Estimation of Low-Cycle Fatigue Lifetime in Aluminum-Silicon-Magnesium Alloy of Cylinder Heads based on Striation Marks as Failure Features of Fracture Surfaces and Paris Crack Growth Law

Author:

Azadi MohammadORCID,Samiee Mahdi,Mohammadi Esfarjani Sattar

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality,General Materials Science

Reference36 articles.

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2. J.G. Kaufman, Fire resistance of aluminum and aluminum alloys and measuring the effects of fire exposure on the properties of aluminum alloys; Chapter 1: Properties and characteristics of aluminum and aluminum alloys. (ASM International, USA, 2016)

3. Mohammadi Esfarjani, S., Salehi M., Damage identification in aluminum T3-2024 alloy via cross correlation functions, The 15th International Conference of Iranian Aerospace, Iran, 2016, http://research.iaun.ac.ir/pd/msalehi/pdfs/PaperC_8626.pdf

4. S. Mohammadi Esfarjani, M. Salehi, Detection of metallic impurities in alloys using the IPV and AMV methods. Romanian J. Acoustics Vibration, XII. I(2), 131–137 (2016)

5. G.H. Farrahi, M. Ghodrati, M. Azadi, M. Rezvani Rad, Stress-strain time-dependent behavior of A356.0 aluminum alloy subjected to cyclic thermal and mechanical loadings. Mech. Time-Dependent Mater. 18, 475–491 (2014). https://doi.org/10.1007/s11043-014-9238-4

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