Morphology of technological discontinuities in the structure of additive manufacturing products as a cause of anisotropy of their physical and mechanical properties
Čebyševskij sbornik, Tome 24 (2023) no. 5, pp. 343-356.

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Based on the developed method for determining the boundaries of the stress-strain state (VAT) regions and the coordinates of plasticity zones developing in the vicinity of pores in loaded powder products of SLM technology, a hypothesis is proposed and calculations are carried out confirming the influence of pore morphology in powder additive alloys on the anisotropy of their physico-mechanical properties. The influence of the external tensile stress and the possible pressure of gases in the pores is taken into account. The calculation made it possible to clarify the place of origin, shape and coordinates of the boundary of the development of the plasticity zone (cracking) in the vicinity of a spherical pore, depending on the ratio of external stress and gas pressure in the pores. The obtained expressions for estimating the size of the plasticity zone can be used to clarify the parameters of the kinetics of the destruction processes of products made of porous steels manufactured using SLM technology under conditions of their stress corrosion.
Keywords: powder alloys, SLM technology, tensile, anisotropy, pore, stress field, force lines, functions of complex variables, stress tensor.
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A. N. Chukanov; A. A. Yakovenko; E. V. Tsoy. Morphology of technological discontinuities in the structure of additive manufacturing products as a cause of anisotropy of their physical and mechanical properties. Čebyševskij sbornik, Tome 24 (2023) no. 5, pp. 343-356. http://geodesic.mathdoc.fr/item/CHEB_2023_24_5_a26/

[1] Popovich A.A., Sufiyarov V.Sh., Borisov E.V., Polozov I.A., Masailo D.V., Grigoriev A.V., “Anisotropy of mechanical properties of products manufactured by selective laser melting of powder materials”, News of universities. Powder metallurgy and functional coatings, 2016, no. 3, 4–11

[2] Simonelli M., Tse Y.Y., Tuck C., “Effect of the build orientation on the Mechanical Properties and Fracture Modes of SLM Ti-6Al-4V”, Mater. Sci. Eng. A, 616 (2014), 1–11 | DOI

[3] Vroncken B., Thijs L., Kruth J.P., Van Hambeeck J., “Microstructure and Mechanical Properties of novel $\beta$ titanium metallic composite by selective laser melting”, Acta Mater., 68 (2014), 150–158 | DOI

[4] Frazier W.E., “Metal additive manufacturing: A review”, J. Mater. Eng. Perform., 23:6 (2014), 1917–1928 | DOI

[5] Wu M.W., Lai P.H., Chen J.K., “Anisotropy in the impact toughness of selective laser melted Ti-6Al-4V alloy”, Mater.Sci. Eng.: A, 650 (2016), 295–299 | DOI

[6] Chukanov A.N., “Anisotropy of deformation in layered laser synthesis of elements”, Promising technologies and materials, Mater. All-Russian. NPC with international studies (Sevastopol, 14-16.10.2020), Scientific publishing house, SevSU, Sevastopol, 2020, 169–174, 222 pp.

[7] Chukanov A.N., “Influence of orientation of products of additive technologies on their deformation anisotropy”, Scientific readings named after chl.-corr. RAS I.A. Odinga “Mechanical properties of modern structural materials”, Sat. mater. (Moscow. September 17-18, 2020), IMET RAS, M., 2020, 79–80, 194 pp.

[8] Chukanov A.N., “Anisotropy of physico-mechanical properties in layered grain synthesis”, ISTK “Modern problems and directions of development of metallurgy and heat treatment of metals and alloys”, dedicated. 150 years old. since the day of birth. Academician A.A. Baykova, Collection of scientific papers. articles (09/18/2020)/ South-West State University), South Ural State University, Kursk, 2020, 244–247, 271 pp.

