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Bicrystal - Based Modeling of Plasticity in FCC Metals
Oleh:
Ahzi, S.
;
Lee, B.J.
;
Parks, D. M.
Jenis:
Article from Bulletin/Magazine
Dalam koleksi:
Journal of Engineering Materials and Technology vol. 124 no. 1 (2002)
,
page 27-40.
Topik:
PLASTICITY
;
bicrystal - based modeling
;
plasticity
;
FCC metals
Ketersediaan
Perpustakaan Pusat (Semanggi)
Nomor Panggil:
JJ87.3
Non-tandon:
1 (dapat dipinjam: 0)
Tandon:
tidak ada
Lihat Detail Induk
Isi artikel
In this paper, intermediate modeling of polycrystalline plasticity is proposed for rigid viscoplatic large deformations. This approach is based on the use of a bicrystal as the elementary local element representing the polycrystal. The local homogenization is obtained by considering the bicrystal volume - averaging and the jump conditions at the assumed planar interface between the two crystals. Two interaction laws based on Taylor and Sachs type assumptions are proposed. These bicrystal - based averaging schemes are different from the classical Taylor and Sachs models since they allow for stresses and strains to vary from one single crystal to the other. We simulate uniaxial tension and compression as well as plane strain compression tests. Results in terms of stress - strain curves are shown in comparison to those of the pure Taylor and Sachs models. We also show results for texture evolution and discuss their comparison with the experimental measurements.
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