. (1996) Effects of Alloying Elements on the Creep Rupture Time of High Cr Ferritic Steel Weldments. Tetsu-to-Hagane 82:6, pages 526-531.
Crossref
Kyung-Tae Park & Farghalli A. Mohamed. (1995) Creep strengthening in a discontinuous SiC-Al composite. Metallurgical and Materials Transactions A 26:12, pages 3119-3129.
Crossref
D.H. Shin, K.-T. Park & E.J. Lavernia. (1995) High-temperature deformation in a superplastic 7475 Al alloy with a relatively large grain size. Materials Science and Engineering: A 201:1-2, pages 118-126.
Crossref
L. Shi & D. O. Northwood. (1995) Recent progress in the modeling of high-temperature creep and its application to alloy development. Journal of Materials Engineering and Performance 4:2, pages 196-211.
Crossref
Michael S. Nagorka, Glenn E. Lucas & Carlos G. Levi. (1995) Novel oxide-dispersion-strengthened copper alloys from rapidly solidified precursors: Part 2. Creep behavior. Metallurgical and Materials Transactions A 26:4, pages 873-881.
Crossref
A. Czyrska-Filemonowicz, M. Wróbel, B. Dubiel & P.J. Ennis. (1995) Transmission electron microscopy study of dislocation-dispersoid interaction in deformed incoloy MA956. Scripta Metallurgica et Materialia 32:3, pages 331-335.
Crossref
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Crossref
Kyung-Tae Park, Enrique J. Lavernia & Farghalli A. Mohamed. (1994) High-temperature deformation of 6061 Al. Acta Metallurgica et Materialia 42:3, pages 667-678.
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M.K. Premkumar, A. Lawley & M.J. Koczak. (1994) Mechanical behavior of powder metallurgy AlFeNi alloys. Materials Science and Engineering: A 174:2, pages 127-139.
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Yutaka TSUCHIDATetsujiro TAKEDAYoshikuni TOKUNAGA. (1994) Effect of Rolling and Normalizing Conditions on the Creep Rupture Strength of 9Cr-1Mo-VNbN Steel and the Role of V, Nb Carbo-nitride. Tetsu-to-Hagane 80:9, pages 723-728.
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Crossref
R.S. Mishra, A.G. Paradkar & K.N. Rao. (1993) Steady state creep behaviour of a rapidly solidified and further processed Al-5 wt% Ti alloy. Acta Metallurgica et Materialia 41:7, pages 2243-2251.
Crossref
E Arzt & E Göhring. (1993) Effects of order on dispersion strengthening at high temperatures: A first model. Scripta Metallurgica et Materialia 28:7, pages 843-848.
Crossref
Hideo Yoshinaga. (1993) High-Temperature Deformation Mechanisms in Metals and Alloys. Materials Transactions, JIM 34:8, pages 635-645.
Crossref
O. Prakash & D.R.H. Jones. (1992) Creep of metal-type organic compounds—I. Pure polycrystals and particle-hardened systems. Acta Metallurgica et Materialia 40:12, pages 3443-3449.
Crossref
P. Singh, J.T. Evans & N.J.H. Holroyd. (1992) Strain concentration at grain boundaries in AlMgSi alloys. Materials Science and Engineering: A 157:1, pages 1-8.
Crossref
J. Rösler, R. Joos & E. Arzt. (1992) Microstructure and creep properties of dispersion-strengthened aluminum alloys. Metallurgical Transactions A 23:5, pages 1521-1393.
Crossref
A.C.F. Cocks. (1992) Interface reaction controlled creep. Mechanics of Materials 13:2, pages 165-174.
Crossref
A.Sakir Bor. (1992) High temperature tensile deformation of a nitrided Fe-1%V alloy. Scripta Metallurgica et Materialia 26:4, pages 601-604.
Crossref
Farghalli A Mohamed, Kyung-Tae Park & Enrique J Lavernia. (1992) Creep behavior of discontinuous SiCAl composites. Materials Science and Engineering: A 150:1, pages 21-35.
Crossref
Joanna Groza. (1992) Heat-resistant dispersion-strengthened copper alloys. Journal of Materials Engineering and Performance 1:1, pages 113-121.
