Academic literature on the topic 'Fe₃Al'

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Journal articles on the topic "Fe₃Al"

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Kostov, Ana, B. Friedrich, and D. Zivkovic. "Thermodynamic calculations in alloys Ti-Al, Ti-Fe, Al-Fe and Ti-Al-Fe." Journal of Mining and Metallurgy, Section B: Metallurgy 44, no. 1 (2008): 49–61. http://dx.doi.org/10.2298/jmmb0801049k.

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Thermodynamic calculations of three binary Ti-based alloys: Ti-Al, Ti-Fe, and Al-Fe, as well as ternary alloy Ti-Al-Fe, is shown in this paper. Thermodynamic calculations involved thermodynamic determination of activities, coefficient of activities, partial and integral values for enthalpies and Gibbs energies of mixing and excess energies at different temperatures: 1873K, 2000K and 2073K, as well as calculated phase diagrams for the investigated binary and ternary systems. The FactSage is used for all thermodynamic calculations.
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Novák, Pavel, and Kateřina Nová. "Oxidation Behavior of Fe–Al, Fe–Si and Fe–Al–Si Intermetallics." Materials 12, no. 11 (2019): 1748. http://dx.doi.org/10.3390/ma12111748.

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Iron aluminides are still deeply investigated materials for their use in power plants, automotive and chemical industry, and other sectors. This paper shows that it is possible to strongly improve their oxidation behavior by the addition of silicon. The description of the synergic effect of aluminum and silicon on the oxidation behavior of Fe–Al–Si alloys at 800 °C in air is presented. The oxidation rate, microstructure, phase, and chemical composition of these ternary alloys are compared with the binary Fe–Al and Fe–Si alloys. Results showed that the oxidation of Fe–Al–Si ternary alloys provi
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Rahman, S., and M. S. Borhan. "ELECTROLYSIS OF SWINE MANURE EFFLUENTS USING THREE DIFFERENT ELECTRODES Fe-Fe, Al-Al AND Fe-Al." American Journal of Agricultural and Biological Sciences 9, no. 4 (2014): 490–502. http://dx.doi.org/10.3844/ajabssp.2014.490.502.

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Chen, Zhenhua, Xiangyang Jiang, Yun Wang, et al. "Multicomponent AlCuFeMn, AlCuFeCr and AlCuFeCrMn quasicrystals." Scripta Metallurgica et Materialia 26, no. 2 (1992): 291–96. http://dx.doi.org/10.1016/0956-716x(92)90189-l.

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WOLSKA, E., W. SZAJDA та P. PISZORA. "Mechanism of Al- for Fe-substitution during the α-(Fe, Al) OOH→ γ-(Fe, Al)2O3 transformation". Solid State Ionics 70-71 (травень 1994): 537–41. http://dx.doi.org/10.1016/0167-2738(94)90368-9.

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Schröer, Wolfgang, Christian Hartig, and Heinrich Mecking. "Plasticity of DO3-ordered Fe - Al and Fe - Al - Si Single-erystals / Plastizität von DO 3 -geordneten Fe — Al- und Fe - Al - Si-Einkristallen." International Journal of Materials Research 84, no. 5 (1993): 294–300. http://dx.doi.org/10.1515/ijmr-1993-840502.

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Restorff, J. B., M. Wun-Fogle, K. B. Hathaway, A. E. Clark, T. A. Lograsso, and G. Petculescu. "Tetragonal magnetostriction and magnetoelastic coupling in Fe-Al, Fe-Ga, Fe-Ge, Fe-Si, Fe-Ga-Al, and Fe-Ga-Ge alloys." Journal of Applied Physics 111, no. 2 (2012): 023905. http://dx.doi.org/10.1063/1.3674318.

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Tsubakino, Harushige, Atsushi Yamamoto, Takeshi Kato, and Akira Suehiro. "Precipitation in Deformed Al-Fe and Al-Fe-Si Dilute Alloys." Materials Science Forum 331-337 (May 2000): 951–56. http://dx.doi.org/10.4028/www.scientific.net/msf.331-337.951.

