Title of article :
Mechanism-based thermomechanical fatigue life prediction of cast iron. Part I: Models
Author/Authors :
T. Seifert، نويسنده , , C. H. Riedel and C. A. Tan، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Pages :
10
From page :
1358
To page :
1367
Abstract :
In the present paper, mechanism-based models are developed to describe the time and temperature dependent cyclic plasticity and damage of cast iron materials. The cyclic plasticity model is a combination of a viscoplastic model with kinematic hardening and a porous plasticity model to take the effect of graphite inclusions into account. Thus, the model can describe creep, relaxation and the Bauschinger-effect as well as the tension–compression asymmetry often observed for cast iron. The model for thermomechanical fatigue life prediction is based on a crack growth law, which assumes that the crack growth per cycle, da/dN, is correlated with the cyclic crack-tip opening displacement, image. The effect of the graphite inclusions on crack growth is incorporated with a scalar factor into the crack growth law. Both models can describe the essential phenomena which are relevant for cast iron materials.
Keywords :
Life prediction , Plasticity , Fatigue crack growth , Cast iron , Thermomechanical fatigue
Journal title :
INTERNATIONAL JOURNAL OF FATIGUE
Serial Year :
2010
Journal title :
INTERNATIONAL JOURNAL OF FATIGUE
Record number :
1162133
Link To Document :
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