Crossref
K. Tokuno, K. Hamada, R. Uemori, T. Takeda & K. Itoh. (1991) A complex carbonitride of niobium and vanadium in 9% Cr ferritic steels. Scripta Metallurgica et Materialia 25:4, pages 871-876.
Crossref
Hideharu NAKASHIMA & Hideo YOSHINAGA. (1991) Threshold Stress in Dispersion Strengthened Alloys at High Temperatures. Tetsu-to-Hagane 77:9, pages 1399-1406.
Crossref
Ying-Hwa Yeh, Hideharu Nakashima, Hiroaki Kurishita, Shoji Goto & Hideo Yoshinaga. (1991) High-Temperature Creep and Threshold Stress of Precipitation-Hardened Al-0.7 at%Mn Alloy. Materials Transactions, JIM 32:1, pages 52-60.
Crossref
J Preston, B Wilshire & E.A Little. (1991) Dislocation-particle interactions in an oxide-dispersion-strengthened ferritic steel. Scripta Metallurgica et Materialia 25:1, pages 183-184.
Crossref
Taira Suzuki, Shin Takeuchi & Hideo YoshinagaTaira Suzuki, Shin Takeuchi & Hideo Yoshinaga. 1991. Dislocation Dynamics and Plasticity. Dislocation Dynamics and Plasticity 198 212 .
Kyung-Tae Park, Enrique J. Lavernia & Farghalli A. Mohamed. (1990) High temperature creep of silicon carbide particulate reinforced aluminum. Acta Metallurgica et Materialia 38:11, pages 2149-2159.
Crossref
T.R. Bieler & A.K. Mukherjee. (1990) The high strain rate superplastic deformation mechanisms of mechanically alloyed aluminum IN90211. Materials Science and Engineering: A 128:2, pages 171-182.
Crossref
J. Wolfenstine, G. González-Doncel & O. D. Sherby. (2011) Elevated temperature properties of Mg–14Li–B particulate composites. Journal of Materials Research 5:7, pages 1359-1362.
Crossref
J. Rösler & E. Arzt. (1990) A new model-based creep equation for dispersion strengthened materials. Acta Metallurgica et Materialia 38:4, pages 671-683.
Crossref
Ying-Hwa Yeh, Masakazu Miyachi, Hideharu Nakashima, Hiroaki Kurishita, Shoji Goto & Hideo Yoshinaga. (1990) Absence of Threshold Stress for High-Temperature Creep of Dispersion- and Solution-Hardened Al-3.1 at% Mg-1.3 vol% Be Alloy. Materials Transactions, JIM 31:9, pages 778-785.
Crossref
Norio Matsuda & Keisuke Matsuura. (1990) Creep Behavior and Threshold Stress of an Al&ndash;Al<SUB>2</SUB>O<SUB>3</SUB>&ndash;Zr Alloy. Materials Transactions, JIM 31:5, pages 386-395.
Crossref
Hideharu Nakashima, Hironobu Fukushima, Shoji Goto & Hideo Yoshinaga. (1990) Threshold Stress for the High Temperature Deformation of Al&ndash;Mg&ndash;Mn Alloys. Materials Transactions, JIM 31:4, pages 276-283.
Crossref
Elazar Y. Gutmanas. (1990) Materials with fine microstructures by advanced powder metallurgy. Progress in Materials Science 34:4, pages 261-366.
Crossref
M. Haghi & L. Anand. (1990) High-temperature deformation mechanisms and constitutive equations for the oxide dispersion-strengthened superalloy MA 956. Metallurgical Transactions A 21:1, pages 353-364.
Crossref
Susumu Onaka, Satoshi Soeta & Masaharu Kato. (1990) Yield stress of a copper single crystal containing B2O3 particles. Journal of Materials Science 25:1, pages 220-222.
Crossref
JOHN K. TIEN & ELIZABETH G. JACOBS. 1989. Superalloys Supercomposites Superceramics. Superalloys Supercomposites Superceramics 285 300 .
B. VENKATARAMAN & G. SUNDARARAJAN. 1989. Proceedings of The 7th International Conference On Fracture (ICF7). Proceedings of The 7th International Conference On Fracture (ICF7) 1851 1858 .
