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Articles

Influence of Interface Energy on Creep Rupture

Pages 103-107 | Published online: 18 Jul 2013

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V Laporte & A Mortensen. (2009) Intermediate temperature embrittlement of copper alloys. International Materials Reviews 54:2, pages 94-116.
Read now
N. G. Needham & T. Gladman. (1986) Intergranular cavity damage and creep fracture of 1Cr–0·5Mo steels. Materials Science and Technology 2:4, pages 368-373.
Read now
T. B. Gibbons. (1985) Some effects of trace elements in reducing creep performance of high–strength superalloys. Materials Science and Technology 1:12, pages 1033-1039.
Read now
Torsten Ericsson. (1979) Review of Oxidation Effects on Cyclic Life at Elevated Temperature. Canadian Metallurgical Quarterly 18:2, pages 177-195.
Read now
G. B. Thomas & T. B. Gibbons. (1979) Influence of trace elements on creep and stress-rupture properties of Nimonic 105. Metals Technology 6:1, pages 95-101.
Read now
P. Doig, P.E. J. Flewitt & R.K. Wild. (1978) A comparison of X-ray (STEM) and Auger electron spectroscopy for the microanalysis of grain boundary segregation. Philosophical Magazine A 37:6, pages 759-768.
Read now
C. L. Briant & S. K. Banerji. (1978) Intergranularfailure in steel: the role of grain-boundary composition. International Metals Reviews 23:1, pages 164-199.
Read now
Colin Lea & M.P. Seah. (1977) Kinetics of surface segregation. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 35:1, pages 213-228.
Read now
H. R. Tipler & B. E. Hopkins. (1976) The creep cavitation of commercial and high-purity Cr-Mo-V steels. Metal Science 10:2, pages 47-56.
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M. P. Seah & Colin Lea. (1975) Surface segregation and its relation to grain boundary segregation. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 31:3, pages 627-645.
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Articles from other publishers (48)

