80
Views
94
CrossRef citations to date
0
Altmetric
Original Articles

The process of failure of columnar-grained ice

Pages 311-328 | Received 15 Jul 1971, Published online: 02 Sep 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

DavidM. Cole. (1995) A model for the anelastic straining of saline ice subjected to cyclic loading. Philosophical Magazine A 72:1, pages 231-248.
Read now
D.J. Goodman, H.J. Frost & M.F. Ashby. (1981) The plasticity of polycrystalline ice. Philosophical Magazine A 43:3, pages 665-695.
Read now
N.K. Sinha, P. Ehrhart, H.D. Carstanjen, A.M. Fattah & J.B. Roberto. (1979) Grain boundary sliding in polycrystalline materials. Philosophical Magazine A 40:6, pages 825-842.
Read now

Articles from other publishers (91)

Tsz Tung Chan, Stefan Heinrich, Jürgen Grabe & Maksym Dosta. (2022) Microscale Modeling of Frozen Particle Fluid Systems with a Bonded-Particle Model Method. Materials 15:23, pages 8505.
Crossref
Nirmal K. Sinha & Shoma Sinha. 2022. Engineering Physics of High‐Temperature Materials. Engineering Physics of High‐Temperature Materials 265 301 .
Nirmal K. Sinha & Shoma Sinha. 2022. Engineering Physics of High‐Temperature Materials. Engineering Physics of High‐Temperature Materials 237 264 .
Nirmal K. Sinha & Shoma Sinha. 2022. Engineering Physics of High‐Temperature Materials. Engineering Physics of High‐Temperature Materials 215 236 .
Nirmal K. Sinha & Shoma Sinha. 2022. Engineering Physics of High‐Temperature Materials. Engineering Physics of High‐Temperature Materials 129 213 .
Nirmal K. Sinha & Shoma Sinha. 2022. Engineering Physics of High‐Temperature Materials. Engineering Physics of High‐Temperature Materials 59 90 .
Nirmal K. Sinha & Shoma Sinha. 2022. Engineering Physics of High‐Temperature Materials. Engineering Physics of High‐Temperature Materials 1 28 .
Erland M. Schulson, Andrii Murdza & Carl E. Renshaw. 2022. IUTAM Symposium on Physics and Mechanics of Sea Ice. IUTAM Symposium on Physics and Mechanics of Sea Ice 3 8 .
Kun Deng, Xiaowei Feng, Xiaojun Tan & Yanhui Hu. (2020) Experimental research on compressive mechanical properties of ice under low strain rates. Materials Today Communications 24, pages 101029.
Crossref
Andrii Murdza, Erland M. Schulson & Carl E. Renshaw. (2020) Strengthening of columnar-grained freshwater ice through cyclic flexural loading. Journal of Glaciology 66:258, pages 556-566.
Crossref
Emily Asenath-Smith, Garrett R. Hoch & Chad T. Erb. (2020) Adhesion of freshwater columnar ice to material surfaces by crystallization from the melt. Journal of Crystal Growth 535, pages 125563.
Crossref
Jun Yoneda, Masato Kida, Yoshihiro Konno, Yusuke Jin, Sumito Morita & Norio Tenma. (2019) In Situ Mechanical Properties of Shallow Gas Hydrate Deposits in the Deep Seabed. Geophysical Research Letters 46:24, pages 14459-14468.
Crossref
Mohammed Shokr & Nirmal Sinha. 2015. Sea Ice. Sea Ice 507 534 .
Robert S. Farr, Aitor Luque & Andrew Hoddle. (2011) Theory for the failure stress of a quasi-equilibrium, brittle polycrystal with a small void fraction. Materials Science and Engineering: A 528:3, pages 1694-1701.
Crossref
Majid Kermani & Masoud Farzaneh. (2009) Flexural and low-cycle fatigue behavior of atmospheric ice. Journal of Materials Science 44:10, pages 2497-2506.
Crossref
Erland M. Schulson & Paul Duval. 2010. Creep and Fracture of Ice. Creep and Fracture of Ice 101 152 .
P.O. Moslet. (2007) Field testing of uniaxial compression strength of columnar sea ice. Cold Regions Science and Technology 48:1, pages 1-14.