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Süle, P., D. Kaptás, L. Bujdosó, Z. E. Horváth, A. Nakanishi, and J. Balogh. "Chemical mixing at “Al on Fe” and “Fe on Al” interfaces." Journal of Applied Physics 118, no. 13 (2015): 135305. http://dx.doi.org/10.1063/1.4932521.

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Palm, M., and R. Krieg. "Neutral salt spray tests on Fe–Al and Fe–Al–X." Corrosion Science 64 (November 2012): 74–81. http://dx.doi.org/10.1016/j.corsci.2012.07.013.

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Dissertations / Theses on the topic "Fe₃Al"

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Wang, Yun. "Solidification microstructure selection and coupled eutectic growth in Al-Fe and Al-Fe-Mn alloys." Thesis, University of Sheffield, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.324449.

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Conrod, Kevin. "The hot working characteristics of Al-0.65% Fe, and Al-0.5% Fe-0.5% Co conductor alloys." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 2000. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape4/PQDD_0021/MQ54324.pdf.

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Устинова, Е. В., та Е. В. Суховая. "Структурообразование квазикристаллических сплавов Al–Ni–Fe". Thesis, Сумский государственный университет, 2015. http://essuir.sumdu.edu.ua/handle/123456789/40674.

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Сплавы Al–Ni–Fe являются перспективными материалами, предназначенными для использования в агрессивных и окислительных средах. Особый интерес представляют эти сплавы в области образования квазикристаллической декагональной D-фазы, обладающей уникальными физико-механическими и физико-химическими характеристиками.
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Payne, Matthew A. "High-throughput Screening of Alloy Oxidation Across Al-Fe-Ni and Al-Fe-Ni-Cr Composition Space." Research Showcase @ CMU, 2016. http://repository.cmu.edu/dissertations/863.

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The high-temperature oxidation of multicomponent metal alloys involves complex kinetic processes that are not fully understood for many systems. As a result, prospective alloy compositions must typically be screened experimentally during the design of oxidation-resistant alloys. The comprehensiveness with which this can be done has conventionally been limited by the time required to prepare and test large numbers of single-composition alloy samples. This thesis describes the development, implementation, and assessment of a high-throughput methodology for studying the compositional dependence o
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Луценко, Евгений Валентинович, та Анатолий Иванович Зубков. "Прочность и электропроводность вакуумных конденсатов Al-Fe". Thesis, Институт физики металлов им. М. Н. Михеева Уральского отделения Российской академии наук, 2013. http://repository.kpi.kharkov.ua/handle/KhPI-Press/14471.

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Tathgar, Harsharn S. "Solubility of Nickel in Mg-Al, Mg-Al-Fe, and Mg-Al-Mn Systems." Doctoral thesis, Norwegian University of Science and Technology, Department of Materials Technology, 2001. http://urn.kb.se/resolve?urn=urn:nbn:no:ntnu:diva-2019.

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<p>The corrosion properties of magnesium alloys strongly depend on the alloy composition and impurities. Heavy elements like nickel, and iron have low solubility in solid magnesium. The dissolved elements in molten magnesium precipitate out on solidification and form intermetallic particles that are the cause of corrosion. Iron content should be kept below the standards specified by ASTM B94/94 using aluminium and manganese. Manganese forms intermetallic particles with iron and aluminium thereby lowering the solubility of iron, and these particles are cathodic compared to magnesium matrix. No
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Machado, Vagner de Oliveira. "Estudo das propriedades magnetostrictivas da liga (Fe0,80Al0,20)97B3 obtida por solidificação direcional." Universidade de São Paulo, 2014. http://www.teses.usp.br/teses/disponiveis/97/97134/tde-14092016-174334/.

