Home Technology Glide of dislocations in non-octahedral planes of fcc metals: a review
Article
Licensed
Unlicensed Requires Authentication

Glide of dislocations in non-octahedral planes of fcc metals: a review

  • Daniel Caillard and Jean-Luc Martin
Published/Copyright: June 11, 2013

Abstract

In spite of frequent observations, and of some important consequences for industrial applications, the glide motion of dislocations in non-octahedral planes of fcc metals and alloys remains rather poorly known, and not sufficiently considered for the analysis of mechanical properties. Following the pioneering work of C. Crussard in 1945, the results of several independent studies are compared and shown to be fairly consistent. They indicate that non-octahedral slip occurs under fairly well known conditions, and that it can be described by a kink-pair mechanism acting on screw dislocations dissociated in intersecting {111} planes. It has a drastic effect on the intermediate-temperature mechanical properties of fcc crystals and aluminum-based alloys, as well as on texture formation under conditions of severe plastic deformation.


* Correspondence address, Dr. D. Caillard CEMES-CNRS, BP 4347, F 31055 Toulouse Cedex, France Tel.: +33 562 25 78 72 Fax: +33 562 25 79 99 E-mail:

Dedicated to the late Prof. Charles Crussard (1916–2008)


References

[1] E.Schmid, N.Boas: Kistall Plastizität, Berlin (1935), Table VI.10.1007/978-3-662-34532-0Search in Google Scholar

[2] C.Crussard: Rev. de Métallurgie42–9 (1945) 286294 and 321–332.10.1051/metal/194542090286Search in Google Scholar

[3] P.Lacombe, L.Beaujard: J. Inst. Metals74 (1947) 116.Search in Google Scholar

[4] R.W.Cahn: J. Inst. Metals79 (1951) 129133.Search in Google Scholar

[5] I.S.Servi, J.T.Norton, N.J.Grant: Trans. Am. Inst. Min. Metal. Engrs194 (1952) 965971.Search in Google Scholar

[6] R.D.Johnson, A.P.Young, A.D.Schwope, in: Proceedings of a Symp. on the Creep and Fracture of Metals at High Temperatures, Her Majesty's Stationary Office, London (1956) 2530.Search in Google Scholar

[7] R.Le Hazif, P.Dorizzi, J.P.Poirier: Acta Metall.21 (1973) 903911.10.1016/0001-6160(73)90148-XSearch in Google Scholar

[8] R.Le Hazif, J.P.Poirier: Acta Metall.23 (1975) 865871.10.1016/0001-6160(75)90203-5Search in Google Scholar

[9] A.Mecif, B.Bacroix, P.Franciosi: Acta Mater.45 (1997) 371381.10.1016/S1359-6454(96)00094-8Search in Google Scholar

[10] F.Perocheau, J.H.Driver: Int. J. Plasticity18 (2002) 185202.10.1016/S0749-6419(00)00075-9Search in Google Scholar

[11] B.Pichaud, F.Minari: Scripta Met.14 (1980) 11711174.10.1016/0036-9748(80)90250-1Search in Google Scholar

[12] C.Carry, J.L.Strudel: Scripta Met.9 (1975) 731736.10.1016/0036-9748(75)90230-6Search in Google Scholar

[13] C.J.Beevers, R.W.K.Honeycombe: Acta Met.9 (1961) 513515.10.1016/0001-6160(61)90148-1Search in Google Scholar

[14] M.Carrard, J.L.Martin: Phil. Mag. A56 (1987) 391405.10.1080/01418618708214395Search in Google Scholar

[15] M.Carrard, J.L.Martin: Phil. Mag. A58 (1988) 491505.10.1080/01418618808210426Search in Google Scholar

[16] P.N.B.Anongba, J.Bonneville, J.L.Martin: Acta Metal. Mater.41 (1993) 28972906.10.1016/0956-7151(93)90104-ZSearch in Google Scholar

[17] P.N.B.Anongba, J.Bonneville, J.L.Martin: Acta Metal. Mater.41 (1993) 29072922.10.1016/0956-7151(93)90105-2Search in Google Scholar

[18] A.Couret, D.Caillard: Acta Metall36 (1988) 25152254.10.1016/0001-6160(88)90197-6Search in Google Scholar

[19] M.Crumbach, G.Gottstein: Mater. Sci. Eng. A387–389 (2004) 282287.10.1016/j.msea.2004.01.130Search in Google Scholar

[20] G.Edelin: Scripta Metall.6 (1972) 11851188.10.1016/0036-9748(72)90228-1Search in Google Scholar

[21] G.Vanderschaeve, B.Escaig, in: P.Groh, L.Kubin, J.L.Martin (Eds.), “Dislocations et Déformation Plastique”, Les Editions de Physique, Orsay (1981) 141160.Search in Google Scholar