Crossref
A. Pralong. (2005) Dynamic damage model of crevasse opening and application to glacier calving. Journal of Geophysical Research 110:B1.
Crossref
Lorne W. Gold. (2017) Statistical behaviour of the deformation for first loading of polycrystalline ice. Journal of Glaciology 49:164, pages 37-49.
Crossref
L W Gold. (2003) Strain and temperature dependence of crack populations in columnar-grain ice. Canadian Journal of Physics 81:1-2, pages 311-318.
Crossref
Adam C. Maloof, James B. Kellogg & Alison M. Anders. (2002) Neoproterozoic sand wedges: crack formation in frozen soils under diurnal forcing during a snowball Earth. Earth and Planetary Science Letters 204:1-2, pages 1-15.
Crossref
Christopher J. L. Wilson & Hadi M. Sim. (2017) The localization of strain and c-axis evolution in anisotropic ice. Journal of Glaciology 48:163, pages 601-610.
Crossref
H.J Frost. (2001) Mechanisms of crack nucleation in ice. Engineering Fracture Mechanics 68:17-18, pages 1823-1837.
Crossref
Roy Rice. 2000. Mechanical Properties of Ceramics and Composites. Mechanical Properties of Ceramics and Composites 428 456 .
Ahmed Derradji-Aouat, Nirmal K. Sinha & Erman Evgin. (2000) Mathematical modelling of monotonic and cyclic behaviour of fresh water columnar grained S-2 ice. Cold Regions Science and Technology 31:1, pages 59-81.
Crossref
Erland M. Schulson. (1999) The structure and mechanical behavior of ice. JOM 51:2, pages 21-27.
Crossref
Lorne W. Gold. (2017) Statistical characteristics for the strain-dependent density and the spatial position for deformation-induced cracks in columnar-grain ice. Journal of Glaciology 45:150, pages 264-272.
Crossref
Lorne W. Gold. (2017) Statistical characteristics for the strain-dependent density and the spatial position for deformation-induced cracks in columnar-grain ice. Journal of Glaciology 45:150, pages 264-272.
Crossref
A. V. Chadwick. 1999. Diffusion in Non-Metallic Solids (Part 1). Diffusion in Non-Metallic Solids (Part 1) 1 36 .
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.
Crossref
V. Gupta & R. C. Picu. (1998) Nucleation of feather cracks in columnar freshwater ice: Experimental observations. Journal of Geophysical Research: Oceans 103:C10, pages 21767-21774.
Crossref
Jinkoo Kim & S. Shyam Sunder. (1997) Statistical effects on the evolution of compliance and compressive fracture stress of ice. Cold Regions Science and Technology 26:2, pages 137-152.
Crossref
Khaled Abdel-Tawab & Gregory J. Rodin. (1997) Analysis of primary creep of S2 fresh-water and saline ice. Cold Regions Science and Technology 26:1, pages 83-96.
Crossref
Olivier Plé & Jacques Meyssonnier. (1997) Preparation and Preliminary Study of Structure-Controlled S2 Columnar Ice. The Journal of Physical Chemistry B 101:32, pages 6118-6122.
Crossref
Lorne W. Gold. (2017) Statistical characteristics for the type and length of deformation-induced cracks in columnar-grain ice. Journal of Glaciology 43:144, pages 311-320.
Crossref
Lorne W. Gold. (2017) Statistical characteristics for the type and length of deformation-induced cracks in columnar-grain ice. Journal of Glaciology 43:144, pages 311-320.
Crossref
A.A. Elvin & S.Shyam Sunder. (1996) Microcracking due to grain boundary sliding in polycrystalline ice under uniaxial compression. Acta Materialia 44:1, pages 43-56.
Crossref
L.W. Morland. (1996) Dynamic impact between a viscoelastic ice floe and a rigid structure. Cold Regions Science and Technology 24:1, pages 7-28.
Crossref
S. Nanthikesan & S. Shyam Sunder. (1995) Tensile cracks in polycrystalline ice under transient creep: Part II — Numerical simulations. Mechanics of Materials 21:4, pages 281-301.
Crossref
R.C. Picu & V. Gupta. (1995) Crack nucleation in columnar ice due to elastic anisotropu and grain boundary sliding. Acta Metallurgica et Materialia 43:10, pages 3783-3789.