A. I. Petrov & M. V. Razuvaeva. (2016) Effect of the microstructural porosity parameters on the fracture and deformation of copper during creep at 773 K. Technical Physics 61:8, pages 1225-1228.
Crossref
F. Otto, G.B. Viswanathan, E.J. Payton, J. Frenzel & G. Eggeler. (2012) On the effect of grain boundary segregation on creep and creep rupture. Acta Materialia 60:6-7, pages 2982-2998.
Crossref
S. Tsurekawa, K. Okamoto, K. Kawahara & T. Watanabe. (2005) The control of grain boundary segregation and segregation-induced brittleness in iron by the application of a magnetic field. Journal of Materials Science 40:4, pages 895-901.
Crossref
J.D. Clayton & D.L. McDowell. (2004) Homogenized finite elastoplasticity and damage: theory and computations. Mechanics of Materials 36:9, pages 799-824.
Crossref
R. Monzen, T. Kuze, O. Matsuda & H. Miura. (2003) Antimony-induced embrittlement of [011] symmetric tilt boundaries in copper bicrystals. Metallurgical and Materials Transactions A 34:13, pages 773-779.
Crossref
R. Monzen, T. Kuze, O. Matsuda & H. Miura. (2003) Antimony-induced embrittlement of [011] symmetric tilt boundaries in copper bicrystals. Metallurgical and Materials Transactions A 34:3, pages 773-779.
Crossref
Ryoichi Monzen, Osamu Matsuda & Hiromi Miura. (2002) Embrittlement of Cu [001] symmetric tilt boundaries induced by Sb segregation. Zeitschrift für Metallkunde 93:8, pages 840-844.
Crossref
P. Shewmon & P. Anderson. (1998) Void nucleation and cracking at grain boundaries. Acta Materialia 46:14, pages 4861-4872.
Crossref
Paul G. Shewmon. (1998) Grain boundary cracking. Metallurgical and Materials Transactions B 29:3, pages 509-518.
Crossref
Paul G. Shewmon. (1998) Grain boundary cracking. Metallurgical and Materials Transactions A 29:6, pages 1535-1544.
Crossref
P.J. Henderson & R. Sandström. (1998) Low temperature creep ductility of OFHC copper. Materials Science and Engineering: A 246:1-2, pages 143-150.
Crossref
L.C. Lim & H.P. Pak. (1996) A quick-quench technique for the study of creep cavitation in metals. Scripta Materialia 35:11, pages 1295-1299.
Crossref
E.D. HONDROS, M.R. SEAH, S. HOFMANN & P. LEJČEK. 1996. Physical Metallurgy. Physical Metallurgy 1201 1289 .
S.A. Bradley. 1993. Handbook of Case Histories in Failure Analysis. Handbook of Case Histories in Failure Analysis 194 196 .
A. K. Bhattacharya. (1992) Observation of dendritic cavities in ?nickel-free? austenitic stainless steel. Journal of Materials Science Letters 11:1, pages 26-28.
Crossref
J.T. StaleyJr.Jr. & A. Saxena. (1990) Mechanisms of creep crack growth in 1 wt% antimony-copper: Implications for fracture parameters. Acta Metallurgica et Materialia 38:6, pages 897-908.
Crossref
L.C. Lim. (1989) Cavity nucleation at high temperatures involving pile-ups of grain boundary dislocations—effect of solutes and impurities. Acta Metallurgica 37:3, pages 969-977.
Crossref
Tadao Watanabe, Tetsuya Kuwajima & Seiichi Karashima. 1989. Strength of Metals and Alloys (ICSMA 8). Strength of Metals and Alloys (ICSMA 8) 917 922 .
C.P. Warner, J.E. Benci & D.P. Pope. (1989) The tensile ductility of Fe-3.5Si at elevated temperatures: impurity effects. Scripta Metallurgica 23:1, pages 109-112.
Crossref
L.C. Lim. (1987) Cavity nucleation at high temperatures involving pile-ups of grain boundary dislocations. Acta Metallurgica 35:7, pages 1663-1673.
Crossref
Hugo F. López. (1987) Underclad cracking of pressure vessel steels for light-water reactors. Scripta Metallurgica 21:6, pages 753-758.
Crossref
Jun Hwa Hong, Soo Woo Nam & Sun Pil Choi. (1986) The influences of sulphur and phosphorus additions on the creep cavitation characteristics in type 304 stainless steels. Journal of Materials Science 21:11, pages 3966-3976.
Crossref
R.A. Stevens & P.E.J. Flewitt. (1986) The effect of phosphorus on the microstructure and creep properties of steel. Acta Metallurgica 34:5, pages 849-866.
Crossref
K. S. Yu, A. Joshi & W. D. Nix. (1983) A study of the chemical composition of grain boundaries and creep cavity surfaces in a Cu-Sb alloy. Metallurgical Transactions A 14:12, pages 2447-2454.
Crossref
Arthur K. Lee & Nicholas J. Grant. (1983) Properties of two high strength, high temperature, high conductivity copper-base alloys. Materials Science and Engineering 60:3, pages 213-223.
Crossref
C.L. White & R.A. Padgett. (1983) Effects of antimony additions on the fracture of nickel at 600°C. Acta Metallurgica 31:7, pages 1005-1012.
Crossref
R. A. Stevens & P. E. J. Flewitt. (1983) The sintering of creep-induced cavities in a low alloy ferritic steel (1Cr1Mo0.75V). Metallurgical Transactions A 14:3, pages 679-686.
Crossref
M. P. Seah & E. D. Hondros. 1983. Atomistics of Fracture. Atomistics of Fracture 855 887 .
T. G. Nieh & W. D. Nix. (1981) Embrittlement of copper due to segregation of oxygen to grain boundaries. Metallurgical Transactions A 12:5, pages 893-901.
Crossref
D. A. Woodford. (1981) Environmental damage of a cast nickel base superalloy. Metallurgical Transactions A 12:2, pages 299-308.
Crossref
D. Maugis. (1980) Creep, hot hardness and sintering in the adhesion of metals at high temperature. Wear 62:2, pages 349-386.
Crossref
A.D. Brailsford. (1980) Surface segregation kinetics in binary alloys. Surface Science 94:2-3, pages 387-402.
Crossref
D. Lonsdale & P.E.J. Flewitt. (1979) The effect of small changes in impurity element content on the creep life of Cr1Mo steel. Materials Science and Engineering 41:1, pages 127-136.
Crossref
Tohru INOUE. (1979) Progress in Methods of Surface and Interface Analysis and Their Application to Iron and Steel Research. Tetsu-to-Hagane 65:10, pages 1630-1641.
Crossref
M. Reich, E.P. Esztergar, E.G. Ellison, F. Erdogan, T.G.F. Gray & C.H. Wells. (1978) Compilation of references, data sources and analysis methods for LMFBR primary piping system components. Nuclear Engineering and Design 50:2, pages 273-304.
Crossref
L.-G. Liljestrand, M. Aucouturier, G. Östberg & P. Lindhagen. (1978) Formation of microcracks during stress-relief annealing of a weldment in pressure vessel steel of type A508 C1 2. Journal of Nuclear Materials 75:1, pages 52-67.
Crossref
Patrick Gas & Jean Bernardini. (1978) Equilibrium intergranular segregation and diffusion in Ag?Sn (0?6%) alloys. Surface Science 72:2, pages 365-378.
Crossref
R. Raj. (1978) Intergranular fracture in bicrystals. Acta Metallurgica 26:2, pages 341-349.
Crossref
E G Ellison & M P Harper. (2007) Creep behaviour of components containing cracks—a critical review. The Journal of Strain Analysis for Engineering Design 13:1, pages 35-51.
Crossref
W. Pavinich & R. Raj. (1977) Fracture at elevated temperature. Metallurgical Transactions A 8:12, pages 1917-1933.
Crossref
E. �. Glikman, Yu. V. Goryunov, V. M. Demin & K. Yu. Sarychev. (1976) Kinetics and mechanism of copper fracture during deformation in surface-active baths. Soviet Physics Journal 19:7, pages 839-843.
Crossref
E. �. Glikman, Yu. V. Goryunov, V. M. Demin & K. Yu. Sarychev. (1976) Kinetics and mechanism of copper fracture due to deformation in surface-active paths. Soviet Physics Journal 19:5, pages 547-554.
Crossref
M.P. Seah. (1975) Interface adsorption, embrittlement and fracture in metallurgy. Surface Science 53:1, pages 168-212.
Crossref
R. H. Cook. 1975. A Status Review of Alloy 800. A Status Review of Alloy 800 150 169 .
A. J. Perry. (1974) Cavitation in creep. Journal of Materials Science 9:6, pages 1016-1039.
Crossref
B. D. Powell, H. J. Westwood, D. M. R. Taplin & H. Mykura. (1973) A study of intergranular fracture in iron using auger spectroscopy. Metallurgical Transactions 4:10, pages 2357-2361.
Crossref
Bernhard IlschnerBernhard Ilschner. 1973. Hochtemperatur-Plastizität. Hochtemperatur-Plastizität 70 248 .
A. Rukwied. (1972) High temperature creep cavitation mechanisms in a continuously cast high purity copper. Metallurgical Transactions 3:11, pages 3009-3023.
Crossref

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