TY - JOUR
T1 - Influence of structural parameters and transition interface on the fracture property of Al2O3/Mo laminated composites
AU - Song, Junjie
AU - Zhang, Yongsheng
AU - Fang, Yuan
AU - Fan, Hengzhong
AU - Hu, Litian
AU - Qu, Jianmin
N1 - Publisher Copyright:
© 2014 Elsevier Ltd.
PY - 2015/5/1
Y1 - 2015/5/1
N2 - This paper proposes a set of new structural parameters to quantify the fracture behavior of Al2O3/Mo laminated composites. The relationships between the relevant structural parameters and mechanical properties of the materials were analyzed. Results show that the variation of structural parameters causes significant changes in the effective proportion of Mo phase and the contribution to the crack propagation energy of the materials, thus realizing the optimization of the materials. Based on these analyses, we formulated a set of principles and theoretical models to design Al2O3/Mo laminated composites. Furthermore, the performance of the Al2O3/Mo laminated composites can be improved further by introducing a transition interface with appropriate Mo content. We demonstrated that the toughness and work of fracture of Al2O3/Mo laminated composites could reach 7.3MPam1/2 and 8757Jm-2, respectively.
AB - This paper proposes a set of new structural parameters to quantify the fracture behavior of Al2O3/Mo laminated composites. The relationships between the relevant structural parameters and mechanical properties of the materials were analyzed. Results show that the variation of structural parameters causes significant changes in the effective proportion of Mo phase and the contribution to the crack propagation energy of the materials, thus realizing the optimization of the materials. Based on these analyses, we formulated a set of principles and theoretical models to design Al2O3/Mo laminated composites. Furthermore, the performance of the Al2O3/Mo laminated composites can be improved further by introducing a transition interface with appropriate Mo content. We demonstrated that the toughness and work of fracture of Al2O3/Mo laminated composites could reach 7.3MPam1/2 and 8757Jm-2, respectively.
KW - Alumina (α-AlO)
KW - Fracture
KW - Layered structures
KW - Structural parameters
KW - Transition interface
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U2 - 10.1016/j.jeurceramsoc.2014.11.004
DO - 10.1016/j.jeurceramsoc.2014.11.004
M3 - Article
AN - SCOPUS:84920718978
SN - 0955-2219
VL - 35
SP - 1581
EP - 1591
JO - Journal of the European Ceramic Society
JF - Journal of the European Ceramic Society
IS - 5
ER -