Crossref
E.M. Schulson & S.E. Buck. (1995) The ductile-to-brittle transition and ductile failure envelopes of orthotropic ice under biaxial compression. Acta Metallurgica et Materialia 43:10, pages 3661-3668.
Crossref
V. Gupta & R.C. Picu. (1995) A model for the indentation-induced splitting ice floe experiments. Acta Metallurgica et Materialia 43:4, pages 1355-1362.
Crossref
Mao S. Wu & Jian Niu. (1995) Micromechanical prediction of the compressive failure of ice: numerical simulations. Mechanics of Materials 20:1, pages 33-58.
Crossref
Mao S. Wu & Jian Niu. (1995) Micromechanical prediction of the compressive failure of ice: model development. Mechanics of Materials 20:1, pages 9-32.
Crossref
M.A. Rist & S.A.F Murrell. (2017) Ice triaxial deformation and fracture. Journal of Glaciology 40:135, pages 305-318.
Crossref
M.A. Rist & S.A.F Murrell. (2017) Ice triaxial deformation and fracture. Journal of Glaciology 40:135, pages 305-318.
Crossref
Puneet Mahajan & Robert L. Brown. (2017) A microstructure-based constitutive law for snow. Annals of Glaciology 18, pages 287-294.
Crossref
Puneet Mahajan & Robert L. Brown. (2017) A microstructure-based constitutive law for snow. Annals of Glaciology 18, pages 287-294.
Crossref
Mao S. Wu & S. Shyam Sunder. (1992) Elastic anisotropy and micro-damage processes in polycrystalline ice. International Journal of Fracture 55:4, pages 375-396.
Crossref
Mao S. Wu & S. Shyam Sunder. (1992) Elastic anisotropy and micro-damage processes in polycrystalline ice Part I: Theoretical formulation. International Journal of Fracture 55:3, pages 223-243.
Crossref
H. A. Khoo & T. M. Hrudey. (1992) Constitutive Model for Ice. Journal of Engineering Mechanics 118:2, pages 259-279.
Crossref
R.L. Brown & T. Kawamura. (1991) A preliminary comparison of the properties of pure ice and sea ice single crystals. Cold Regions Science and Technology 19:3, pages 275-284.
Crossref
P. Kalifa, S. J. Jones & T. D. Slade. (2017) Microcrack nucleation in granular ice under uniaxial compression: effect of grain-size and tetmperature. Annals of Glaciology 15, pages 222-229.
Crossref
E. M. Schulson, D. E. Jones & G. A. Kuehn. (2017) The effect of confinement on the brittle compressive fracture of ice. Annals of Glaciology 15, pages 216-221.
Crossref
E. M. Schulson, D. E. Jones & G. A. Kuehn. (2017) The effect of confinement on the brittle compressive fracture of ice. Annals of Glaciology 15, pages 216-221.
Crossref
Nirmal K. Sinha. 1991. Ice-Structure Interaction. Ice-Structure Interaction 69 87 .
J. Mølgaard. 1991. Ice-Structure Interaction. Ice-Structure Interaction 385 403 .
E. M. Schulson. 1991. Ice-Structure Interaction. Ice-Structure Interaction 165 187 .
S. Shyam Sunder & S. Nanthikesan. (1990) Crack nucleation due to elastic anisotropy in porous ice. Cold Regions Science and Technology 18:3, pages 249-265.
Crossref
N.P. Cannon, E.M. Schulson, T.R. Smith & H.J. Frost. (1990) Wing cracks and brittle compressive fracture. Acta Metallurgica et Materialia 38:10, pages 1955-1962.
Crossref
S. Shyam Sunder & Mao S. Wu. (1990) Crack nucleation due to elastic anisotropy in polycrystalline ice. Cold Regions Science and Technology 18:1, pages 29-47.
Crossref
W.F. Rall & T.K. Meyer. (1989) Zona fracture damage and its avoidance during the cryopreservation of mammalian embryos. Theriogenology 31:3, pages 683-692.
Crossref
A. C. F. Cocks. 1989. Mechanics of Creep Brittle Materials 1. Mechanics of Creep Brittle Materials 1 213 229 .
Nirmal K. Sinha. (1988) Crack-enhanced creep in polycrystalline material: strain-rate sensitive strength and deformation of ice. Journal of Materials Science 23:12, pages 4415-4428.
