Title of article :
Experimental characterization and mechanical modeling of creep induced rafting in superalloys
Author/Authors :
Fedelich، نويسنده , , Bernard and Epishin، نويسنده , , Alexander and Link، نويسنده , , Thomas and Klingelhِffer، نويسنده , , Hellmuth and Künecke، نويسنده , , Georgia and Portella، نويسنده , , Pedro Dolabella، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Abstract :
A constitutive model has been developed for the high temperature mechanical behavior of single crystal superalloys, including rafting and its consequences. The flow stress depends on the γ channel width via the Orowan stress. An evolution equation for channel widening during high temperature straining has been derived and calibrated with measurements. Therein, rafting is assumed to be driven by the relaxation of internal stresses. The model is able to represent the mechanical softening at high stresses consecutive to rafting. The model has been applied to simulate rafting during uniaxial creep in several crystal orientations, in notched specimens as well as in cyclically loaded specimens.
Keywords :
Single crystal , rafting , Creep , constitutive law , Superalloys , viscoplasticity
Journal title :
Computational Materials Science
Journal title :
Computational Materials Science