Engineering Journal: Science and InnovationELECTRONIC SCIENCE AND ENGINEERING PUBLICATION
Certificate of Registration Media number Эл #ФС77-53688 of 17 April 2013. ISSN 2308-6033. DOI 10.18698/2308-6033
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Article

Preliminary chemical treatment affecting the quality of solid-state welded joints of wires in porous mesh materials manufacture

Published: 22.02.2022

Authors: Tretyakov A.F.

Published in issue: #2(122)/2022

DOI: 10.18698/2308-6033-2022-2-2156

Category: Metallurgy and Science of Materials | Chapter: Powder Metallurgy and Composite Materials

Porous mesh materials with an organized structure, stable and reproducible properties are used in the manufacture of filter elements, thermal protection systems, rocket and turbojet engines, and other products with a given set of properties. The interlayer strength of such materials is significantly affected both by the modes of plastic deformation and welding and by the technology of preliminary chemical cleaning of the wire mesh surface. Etching work-pieces in a mixture of inorganic acids and organophosphorus complexones reduces the thickness of oxide films and additionally activates the contact surfaces in the welded joint. The study introduces the etchant solutions for treating VT1-0 titanium and corrosion-resistant 12Kh18N10T steel wires. The solutions increase the strength of the welded joints made by vacuum rolling welding and diffusion welding, compared with similar processes without pretreatment. The study also specifies the modes of technological processes of chemical etching and diffusion welding of 12Kh18N10T steel meshes, which provide maximum interlayer strength.


References
[1] Sinelnikov Yu.I., Tretyakov A.F., Maturin N.I., Kolesnikov A.G., Panov A.D., Makarochkin V.I. Poristye setchatye materialy [Porous net materials]. Moscow, Metallurgiya Publ., 1983, 64 p.
[2] Belov S.V., ed. Poristye pronitsaemye materialy: Spravochnik [Porous permeable materials: handbook]. Moscow, Metallurgiya Publ., 1987, 338 p.
[3] Sparks T., Chase G. Filters and Filtration. Handbook. Elsevier, 2013, 444 p.
[4] Pelevin F.V., Avramov N.I., Orlin S.A., Sintsov A.L. Inzhenerny zhurnal: nauka i innovatsii — Engineering Journal: Science and Innovation, 2013, iss. 4. http://dx.doi.org/10.18698/2308-6033-2013-4-698
[5] Novikov Yu.M. Bolshakov V.A. Bezopasnost zhiznedeyatelnosti — Life Safety, 2015, no. 11, pp. 53–56.
[6] Zeygarnik Yu.A., Polyakov A.F., Stratev V.K. Tretyakov A.F. Preprint OIVT RAN (Preprints of JIHT), 2010, no. 2-502, 64 p.
[7] Xu G., Liu Y., Luo X., Ma J., Li H. Experimental investigation of transpiration cooling for sintered woven wire mesh structures. International Journal of Heat and Mass Transfer, 2015, vol. 91, pp. 898–907.
[8] Tretyakov A.F. Inzhenerny zhurnal: nauka i innovatsii — Engineering Journal: Science and Innovation, 2016, iss. 6. http://dx.doi.org/10.18698/2308-6033-2016-06-1498
[9] Tretyakov A.F. Problemy chernoy metallurgii i materialovedeniya (Problems of ferrous metallurgy and materials science), 2016, no. 1, pp. 5–10.
[10] Tretyakov A.F. Proizvodstva prokata — Rolled Products Manufacturing, 2013, no. 6, pp. 29–34.
[11] Frolov V.V. Travlenie metallov i nemetallicheskikh materialov [Etching of metals and non-metal materials]. Moscow, Mashinostroenie Publ., 1980, 60 p.
[12] Lipkin Ya.N., Devyatkna T.E. Khimicheskaya obrabotka stalnogo prokata [Chemical treatment of rolled steel]. Kiev, Tekhnika Publ., 1980, 133 p.
[13] Frolov V.V., Lozeev G.E., Tretyakov A.F., Kharitonova L.K., Zhukov B.M. Svarochnoe proizvodstvo (Welding production),1985, no. 6, pp. 6–7.
[14] Tretyakov A.F., Sabelnikova T.N., Kharitonova L.K. Remont, vosstanovlenie, modernizatsiya — Repair, Reconditioning, Modernization, 2004, no. 5, pp. 27–29.
[15] Dyatlov N.M., Temkina V.Ya. Kompleksony i kompleksonaty metallov [Metal complexons and complexonates]. Moscow, Khimiya Publ., 1988, 543 p.
[16] Usov V.V., Plotnikov S.A., Kushakovich S.A. Travlenie titana i ego splavov [Etching of titanium and its alloys]. Moscow, Metallurgiya Publ., 1984, 128 p.