Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material

J. Rajagopalan, J. H. Han, M.T. A. Saif

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Original languageEnglish
Title of host publicationInhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material
StatePublished - 2008
Event2008 TMS meeting -
Duration: Jan 1 2008 → …

Conference

Conference2008 TMS meeting
Period1/1/08 → …

Cite this

Rajagopalan, J., Han, J. H., & Saif, M. T. A. (2008). Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material. In Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material

Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material. / Rajagopalan, J.; Han, J. H.; Saif, M.T. A.

Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material. 2008.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Rajagopalan, J, Han, JH & Saif, MTA 2008, Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material. in Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material. 2008 TMS meeting, 1/1/08.
Rajagopalan J, Han JH, Saif MTA. Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material. In Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material. 2008
Rajagopalan, J. ; Han, J. H. ; Saif, M.T. A. / Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material. Inhomogeneity and size of microstructure - a new paradigm in understanding deformation mechanism of nano grained material. 2008.
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M3 - Conference contribution

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