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Neste trabalho foram obtidas barras da liga (Fe0,80Al0,20)97B3 por solidificação direcional (SD), nos diâmetros de 3 e 4 mm, com o objetivo de melhorar a magnetostricção desse material através da introdução de textura. As etapas de produção das barras envolveram a fabricação de lingotes da liga por fusão a arco L1, L2 e L6, seguida de usinagem (U) ou forjamento rotativo (F) a quente. O maior comprimento de barra obtido foi de 50 mm. Através de microscopia eletrônica de varredura e análise de composição por espectroscopia de energia dispersiva, detectou-se a presença de boro nas amostras pela v
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Feitosa, Francisco Riccelly P. "Obtenção e evolução da fase icosaedral quasicristalina em ligas Al-Cu-Fe e Al-Cu-Fe-B por Melt-Spinnin." Universidade Federal da Paraí­ba, 2009. http://tede.biblioteca.ufpb.br:8080/handle/tede/5349.

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Made available in DSpace on 2015-05-08T14:59:46Z (GMT). No. of bitstreams: 1 parte1.pdf: 1839351 bytes, checksum: 34e86046fc8cf8f52125675d2e7267f6 (MD5) Previous issue date: 2009-03-03<br>Coordenação de Aperfeiçoamento de Pessoal de Nível Superior<br>Melt spinnng processing is one of the most common processes to obtaining quasicrystaline structures. This is because of the fast cooling rate it imposes on the system, favoring such type of structure. This work deals with the production of quasycristaline phases (Al60Cu27,5Fe12,5 e Al57Cu27,5Fe12,5B3) via melt-spinning. The alloys were initially
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Beauchesne, Jean-Tristan. "Structures atomiques des phases icosaédriques de type F et dislocations." Phd thesis, Université Paris Sud - Paris XI, 2008. http://tel.archives-ouvertes.fr/tel-00274636.

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Cette thèse est consacrée à l'étude des structures atomiques des phases icosaédriques de type F et leurs dislocations.<br /><br />Dans cette étude nous avons d'abord construit une structure générique permettant de traiter dans un seul schéma les phases icosaédriques de type F connues. Afin de valider ce modèle nous avons synthétisé quelques compositions suggérées par ce dernier. Ces synthèses ont permis entre autres de découvrir deux nouvelles phases quasipériodiques à la stoechiométrie Al66,08Cu21,35Mn8,29Fe4,28 , l'une icosaédrique (métastable) de type F et l'autre décagonale (stable). Elles
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Delamare, José. "Etude microstructurale d'alliages Nd-Fe et Nd-Fe-Al : corrélation aux phases secondaires des aimants Nd-Fe-B." Rouen, 1992. http://www.theses.fr/1992ROUES058.

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La microstructure d'un alliage eutectique Nd-Fe a été étudiée grâce à la microscopie électronique à transmission. Il apparaît que le composé métastable A1 est constitué de deux composés nanocristallins, dont les compositions sont proches de Nd20Fe80 et Nd40Fe60 (% at. ). L'origine de la formation de tels composés est interprétée dans un diagramme de phases binaire métastable, incluant la phase NdFe2. Les caractéristiques structurales des autres phases du système binaire sont également étudiées. L'addition d'aluminium aux alliages Nd-Fe dont la composition est riche en Nd modifie drastiquement
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Books on the topic "Fe₃Al"

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Zia ul Deen Al Gamaas. Almorshed al fekehy fe al teb. Markaz Nour El Shaam, 1993.

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Katib, Al Adnani Al. Al zina wa al shedoud fe Al Tarikh Al Arabi. Al Intishar Al Arabi, 1999.

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Ulf, Jonzón, ed. La fe que vence al mundo. Clie, 1990.

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Universidad Nacional del Litoral. Centro de Publicaciones., ed. Selección poética "Santa Fe al Norte.". Centro de Publicaciones U.N.L., 1988.

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Universidad Nacional del Litoral. Centro de Publicaciones., ed. Selección poética "Santa Fe al Norte.". Centro de Publicaciones U.N.L., 1988.

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Odero, José Miguel. Teología de la fe: Una aproximación al misterio de la fe cristiana. Ediciones Unate, 1997.

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Muḥammadī, Muḥammad Ibrahīm Mīr. Fatḥ al-karīm al-mannān fe tajvīd-i kalām al-Raḥmān, al-maʻrūf bih: Tuḥfatulqārī. Kulytah al-Qurʼān-i al-Karīm valʻulūmulislamiyah, 2005.

