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Statements

Subject Item
n2:RIV%2F25794787%3A_____%2F09%3A%230000430%21RIV12-MSM-25794787
rdf:type
n14:Vysledek skos:Concept
dcterms:description
17th International Corrosion Congress Proceedings, Las Vegas: During the process of fabrication of martensitic stainless steel apparatus and equipment, heat treating operations as well as unavoidable exposures to elevated temperatures can provoke structural changes—detrimental sensitization on the one hand which makes the steel susceptible to localized corrosion, and beneficial formation of temper austenite on the other hand which makes the steel weldable. To evaluate such changes, the electrochemical potentiokinetic reactivation (EPR) test was applied to grade 14Cr17Ni2 (compressor blade) martensitic steel, to grade Cr13Ni6Mo (weldable, so-called COR type) martensitic-austenitic steel, to precipitation hardenable stainless steel Cr10Ni10Mo2 and also to gradeCr12Ni5MoCu (low interstitial) martensitic steels. This nondestructive, on site technique allowed to quantify the degreeof sensitization and to assess the structural state after thermal treatment and the percentage of secondary austenite in the structure. 17th International Corrosion Congress Proceedings, Las Vegas: During the process of fabrication of martensitic stainless steel apparatus and equipment, heat treating operations as well as unavoidable exposures to elevated temperatures can provoke structural changes—detrimental sensitization on the one hand which makes the steel susceptible to localized corrosion, and beneficial formation of temper austenite on the other hand which makes the steel weldable. To evaluate such changes, the electrochemical potentiokinetic reactivation (EPR) test was applied to grade 14Cr17Ni2 (compressor blade) martensitic steel, to grade Cr13Ni6Mo (weldable, so-called COR type) martensitic-austenitic steel, to precipitation hardenable stainless steel Cr10Ni10Mo2 and also to gradeCr12Ni5MoCu (low interstitial) martensitic steels. This nondestructive, on site technique allowed to quantify the degreeof sensitization and to assess the structural state after thermal treatment and the percentage of secondary austenite in the structure.
dcterms:title
EPR TEST IN SITU MEASUREMENTS OF MARTENSITIC STAINLESS STEELS EPR TEST IN SITU MEASUREMENTS OF MARTENSITIC STAINLESS STEELS
skos:prefLabel
EPR TEST IN SITU MEASUREMENTS OF MARTENSITIC STAINLESS STEELS EPR TEST IN SITU MEASUREMENTS OF MARTENSITIC STAINLESS STEELS
skos:notation
RIV/25794787:_____/09:#0000430!RIV12-MSM-25794787
n4:aktivita
n7:P n7:Z
n4:aktivity
P(GA106/06/1621), P(GA106/08/1789), Z(MSM2579478701)
n4:dodaniDat
n10:2012
n4:domaciTvurceVysledku
n6:7127502 n6:2984962 n6:9804234
n4:druhVysledku
n8:O
n4:duvernostUdaju
n16:S
n4:entitaPredkladatele
n9:predkladatel
n4:idSjednocenehoVysledku
313452
n4:idVysledku
RIV/25794787:_____/09:#0000430
n4:jazykVysledku
n13:eng
n4:klicovaSlova
EPR test; potentiokinetic; martensitic steel; martensitic-austenitic steel; compressor blade; failure; intergrannular corrosion; stress corrosion cracking
n4:klicoveSlovo
n5:intergrannular%20corrosion n5:stress%20corrosion%20cracking n5:martensitic%20steel n5:martensitic-austenitic%20steel n5:potentiokinetic n5:failure n5:EPR%20test n5:compressor%20blade
n4:kontrolniKodProRIV
[3BAACCF3CA89]
n4:obor
n17:JK
n4:pocetDomacichTvurcuVysledku
3
n4:pocetTvurcuVysledku
7
n4:projekt
n11:GA106%2F06%2F1621 n11:GA106%2F08%2F1789
n4:rokUplatneniVysledku
n10:2009
n4:tvurceVysledku
Krhutová, Z. Kalabisová, Eva Štefec, R. Blahetová, M. Turek, Libor Lasek, S. Číhal, Vladimír
n4:zamer
n15:MSM2579478701