Failure Prediction during Uniaxial Superplastic Tension Using Finite Element Method
Publish place: The Iranian Journal of Materials Forming، Vol: 1، Issue: 1
Publish Year: 1393
Type: Journal paper
Language: English
View: 471
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Document National Code:
JR_IJMF-1-1_005
Index date: 28 December 2016
Failure Prediction during Uniaxial Superplastic Tension Using Finite Element Method abstract
Superplastic materials show a very high ductility. This is due to both peculiar process conditions and material intrinsic characteristics. However, a number of superplastic materials are subjected to cavitation during superplastic deformation. Evidently, extensive cavitation imposes significant limitations on their commercial application. The deformation and failure of superplastic sheet metals are a result of a combination and interaction process between tensile instability and internal cavity evolution. Thus, this study carried out modeling of the uniaxial superplastic tensile test using a code based on the finite element method, that used a microstructure based constitutive model and a deformation instability criterion. These models are the criterion account for both geometrical instabilities and cavitation. It is observed that the proposed approach captures the characteristics of deformation and failure during superplastic forming. In addition, the effects of the cavitation on the superplastic forming process were investigated. The results clearly indicated the importance of accounting for these features to prevent premature failure.
Failure Prediction during Uniaxial Superplastic Tension Using Finite Element Method Keywords:
Failure Prediction during Uniaxial Superplastic Tension Using Finite Element Method authors
M.E Hosseini
Department of Mechanical Engineering, Babol Noshirvani University of Technology, Babol, Iran
S.J Hosseinipour
Department of Mechanical Engineering, Babol Noshirvani University of Technology, Babol, Iran
M.B Jooybari
Department of Mechanical Engineering, Babol Noshirvani University of Technology, Babol, Iran