Tytuł pozycji:
Influence of Fe, Cr, and Cu addition on the microstructure, hardness, and anticorrosion properties of Al-Ni-Y alloys
- Tytuł:
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Influence of Fe, Cr, and Cu addition on the microstructure, hardness, and anticorrosion properties of Al-Ni-Y alloys
- Autorzy:
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Babilas, Rafał
Młynarek-Żak, K.
Łoński, W.
Bukowiec, D.
Lis, M.
Kądziołka-Gaweł, M.
Warski, T.
Radoń, A.
- Data publikacji:
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2022
- Słowa kluczowe:
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Al-based alloys
X-ray diffraction
transmission electron microscopy
differential thermal analysis
Mössbauer spectroscopy
electrochemical measurements
stopy aluminium
dyfrakcja rentgenowska
transmisyjna mikroskopia elektronowa
różnicowa analiza termiczna
spektroskopia Mössbauera
pomiary elektrochemiczne
- Język:
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angielski
- Dostawca treści:
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BazTech
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This study evaluated the structural changes of Al-Ni-(Fe,Cr,Cu)-Y alloys induced by different cooling states. The aim was to determine the role of Fe, Cr, and Cu addition as well as cooling rate on the structure, hardness and anticorrosion properties of crystalline and nanocrystalline Al-Ni-Y alloys. The impact of the preparation method on the structure of alloys was observed by the broadening of the X-ray diffraction peaks of the alloys in the form of plates, which indicated structure fragmentation at a high cooling rate. The TEM images showed the formation of a structure composed of homogeneously dispersed α-Al nanograins. Phase analysis performed using X-ray diffraction method and Mossbauer spectroscopy revealed that the slowly cooled master alloys were mainly composed of Al23Ni6Y4, Al10Fe2Y, and α-Al phases. The Al10Fe2Y structure was the main Fe-bearing phase in all investigated master alloys. A crystallization mechanism was proposed based on the DTA heating and cooling curves. The pitting corrosion type was identified based on morphology observations after electrochemical tests. Rapid solidification and the addition of chromium and copper improved the microhardness as well as corrosion resistance. The high increase of hardness (289 HV0.1) and corrosion resistance[...]
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023)