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Providing the necessary type of metal microstructure of titanium and zirconium pipes.

https://doi.org/10.21122/1683-6065-2022-1-106-112

Abstract

The purpose of this work is – providing deformation conditions for obtaining the required texture of pipes made of Ti-3Al-2.5V alloy based on the choice of rational values of the calibration parameters of the t ool – calibers and mandrels during cold pilger rolling of pipes for the required Q-factor distribution along the deformation cone.

Purpose of work – providing deformation conditions for obtaining the required texture of pipes made of Ti-3Al-2.5V alloy based on the choice of rational values of the calibration parameters of the tool – calibers and mandrels during cold pilger rolling of pipes for the required Q-factor distribution along the deformation cone. The research methods were based on the existing dependence, which describes the influence of the distribution of true compressions along the deformation cone along the wall thickness and along the average diameter, on the distribution of the Q-factor. Calibration calculation and calculation of all deformation parameters of the Cold Rolling Pipe Process was based on a number of existing theoretical and empirical dependencies included in the generally accepted adapted methods for their calculation.

About the Authors

V. A. Tomilo
Belarusian National Technical University
Belarus
Minsk, Belarus, 65, Nezavisimosty ave. 


S. V. Pilipenko
Polotsk State University
Belarus
Novopolotsk, Vitebsk region, Belarus, 29, Blokhin str.


References

1. Pilipenkо S. V., Grigorenko V. U., Kozechko V.A., Bohdanov O. O. A deformation mode in a cold rolling condition to provide the necessary texture of the Ti‑3Al‑2.5V alloy. Naukovyi visnyk natsionalnoho hirnychoho universytetu, 2021, no 1, pp. 78–83, Available at: https://doi.org/10.33271/nvngu/2021–1/078 (Accessed 29 September 2021).

2. Vakhrusheva V. S., Hruzin N. V., Malykhin D. G. Thermal and fast reactor materials features of formation of crystallographic texture and properties in Ti3Al2.5V titanium alloy during tubes manufacture, Problems of atomic science and technology, 2019, no 5(123), pp. 105–112. Available at: https://vant.kipt.kharkov.ua/article/vant_2019_5/article_2019_5_105.pdf (Accessed 30 September 2021).

3. Pilipenko S. V. Analiz vlijanija tehnologicheskih faktorov processa holodnoj prokatki trub na izmenenie raspredelenija Q‑faktora vdol’ konusa deformacii [Analysis of the influence of technological factors of the process of cold rolling of pipes on the change in the distribution of the Q‑factor along the deformation cone]. Izvestija vuzov. Cvetnaja metallurgija = Proceedings of universities. Nonferrous metallurgy, 2019, no. 3, pp. 30–35. https://doi.org/10.17073/0021–3438–2019–3–30–35.

4. Forney C. E., Meredith S. E. Ti-3Al-2,5V Seamless tubing engineering guide. Washington: Sandvik Special Metals Corp, 1990. 144 p.

5. Shevakin Ju. F. Kalibrovka i usilija pri holodnoj prokatke trub [Calibration and forces during cold rolling of pipes]. Moscow, Metallurgizdat Publ., 1963. 269 p.


Review

For citations:


Tomilo V.A., Pilipenko S.V. Providing the necessary type of metal microstructure of titanium and zirconium pipes. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2022;(1):106-112. (In Russ.) https://doi.org/10.21122/1683-6065-2022-1-106-112

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ISSN 1683-6065 (Print)
ISSN 2414-0406 (Online)