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Original Articles

The cyclic loading of saline ice

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Pages 209-229 | Received 16 Dec 1994, Accepted 23 Dec 1994, Published online: 27 Sep 2006

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Read on this site (5)

M. Song. (2006) Effects of particles on the anelasticity of granular ice. Philosophical Magazine Letters 86:10, pages 669-672.
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David M. Cole . (2004) A dislocation-based model for creep recovery in ice. Philosophical Magazine 84:30, pages 3217-3234.
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David.M. Cole & Glenn.D. Durell. (2001) A dislocation-based analysis of strain history effects in ice. Philosophical Magazine A 81:7, pages 1849-1872.
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J. Weiss & E.M. Schulson. (2000) Grain-boundary sliding and crack nucleation in ice. Philosophical Magazine A 80:2, pages 279-300.
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DavidM. Cole. (1995) A model for the anelastic straining of saline ice subjected to cyclic loading. Philosophical Magazine A 72:1, pages 231-248.
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Articles from other publishers (41)

Tim C. Hammer, Otto Puolakka & Hayo Hendrikse. (2024) Scaling ice-induced vibrations by combining replica modeling and preservation of kinematics. Cold Regions Science and Technology 220, pages 104127.
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Enlong Liu. 2024. Reference Module in Materials Science and Materials Engineering. Reference Module in Materials Science and Materials Engineering.
Olivier Montmayeur, Kiera Thompson Towell, Andrii Murdza, Devin O’Connor & Emily Asenath-Smith. (2023) An isotropic viscoelastic phase field fracture model for flexural loading of freshwater columnar ice. Computational Materials Science 229, pages 112401.
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Cody C. Owen, Tim C. Hammer & Hayo Hendrikse. (2023) Hysteresis and dichotomous mechanics in cyclic crushing failure of confined freshwater columnar ice. Cold Regions Science and Technology 209, pages 103816.
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D Melini, C Saliby & G Spada. (2022) On computing viscoelastic Love numbers for general planetary models: the ALMA3 code . Geophysical Journal International 231:3, pages 1502-1517.
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Andrii Murdza, Erland M. Schulson & Carl E. Renshaw. (2021) Behavior of saline ice under cyclic flexural loading. The Cryosphere 15:5, pages 2415-2428.
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Andrii Murdza, Aleksey Marchenko, Erland M. Schulson & Carl E. Renshaw. (2020) Cyclic strengthening of lake ice. Journal of Glaciology 67:261, pages 182-185.
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Mingdong Wei, Arttu Polojärvi, David M. Cole & Malith Prasanna. (2020) Strain response and energy dissipation of floating saline ice under cyclic compressive stress. The Cryosphere 14:9, pages 2849-2867.
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D.M. Cole. (2020) On the physical basis for the creep of ice: the high temperature regime. Journal of Glaciology 66:257, pages 401-414.
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Yi Zhang, Yeon-Gil Jung & Jing Zhang. 2020. Multiscale Modeling of Additively Manufactured Metals. Multiscale Modeling of Additively Manufactured Metals 89 107 .
L.W. Morland & R. Staroszczyk. (2019) The viscous relation for the initial isotropic response of ice. Cold Regions Science and Technology 162, pages 11-18.
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Guillaume Boutin, Fabrice Ardhuin, Dany Dumont, Caroline Sévigny, Fanny Girard‐Ardhuin & Mickael Accensi. (2018) Floe Size Effect on Wave‐Ice Interactions: Possible Effects, Implementation in Wave Model, and Evaluation. Journal of Geophysical Research: Oceans 123:7, pages 4779-4805.
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Alexis Coyette, Rose-Marie Baland & Tim Van Hoolst. (2018) Variations in rotation rate and polar motion of a non-hydrostatic Titan. Icarus 307, pages 83-105.
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Noah P. Hammond, Amy C. Barr, Reid F. Cooper, Tess E. Caswell & Greg Hirth. (2018) Experimental Constraints on the Fatigue of Icy Satellite Lithospheres by Tidal Forces. Journal of Geophysical Research: Planets 123:2, pages 390-404.
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Yi Zhang, William Jarosinski, Yeon-Gil Jung & Jing Zhang. 2018. Additive Manufacturing. Additive Manufacturing 39 51 .
Yi Zhang & Jing Zhang. (2017) Finite element simulation and experimental validation of distortion and cracking failure phenomena in direct metal laser sintering fabricated component. Additive Manufacturing 16, pages 49-57.
