Actual Problems in Machine Building 2021 Vol.8 N1-2

Actual Problems in Machine Building. Vol. 8. N 1-2. 2021 Materials Science in Machine Building ____________________________________________________________________ 90 16. Попова М.В., Ружило А.А. Наследственное влияние обработки шихты и расплава на терморасширение заэвтектических силуминов // Литейное производство. – 2000. – № 10. – С. 4–6. 17.Modification of eutectic Si in Al–Si based alloys / J.H. Li, M. Albu, T.H. Ludwig [et al.] // Materials Science Forum. – 2014. – Vol. 794–796. – P. 130–136. – DOI:10.4028/ www.scientific.net/MSF.794-796.130. 18. Effect of Ca level on the formation of silicon phases during solidification of hypereutectic Al-Si alloys / A.-H. Kawther, W. Yun, S. Ian, F. Zhongyun // Materials Science Forum. – 2013. – Vol. 765. – Р. 117–122. – DOI:10.4028/ www.scientific.net/MSF.765.117. 19. Study on dual modification of Al–17%Si alloys by structural heredity / J. Zhang, H. Chen, H. Yu, Y. Jin // Metals. – 2015. – Vol. 5. – P. 1112–1126. – DOI: 10.3390 / met5021112. 20. Haitham R.S. Mechanical properties of the modified Al–12%Si alloy reinforced by ceramic particles // Engineering and Technology Journal. – 2010. – Vol. 28, iss. 2. – P. 289–300. 21. Sarada B.N., Srinivasamurthy P.L., Swetha Microstructural characteristics of Sr and Na modified Al–Mg–Si alloy // International Journal of Innovative Research in Science, Engineering and Technology. – 2013. – Vol. 2, iss. 8. – Р. 3975–3983. 22. Martyushev N.V., Bashev V.S., Zykova A. P. Influence of soaking time of modifier in melt on microstructure of Al-12%Si alloys // IOP Conference Series: Materials Science and Engineering. – 2017. – Vol. 177. – P. 012118. – DOI:10.1088/1757-899X/177/1/012118. 23. Cais J., Weiss V., Svobodova J. Relation between porosity and mechanical properties of Al–Si alloys produced by low-pressure casting // Archives of Foundry Engineering. – 2014 – Vol. 14, iss. 1. – P. 97–102. 24. Structural and mechanical properties of Al–Si alloys obtained by fast cooling of a levitated melt / S.P. Nikanorov, M.P. Volkov, V.N. Gurin [et al.] // Materials Science and Engineering: A. – 2005. – Vol. 390, iss. 1/2. – P. 63–69. – DOI: 10.1016/j.msea.2004.07.037. 25. Srivastava V.C., Mandal R.K., Ojha S.N. Microstructure and mechanical properties of Al– Si alloys produced by spray forming process // Materials Science and Engineering: A. – 2001. – Vol. 304–306. – P. 555–558. 26. Zu F., Li X. Functions and mechanism of modification elements in eutectic solidification of Al–Si alloys: a brief review // China Foundry. – 2014. – Vol. 11, iss. 4. – P. 287–295. – DOI: 10.1016/S0921-5093(00)01514-8. 27. О влиянии водяного пара на формирование свойств высококремнистых Al-сплавов / В.К. Афанасьев, В.В. Герцен, С.В. Долгова [и др.] // Металлургия машиностроения. – 2015. – № 5. – С. 17–21. 28. Золотаревский В.С. Механические свойства металлов. – 3-е изд., перераб. и доп. – М.: МИСИС, 1998. – 400 с. 29. Степнов М.Н., Шаврин А.В. Статистические методы обработки результатов механических испытаний: cправочник. – 2-е изд., перераб. и доп. – М.: Машиностроение, 2005. – 399 с. 30. Everitt B.S., Dunn G. Applied multivariate data analysis. – London: Arnold; New York: Oxford University Press, 2001. – 342 с. 31. Водородная обработка расплава для увеличения деформируемости высококремнистых Al-сплавов / В.К. Афанасьев, В.В. Герцен, Г.Т. Коровин, С.В. Долгова, М.В. Попова // Металлургия машиностроения. – 2015. – № 4. – С. 14–18.

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