Title of article :
J resistance behavior in functionally graded materials using cohesive zone and modified boundary layer models
Author/Authors :
DO-JUN SHIM، نويسنده , , GLAUCIO H. PAULINO? and ROBERT H. DODDS Jr، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
27
From page :
91
To page :
117
Abstract :
This paper describes elastic-plastic crack growth resistance simulation in a ceramic/metal functionally graded material (FGM) under mode I loading conditions using cohesive zone and modified boundary layer (MBL) models. For this purpose, we first explore the applicability of two existing, phenomenological cohesive zone models for FGMs. Based on these investigations, we propose a new cohesive zone model. Then, we perform crack growth simulations for TiB/Ti FGM SE(B) and SE(T) specimens using the three cohesive zone models mentioned above. The crack growth resistance of the FGM is characterized by the J -integral. These results show that the two existing cohesive zone models overestimate the actual J value, whereas the model proposed in the present study closely captures the actual fracture and crack growth behaviors of the FGM. Finally, the cohesive zone models are employed in conjunction with the MBL model. The two existing cohesive zone models fail to produce the desired K-T stress field for the MBL model. On the other hand, the proposed cohesive zone model yields the desired K-T stress field for the MBL model, and thus yields JR curves that match the ones obtained from the SE(B) and SE(T) specimens. These results verify the application of the MBL model to simulate crack growth resistance in FGMs
Keywords :
3-D finite element analysis , Cohesive zone model , crack growth resistance curve , elastic-plastic crack growth , Functionally graded material (FGM) , J -integral , modified boundary layermode
Journal title :
International Journal of Fracture
Serial Year :
2006
Journal title :
International Journal of Fracture
Record number :
828382
Link To Document :
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