PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Powiadomienia systemowe
  • Sesja wygasła!
  • Sesja wygasła!
Tytuł artykułu

Effects of Nb, Ti and V on recrystallization kinetics of austenite in HSLA steels

Autorzy
Identyfikatory
Warianty tytułu
PL
Oddziaływanie Nb, Ti i V na kinetykę rekrystalizacji austenitu w stalach typu HSLA
Języki publikacji
EN
Abstrakty
EN
The work presents research results of impact of Nb, Ti and V microadditions on recrystallization kinetics and microstructure of newly elaborated steels assigned for production of forged machine parts, using the method of thermomechanical treatment. The study was performed with the use of Gleeble 3800 simulator. In order to determine recrystallization kinetics of plastically deformed austenite, discontinuous compression tests of specimens were done with a given strain at the rate of 10 s–1, in a temperature range from 900 to 1100°C, with isothermal holding of samples between successive stages of deformation for 2 to 100 s. Recrystallization kinetics of plastically deformed austenite was described using the Johnson-Mehl-Avrami equation. Performed two-stages compression tests revealed that microadditions introduced into steel considerably influence the kinetics of static recrystallization. Determined time of total recrystallization of austenite, tR, in a temperature range from 1100°C to 900°C changes from 100 to 600 s and from 300 to 800 s — for the Ti–V steel and Ti–Nb–V steel, respectively. Executed hot compression tests will contribute to establishing conditions of forging with the method of thermomechanical treatment.
PL
W pracy przedstawiono wyniki badań oddziaływania mikrododatków Nb, Ti i V na kinetykę rekrystalizacji i strukturę nowo opracowanych stali typu HSLA przeznaczonych do wytwarzania kutych elementów maszyn metodą obróbki cieplno-plastycznej.
Rocznik
Strony
289--294
Opis fizyczny
Bibliogr. 23 poz., fig., tab.
Twórcy
autor
  • Silesian University of Technology, Institute of Engineering Materials and Biomaterials, Gliwice, Poland
Bibliografia
  • [1] Matlock D. K., Krauss G. Speer J. G.: Microstructures and properties of direct-cooled microalloy forging steels. Journal of Materials Processing and Technology 117 (2001) 324÷328.
  • [2] Opiela M.: Effect of thermomechanical processing of the microstructure and mechanical properties of Nb–Ti–V microalloyed steel. Journal of Materials Engineering and Performance 9 (2014) 3379÷3388.
  • [3] Skubisz P., Adrian H., Sińczak J.: Controlled cooling of drop forged microalloyed- steel automotive crankshaft. Archives of Metallurgy and Materials 56 (2011) 93÷107.
  • [4] Kuziak R., Bołd T., Tokarz A., Cheng Y.: Microstructure control of ferritepearlite high strength low alloy steels utilizing microalloying additions. Journal of Materials Processing and Technology 53 (1995) 255÷262.
  • [5] Adamczyk J., Opiela M.: Engineering of forged products of microalloyed constructional steels. Journal of Achievements in Materials and Manufacturing Engineering 15 (2009) 159÷165.
  • [6] Bakkaloglu A.: Effect of processing parameters on the microstructure and properties of an Nb microalloyed steel. Materials Letters 56 (2002) 263÷272.
  • [7] Grajcar A., Kuziak R.: Softening kinetics in Nb-microalloyed TRIP steels with increased Mn content. Advanced Materials Research 314-316 (2011) 119÷122.
  • [8] Ozgowicz W., Opiela M., Grajcar A., Kalinowska-Ozgowicz E., Krukiewicz W.: Metallurgical products of microalloy constructional steels. Journal of Achievements in Materials and Manufacturing Engineering 44 (2011) 7÷34.
  • [9] Gladman T.: The physical metallurgy of microalloyed steels. The Institute of Materials, London (1997).
  • [10] Rodriguez-Ibabe J. M.: Thin slab direct rolling of microalloyed steels. Trans. Tech. Publications Ltd, Switzerland (2007).
  • [11] Andrade H. L., Akben M. G., Jonas J. J.: Effect of molybdenium, niobium, and vanadium on static recovery and recrystallization and on solute strengthening in microalloyed steels. Metallurgical Transactions 14A (1983) 1967÷1977.
  • [12] Adamczyk J.: Inżynieria materiałów metalowych, cz. 1. Wydawnictwo Politechniki Śląskiej, Gliwice (2004).
  • [13] Sellars C. M.: Modelling microstructural development during hot rolling. Materials Science and Technology 11 (1990) 1072÷1081.
  • [14] Medina S. F., Gòmez M., Gòmez P. P.: Effect of V and Nb on static recrystallization of austenite and precipitate size in microalloyed steels. Journal of Materials Science & Technology 45 (2010) 5553÷5557.
  • [15] Fernandez A. I., Uranga P., Lopez B., Rodriguez-Ibabe J. M.: Dynamic recrystallization behavior covering a wide austenite grain size range in Nb and Nb–Ti microalloyed steels. Material Science and Engineering A361 (2003) 367÷376.
  • [16] Dutta B., Palmiere E. J.: Effect of prestrain and deformation temperature on the recrystallization behavior of steels microalloyed with niobium. Metallurgical and Materials Transactions A 34 (2003) 1237÷1247.
  • [17] Vervynckt S., Verbeken K., Thibaux P., Houbaert Y.: Recrystallizationprecipitation interaction during austenite hot deformation of a Nb microalloyed steel. Materials Science and Engineering A 528 (2011) 5519÷5528.
  • [18] Cho S., Kang K., Jonas J. J.: The dynamic, static and metadynamic recrystallization of a Nb-microalloyed steel. ISIJ International 41 (2001) 63÷69.
  • [19] Schindler I., Boruta J.: Utilization potentialities of the torsion plastometer. Departament of Metal Forming, Silesian University of Technology, Katowice (1998).
  • [20] Opiela M.: Thermodynamic analysis of the precipitation of carbonitrides in microalloyed steels. Materiali in Tehnologije 3 (2015) 395÷401.
  • [21] Opiela M.: Elaboration of thermomechanical treatment conditions of Ti–V and Ti–Nb–V microalloying forging steels. Archives of Metallurgy and Materials 3 (2014) 1181÷1188.
  • [22] Medina S. F., Mancilla J. E., Hernandez C. A.: Static recrystallization of hot deformed austenite and induced precipitation kinetics in vanadium microalloyed steels. ISIJ International 34 (1994) 689÷696.
  • [23] Beynon J. H., Sellars C. M.: Modelling microstructure and its effect during multipass hot rolling. ISIJ International 3 (1992) 359÷367.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ba354a64-aaf1-4dda-acb7-77d94b9ba561
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.