A fast and increment independent technique for continuous calculation of the strain energy dissipated during cyclic loading applied to magnesium alloy AZ31

Author:

Šolinc Urša,Klemenc JernejORCID,Nagode MarkoORCID,Šeruga Domen

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,Modelling and Simulation

Reference50 articles.

1. A phenomenological stress-strain model for wrought magnesium alloys under elastoplastic strain-controlled variable amplitude loading;Dallmeier;Int J Fatigue,2015

2. Uniaxial cyclic deformation and fatigue behavior of AM50 magnesium alloy sheet metals under symmetric and asymmetric loadings;Dallmeier;Mater Des,2015

3. Fatigue Damage, Crack Growth and Life Prediction;Ellyin,1997

4. A new energy based isothermal and thermo mechanical fatigue lifetime prediction model for aluminium silicon magnesium alloy;Farrahi;Fatigue Fract Eng Matr Struct,2013

5. Issues that influence magnesium’s use in the automotive industry;Gerald;Mater Sci Forum,2003

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