Influence of Carbon Content on Elevated Temperature Fatigue Properties of Different Steel Alloys

Fatigue properties (fatigue life and fatigue limit) of three different carbon content steel alloys, CK35, Y8 and Y10 were investigated at RT and 300 ºC fatigue testing. The main contribution of this work was to find the influence of carbon content on high temperature fatigue properties. It was found...

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Main Authors: Hessen J. Mohamed Alalkawi, Thabat. M. Ali, N.M. Abdulmuhssan, kiffaya Al-saffar
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2012-04-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_56852_b97d444d95e9bb8ac544cb6e85d4e8a0.pdf
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author Hessen J. Mohamed Alalkawi
Thabat. M. Ali
N.M. Abdulmuhssan
kiffaya Al-saffar
author_facet Hessen J. Mohamed Alalkawi
Thabat. M. Ali
N.M. Abdulmuhssan
kiffaya Al-saffar
author_sort Hessen J. Mohamed Alalkawi
collection DOAJ
description Fatigue properties (fatigue life and fatigue limit) of three different carbon content steel alloys, CK35, Y8 and Y10 were investigated at RT and 300 ºC fatigue testing. The main contribution of this work was to find the influence of carbon content on high temperature fatigue properties. It was found that the fatigue life in both cases, RT and 300 ºC, decreased dramatically via increasing carbon content from 0.35% to 0.8% but at 1% carbon content the fatigue life was increased. The fatigue limit and its reduction percentage took the same trend of the fatigue life.
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spelling doaj.art-b64bb1c1782f47039b27d8e96fff72882024-02-04T17:39:05ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582012-04-013081318132810.30684/etj.30.8.356852Influence of Carbon Content on Elevated Temperature Fatigue Properties of Different Steel AlloysHessen J. Mohamed AlalkawiThabat. M. AliN.M. Abdulmuhssankiffaya Al-saffarFatigue properties (fatigue life and fatigue limit) of three different carbon content steel alloys, CK35, Y8 and Y10 were investigated at RT and 300 ºC fatigue testing. The main contribution of this work was to find the influence of carbon content on high temperature fatigue properties. It was found that the fatigue life in both cases, RT and 300 ºC, decreased dramatically via increasing carbon content from 0.35% to 0.8% but at 1% carbon content the fatigue life was increased. The fatigue limit and its reduction percentage took the same trend of the fatigue life.https://etj.uotechnology.edu.iq/article_56852_b97d444d95e9bb8ac544cb6e85d4e8a0.pdfcarbon contenthigh temperaturefatigue testingsteel alloys
spellingShingle Hessen J. Mohamed Alalkawi
Thabat. M. Ali
N.M. Abdulmuhssan
kiffaya Al-saffar
Influence of Carbon Content on Elevated Temperature Fatigue Properties of Different Steel Alloys
Engineering and Technology Journal
carbon content
high temperature
fatigue testing
steel alloys
title Influence of Carbon Content on Elevated Temperature Fatigue Properties of Different Steel Alloys
title_full Influence of Carbon Content on Elevated Temperature Fatigue Properties of Different Steel Alloys
title_fullStr Influence of Carbon Content on Elevated Temperature Fatigue Properties of Different Steel Alloys
title_full_unstemmed Influence of Carbon Content on Elevated Temperature Fatigue Properties of Different Steel Alloys
title_short Influence of Carbon Content on Elevated Temperature Fatigue Properties of Different Steel Alloys
title_sort influence of carbon content on elevated temperature fatigue properties of different steel alloys
topic carbon content
high temperature
fatigue testing
steel alloys
url https://etj.uotechnology.edu.iq/article_56852_b97d444d95e9bb8ac544cb6e85d4e8a0.pdf
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AT nmabdulmuhssan influenceofcarboncontentonelevatedtemperaturefatiguepropertiesofdifferentsteelalloys
AT kiffayaalsaffar influenceofcarboncontentonelevatedtemperaturefatiguepropertiesofdifferentsteelalloys