Crossref
D.M. Cole. (1988) Crack nucleation in polycrystalline ice. Cold Regions Science and Technology 15:1, pages 79-87.
Crossref
David M. Cole. (2017) Strain-Rate and Grain‒Size Effects in Ice. Journal of Glaciology 33:115, pages 274-280.
Crossref
David M. Cole. (2017) Strain-Rate and Grain‒Size Effects in Ice. Journal of Glaciology 33:115, pages 274-280.
Crossref
T.J.O. Sanderson & A.J. Child. (1986) Ice loads on offshore structures: The transition from creep to fracture. Cold Regions Science and Technology 12:2, pages 157-161.
Crossref
Anatoly M. Fish. (1984) Thermodynamic model of creep at constant stress and constant strain rate. Cold Regions Science and Technology 9:2, pages 143-161.
Crossref
N.K. Sinha. 1984. Fracture 84. Fracture 84 2295 2302 .
Masayoshi Nakawo. (2017) Measurements on Air Porosity of Sea Ice. Annals of Glaciology 4, pages 204-208.
Crossref
L. W. Gold. (2017) Creep of Columnar-Grained Ice at Low Stress. Annals of Glaciology 4, pages 73-78.
Crossref
Masayoshi Nakawo. (2017) Measurements on Air Porosity of Sea Ice. Annals of Glaciology 4, pages 204-208.
Crossref
L. W. Gold. (2017) Creep of Columnar-Grained Ice at Low Stress. Annals of Glaciology 4, pages 73-78.
Crossref
M.F. Ashby. 1983. Advances in Applied Mechanics Volume 23. Advances in Applied Mechanics Volume 23 117 177 .
C. GANDHI & M.F. ASHBY. 1983. Perspectives in Creep Fracture. Perspectives in Creep Fracture 33 70 .
Malcolm Mellor & David M. Cole. (1982) Deformation and failure of ice under constant stress or constant strain-rate. Cold Regions Science and Technology 5:3, pages 201-219.
Crossref
William F.St. Lawrence & David M. Cole. (1982) Acoustic emissions from polycrystalline ice. Cold Regions Science and Technology 5:3, pages 183-199.
Crossref
N. K. Sinha. (1982) Constant strain- and stress-rate compressive strength of columnar-grained ice. Journal of Materials Science 17:3, pages 785-802.
Crossref
Nirmal K. Sinha. (1981) Rate sensitivity of compressive strength of columnar-grained ice. Experimental Mechanics 21:6, pages 209-218.
Crossref
William F. St Lawrence. (2017) The Acoustic Emission Response of Snow. Journal of Glaciology 26:94, pages 209-216.
Crossref
William F. St Lawrence. (2017) The Acoustic Emission Response of Snow. Journal of Glaciology 26:94, pages 209-216.
Crossref
M.F. Ashby & B. Tomkins. 1980. Mechanical Behaviour of Materials. Mechanical Behaviour of Materials 47 89 .
L. W. Gold & N. K. Sinha. 1980. Physics and Mechanics of Ice. Physics and Mechanics of Ice 117 128 .
C. Gandhi & M.F. Ashby. (1979) Overview no. 5. Acta Metallurgica 27:10, pages 1565-1602.
Crossref
M.F. Ashby. 1979. Fracture Mechanics. Fracture Mechanics 1 27 .
N. K. Sinha. (1978) Rheology of columnar-grained ice. Experimental Mechanics 18:12, pages 464-470.
Crossref
CHARLES F. RAYMOND. 1978. Rockslides and Avalanches, 1 - Natural Phenomena. Rockslides and Avalanches, 1 - Natural Phenomena 793 833 .
L. W. Gold. (2018) Engineering Properties of Fresh-Water Ice. Journal of Glaciology 19:81, pages 197-212.
Crossref
V. R. Parameswaran & Stephen J. Jones. (2017) Brittle Fracture of Ice at 77 K. Journal of Glaciology 14:71, pages 305-315.
Crossref
U. Del Pennino, A. Loria, S. Mantovani & E. Mazzega. (2007) Polarization phenomena induced by cracks in Ih ice crystalsЯвления поляризации, индуцированные трещинами в Ih кристаллах льда. Il Nuovo Cimento B Series 11 24:1, pages 108-120.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.