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Microstructural investigations of fatigued 12% Cr-steel 1.4914 (X 18 Cr Mo V Nb 12 1); Strukturuntersuchungen zum Ermuedungsverhalten des 12% Cr-Stahls 1.4914 (X 18 Cr Mo V Nb 12 1)

Abstract

The low cycle fatigue properties of a tempered steel X18 Cr Mo V Nb 12 1 (DIN 1.4914) have been investigated at different temperatures, strain amplitudes, mean strains and strain rates. The role of martensite lath structure and of precipitates and dislocations on the strengthening mechanisms and fatigue damage have been analysed. Plastic deformation results in a slip band formation on the surface and in a cellular dislocation structure in the interior of the specimens. A reduced strain rate is causing lower stress amplitudes and greater cells at higher temperatures. At lower temperatures the influence of strain rate is small. Fatigue mechanisms are soon dominant at lower strain rates. REM-investigations of the specimen surfaces are revealing the development of cracks at slip bands. The cracks start always at the surfaces of the specimen, and they are transcristalline in nature. The influence of the ageing temperature has been investigated. A reduced ageing temperature of 600degC results in a higher dislocation density and a lower martensite lath distance in the undeformed material. Strain ageing was initially observed in tensile experiments. The influence of dynamic strain ageing on the mechanical properties and the microstructure of tempered steel 1.4914 is investigated. A correlation of  More>>
Authors:
Publication Date:
Oct 01, 1992
Product Type:
Thesis/Dissertation
Report Number:
KFK-5069
Reference Number:
SCA: 360103; 360102; PA: DEN-93:002013; SN: 93000946896
Resource Relation:
Other Information: TH: Diss.; PBD: Oct 1992
Subject:
36 MATERIALS SCIENCE; STEEL-CR12MOV; FATIGUE; MICROSTRUCTURE; NIOBIUM ADDITIONS; METALLOGRAPHY; 360103; 360102; MECHANICAL PROPERTIES; STRUCTURE AND PHASE STUDIES
OSTI ID:
10128519
Research Organizations:
Kernforschungszentrum Karlsruhe GmbH (Germany). Inst. fuer Materialforschung; Karlsruhe Univ. (T.H.) (Germany). Fakultaet fuer Maschinenbau
Country of Origin:
Germany
Language:
German
Other Identifying Numbers:
Other: ON: DE93769026; TRN: DE9302013
Availability:
OSTI; NTIS (US Sales Only); INIS
Submitting Site:
DEN
Size:
161 p.
Announcement Date:
Jul 04, 2005

Citation Formats

Gersinska, R. Microstructural investigations of fatigued 12% Cr-steel 1.4914 (X 18 Cr Mo V Nb 12 1); Strukturuntersuchungen zum Ermuedungsverhalten des 12% Cr-Stahls 1.4914 (X 18 Cr Mo V Nb 12 1). Germany: N. p., 1992. Web.
Gersinska, R. Microstructural investigations of fatigued 12% Cr-steel 1.4914 (X 18 Cr Mo V Nb 12 1); Strukturuntersuchungen zum Ermuedungsverhalten des 12% Cr-Stahls 1.4914 (X 18 Cr Mo V Nb 12 1). Germany.
Gersinska, R. 1992. "Microstructural investigations of fatigued 12% Cr-steel 1.4914 (X 18 Cr Mo V Nb 12 1); Strukturuntersuchungen zum Ermuedungsverhalten des 12% Cr-Stahls 1.4914 (X 18 Cr Mo V Nb 12 1)." Germany.
@misc{etde_10128519,
title = {Microstructural investigations of fatigued 12% Cr-steel 1.4914 (X 18 Cr Mo V Nb 12 1); Strukturuntersuchungen zum Ermuedungsverhalten des 12% Cr-Stahls 1.4914 (X 18 Cr Mo V Nb 12 1)}
author = {Gersinska, R}
abstractNote = {The low cycle fatigue properties of a tempered steel X18 Cr Mo V Nb 12 1 (DIN 1.4914) have been investigated at different temperatures, strain amplitudes, mean strains and strain rates. The role of martensite lath structure and of precipitates and dislocations on the strengthening mechanisms and fatigue damage have been analysed. Plastic deformation results in a slip band formation on the surface and in a cellular dislocation structure in the interior of the specimens. A reduced strain rate is causing lower stress amplitudes and greater cells at higher temperatures. At lower temperatures the influence of strain rate is small. Fatigue mechanisms are soon dominant at lower strain rates. REM-investigations of the specimen surfaces are revealing the development of cracks at slip bands. The cracks start always at the surfaces of the specimen, and they are transcristalline in nature. The influence of the ageing temperature has been investigated. A reduced ageing temperature of 600degC results in a higher dislocation density and a lower martensite lath distance in the undeformed material. Strain ageing was initially observed in tensile experiments. The influence of dynamic strain ageing on the mechanical properties and the microstructure of tempered steel 1.4914 is investigated. A correlation of mechanical and microstructural data has been performed. (orig./MM). [Deutsch] Das Ermuedungsverhalten des vergueteten Stahls X18 Cr Mo V Nb 12 1 wurde bei unterschiedlichen Temperaturen, Dehnungsamplituden und Verformungsgeschwindigkeiten untersucht. Der Einfluss der Martensitlattenstruktur sowie der Ausscheidungen und Versetzungen auf die Verfestigungsmechanismen wurde analysiert. Eine plastische Verformung resultiert in einer Bildung von Gleitbaendern an der Probenoberflaeche und in einer Versetzungszellenstruktur im Probeninneren. Mehrfachgleitprozesse sind fuer die Zellentstehung verantwortlich. Eine reduzierte Verformungsgeschwindigkeit verursacht bei hoeheren Temperaturen kleinere Spannungsamplituden und groessere Zellen. Bei niedrigen Temperaturen ist der Einfluss der Verformungsgeschwindigkeit klein. Ermuedungsmechanismen sind auch bei kleinen Verformungsgeschwindigkeiten dominant. REM-Untersuchungen der Probenoberflaeche zeigen die Entwicklung von Rissen an Gleitbaendern. Die Risse beginnen stets an der Probenoberflaeche und sind transkristallin. Der Einfluss der Anlasstemperatur wurde untersucht. Reckalterungseffekte wurden erstmals in diesem Werkstoff in Zugversuchen beobachtet. Der Einfluss der dynamischen Reckalterung auf die mechanischen Eigenschaften und die Mikrostruktur des vergueteten Stahls 1.4914 wurde untersucht. Eine Korrelation der mechanischen und mikrostrukturellen Daten wurde durchgefuehrt. (orig./MM).}
place = {Germany}
year = {1992}
month = {Oct}
}