Pascal and Francis Bibliographic Databases

Help

Search results

Your search

kw.\*:("Creep fracture")

Document Type [dt]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Publication Year[py]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Discipline (document) [di]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Language

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Author Country

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Results 1 to 25 of 757

  • Page / 31
Export

Selection :

  • and

11th International Conference of Creep and Fracture of Engineering Materials and Structures, CREEP 2008GLATZEL, Uwe; EGGELER, Gunther; KOSTORZ, Gernota et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2009, Vol 510-11, issn 0921-5093, 472 p.Conference Proceedings

Long-term creep design data for forged 1Cr-1Mo-0.25V steelWILSHIRE, B; BURT, H.Strength, fracture and complexity. 2006, Vol 4, Num 2, pp 65-73, issn 1567-2069, 9 p.Article

An evaluation of Linear Cumulative damage (miner's law) using kinetic crack growth theoryCHRISTENSEN, Richard M.Mechanics of time-dependant materials. 2002, Vol 6, Num 4, pp 363-377, issn 1385-2000, 15 p.Article

Creep rupture in a NiCr steelCHO, H. C; JIN YU; PARK, I. S et al.Scripta metallurgica. 1990, Vol 24, Num 6, pp 1015-1020, issn 0036-9748Article

Description of creep within the framework of the field theory of defectsGRINYAEV, Yu. V; CHERTOVA, N. V.Journal of applied mechanics and technical physics. 2000, Vol 41, Num 3, pp 538-543, issn 0021-8944Article

Creep and Fracture Behavior of Peak-Aged Mg-11Y-5Gd-2Zn-0.5Zr (wt pct)YIN, D. D; WANG, Q. D; BOEHLERT, C. J et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2012, Vol 43, Num 9, pp 3338-3350, issn 1073-5623, 13 p.Article

Line creep in paper peelingROSTI, Jari; KOIVISTO, Juha; TRAVERSA, Paola et al.International journal of fracture. 2008, Vol 151, Num 2, pp 281-297, issn 0376-9429, 17 p.Conference Paper

Research on the creep fracture mechanism of FGH95 Ni-based superalloyXIE JUN; TIAN SUGUI; ZHOU XIAOMING et al.International journal of materials research. 2013, Vol 104, Num 11, pp 1128-1136, issn 1862-5282, 9 p.Article

A new approach to creep data assessmentWILSHIRE, B; SCHARNING, P. J; HURST, R et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2009, Vol 510-11, pp 3-6, issn 0921-5093, 4 p.Conference Paper

A New Approach of Reliability Design For Creep Rupture PropertyJIE ZHAO; LI, Dong-Ming; FANG, Yuan-Yuan et al.Journal of pressure vessel technology. 2010, Vol 132, Num 6, issn 0094-9930, 061209.1-061209.8Article

Semianalytic finite-element method in continuum creep fracture mechanics problems for complex-shaped spatial bodies and related systems. Part 2. Analysis of reliability of the results and efficiency of the method, and algorithms for solving the problemsBOZHENOV, V. A; GULYAR, A. I; MAIBORODA, E. E et al.Strength of materials. 2002, Vol 34, Num 6, pp 536-540, issn 0039-2316, 5 p.Article

Fracture criteria to predict creep rupture of polymers and polymer compositesJAYARAMAN, R.Trends in polymer science (Regular ed.). 1997, Vol 5, Num 4, pp 116-122, issn 0966-4793Article

An investigation on the transition from creep damage to creep fractureCHEN, Z; QIAN, D; ZHANG, Y et al.Fatigue & fracture of engineering materials & structures (Print). 1998, Vol 21, Num 5, pp 641-649, issn 8756-758XArticle

Creep strain monitoring using A d.c. potential drop techniqueMANN, S. D.Materials forum (Rushcutters Bay). 1990, Vol 14, Num 2, pp 147-150, issn 0883-2900Article

A new methodology for analysis of creep and creep fracture data for 9-12% chromium steelsWILSHIRE, B; SCHARNING, P. J.International materials reviews. 2008, Vol 53, Num 2, pp 91-104, issn 0950-6608, 14 p.Article

Relations between the creep-rupture properties and the fractal dimension of three-dimensional fracture surface in a cobalt-base alloyTANAKA, M; KIMURA, Y; OYAMA, N et al.Journal of materials science. 2006, Vol 41, Num 18, pp 6181-6184, issn 0022-2461, 4 p.Article

Extrapolation of creep life data for 1Cr-0.5Mo steelWILSHIRE, B; SCHARNING, P. J.International journal of pressure vessels and piping. 2008, Vol 85, Num 10, pp 739-743, issn 0308-0161, 5 p.Article

Creep and creep fracture of polycrystalline copperWILSHIRE, B; BATTENBOUGH, A. J.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2007, Vol 443, Num 1-2, pp 156-166, issn 0921-5093, 11 p.Article

Creep fracture mechanism map and creep damage of Cr-Mo-V turbine rotor steelSHINYA, Norio; KYONO, Junro; KUSHIMA, Hideaki et al.ISIJ international. 2006, Vol 46, Num 10, pp 1516-1522, issn 0915-1559, 7 p.Article

A mixed criterion of delayed creep failure under plane stressGOLUB, V. P; KRIZHANOVSKII, V. I; RUSINOV, A. A et al.International applied mechanics. 2003, Vol 39, Num 5, pp 556-565, issn 1063-7095, 10 p.Article

Long-term creep-rupture prediction for metallic materialsKRIVENYUK, V. V.Strength of materials. 2003, Vol 35, Num 4, pp 403-412, issn 0039-2316, 10 p.Article

Modeling of damage interaction in fatigue relaxation for long-term life prediction. Case of alloy 800 grade 2 study at 550°CEL GHARAD, A; PLUVINAGE, G; AZARI, Z et al.Strength of materials. 2002, Vol 34, Num 4, pp 334-348, issn 0039-2316, 15 p.Article

Uniaxial creep behavior of V-4Cr-4Ti alloyNATESAN, K; SOPPET, W. K; PUROHIT, A et al.Journal of nuclear materials. 2002, Vol 307-11, pp 585-590, issn 0022-3115, 6 p., aConference Paper

Application of neural networks in combination with complex thermodynamics for the prediction of creep rupture strength of 9-12 % Cr steelsMEYER, Bernd; GUTTE, Heiner.Steel research. 2001, Vol 72, Num 9, pp 361-365, issn 0177-4832Article

Evaluation of component creep behaviour by means of a threshold approachXU, H; MAILE, K; ROOS, E et al.Steel research. 1999, Vol 70, Num 2, pp 67-70, issn 0177-4832Article

  • Page / 31