Szczegóły publikacji

Opis bibliograficzny

Bimodal microalloyed steel structure under quasi-static and dynamic loading / Remigiusz BŁONIARZ, Marcin KWIECIEŃ, Paulina LISIECKA-GRACA, Janusz MAJTA // W: Contemporary perspective on science, technology and research, Vol. 1 / ed. Raad Yahya Qassim. — India ; United Kingdom : B P International, 2023. — ISBN: 978-81-968135-4-3; e-ISBN: 978-81-968135-8-1. — S. 56–73. — Bibliogr. s. 68–70, Abstr.


Autorzy (4)


Słowa kluczowe

UFGplastometricultrafine-grainedpropagationmicroalloyed steel

Dane bibliometryczne

ID BaDAP151283
Data dodania do BaDAP2024-01-22
DOI10.9734/bpi/cpstr/v1/11363F
Rok publikacji2023
Typ publikacjifragment książki
Otwarty dostęptak

Abstract

The ultrafine-grained (UFG) and bimodal structures produced by an advanced thermomechanical processing, namely rolling, in microalloyed steel were subjected to microstructural and plastometric analyses under conditions of quasistatic and dynamic loading. Based on dilatometric studies, thermomechanical processes for laboratory rolling were chosen. This allowed, at a constant total strain value, to obtain microstructures with different compositions and examined to determine how the thermomechanical parameters and microalloying elements promote refinement and compositions of the final microstructure. Applied schedules of the thermomechanical processing allow the production of UltrafineGrained (UFG) microstructures with high inhomogeneity in the final products. Several characteristic samples were selected as a particularly complex and unexpected representation of the obtained microstructures for further research. Plastometric tests were conducted, encompassing compression and tension tests under quasi-static loading with digital image correlation (DIC) analysis. Additionally, dynamic loading was applied using a drop hammer and a Split Hopkinson Pressure Bar (SHPB) at strain rates ranging from 800 to 2000 s-1. Samples deformed under such conditions were subjected to microstructural analysis and mechanical properties measurements. It was observed that the use of different combinations of TMP parameters can result in the formation of specific microstructures, which, in turn, are the source of an attractive mechanical response under dynamic loading conditions. This opens up new possible areas of application for such common structural materials as microalloyed steels. The substantial complexity of the phenomena, arising from the microstructure's response to dynamic loadings, poses formidable challenges for the theoretical development of models describing the plastic deformation of UFG and bimodal structures. The bimodal structure was observed to delay the nucleation of stress concentrations at the boundaries between polygonal ferrite and bainite or martensite. This delay can also substantially reduce the propagation of cracks induced by dynamic loading, with an order of magnitude decrease higher than that observed in homogeneous structures. The presented findings may provide insights for designing impact-tolerant gradient structures with excellent dynamic properties.

Publikacje, które mogą Cię zainteresować

artykuł
On the microstructural characteristics of UFG microalloyed steel influencing the mechanical behavior under dynamic loading / MAJTA Janusz, BŁONIARZ Remigiusz, KWIECIEŃ Marcin, MUSZKA Krzysztof // Materials Science Forum ; ISSN 0255-5476. — Tytuł poprz.: Diffusion and Defect Monograph Series. — 2018 — vol. 941, s. 39–45. — Bibliogr. s. 44–45, Abstr. — Publikacja dostępna online od: 2018-12-26. — THERMEC 2018 : 10th international conference on Processing and manufacturing of advanced materials : [processing, fabrication, properties, applications] : July 09–13, 2018, Paris, France
fragment książki
On the microstructural characteristics of UFG microalloyed steel influencing the mechanical behavior under dynamic loading / MAJTA Janusz, BŁONIARZ Remigiusz, KWIECIEŃ Marcin, MUSZKA Krzysztof // W: THERMEC'2018 [Dokument elektroniczny] : international conference on Processing & manufacturing of advanced materials : processing, fabrication, properties, applications : July 9–13, 2018, Paris, France : abstracts book. — Wersja do Windows. — Dane tekstowe. — [Paris : s. n.], [2018]. — Dysk Flash. — S. 415. — Wymagania systemowe: Adobe Reader