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Statements

Subject Item
n2:RIV%2F68378271%3A_____%2F11%3A00358981%21RIV12-AV0-68378271
rdf:type
skos:Concept n5:Vysledek
dcterms:description
The paper presents results of in-situ neutron diffraction experiments aimed on monitoring the phase evolution and load distribution in TRIP steel when subjected to tensile loading. Tensile deformation behaviour of TRIP steel with different initial microstructures showed that the applied tensile load is redistributed at the yield point and the harder retained austenite (Feγ) bears larger load then ferrite (Feα) matrix. After load partioning is finished, macroscopic yielding comes through simultaneous activity of the martensite transformation (in the austenite) and plastic deformation process in ferrite. The steel with higher volume fraction of retained austenite and less stronger ferrite appears to be a better TRIP steel having efficient structure for better plasticity purpose. The paper presents results of in-situ neutron diffraction experiments aimed on monitoring the phase evolution and load distribution in TRIP steel when subjected to tensile loading. Tensile deformation behaviour of TRIP steel with different initial microstructures showed that the applied tensile load is redistributed at the yield point and the harder retained austenite (Feγ) bears larger load then ferrite (Feα) matrix. After load partioning is finished, macroscopic yielding comes through simultaneous activity of the martensite transformation (in the austenite) and plastic deformation process in ferrite. The steel with higher volume fraction of retained austenite and less stronger ferrite appears to be a better TRIP steel having efficient structure for better plasticity purpose.
dcterms:title
Deformation behaviour of TRIP steel monitoring by in-situ neutrondiffraction Deformation behaviour of TRIP steel monitoring by in-situ neutrondiffraction
skos:prefLabel
Deformation behaviour of TRIP steel monitoring by in-situ neutrondiffraction Deformation behaviour of TRIP steel monitoring by in-situ neutrondiffraction
skos:notation
RIV/68378271:_____/11:00358981!RIV12-AV0-68378271
n5:predkladatel
n6:ico%3A68378271
n3:aktivita
n12:P n12:Z
n3:aktivity
P(GAP107/10/0824), P(GAP108/10/1296), P(IAA200100627), Z(AV0Z10100520), Z(MSM2631691901)
n3:cisloPeriodika
1
n3:dodaniDat
n17:2012
n3:domaciTvurceVysledku
n16:7813880
n3:druhVysledku
n7:J
n3:duvernostUdaju
n20:S
n3:entitaPredkladatele
n18:predkladatel
n3:idSjednocenehoVysledku
193135
n3:idVysledku
RIV/68378271:_____/11:00358981
n3:jazykVysledku
n14:eng
n3:klicovaSlova
TRIP steel; austenite conditioning; retained austenite; neutron diffraction
n3:klicoveSlovo
n8:neutron%20diffraction n8:retained%20austenite n8:TRIP%20steel n8:austenite%20conditioning
n3:kodStatuVydavatele
CH - Švýcarská konfederace
n3:kontrolniKodProRIV
[F9AF8FD29969]
n3:nazevZdroje
Key Engineering Materials
n3:obor
n9:BM
n3:pocetDomacichTvurcuVysledku
1
n3:pocetTvurcuVysledku
4
n3:projekt
n13:IAA200100627 n13:GAP108%2F10%2F1296 n13:GAP107%2F10%2F0824
n3:rokUplatneniVysledku
n17:2011
n3:svazekPeriodika
465
n3:tvurceVysledku
Muránsky, O. Oliver, E. C. Zrnik, J. Šittner, Petr
n3:zamer
n4:AV0Z10100520 n4:MSM2631691901
s:issn
1662-9795
s:numberOfPages
5
n10:doi
10.4028/www.scientific.net/KEM.465.390