W. J. Liu & J. J. Jonas. (1988) A stress relaxation method for following carbonitride precipitation in austenite at hot working temperatures. Metallurgical Transactions A 19:6, pages 1403-1413.
Crossref
J. Rösler & E. Arzt. (1988) The kinetics of dislocation climb over hard particles—I. Climb without attractive particle-dislocation interaction. Acta Metallurgica 36:4, pages 1043-1051.
Crossref
T. R. Bieler, T. G. Nieh, J. Wadsworth & A. K. Mukherjee. (2011) Enhanced Plasticity of Mechanically Alloyed Aluminum IN90211. MRS Proceedings 120.
Crossref
R.S. Herrick, J.R. Weertman, R. Petkovic-Luton & M.J. Luton. (1988) Dislocation/particle interactions in an oxide dispersion strengthened alloy. Scripta Metallurgica 22:12, pages 1879-1884.
Crossref
M.Y. Wu, J. Wadsworth & O.D. Sherby. (1987) Elimanation of the threshold stress for creep by thermal cycling in oxide-dispersion-strengthened materials. Scripta Metallurgica 21:8, pages 1159-1164.
Crossref
R.C. Ecob & H.E. Evans. (1987) Creep of tin dispersion hardened 20%Cr-25%Ni stainless steel below the transition stress. Acta Metallurgica 35:4, pages 805-821.
Crossref
Shoji Goto, Kazuhiko Mori & Hideo Yoshinaga. (1987) Effect of Particle Shape on the High Temperature Yield Strength of Dispersion-Hardened Nickel Base Alloys. Transactions of the Japan Institute of Metals 28:6, pages 476-486.
Crossref
Norio Matsuda & Keisuke Matsuura. (1987) Creep Behaviour and Dislocation Structures in Al&ndash;Al<SUB>2</SUB>O<SUB>3</SUB> Alloys. Transactions of the Japan Institute of Metals 28:5, pages 392-405.
Crossref
A.C.F. Cocks & F.A. Leckie. 1987. Advances in Applied Mechanics Volume 25. Advances in Applied Mechanics Volume 25 239 294 .
E. Arzt & D.S. Wilkinson. (1986) Threshold stresses for dislocation climb over hard particles: The effect of an attractive interaction. Acta Metallurgica 34:10, pages 1893-1898.
Crossref
Minoru Furukawa, Yasuhiro Miura & Minoru Nemoto. (1986) The Strain Rate Dependence of Yield Stress of an Al&ndash;Li Alloy Containing &delta;&prime;-Ll<SUB>2</SUB> Ordered Particles. Transactions of the Japan Institute of Metals 27:1, pages 14-22.
Crossref
J.H. Schröder & E. Arzt. (1985) Weak beam studies of dislocation/dispersoid interaction in an ods superalloy. Scripta Metallurgica 19:9, pages 1129-1134.
Crossref
G. Sundarajan. (1985) The effect of cavitation and microstructural damage on the intergranular creep fracture of nickel-base superalloys. Materials Science and Engineering 74:1, pages 55-73.
Crossref
M. McLean. (1985) On the threshold stress for dislocation creep in particle strengthened alloys. Acta Metallurgica 33:4, pages 545-556.
Crossref
M. Pahutová, K. Kuchar̆ová & J. C̆adek. (1985) Martensitic zirconium alloys: Influence of chemical composition on creep characteristics. Journal of Nuclear Materials 131:1, pages 20-31.
Crossref
Minoru Furukawa, Yasuhiro Miura & Minoru Nemoto. (1985) The Effect of Temperature on the Yield Stress of Al&ndash;Li Alloy. Transactions of the Japan Institute of Metals 26:6, pages 414-422.
Crossref
A.C.F. Cocks. (1985) The nucleation and growth of voids in a material containing a distribution of grain-boundary particles. Acta Metallurgica 33:1, pages 129-137.
Crossref
R.C. Ecob. (1984) Steady state creep of 20% Cr-25% Ni stainless steel with and without a dispersion of tin particles. Acta Metallurgica 32:12, pages 2149-2162.
