Characterization of the high temperature oxidation behavior of iron based alloys used as exhaust manifolds

Nowadays engine capacities of vehicles spread in a wide range due to different vehicle power demands. Power density of engines affects exhaust gas and therefore exhaust gas temperature varies from 650 °C to 1000 °C in exhaust manifolds. Depending on the exhaust gas temperature, different types of ir...

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Main Authors: Çelik G. Aktaş, Kahrıman Fulya, Atapek Ş. Hakan, Polat Şeyda
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201818802001
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author Çelik G. Aktaş
Kahrıman Fulya
Atapek Ş. Hakan
Polat Şeyda
author_facet Çelik G. Aktaş
Kahrıman Fulya
Atapek Ş. Hakan
Polat Şeyda
author_sort Çelik G. Aktaş
collection DOAJ
description Nowadays engine capacities of vehicles spread in a wide range due to different vehicle power demands. Power density of engines affects exhaust gas and therefore exhaust gas temperature varies from 650 °C to 1000 °C in exhaust manifolds. Depending on the exhaust gas temperature, different types of iron based alloys are used as manifold materials such as ferritic ductile cast irons (GGG40, SiMo), austenitic ductile cast irons (Ni-resist D5S), ferritic cast stainless steels (ACIHK30, AISI 409) and austenitic cast stainless steels (CF8C). In this study high temperature oxidation behavior of different cast alloys used as exhaust manifold materials like, (i) GGG40 ferritic ductile cast iron, (ii) SiMo ferritic ductile cast iron (iii) AISI 409 ferritic cast stainless steel and (iv) CF8C austenitic cast stainless steel, were investigated.
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spelling doaj.art-3a221bf55685428dabe7787c0ec57c002022-12-21T20:29:48ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011880200110.1051/matecconf/201818802001matecconf_iceaf-v2018_02001Characterization of the high temperature oxidation behavior of iron based alloys used as exhaust manifoldsÇelik G. AktaşKahrıman FulyaAtapek Ş. HakanPolat ŞeydaNowadays engine capacities of vehicles spread in a wide range due to different vehicle power demands. Power density of engines affects exhaust gas and therefore exhaust gas temperature varies from 650 °C to 1000 °C in exhaust manifolds. Depending on the exhaust gas temperature, different types of iron based alloys are used as manifold materials such as ferritic ductile cast irons (GGG40, SiMo), austenitic ductile cast irons (Ni-resist D5S), ferritic cast stainless steels (ACIHK30, AISI 409) and austenitic cast stainless steels (CF8C). In this study high temperature oxidation behavior of different cast alloys used as exhaust manifold materials like, (i) GGG40 ferritic ductile cast iron, (ii) SiMo ferritic ductile cast iron (iii) AISI 409 ferritic cast stainless steel and (iv) CF8C austenitic cast stainless steel, were investigated.https://doi.org/10.1051/matecconf/201818802001
spellingShingle Çelik G. Aktaş
Kahrıman Fulya
Atapek Ş. Hakan
Polat Şeyda
Characterization of the high temperature oxidation behavior of iron based alloys used as exhaust manifolds
MATEC Web of Conferences
title Characterization of the high temperature oxidation behavior of iron based alloys used as exhaust manifolds
title_full Characterization of the high temperature oxidation behavior of iron based alloys used as exhaust manifolds
title_fullStr Characterization of the high temperature oxidation behavior of iron based alloys used as exhaust manifolds
title_full_unstemmed Characterization of the high temperature oxidation behavior of iron based alloys used as exhaust manifolds
title_short Characterization of the high temperature oxidation behavior of iron based alloys used as exhaust manifolds
title_sort characterization of the high temperature oxidation behavior of iron based alloys used as exhaust manifolds
url https://doi.org/10.1051/matecconf/201818802001
work_keys_str_mv AT celikgaktas characterizationofthehightemperatureoxidationbehaviorofironbasedalloysusedasexhaustmanifolds
AT kahrımanfulya characterizationofthehightemperatureoxidationbehaviorofironbasedalloysusedasexhaustmanifolds
AT atapekshakan characterizationofthehightemperatureoxidationbehaviorofironbasedalloysusedasexhaustmanifolds
AT polatseyda characterizationofthehightemperatureoxidationbehaviorofironbasedalloysusedasexhaustmanifolds