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Matthew J. Vaughan, Kasper van Wijk, David J. Prior & M. Hamish Bowman. (2016) Monitoring the temperature-dependent elastic and anelastic properties in isotropic polycrystalline ice using resonant ultrasound spectroscopy. The Cryosphere 10:6, pages 2821-2829.
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H.M. Jara-Orué & B.L.A. Vermeersen. (2016) Tides on Jupiter's moon Ganymede and their relation to its internal structure. Netherlands Journal of Geosciences - Geologie en Mijnbouw 95:2, pages 191-201.
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Ulrich FaulIan Jackson. (2015) Transient Creep and Strain Energy Dissipation: An Experimental Perspective. Annual Review of Earth and Planetary Sciences 43:1, pages 541-569.
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V.E. Nakoryakov & S.Ya. Misyura. (2013) The features of self-preservation for hydrate systems with methane. Chemical Engineering Science 104, pages 1-9.
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D. Shoji, H. Hussmann, K. Kurita & F. Sohl. (2013) Ice rheology and tidal heating of Enceladus. Icarus 226:1, pages 10-19.
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Paul Duval. 2013. The Science of Solar System Ices. The Science of Solar System Ices 227 251 .
Christine McCarthy & Julie C. Castillo-Rogez. 2013. The Science of Solar System Ices. The Science of Solar System Ices 183 225 .
Marie Běhounková, Gabriel Tobie, Gaël Choblet & Ondřej Čadek. (2012) Tidally-induced melting events as the origin of south-pole activity on Enceladus. Icarus 219:2, pages 655-664.
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Erland M. Schulson & Paul Duval. 2010. Creep and Fracture of Ice. Creep and Fracture of Ice 101 152 .
Erland M. Schulson & Paul Duval. 2010. Creep and Fracture of Ice. Creep and Fracture of Ice 5 29 .
Min Song. (2008) An evaluation of the rate-controlling flow process in Newtonian creep of polycrystalline ice. Materials Science and Engineering: A 486:1-2, pages 27-31.
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David M. Cole & John F. Peters. (2007) A physically based approach to granular media mechanics: grain-scale experiments, initial results and implications to numerical modeling. Granular Matter 9:5.
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J. M. Wahr, M. T. Zuber, D. E. Smith & J. I. Lunine. (2006) Tides on Europa, and the thickness of Europa's icy shell. Journal of Geophysical Research: Planets 111:E12.
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Min Song, David M. Cole & Ian Baker. (2017) Creep of granular ice with and without dispersed particles. Journal of Glaciology 51:173, pages 210-218.
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David Sandwell, Paul Rosen, William Moore & Eric Gurrola. (2004) Radar interferometry for measuring tidal strains across cracks on Europa. Journal of Geophysical Research: Planets 109:E11.
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Min Song, David M. Cole & Ian Baker. (2017) Initial experiments on the effects of particles at grain boundaries on the anelasticity and creep behavior of granular ice. Annals of Glaciology 39, pages 397-401.
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William B. Moore & Gerald Schubert. (2003) The tidal response of Ganymede and Callisto with and without liquid water oceans. Icarus 166:1, pages 223-226.
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Devinder S Sodhi. (2001) Crushing failure during ice–structure interaction. Engineering Fracture Mechanics 68:17-18, pages 1889-1921.
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H.J Frost. (2001) Mechanisms of crack nucleation in ice. Engineering Fracture Mechanics 68:17-18, pages 1823-1837.
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D. M. Cole & J. P. Dempsey. 2001. IUTAM Symposium on Scaling Laws in Ice Mechanics and Ice Dynamics. IUTAM Symposium on Scaling Laws in Ice Mechanics and Ice Dynamics 251 264 .
S. V. Mulmule & J. P. Dempsey. (1999) Scale effects on sea ice fracture. Mechanics of Cohesive-frictional Materials 4:6, pages 505-524.
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Devinder S. Sodhi, Takahiro Takeuchi, Naoki Nakazawa, Satoshi Akagawa & Hiroshi Saeki. (1998) Medium-scale indentation tests on sea ice at various speeds. Cold Regions Science and Technology 28:3, pages 161-182.
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David M. Cole. (1998) Modeling the cyclic loading response of sea ice. International Journal of Solids and Structures 35:31-32, pages 4067-4075.
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D. M. Cole, R. A. Johnson & G. D. Durell. (1998) Cyclic loading and creep response of aligned first‐year sea ice. Journal of Geophysical Research: Oceans 103:C10, pages 21751-21758.
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Erik S. LeClair, Carl Davey & John P. Dempsey. (1997) A modified reversed direct-stress device. Cold Regions Science and Technology 25:3, pages 215-224.
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