Precipitation of Topologically Close Packed Phases in Ni-base Superalloys – the Effect of Re and Ru

The high-temperature strength of Ni-base superalloys may be strongly improved by alloying with Re. On the other hand, addition of Re has a negative influence on the long-term high-temperature stability - it leads to precipitation of topologically close packed phases. These phases, in turn, are detri...

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Autore principale: Matuszewski, Kamil
Natura: Online
Lingua:inglese
Pubblicazione: FAU University Press 2025
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Accesso online:ONIX_20251215T160703_9783961470167_41
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author Matuszewski, Kamil
author_browse Matuszewski, Kamil
author_facet Matuszewski, Kamil
author_sort Matuszewski, Kamil
collection Directory of Open Access Books
description The high-temperature strength of Ni-base superalloys may be strongly improved by alloying with Re. On the other hand, addition of Re has a negative influence on the long-term high-temperature stability - it leads to precipitation of topologically close packed phases. These phases, in turn, are detrimental for the high-temperature strength of Ni-base superalloys. Their precipitation process may be suppressed by alloying with Ru. Physical phenomena controlling this behavior are described in this work bringing the new insight into understanding of the Re- and Ru effect on precipitation of topologically close packed phases.
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spelling doab-20.500.12854ir-1701852025-12-16T05:13:24Z Precipitation of Topologically Close Packed Phases in Ni-base Superalloys – the Effect of Re and Ru Matuszewski, Kamil Ruthenium Rhenium Thermodynamik Hochtemperaturwerkstoff Phasenumwandlung thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes The high-temperature strength of Ni-base superalloys may be strongly improved by alloying with Re. On the other hand, addition of Re has a negative influence on the long-term high-temperature stability - it leads to precipitation of topologically close packed phases. These phases, in turn, are detrimental for the high-temperature strength of Ni-base superalloys. Their precipitation process may be suppressed by alloying with Ru. Physical phenomena controlling this behavior are described in this work bringing the new insight into understanding of the Re- and Ru effect on precipitation of topologically close packed phases. 2025-12-16T05:13:23Z 2025-12-16T05:13:23Z 2025-12-15T15:10:44Z 2017 book ONIX_20251215T160703_9783961470167_41 https://library.oapen.org/handle/20.500.12657/109210 9783961470167 9783961470150 https://directory.doabooks.org/handle/20.500.12854/170185 eng FAU Studien Materialwissenschaft und Werkstofftechnik open access image/jpeg n/a https://library.oapen.org/bitstream/20.500.12657/109210/1/9783961470167.pdf FAU University Press 2c600dea-eece-4066-87be-da335e323fdb 9783961470167 9783961470150 175 Erlangen open access
spellingShingle Ruthenium
Rhenium
Thermodynamik
Hochtemperaturwerkstoff
Phasenumwandlung
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes
Matuszewski, Kamil
Precipitation of Topologically Close Packed Phases in Ni-base Superalloys – the Effect of Re and Ru
title Precipitation of Topologically Close Packed Phases in Ni-base Superalloys – the Effect of Re and Ru
title_full Precipitation of Topologically Close Packed Phases in Ni-base Superalloys – the Effect of Re and Ru
title_fullStr Precipitation of Topologically Close Packed Phases in Ni-base Superalloys – the Effect of Re and Ru
title_full_unstemmed Precipitation of Topologically Close Packed Phases in Ni-base Superalloys – the Effect of Re and Ru
title_short Precipitation of Topologically Close Packed Phases in Ni-base Superalloys – the Effect of Re and Ru
title_sort precipitation of topologically close packed phases in ni base superalloys the effect of re and ru
topic Ruthenium
Rhenium
Thermodynamik
Hochtemperaturwerkstoff
Phasenumwandlung
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes
topic_facet Ruthenium
Rhenium
Thermodynamik
Hochtemperaturwerkstoff
Phasenumwandlung
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes
url ONIX_20251215T160703_9783961470167_41
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