Title of article :
Numerical investigation on a key factor in superior stretchability of face-centered cubic polycrystalline sheets
Author/Authors :
Yoshida، نويسنده , , Kengo and Kuroda، نويسنده , , Mitsutoshi، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2012
Pages :
10
From page :
47
To page :
56
Abstract :
Plastic deformation characteristics and limit strains are simulated for textured face-centered cubic polycrystalline sheets using a generalized Taylor-type crystal plasticity model. The r-values are predicted to be 1.04, 7.74, and 0.17 for the pseudo-random, {1 1 1}〈uvw〉, and {0 0 1}〈uvw〉 textures, respectively. The {1 1 1}〈uvw〉 texture gives limit strains as large as the random texture, whereas the {0 0 1}〈uvw〉 texture yields limit strains apparently higher than the other two, even though its r-value is extremely low. Thus, the r-value cannot act as an indicator of the stretchability of sheet metals. For the {0 0 1}〈uvw〉 texture, a superior strain-hardening ability under the plane-strain stretching mode is found to be responsible for the increase in the limit strains under plane strain and equi-biaxial stretching modes. It is concluded that the enhancement of the strain hardening ability for the plane-strain stretching mode is one of the key factors of high stretchability sheets.
Keywords :
forming limit , R-value , Stretchability , Polycrystalline sheet , Crystal plasticity
Journal title :
International Journal of Mechanical Sciences
Serial Year :
2012
Journal title :
International Journal of Mechanical Sciences
Record number :
1423227
Link To Document :
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