Crossref
B. Derby & M.F. Ashby. (1984) Power-laws, and the An correlation in creep. Scripta Metallurgica 18:10, pages 1079-1084.
Crossref
V.C. Nardone, D.E. Matejczyk & J.K. Tien. (1984) The threshold stress and departure side pinning of dislocations by dispersoids. Acta Metallurgica 32:9, pages 1509-1517.
Crossref
A.H. Clauer & N. Hansen. (1984) High temperature strength of oxide dispersion strengthened aluminium. Acta Metallurgica 32:2, pages 269-278.
Crossref
M.F. Ashby & B.F. Dyson. 1984. Fracture 84. Fracture 84 3 30 .
T. G. Nieh. (1984) Creep rupture of a silicon carbide reinforced aluminum composite. Metallurgical Transactions A 15:1, pages 139-146.
Crossref
D.J. Srolovitz, R.A. Petkovic-Luton & M.J. Luton. (1983) Edge dislocation-circular inclusion interactions at elevated temperatures. Acta Metallurgica 31:12, pages 2151-2159.
Crossref
E. Arzt, M.F. Ashby & R.A. Verrall. (1983) Interface controlled diffusional creep. Acta Metallurgica 31:12, pages 1977-1989.
Crossref
Vincent C. Nardone & John K. Tien. (1983) Pinning of dislocations on the departure side of strengthening dispersoids. Scripta Metallurgica 17:4, pages 467-470.
Crossref
E. Arzt & M.F. Ashby. (1982) Threshold stresses in materials containing dispersed particles. Scripta Metallurgica 16:11, pages 1285-1290.
Crossref
Mona E. McAlarney, Richard M. Arons, Tim E. Howson, John K. Tien & Sanford Baranow. (1982) Creep and rupture of an ods alloy with high stress rupture ductility. Metallurgical Transactions A 13:8, pages 1453-1462.
Crossref
W.C. Oliver & W.D. Nix. (1982) High temperature deformation of oxide dispersion strengthened al and AlMg solid solutions. Acta Metallurgica 30:7, pages 1335-1347.
Crossref
R.A. Stevens & P.E.J. Flewitt. (1981) The dependence of creep rate on microstructure in a γ′ strengthened superalloy. Acta Metallurgica 29:5, pages 867-882.
Crossref
J. Čadek. (1981) Creep in particle strengthened metals. Czechoslovak Journal of Physics 31:2, pages 177-186.
Crossref
B. Wielke. (1981) Thermally activated dislocation movement at plastic deformation. Czechoslovak Journal of Physics 31:2, pages 142-156.
Crossref
M. L. Bhatia. (1980) Strengthening against creep. Proceedings of the Indian Academy of Sciences Section C: Engineering Sciences 3:4, pages 297-313.
Crossref
. (1997) The contribution of friction stress to the creep behaviour of the nickel-base in situ composite, γ—γ'-Cr 3 C 2 . Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences 373:1752, pages 93-109.
Crossref
J.C. Gibeling & W.D. Nix. (1980) The description of elevated temperature deformation in terms of threshold stresses and back stresses: A review. Materials Science and Engineering 45:2, pages 123-135.
Crossref
T. E. Howson, D. A. Mervyn & J. K. Tien. (1980) Creep and stress rupture of a mechanically alloyed oxide dispersion and precipitation strengthened nickel-base superalloy. Metallurgical Transactions A 11:9, pages 1609-1616.
Crossref
T. E. Howson, J. E. Stulga & J. K. Tien. (1980) Creep and stress rupture of oxide dispersion strengthened mechanically alloyed inconel alloy MA 754. Metallurgical Transactions A 11:9, pages 1599-1607.
Crossref
Kwaku Aning & John K. Tien. (1980) Creep and stress rupture behavior of a wrought nickel-base superalloy in air and vacuum. Materials Science and Engineering 43:1, pages 23-33.
Crossref
L.M. Brown. 1979. Strength of Metals and Alloys. Strength of Metals and Alloys 1551 1571 .
Zhenhuan Gao, Yuhui Sun, Xitao Wang & Jinshan He. (2022) Role of Stress on Creep Behaviors for Marm247lc Ds Superalloy. SSRN Electronic Journal.
Crossref

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