Journal of Inorganic Materials

• Research Paper • Previous Articles     Next Articles

Numerical Approach to Toughening Design of Laminated Ceramic Composites

CHANG Xu1,2; TANG Chun-An1,2; ZHANG Hou-Quan1,2; ZHANG Yong-Bin1,2; ZHANG Ya-Fang2   

  1. 1. Research. Center for Numerical Test on Material Failure; Dalian University; Dalian 116622; China; 2.Research Lab for Numerical Test on Material Failure; Northeastern University; Shenyang 110004; China
  • Received:2004-03-23 Revised:2004-06-28 Published:2005-03-20 Online:2005-03-20

Abstract: Based on the multilayer beam model, with a view to the heterogeneity of the material, this paper focused
on the fracture behavior of the laminated ceramic composites by the finite-element method. In three-point bending condition, the crack propagation process that
the crack penetrates the hard layers and expands along the interfaces of soft layers was presented. The primary mechanism
that the soft layers decoy the crack expanding along the weak interfaces to absorb energy was affirmed. The toughness and strength changes
as a function of the parameters such as thickness ratio, heterogeneity index m, etc. were analyzed by the FEM numerical simulation.

Key words: laminated ceramic composites, toughening, FEM, numerical simulation

CLC Number: