[1] Elliott R. Cast iron technology. London: Butterworths; 1988.
[2] Yamagata H. 5 - The camshaft. In: Yamagata HBT-TS and T of M in AE, editor., Woodhead Publishing; 2005, p. 110–31. https://doi.org/https://doi.org/10.1533/9781845690854.110.
[3] Di Cocco V, Iacoviello F. Ductile cast irons: Microstructure influence on the damaging micromechanisms in overloaded fatigue cracks. Eng Fail Anal 2017;82:340–9. https://doi.org/https://doi.org/10.1016/j.engfailanal.2017.06.039.
[4] Gonzaga RA. Influence of ferrite and pearlite content on mechanical properties of ductile cast irons. Mater Sci Eng A 2013;567:1–8. https://doi.org/https://doi.org/10.1016/j.msea.2012.12.089.
[5] Wang W, Jing T, Gao Y, Qiao G, Zhao X. Properties of a gray cast iron with oriented graphite flakes. J Mater Process Technol 2007;182:593–7. https://doi.org/https://doi.org/10.1016/j.jmatprotec.2006.09.028.
[6] Iacoviello F, Cocco V Di. Influence of the graphite elements morphology on the fatigue crack propagation mechanisms in a ferritic ductile cast iron. Eng Fract Mech 2016;167:248–58. https://doi.org/https://doi.org/10.1016/j.engfracmech.2016.03.041.
[7] Cavallini M, Di Bartolomeo O, Iacoviello F. Fatigue crack propagation damaging micromechanisms in ductile cast irons. Eng Fract Mech 2008;75:694–704. https://doi.org/https://doi.org/10.1016/j.engfracmech.2007.02.002.
[8] Nassef GA, Elkhatib A, Yakout M. Analysis of a failed rocker arm shaft of a passenger car engine. Case Stud Eng Fail Anal 2016;5:10–4.
[9] Bayrakceken H, Ucun I, Tasgetiren S. Fracture analysis of a camshaft made from nodular cast iron. Eng Fail Anal 2006;13:1240–5.
[10] Wang G, Taylor D, Bouquin B, Devlukia J, Ciepalowicz A. Prediction of fatigue failure in a camshaft using the crack modelling method. Eng Fail Anal 2000;7:189–97.
[11] ASTM E415 - 17. Standard Test Method for Analysis of Carbon and Low-Alloy Steel by Spark Atomic Emission Spectrometry. Philadelphia: ASTM International; 2017. https://doi.org/10.1520/E0415-17.
[12] ASTM E1086 - 14. Standard Test Method for Analysis of Austenitic Stainless Steel by Spark Atomic Emission Spectrometry. West Conshohocken, PA: ASTM International; 2014. https://doi.org/10.1520/E1086-14.
[13] ASTM E384 - 17. Standard Test Method for Microindentation Hardness of Materials. West Conshohocken, PA: ASTM International; 2017. https://doi.org/10.1520/E0384-17.
[14] ASTM A247 −19. Standard Test Method for Evaluating the Microstructure of Graphite in Iron Castings1. West Conshohocken, Pennsylvania: ASTM International; 2019.
[15] Goodrich GM. Cast iron microstructure anomalies and their causes. AFS Trans 1997;105:669–83.
[16] Leach PW, Borland DW. The unlubricated wear of flake graphite cast iron. Wear 1983;85:257–66.
[17] Avcı A, Ilkaya N, Şimşir M, Akdemir A. Mechanical and microstructural properties of low-carbon steel-plate-reinforced gray cast iron. J Mater Process Technol 2009;209:1410–6.
[18] American Society for Metals. ASM Handbook. Volume 12, Fractography. American Society for Metals., Metals Park, Ohio, 1987; 1987.
[19] Aliakbari K, Akbarpour Mamaghani T. Analysis of fatigue crack growth in cylinder head bolts of gasoline engine based on experimental data. J Brazilian Soc Mech Sci Eng 2020;42. https://doi.org/10.1007/s40430-020-02326-1.
[20] Infante V, Silva JM, Silvestre MAR, Baptista R. Failure of a crankshaft of an aeroengine: A contribution for an accident investigation. Eng Fail Anal 2013;35:286–93.
[21] Aliakbari K. Failure Analysis of Ductile Iron Crankshaft in Four-Cylinder Diesel Engine. Int J Met 2021. https://doi.org/10.1007/s40962-020-00550-y.
[22] Fonte M, Li B, Reis L, Freitas M. Crankshaft failure analysis of a motor vehicle. Eng Fail Anal 2013;35:147–52. https://doi.org/https://doi.org/10.1016/j.engfailanal.2013.01.016.
[23] Aliakbari K. Experimental and numerical analysis of fatigue crack growth in carbonized bolts of gasoline engine cylinder head. J Mech Eng 2022;51:423–32. (in Persian)
[24] Farrahi GH, Hassani Gangaraj SM, Abolhassani S, Hemmati F, Sakhaei M. Failure analysis of a four cylinder diesel engine crankshaft made from nodular cast iron. J Engine Res 2011;22:21–8.
[25] Abreu M, Sundberg J, Elfsberg J, Jonsson S. Morphology and mechanisms of cavitation damage on lamellar gray iron surfaces. Wear 2020;456:203324.
[26] Ferro P, Borsato T, Bonollo F, Padovan S. A rapid approach to estimate the mechanical properties of grey cast iron castings. Acta Metall Slovaca 2018;24:213–22.
[27] Zhao X, Wang J, Jing T. Gray cast iron with directional graphite flakes produced by cylinder covered compression process. J Iron Steel Res Int 2007;14:52–5.
[28] Fan L, Hu HB, Tang XS, He JJ, Chen W. Influence of Microscopic Effects on the Static Tensile Strength of Gray Cast Iron HT200 Specimens. Adv Mater Sci Eng 2021;2021.
[29] Hejma P, Svoboda M, Kampo J, Soukup J. Analytic analysis of a cam mechanism. Procedia Eng 2017;177:3–10.
[30] Torshizian MR, Aliakbari K, Ghonchegi M. Failure Analysis of Ductile Iron Differential Housing Spline in 4WD Passenger Car. Int J Met 2021;15:587–601. https://doi.org/10.1007/s40962-020-00487-2.