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Bi, Yunjie. Microstructural studies of RSP AL/V and AL/MO/Fe alloys. University of Birmingham, 1988.

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Mahmudi, Reza. Structure and formability of Al-Fe-Mn sheets. University of Birmingham, 1987.

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Barron, Robert. Catolicismo: Un viaje al corazón de la fe. Image Books, 2013.

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Book chapters on the topic "Fe₃Al"

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Carow-Watamura, U., D. V. Louzguine, and A. Takeuchi. "Al-Fe-Nd." In Physical Properties of Ternary Amorphous Alloys. Part 1: Systems from Ag-Al-Ca to Au-Pd-Si. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-03481-7_64.

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Carow-Watamura, U., D. V. Louzguine, and A. Takeuchi. "Al-Fe-Pr." In Physical Properties of Ternary Amorphous Alloys. Part 1: Systems from Ag-Al-Ca to Au-Pd-Si. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-03481-7_67.

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Carow-Watamura, U., D. V. Louzguine, and A. Takeuchi. "Al-Fe-Sm." In Physical Properties of Ternary Amorphous Alloys. Part 1: Systems from Ag-Al-Ca to Au-Pd-Si. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-03481-7_69.

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Carow-Watamura, U., D. V. Louzguine, and A. Takeuchi. "Al-Fe-Y." In Physical Properties of Ternary Amorphous Alloys. Part 1: Systems from Ag-Al-Ca to Au-Pd-Si. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-03481-7_71.

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Predel, B. "Al-Fe (Aluminum - Iron)." In Ac-Ag ... Au-Zr. Springer Berlin Heidelberg, 2006. http://dx.doi.org/10.1007/10793176_88.

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Carow-Watamura, U., D. V. Louzguine, and A. Takeuchi. "Al-B-Fe (012)." In Physical Properties of Ternary Amorphous Alloys. Part 1: Systems from Ag-Al-Ca to Au-Pd-Si. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-03481-7_19.

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Carow-Watamura, U., D. V. Louzguine, and A. Takeuchi. "Al-Ca-Fe (017)." In Physical Properties of Ternary Amorphous Alloys. Part 1: Systems from Ag-Al-Ca to Au-Pd-Si. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-03481-7_24.

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Carow-Watamura, U., D. V. Louzguine, and A. Takeuchi. "Al-Co-Fe (030)." In Physical Properties of Ternary Amorphous Alloys. Part 1: Systems from Ag-Al-Ca to Au-Pd-Si. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-03481-7_37.

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Carow-Watamura, U., D. V. Louzguine, and A. Takeuchi. "Al-Cu-Fe (041)." In Physical Properties of Ternary Amorphous Alloys. Part 1: Systems from Ag-Al-Ca to Au-Pd-Si. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-03481-7_50.

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Carow-Watamura, U., D. V. Louzguine, and A. Takeuchi. "Al-Fe-Gd (051)." In Physical Properties of Ternary Amorphous Alloys. Part 1: Systems from Ag-Al-Ca to Au-Pd-Si. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-03481-7_61.

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Conference papers on the topic "Fe₃Al"

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Chang, Shih-Chin, and Jen-Jung Chan. "Hydrogen Degradation of Fe-Mn-Al Alloys." In CORROSION 1987. NACE International, 1987. https://doi.org/10.5006/c1987-87182.

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Abstract The effect of electrolytic hydrogen charging on Fe-Mn-Al alloys with fully austenitic and ferrite-austenite dual phase structures was studied. Little degradation of tensile properties was observed on precharged tensile specimens. With dynamic charging, the degradation of tensile properties of the alloys was evident. The hydrogen assisted cracking in fully austenitic alloy initiated at surface and propagated into the specimen mainly along the grain boundaries with some surface grains fractured transgranularly. In ferrite-austenite dual phase alloy, the crack was either along the ferrit
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Chang, C. Steve, and Bijendra Jha. "High Temperature Oxidation Behavior of Fe-Cr-Al Foils." In CORROSION 1998. NACE International, 1998. https://doi.org/10.5006/c1998-98540.