[22] D.Caillard, J.L.Martin: R.W.Cahn (Ed.), “Thermally Activated Mechanisms in Crystal Plasticity”, Pergamon Materials Series, Pergamon, Amsterdam (2003).Search in Google Scholar

[23] H.P.Karnthaler: Phil. Mag.38 (1978) 141156.10.1080/01418617808239225Search in Google Scholar

[24] M.A.Morris, J.L.Martin: Acta Metall.32 (1984) 549561.10.1016/0001-6160(84)90066-XSearch in Google Scholar

[25] D.Caillard: Phil. Mag.51 (1985) 151174.10.1080/13642818508240559Search in Google Scholar

[26] M.Kvapilova, A.Orlova: Mater. Sci. Eng.A302 (2001) 294299.10.1016/S0921-5093(00)01816-5Search in Google Scholar

[27] C.Maurice, J.H.Driver: Acta Metall. Mater.41 (1993) 16531664.10.1016/0956-7151(93)90185-USearch in Google Scholar

[28] C.Maurice, J.H.Driver: Acta Mater.45 (1997) 46274638.10.1016/S1359-6454(97)00115-8Search in Google Scholar

[29] C.Maurice, J.H.Driver: Acta Mater.45 (1997) 46394649.10.1016/S1359-6454(97)00117-1Search in Google Scholar

[30] B.Bacroix, J.J.Jonas: Textures and Microstructures8–9 (1988) 267311.10.1155/TSM.8-9.267Search in Google Scholar

[31] D.Raabe: Acta Metall. Mater.43 (1995) 10231028.10.1016/0956-7151(94)00302-XSearch in Google Scholar

[32] G.Sarma, B.Radhakrishnan: Mater. Sci. Eng. A385 (2004) 91104.10.1016/j.msea.2004.06.007Search in Google Scholar

[33] G.Sarma, B.Radhakrishnan, T.Zacharia: Modelling Simul. Mater. Sci. Eng.7 (1999) 10251043.10.1088/0965-0393/7/6/308Search in Google Scholar

[34] R.A.Ricks: Phil. Trans. R. Soc. London A357 (1999) 15131529.10.1098/rsta.1999.0387Search in Google Scholar

[35] F.Delmas, J.Majimel, M.Vivas, G.Molenat, A.Couret, A.Coujou: Phil. Mag. Letters83 (2003) 289296.10.1080/095008303100Search in Google Scholar

[36] J.Majimel, M.J.Casanove, G.Molenat: Mater. Sci. Eng. A380 (2004) 110116.10.1016/j.msea.2004.03.050Search in Google Scholar

[37] J.Colin, P.Beauchamp, S.Brochard, J.Grilhé, A.Coujou: Europ. Phys. Lett.78 (2007) 16002_116002_4.Search in Google Scholar

Received: 2008-9-29
Accepted: 2009-7-25
Published Online: 2013-06-11
Published in Print: 2009-10-01

© 2009, Carl Hanser Verlag, München

Articles in the same Issue

  1. Contents
  2. Contents
  3. Introduction
  4. Introduction
  5. G. Petzow: Laudation for Peter Paul Schepp
  6. Dr. Schepp's retirement after 20 years of service was celebrated
  7. Preface to Feature Articles
  8. “SURFACE and INTERFACE ENGINEERING”
  9. Feature
  10. Thermodynamics of reactions and phase transformations at interfaces and surfaces
  11. Oxidation of palladium: from single crystal surfaces towards nanoparticles
  12. On the high-temperature oxidation of MCrAlY coatings
  13. Conducting polymers for corrosion protection: a review
  14. Fundamental and applied aspects of laser surface engineering
  15. Low-temperature gaseous surface hardening of stainless steel: the current status
  16. Foreword
  17. Foreword
  18. Editorial
  19. The scientific work of Charles Crussard (1916–2008)
  20. Review
  21. Charles Crussard's early contributions: Recrystallization in situ and a Grain Boundary study with J. Friedel and B. Cullity
  22. Magnetohydrodynamics applied to materials processing
  23. Charles Crussard's contribution to sheet metal forming and participation in IDDRG
  24. Glide of dislocations in non-octahedral planes of fcc metals: a review
  25. The deformation stage II of face-centered cubic crystals: Fifty years of investigations
  26. Nucleation and growth during primary recrystallization of certain metals and alloys with a face-centered cubic structure: Formation of the cube texture
  27. Basic
  28. Andrade creep revisited
  29. Application of cluster dynamics modeling to the precipitation in aluminum alloys
  30. On the effect of pre-recovery on subsequent recrystallization
  31. The interplay between grain boundaries and disclinations in condensed matter physics
  32. Plasticity of nanocrystalline materials: a critical viewpoint
  33. Thermoelectric power applied to metallurgy: principle and recent applications
  34. Notifications
  35. People
Downloaded on 1.1.2026 from https://www.degruyterbrill.com/document/doi/10.3139/146.110190/html
Scroll to top button