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THE PROCESS OF STATIONARY CREEP FLOW OF A85 ALUMINUM, VT1-0 TITANIUM, C2 LEAD

Abstract

Mechanical tests of non-ferrous metals were carried out: aluminum (Al) of the A85 grade, titanium (Ti) of the ВT1-0 grade, lead (Pb) of the C2 grade. The creep flow processes of these metals are investigated. The characteristic curves of the process for each non-ferrous metal are obtained. The creep rates of aluminum, titanium, and lead were analyzed.

Mechanical tests of non-ferrous metals were carried out: aluminum (Al) of the A85 grade, titanium (Ti) of the ВT1-0 grade, lead (Pb) of the C2 grade. The creep flow processes of these metals are investigated. The characteristic curves of the process for each non-ferrous metal are obtained. The creep rates of aluminum, titanium, and lead were analyzed.

Mechanical tests of non-ferrous metals were carried out: aluminum (Al) of the A85 grade, titanium (Ti) of the ВT1-0 grade, lead (Pb) of the C2 grade. The creep flow processes of these metals are investigated. The characteristic curves of the process for each non-ferrous metal are obtained. The creep rates of aluminum, titanium, and lead were analyzed.

Mechanical tests of non-ferrous metals were carried out: aluminum (Al) of the A85 grade, titanium (Ti) of the ВT1-0 grade, lead (Pb) of the C2 grade. The creep flow processes of these metals are investigated. The characteristic curves of the process for each non-ferrous metal are obtained. The creep rates of aluminum, titanium, and lead were analyzed.

About the Authors

Anna A. Serebryakova
Siberian State Industrial University
Russian Federation

Postgraduate of the Chair of Science named after V.M. Finkel’



Dmitry V. Zagulyaev
Siberian State Industrial University

Cand. Sci. (Eng.), Assist. Prof. of the Chair of Science named after V.M. Finkel’



Vitaly V. Shlyarov
Siberian State Industrial University

Postgraduate of the Chair of Science named after V.M. Finkel’



References

1. Galevskii G.V., Rudneva V.V. Production of non-ferrous metals. Moscow: Flinta, 2017, 258 p. (In Russ.).

2. Beletskii V.M., Krivov G.A. Aluminum alloys (composition, properties, technology, application). Guide. KOMINTEKh, 2005. (In Russ.).

3. Tarasov A.V. Titanium metallurgy. Moscow: 2003, 328 p. (In Russ.).

4. Romanteev Yu.P., Bystrov V.P. Metallurgy of heavy non-ferrous metals. Lead. Zinc. Cadmi-um. Moscow: izd. MISIS, 2010, 374 p. (In Russ.).

5. Koveshnikov S.S., Balakhnina E.E. The phe-nomenon of creep and relaxation. In: Collec-tion of scientific papers based on the materials of the II International Scientific and Practical Confe-rence. Smolensk: Izd-vo MNITs «Naukosfera», 2019, pp. 54–57. (In Russ.).

6. Konovalov S.V., Danilov V.I., Zuev L.B. etc. Automated installation for recording and analyzing the creep of metals and alloys. Zavodskaya laboratoriya. Diagnostika materialov. 2007, vol. 73, pp. 64– 66. (In Russ.).


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Serebryakova A., Zagulyaev D., Shlyarov V. THE PROCESS OF STATIONARY CREEP FLOW OF A85 ALUMINUM, VT1-0 TITANIUM, C2 LEAD. Bulletin of the Siberian State Industrial University. 2021;(3):27-30. (In Russ.)

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ISSN 2304 - 4497 (Print)
ISSN 2307-1710 (Online)