Szczegóły publikacji

Opis bibliograficzny

Effect of retained austenite on the fracture toughness of tempered tool steel / A. KOKOSZA, J. PACYNA // Archives of Materials Science and Engineering ; ISSN 1897-2764. — Tytuł poprz.: Archives of Materials Science. — 2008 — vol. 31 iss. 2, s. 87–90. — Bibliogr. s. 90, Abstr. — Publikacja dostępna online od: 2008-06-01. — Abstact W: AMME'2008 : the sixteenth international scientific conference on “Achievements in Mechanical and Materials Engineering” : 22nd–25thJune, 2008, Gliwice–Ryn, Poland : programme and proceedings / ed. L. A. Dobrzański. — Gliwice : International OCSCO World Press, 2008 + CD-ROM. — ISBN 83-89728-47-8. — S. 80, 1.230

Autorzy (2)

Słowa kluczowe

tool materialsretained austenitefracture toughness

Dane bibliometryczne

ID BaDAP39760
Data dodania do BaDAP2008-07-18
Tekst źródłowyURL
Rok publikacji2008
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Czasopismo/seriaArchives of Materials Science and Engineering

Abstract

Purpose: This paper is an attempt of reviewing the outlooks about the favourable influence of retained austenite on fracture toughness of tool steels according to results of investigation concerning relations between tempering temperature, hardness, fraction of retained austenite and fracture toughness. Design/methodology/approach: The tests were performed on the samples made of the 70MnCrMoV9-2-4-2 steel in which the fraction of retained austenite was changed by cold treatment and by changing the tempering temperature. On the ground of analysis of dependencies between fraction of retained austenite, hardness, fracture toughness and tempering temperature of hardened 70MnCrMoV9-2-4-2 steel the influence of retained austenite on fracture toughness of tested steel was investigated. Findings: was found that retained austenite remaining in the structure of tested steel after quenching increased its fracture toughness on directly proportional way to its volume fraction. Advantageous influence of this phase was also found after tempering tested steel. Research limitations/implications: It was pointed out that most beneficial influence of retained austenite exists when tested steel after hardening is low-tempered. At that moment the highest stabilization of the phase occurs. While at tempering temperatures above 220°C it was indicated that it is possible to combine retained austenite transition and irreversible tempering brittleness. Originality/value: On the basis of own research, the authors present their own, original point of view on the issue of presence of retained austenite in the structure, its stability and the influence on fracture toughness of lowtempered tools steel.

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