Title of article
Stochastic correlated simulation: an extension of the cumulant method to include time-dependent energy sources
Author/Authors
Hoese، Alejandro نويسنده , , Garces، Francisco نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 1999
Pages
-12
From page
13
To page
0
Abstract
This paper describes a fatigue life prediction model accounting for high temperature applications of metallic materials. The formulation of the model is for general anisolropy and mulliaxiality of loading. This phenomenological model distinguishes between an initiation phase and a propagation phase, and takes into account oxidation and creep effects on fatigue life. An application of the model is given for a coaled single crystal superaltoy for turbine blades. Model predictions are in good agreement with a large set of experimental data for mechanical loading including thermomechanical fatigue tests. A new experimental device, designed lo produce a thermal gradient in the thickness of thin walled specimens, is also presented. This device has been used with polycrystalline and monocrystalline superalloys. Corresponding life predictions, performed by using recent anisolropic models, are presented for the single crystal superalloy.
Keywords
Modeling of energy systems , Generation system reliability , Alternative energy sources
Journal title
INTERNATIONAL JOURNAL OF ELECTRLCAL POWER & ENERGY
Serial Year
1999
Journal title
INTERNATIONAL JOURNAL OF ELECTRLCAL POWER & ENERGY
Record number
9079
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