Microstructures and properties of low cycle fatigue of electrolytic A356 alloys
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference14 articles.
1. Cyclic deformation behavior of a cast aluminum alloy;Emami;Mater Sci Eng,2009
2. Fatigue behavior of A356/357 aluminum cast alloys. Part II—Effect of microstructural constituents;Wang;J Light Met,2001
3. Effect of microstructure on fatigue life and fracture morphology in an aluminum alloy;De;Scr Mater,2009
4. On cyclic stress–strain behaviour and low cycle fatigue life;Ganesh;Mater Design,2002
5. Self-modification in direct electrolytic Al–Si alloys (DEASA) and its structural inheritance;Wang;Mater Sci Eng,2003
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1. Effect of artificial aging time on torsional fatigue life and cyclic behavior of AA6351 aluminum alloy and evaluation of estimation methods;Fatigue & Fracture of Engineering Materials & Structures;2023-05-16
2. Effects of strontium addition and T6 heat treatment on uniaxial fatigue of A356 aluminum alloy: Fatigue life and cyclic behavior;Fatigue & Fracture of Engineering Materials & Structures;2022-05-10
3. Rotating and bending fatigue behavior of A356 aluminum alloy: Effects of strontium addition and T6 heat treatment;International Journal of Fatigue;2018-09
4. Low Cycle Fatigue Life Prediction of Al–Si–Mg Alloy Using Artificial Neural Network Approach;Transactions of the Indian Institute of Metals;2016-01-05
5. Comparison Between Isothermal and Non-Isothermal Fatigue Behavior in a Cast Aluminum-Silicon-Magnesium Alloy;Strength of Materials;2015-11
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