TY - JOUR
T1 - The grain size and porosity dependent constitutive modeling for nanocrystalline ceramics with small plastic deformation
AU - Zhou, Jianqiu
AU - Li, Yuanling
PY - 2007
Y1 - 2007
N2 - In order to understand the grain size and porosity dependent mechanical behavior of porous, multi-phase nanocrystalline ceramics, each phase is treated as a mixture of grain interior and grain boundary, and pores are taken as a single phase. In conjunction with the secant-modulus approach and iso-strain assumption, Budiansky's self-consistent method is extended to build a constitutive model for nanocrystalline ceramics with small plastic deformation. Based on the developed model, the predicted yield strength (0-0.2) values of porous, multi-phase nanocrystalline ceramics with different grain size and porosity are compared with experimental data in the literature, the comparison shows that the predictions are in good agreement with the published data. This suggests that the developed model is capable of describing the grain size and porosity dependent mechanical behaviors of nanocrystalline ceramics with small plastic deformation.
AB - In order to understand the grain size and porosity dependent mechanical behavior of porous, multi-phase nanocrystalline ceramics, each phase is treated as a mixture of grain interior and grain boundary, and pores are taken as a single phase. In conjunction with the secant-modulus approach and iso-strain assumption, Budiansky's self-consistent method is extended to build a constitutive model for nanocrystalline ceramics with small plastic deformation. Based on the developed model, the predicted yield strength (0-0.2) values of porous, multi-phase nanocrystalline ceramics with different grain size and porosity are compared with experimental data in the literature, the comparison shows that the predictions are in good agreement with the published data. This suggests that the developed model is capable of describing the grain size and porosity dependent mechanical behaviors of nanocrystalline ceramics with small plastic deformation.
KW - Constitutive modeling
KW - Grain size
KW - Nanocrystalline ceramics
KW - Porosity
KW - Yield stress
UR - http://www.scopus.com/inward/record.url?scp=36048942017&partnerID=8YFLogxK
U2 - 10.4028/0-87849-456-1.50
DO - 10.4028/0-87849-456-1.50
M3 - 会议文章
AN - SCOPUS:36048942017
SN - 1013-9826
VL - 353-358
SP - 50
EP - 53
JO - Key Engineering Materials
JF - Key Engineering Materials
IS - PART 1
T2 - Asian Pacific Conference for Fracture and Strength (APCFS'06)
Y2 - 22 November 2006 through 25 November 2006
ER -