[9] Chukanov A.N., Tereshin V.A., Tsoi E.V., “Properties of products obtained by selective laser synthesis. 2. Products of cellular structures”, XIII-I MNTK "Modern automotive materials and technologies, SAMIT-2021, Collection of articles (11/20/2021), Yugo-Zap. gos. un-t, Kursk, 2021, 338–340

[10] Chukanov A.N., Tereshin V.A., Tsoi E.V., “Properties of products obtained by selective laser synthesis. 1. “Solid” products”, XIII-I MNTK "Modern automotive materials and technologies, SAMIT-2021, Collection of articles (11/20/2021), Yugo-Zap. gos. un-t, Kursk, 2021, 341–346

[11] Kolachev B. A., Hydrogen brittleness of metals, Metallurgy, M., 1985, 217 pp.

[12] Sergeev N.N., Chukanov A.N., Baranov V.P., Yakovenko A.A., “Development of Damage and Decarburization of High-Strength Low-Alloy Steels Under Hydrogen Embrittlement”, Metal Science and Heat Treatment, 57:1-2 (2015), 63–68 | DOI

[13] Vladimirov V.I., The physical nature of the destruction of metals, Metallurgy, M., 1984, 280 pp.

[14] Nott J. F., Fundamentals of fracture mechanics, Metallurgy, M., 1978, 256 pp.

[15] Landau L.D., Lifshits E.M., Theoretical physics, In 10 vols, textbook, v. VII, Theory of elasticity, Nauka, Gl. ed. of physical literature, M., 1982, 248 pp.

[16] Sveshnikov A.G., Tikhonov A.N., Theory of functions of a complex variable, Fizmatlit, M., 2010, 336 pp. | MR

[17] Chukanov A.N., Tereshin V.A., Gvozdev A.E., Sergeev A.N., Yakovenko A.A., Khonelidze D.M., Shirokiy I.F., “Modeling of plasticity zones in gas-filled pores in cast and powder steels under stress corrosion conditions”, Bulletin of the Tambov University. Series: Natural and Technical Sciences, 23:122 (2018), 314–319 | DOI

[18] Sergeev N.N., Tereshin V.A., Chukanov A.N., Kolmakov A.G., Yakovenko A.A., Sergeev A.N., Leontiev I.M., Khonelidze D.M., Gvozdev A.E., “Formation of plastic zones near spherical cavity in hardened low-carbon steels under conditions of hydrogen stress corrosion”, Inorganic Materials: Applied Research, 9:4 (2018), 663–669 | DOI

[19] Chukanov A.N., Tereshin V.A., Tsoi E.V., “Modeling of the evolution of micro-continuities in stressed metallic media of various production”, Mater. XXI MK, dedicated. the year of mathematics (Tula, 2022), 371–375

[20] Chukanov A.N., Tereshin V.A., Tsoi E.V., “Mathematical modeling of stress fields in stress-corrosion defects”, Modern materials, technique and technologies, 6(39) (2021), 65–70

[21] Chukanov A.N., Tereshin V.A., Tsoi E.V., “The use of vector functions to describe VAT in metallic media with defects”, Algebra, number theory and discrete geometry: modern problems, applications and problems of history, Mater. XIX MK dedicated. the 200-th anniversary of the birth. Academician P. L. Chebyshev (Tula, 2021), 395–399

[22] Chukanov A.N., Tereshin V.A., “Modeling of the stress-strain state of a material based on the concept of force lines”, Algebra, number theory and discrete geometry: modern problems, applications and problems of history, Mater. XVIII MK dedicated. to the centenary of the birth of Prof. B.M. Bredikhin, V.I. Nechaev and S.B. Stechkin (Tula, 2020), 2020, 459–463

[23] Chukanov A.N., Tereshin V.A., Gvozdev A.E., Kutepov S.N., Sergeev A.N., Ageev E.V., Yakovenko A.A., “Morphology of volumetric plasticity zones in gas-filled pores in cast and powder steels under stress corrosion conditions”, From the Southwestern State University, 23:5 (2019), 35–52 | DOI