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Abstract Metallic catalytic converters for automotive emission control is becoming an important application for heat resistant alloys as more design opportunities are realized. The service conditions and design of metallic catalytic converters require the alloy to be highly oxidation resistant at gauges typically at 50 microns or less. For conventional heat resistant alloy design the goal is to form a well adherent scale on the alloy surface to protect the alloy matrix from being oxidized. However, the thin gauge results in a limited supply of alloying elements that can form the protective sca
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Banovic, S. W., J. N. DuPont, and A. R. Marder. "Corrosion Resistance of Weldable Fe-Al Alloys in Reducing Environments." In CORROSION 1999. NACE International, 1999. https://doi.org/10.5006/c1999-99059.

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Abstract Low aluminum Fe-Al alloys are being investigated for use as protective coatings in reducing environments. Intermetallic compositions have already demonstrated excellent high temperature corrosion resistance in both oxidation and sulfidation environments, however, they are limited in use due to low room temperature ductility and poor weldability arising from hydrogen embrittlement Using Gas Tungsten Arc and Gas Metal Arc Welding processes, without the use of pre-heat and post weld heat treatments, a weldability regime below approximately 10 wt% Al in the overlay has been found. The hig
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Kharchenko, Vasyl, Dmitrii Kharchenko, Olha Shchokotova, and Borys Lysenko. "Plastic Deformation Modeling and Mechanical Properties of Fe-Cr-Al Alloys." In 2024 IEEE 14th International Conference Nanomaterials: Applications & Properties (NAP). IEEE, 2024. http://dx.doi.org/10.1109/nap62956.2024.10739710.

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Pint, B. A. "Performance of Al-Rich Oxidation Resistant Coatings for Fe-Base Alloys." In AM-EPRI 2010, edited by D. Gandy, J. Shingledecker, and R. Viswanathan. ASM International, 2010. http://dx.doi.org/10.31399/asm.cp.am-epri-2010p0839.

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Abstract Diffusion aluminide coatings have been evaluated as a strategy for improving the oxidation resistance of austenitic and ferritic-martensitic (FM) steels, particularly in the presence of steam or water vapor. The objective was to evaluate the strengths and weaknesses of these coatings and quantify their performance and lifetime. Long-term diffusion and oxidation experiments were conducted to study the behavior of various model diffusion coatings and produce a better data set for lifetime predictions. The key findings are that (1) thin coatings (&amp;lt;50μm) with relatively low Al cont
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Kutelia, E. R., O. O. Tsurtsumia, B. P. Bulia, O. I. Mikadze, and S. I. Bakhtiyarov. "High Temperature Gas Corrosion of Fe-Cr-Ni-Al-La Alloy." In CORROSION 2008. NACE International, 2008. https://doi.org/10.5006/c2008-08464.

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Abstract High-chromium (&amp;gt;40%) content Fe-Cr-Ni-Al-La alloy was investigated in different corrosive environment (laboratory air, N2O4, exhaust gas) at various elevated temperatures. Oxidation kinetics, as well as morphology, phase and elemental compositions of the oxide scale developed at the initial oxidation stages were of our interest. It was determined that condition of oxidized surface had defined influence on the process of oxide scale formation at high temperatures; the optimal correlation of preoxidation temperatures enables alloy’s exploitation at 1200-1300°C rather long time ow
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Guanabara Junior, Paulo, and Levi de Oliveira Bueno. "AVALIAÇÃO DO COMPORTAMENTO SUPERPLÁSTICO DE UMA AÇO INOXIDÁVEL AUSTENÍTICO Fe-Mn-Al." In 61º Congresso Anual da ABM. Editora Blucher, 2006. https://doi.org/10.5151/2594-5327-2005-14496-0299.

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Gupta, Rachana, Mukul Gupta, Akhil Tayal, and Ajay Gupta. "Reactive nitrogen sputtering of Fe, