47
Views
50
CrossRef citations to date
0
Altmetric
Original Articles

High-temperature creep of single crystalline sodium chloride

I. creep-controlling mechanism

Pages 701-712 | Received 28 Feb 1972, Published online: 20 Aug 2006

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

Read on this site (8)

M. Carrard & J.L. Martin. (1987) A study of (001) glide in [112] aluminium single crystals. Philosophical Magazine A 56:3, pages 391-405.
Read now
E. Fries, J. Deschamps & J. Castaing. (1983) In situ synchrotron radiation topography of NaCI during high temperature creep. Radiation Effects 74:1-4, pages 329-338.
Read now
P.J. Dixon-stubbs & B. Wilshire. (1982) Deformation processes during creep of single and polycrystalline CaO. Philosophical Magazine A 45:3, pages 519-529.
Read now
ParT. Bretheau, C. Marhic, M. Spendel & J. Castaing. (1977) Fluage à haute température de monocristaux d'oxyde cuivreux. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 35:6, pages 1473-1487.
Read now
V. Pontikis & J.P. Poirier. (1975) Phenomenological and structural analysis of recovery-controlled creep, with special reference to the creep of single-crystal silver chloride. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 32:3, pages 577-592.
Read now
J.M. Birch & B. Wilshire. (1974) The effect of stress changes during creep of single-and polycrystalline MgO. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 30:5, pages 1023-1031.
Read now
S.L. Robinson, P.M. Burke & O.D. Sherby. (1974) Activation energy and sub grain size-creep rate relations in sodium chloride. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 29:2, pages 423-427.
Read now
W. Blum. (1973) Activation analysis of the steady-state deformation of single- and polycrystalline sodium chloride. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 28:2, pages 245-259.
Read now

Articles from other publishers (42)

