Comparison of oxide layers formed on the low-cycle fatigue crack surfaces of Alloy 690 and 316 SS tested in a simulated PWR environment (original) (raw)

Oxidation effects on the fatigue crack growth behaviour of alloy 718 at high temperature

E. Andrieu

Acta Materialia, 1997

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Oxidation Mechanisms in Relation to High Temperature Fatigue Crack Growth Properties of Alloy 718

E. Andrieu

Superalloys 718, 625, 706 and Various Derivatives (1994), 1994

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Characterization of Environment-Dependent Fatigue Crack Growth in Alloy 718 at 650�C

Hamouda Ghonem

Superalloys 718, 625 and Various Derivatives (1991), 1991

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Byung Joon Bae

2021

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Influence of oxide films on primary water stress corrosion cracking initiation of alloy 600

E. Andrieu

Journal of Nuclear Materials, 2006

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OXIDATION-ASSISTED FATIGUE CRACK GROWTH BEHAVIOR IN ALLOY 718-PART I. QUANTITATIVE MODELING

Hamouda Ghonem

Fatigue & Fracture of Engineering Materials and Structures, 1991

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Effect of thermal aging and irradiation on microstructure and crack growth response of Alloy 690

Bogdan Alexandreanu

2021

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ELEVATED TEMPERATURE FATIGUE CRACK GROWTH IN ALLOY 718?PART II: EFFECTS OF ENVIRONMENTAL AND MATERIAL VARIABLES

Hamouda Ghonem

Fatigue & Fracture of Engineering Materials and Structures, 1993

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In-air and pressurized water reactor environment fatigue experiments of 316 stainless steel to study the effect of environment on cyclic hardening

Thanongsak Imjai

Journal of Nuclear Materials, 2016

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Crack initiation sensitivity of wrought direct aged alloy 718 in the very high cycle fatigue regime: the role of non-metallic inclusions

Chris Torbet

Materials Science and Engineering: A, 2016

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Juraj Belan

Metalurgija, 2015

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On the Influence of the Microstructure upon the Fatigue and Corrosion Fatigue Behavior of UNS N07718

Matthias Oechsner

Metals

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Crack Initiation Studies of MA 760 During High Temperature Low Cycle Fatigue

V.-t. Kuokkala

Superalloys 1996 (Eighth International Symposium), 1996

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Isothermal high temperature low cycle fatigue behavior of Nimonic-263: Influence of type I and type II hot corrosion

akash choudhary

Materials Science and Engineering: A, 2015

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Effect of Fatigue Loading Mode on 718 Alloy Fatigue Properties

Juraj Belan

Periodica Polytechnica Transportation Engineering

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Effect of anodic oxidation on fatigue performance of 7075-T6 alloy

Kenan Genel

Surface and Coatings Technology, 2008

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Stress Corrosion Cracking and Crack Tip Characterization of Alloy X‐750 in Boiling Water Reactor Environments

Ronald Ballinger

2011

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Relative stress corrosion susceptibilities of alloys 690 and 600 in simulated boiling water reactor environments

Andrew McMinn

Metallurgical and Materials Transactions A-physical Metallurgy and Materials Science, 1986

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Low cycle fatigue behaviour of nickel base superalloy IN 740H at 760 °C: Influence of fireside corrosion atmosphere

Randhir Kumar Singh

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Corrosion fatigue crack growth behavior of 7075-T6 under biaxial tension–tension cyclic loading condition

Victor Perel

Engineering Fracture Mechanics, 2013

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Analysis of Oxides Formed on the Surface of the Alloy 690 in Hydrogenated Supercritical Water

Farong Wan

Acta Metallurgica Sinica (English Letters), 2016

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Ludvík Kunz

2008

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Influence of Corrosion Environment and Stress Ratio on Fatigue Crack Growth in Stainless Steel 304 L

Ivan Nedbal, Jiri Kunz

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Fatigue life prediction of 316 stainless steel in simulated PWR primary water by time domain analysis based on short fatigue crack growth behavior

Choongmoo Shim

European Journal of Emergency Medicine, 2017

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Crack growth rates and metallographic examinations of Alloy 600 and Alloy 82/182 from field components and laboratory materials tested in PWR environments

Bogdan Alexandreanu

2008

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Effect of the LCF Loading Cycle Characteristics on the Fatigue Life of Inconel 718 at High Temperature

marco pasqualon

Ott/Superalloy, 2012

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Oxide-Induced Crack Closure: An Explanation for Near-Threshold Corrosion Fatigue Crack Growth Behavior

Robert O Ritchie

Metallurgical Transactions A, 1981

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Fatigue Crack Growth in High Temperature Alloys

wolfgang hoffelner

Superalloys 1984 (Fifth International Symposium), 1984

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Observation of Fatigue Crack Initiation and Growth in

Masayuki Kamaya

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The Influence of The Oxide Layer on The Stress Corrosion Cracking Initiation in The Case of Incoloy 800 in The Alkaline Environment

Alice Dinu

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Microstructural Changes in MA 760 During High Temperature Low Cycle Fatigue

V.-t. Kuokkala

Superalloys 2000 (Ninth International Symposium), 2000

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Fatigue Crack Growth in Austenitic Steel AISI 304L in PWR Primary Water at Room and Elevated Temperature

Ivan Nedbal, Jan Siegl, Jiri Kunz

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Transactions of the Korean Nuclear Society Virtual Autumn Meeting December 17-18 Effect of Stress Type on the Corrosion Behavior of Alloy 600 in Simulated Secondary Water

Byung Joon Bae

2020

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Characterization of microstructure, local deformation and microchemistry in Alloy 600 heat-affected zone and stress corrosion cracking in high temperature water

TETSUO SHOJI

Corrosion Science, 2012

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Experimental Study of Oxygen-Assisted Crack Growth in Alloy 718 and Alloy TI-1100

Hamouda Ghonem

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