Investigation of the Solid-Phase Joint of VT-14 Titanium Alloy with 12KH18N10T Stainless Steel Obtained by Diffusion Welding through Intermediate Layers

This paper describes the technological process of manufacturing bimetallic billets, which are capable of operating at high pressures, high temperatures, and in corrosive environments, from VT-14 titanium alloy and 12KH18N10T stainless steel. To obtain a joint with a strength of at least 350 MPa, the...

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Veröffentlicht in:Metals (Basel ) 2021-08, Vol.11 (8), p.1325
Hauptverfasser: Lavrishchev, Alexander Viktorovich, Prokopev, Sergei Viktorovich, Tynchenko, Vadim Sergeevich, Myrugin, Aleksander Vladimirovich, Kukartsev, Vladislav Viktorovich, Bashmur, Kirill Aleksandrovich, Sergienko, Roman Borisovich, Tynchenko, Valeriya Valerievna, Lysyannikov, Aleksey Vasilyevich
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Sprache:eng
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Zusammenfassung:This paper describes the technological process of manufacturing bimetallic billets, which are capable of operating at high pressures, high temperatures, and in corrosive environments, from VT-14 titanium alloy and 12KH18N10T stainless steel. To obtain a joint with a strength of at least 350 MPa, the diffusion welding method was used, which makes it possible to obtain equal-strength joints using dissimilar materials. The connection of VT-14 titanium alloy with 12KH18N10T stainless steel after obtaining bimetallic billets with the desired properties was investigated. We studied the welded VT-14 and 12KH18N10T joint obtained by diffusion welding through intermediate spacers of niobium Nb (NbStrip-1) and copper Cu (M1). On the basis of our investigations, the optimum welding modes are as follows: welding temperature: 1137 K; welding pressure: 18 MPa; welding time: 1200 s. Mechanical tests, tightness tests, and metallographic, factographic, and micro-X-ray structural studies were carried out, the results of which indicate the effectiveness of the proposed approach.
ISSN:2075-4701
2075-4701
DOI:10.3390/met11081325