By Jacob Aboudi (auth.), Jean-Paul Boehler, Akhtar S. Khan (eds.)
Present advancements in fabrics technology, mechanics and engineering, in addition to the calls for of contemporary expertise, lead to a brand new and starting to be curiosity in plasticity and in bordering domain names of the mechanical habit of fabrics. This turning out to be curiosity is attested to through the good fortune of either The foreign magazine of Plasticity, which after its inception speedily grew to become the best magazine for plasticity examine, and the sequence ofInternational Symposia on Plasticity and Its present functions, that is now the preferable foreign discussion board for plasticity learn dissemination. the 1st foreign Symposium on Plasticity and Its present functions was once conceived and arranged via Professor Akhtar S. Khan, and was once held on the college of Oklahoma (Norman, Oklahoma, united states) from July 30 to August three, 1984. It used to be attended by means of over 100 scientists from fifteen nations. "Plasticity '89: the second one foreign Symposium on Plasticity and Its present functions" used to be held at Mie college (Tsu, Japan) from July 31 to August four, 1989; this symposium used to be co-chaired via Professors Khan and Tokuda. the most emphasis of this assembly was once on dynamic plasticity and micromechanics, even though it incorporated different elements of plasticity to boot. It was once attended through over 200 researchers from twenty-three nations.
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Anisotropy, reference configuration and residual stresses. In Constitutive Laws for Engineering Materials, Theory and Applications, eds. Desai, C. , Kiousis, P. , Vol. , Elsevier, 1987, pp. 69-80. 4. , A theory of yielding and plastic flow of anisotropic metals. Proc. Roy. Soe. A, 1948, 193,281-97. 5. , Finite elastoplastic transformations of anisotropic metals. Manuscript in preparation, 1991. 6. McMeeking, R. M. and Rice, J. , Finite-element formulations for problems of large elastic-plastic deformation, Int.
M. Spencer, CISM Courses and Lectures No. 1-32. P. PROUBET Civil Engineering Department, KAP 210 University of Southern California, Los Angeles, CA 90089-2531, USA ABSTRACT Based on the numerical simulations of an assembly of two-dimensional particles, the paper assesses the assumptions and limitations of the linear stability analyses proposed for shear bands in granular media. It shows that the linear stability analyses that are based on a micropolar generalization of flow and deformation theories of plasticity are capable of accounting for the thickness of shear bands, the rotations and tangential displacements of the particles within shear bands in idealized granular soils.
HASHIN, Z. and SHTRIKMAN, S. (1962) 1. Mech. Phys. Solids 10, 335. HILL, R. (1963) 1. Mech. Phys. Solids 11, 357. PONTE CASTANEDA, P. (1991) To appear. PONTE CASTANEDA, P. (1991) 1. Mech. Phys. Solids 39, 45. PONTE CASTANEDA, P. (1991) In Inelastic Deformation of Composite Materials (ed. Gl. DVORAK), Springer-Verlag, New York, 216. PONTE CASTANEDA, P. and WILLIS, J. R. (1988) Proc. R. Soc. Lond. A 416,217. TALBOT, D. R. S. and WILLIS, 1. R. (1985) IMA 1. Appl. Math. 35,39. TALBOT, D. R. S. and WILLIS, J.
Anisotropy and Localization of Plastic Deformation: Proceedings of PLASTICITY ’91: The Third International Symposium on Plasticity and Its Current Applications by Jacob Aboudi (auth.), Jean-Paul Boehler, Akhtar S. Khan (eds.)