Change in Properties of Pipe Steel with Two-Phase Structure During Low-Temperature Heating and Subsequent Plastic Deformation
- Авторы: Shabalov I.P.1,2, Nastich S.Y.2, Velikodnev V.Y.2, Filippov G.A.3, Matrosov M.Y.3, Yakushev E.V.2, Kalenskii V.S.2
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Учреждения:
- Pipe Producers Association
- Pipe Innovative Technologies
- Bardin Central Research Institute of Ferrous Metallurgy (TsNIIchermet)
- Выпуск: Том 61, № 7-8 (2017)
- Страницы: 686-693
- Раздел: Article
- URL: https://journal-vniispk.ru/0026-0894/article/view/240703
- DOI: https://doi.org/10.1007/s11015-017-0550-5
- ID: 240703
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Аннотация
Results are given for evaluation of the effect of longitudinal deformation on the change of the mechanical properties and steel properties with a two-phase pipe metal structure previously given low-temperature heat treatment simulating application of an anticorrosion coating. A reduction in steel deformation capacity to the minimum permissible level is evaluated by a criterion δun ≥ 3% and σy(Rt0.5)/σu ≤ 0.96–0.98. As a result of testing plates subjected to longitudinal tension with plastic deformation εp = 1.5–7.0%, it is shown that exhaustion of steel deformation capacity is predicted in the transverse direction with preliminary deformation εp ≈ 5%, and in the longitudinal direction with εp ≈ 4–5%. SEM and TEM methods are used to study the effect of steel main structural characteristics whose presence facilitates retention of capacity for steel strain hardening after heating (200–220°C, 5 min): fine islands of twinned martensite, fine cementite particles and abundant precipitation of nanosize particles of Nb and V carbonitrides. During branch pipe bending deformation (εp ≤ 3.0%) in a two-phase steel structure (main components are ferrite and lath martensite) includes transformation of residual austenite from the MA-component in twinned martensite.
Об авторах
I. Shabalov
Pipe Producers Association; Pipe Innovative Technologies
Автор, ответственный за переписку.
Email: info@pipeintech.com
Россия, Moscow; Moscow
S. Nastich
Pipe Innovative Technologies
Email: info@pipeintech.com
Россия, Moscow
V. Velikodnev
Pipe Innovative Technologies
Email: info@pipeintech.com
Россия, Moscow
G. Filippov
Bardin Central Research Institute of Ferrous Metallurgy (TsNIIchermet)
Email: info@pipeintech.com
Россия, Moscow
M. Matrosov
Bardin Central Research Institute of Ferrous Metallurgy (TsNIIchermet)
Email: info@pipeintech.com
Россия, Moscow
E. Yakushev
Pipe Innovative Technologies
Email: info@pipeintech.com
Россия, Moscow
V. Kalenskii
Pipe Innovative Technologies
Email: info@pipeintech.com
Россия, Moscow
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