Qiang Zhang, Zhanping Song, Junbao Wang, Yuwei Zhang & Tong Wang. (2021) Creep Properties and Constitutive Model of Salt Rock. Advances in Civil Engineering 2021, pages 1-29.
Crossref
Shobhit Pratap Singh, Praveen Kumar & Michael E. Kassner. (2021) Frustration of the dislocation density in NaCl and its implication on “Harper-Dorn” creep. Materials Science and Engineering: A 799, pages 140360.
Crossref
Sheng Fan, Travis F. Hager, David J. Prior, Andrew J. Cross, David L. Goldsby, Chao Qi, Marianne Negrini & John Wheeler. (2020) Temperature and strain controls on ice deformation mechanisms: insights from the microstructures of samples deformed to progressively higher strains at −10, −20 and −30 °C. The Cryosphere 14:11, pages 3875-3905.
Crossref
E. A. Stepantsov. (2019) Plastic Creep Features of Sapphire at Near-Melting Point Temperatures. Crystallography Reports 64:6, pages 947-951.
Crossref
. 2015. Fundamentals of Creep in Metals and Alloys. Fundamentals of Creep in Metals and Alloys 301 332 .
. 2008. Fundamentals of Creep in Metals and Alloys. Fundamentals of Creep in Metals and Alloys 261 288 .
M.E. Kassner, P. Kumar & W. Blum. (2007) Harper–Dorn creep. International Journal of Plasticity 23:6, pages 980-1000.
Crossref
Praveen Kumar, Michael E. Kassner & Terence G. Langdon. (2007) Fifty years of Harper–Dorn creep: a viable creep mechanism or a Californian artifact?. Journal of Materials Science 42:2, pages 409-420.
Crossref
Donald S. Stone. (2004) Similarity and scaling in creep and load relaxation of single-crystal halite (NaCl). Journal of Geophysical Research 109:B12.
Crossref
. 2003. Thermally Activated Mechanisms in Crystal Plasticity. Thermally Activated Mechanisms in Crystal Plasticity 159 224 .
Gianfranco D'Anna & Franco Nori. (2000) Critical Dynamics of Burst Instabilities in the Portevin-Le Châtelier Effect. Physical Review Letters 85:19, pages 4096-4099.
Crossref
S.V. Raj, I.S. Iskovitz & A.D. Freed. 1996. Unified Constitutive Laws of Plastic Deformation. Unified Constitutive Laws of Plastic Deformation 343 439 .
A. V. Gektin & V. Ya. Serebryannyi. (1995) Low-energy dislocation cell structures in ionic cubic lattice crystals. Physica Status Solidi (a) 149:1, pages 275-280.
Crossref
P.E. Senseny, F.D. Hansen, J.E. Russell, N.L. Carter & J.W. Handin. (1992) Mechanical behaviour of rock salt: Phenomenology and micromechanisms. International Journal of Rock Mechanics and Mining Sciences & Geomechanics Abstracts 29:4, pages 363-378.
Crossref
Z-M. Jin, H.W. GreenIIII & R.S. Borch. (1989) Microstructures of olivine and stresses in the upper mantle beneath Eastern China. Tectonophysics 169:1-3, pages 23-50.
Crossref
S.V. Raj, G.M. Pharr & J.D. Whittenberger. (1989) On the stability of the creep substructure in NaCl single crystals. Materials Science and Engineering: A 113, pages 161-175.
Crossref
Mark L. Beeman & David L. Kohlstedt. (1988) Dislocation density: stress relationships in natural and synthetic sodium chloride. Tectonophysics 148:1-2, pages 147-161.
Crossref
E. Fries, C. Dolin & J. Castaing. (1988) Slip and local deformation of NaCl single crystals after "uniaxial" compression. Revue de Physique Appliquée 23:4, pages 720-720.
Crossref
W. Roger Cannon & Terence G. Langdon. (1988) Creep of ceramics. Journal of Materials Science 23:1, pages 1-20.
Crossref
K. C. Goretta & J. L. Routbort. (1987) Effect of aspect ratio on compression of MgO single crystals. Journal of Materials Science Letters 6:7, pages 862-864.
Crossref
K. S. Ramesh, Eiichi Yasuda & Shiushichi Kimura. (1986) Negative creep and recovery during high-temperature creep of MgO single crystals at low stresses. Journal of Materials Science 21:9, pages 3147-3152.
Crossref
J.-L. Martin & A.S. Argon. (1986) Low energy dislocation structures due to recovery and creep. Materials Science and Engineering 81, pages 337-348.
Crossref
C. Clauss, A. Dominguez-Rodriguez & J. Castaing. (1986) Chemical diffusion for CoO and Cu2O deduced from creep transitories. Revue de Physique Appliquée 21:6, pages 343-348.
Crossref
J. Handin, J. E. Russell & N. L. Carter. 1986. Mineral and Rock Deformation: Laboratory Studies. Mineral and Rock Deformation: Laboratory Studies 117 160 .
H. C. Heard & F. J. Ryerson. 1986. Mineral and Rock Deformation: Laboratory Studies. Mineral and Rock Deformation: Laboratory Studies 99 115 .
C. Sotin & J.P. Poirier. (1984) Analysis of high-temperature creep experiments by generalized nonlinear inversion. Mechanics of Materials 3:4, pages 311-317.
Crossref
J.P. Poirier, J. Peyronneau, J.Y. Gesland & G. Brebec. (1983) Viscosity and conductivity of the lower mantle; an experimental study on a MgSiO3 perovskite analogue, KZnF3. Physics of the Earth and Planetary Interiors 32:3, pages 273-287.
Crossref
M.F. Ashby. 1983. Advances in Applied Mechanics Volume 23. Advances in Applied Mechanics Volume 23 117 177 .
W. Roger Cannon & Terence G. Langdon. (1983) Creep of ceramics. Journal of Materials Science 18:1, pages 1-50.
Crossref
T. Bretheau, B. Pellissier & B. Sieber. (1981) Plastic properties of Cu2O, mechanical tests and transmission electron microscopy—II. High temperature. Acta Metallurgica 29:9, pages 1617-1629.
Crossref
I. LERNER & D. L. KOHLSTEDT. (1981) Effect of gamma Radiation on Plastic Flow of NaCl. Journal of the American Ceramic Society 64:2, pages 105-108.
Crossref
B. Escaig. (1979) Mass transport by dislocation climb in the spinel lattice. Revue de Physique Appliquée 14:3, pages 469-474.
Crossref
Mitsuhiro Toriumi. (1979) Relation between dislocation density and subgrain size of naturally deformed olivine in peridotites. Contributions to Mineralogy and Petrology 68:2, pages 181-186.
Crossref
Mitsuhiro Toriumi & Shun-Ichiro Karato. (1978) Experimental studies on the recovery process of deformed olivines and the mechanical state of the upper mantle. Tectonophysics 49:1-2, pages 79-95.
Crossref
T. Bretheau & C. Dolin. (1978) heterogeneous deformation of Cu2O single crystals during high temperature compression creep. Journal of Materials Science 13:3, pages 587-593.
Crossref
E. Fries, A. Audouard & T. Bretheau. (1978) Substructure formation during Cu2o single crystal creep. Revue de Physique Appliquée 13:10, pages 489-493.
Crossref
K.R. McClay. (1977) Dislocation etch pits in galena. Tectonophysics 40:3-4, pages T1-T8.
Crossref
R. A. VERRALL, R. J. FIELDS & M. F. ASHBY. (1977) Deformation-Mechanism Maps for LiF and NaCl. Journal of the American Ceramic Society 60:5-6, pages 211-216.
Crossref
J. Montemayor, R. Gómez-Ramírez & E. Carrillo. (1976) High-temperature creep on KBr single crystals. Physica Status Solidi (a) 38:1, pages 67-72.
Crossref
R. D. Schmidt-Whitley, M. Martinez-Clemente & J. Castaing. (1975) Fluage de polycristaux d'oxyde cuivreux Cu2O. Physica Status Solidi (a) 27:1, pages 107-116.
Crossref
C. Goetze & D. L. Kohlstedt. (1973) Laboratory study of dislocation climb and diffusion in olivine. Journal of Geophysical Research 78:26, pages 5961-5971.
Crossref
J. L. ROUTBORT & J. C. VOGLEWEDE. (2006) Creep of Mixed‐Oxide Fuel Pellets at High Stress. Journal of the American Ceramic Society 56:6, pages 330-333.
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.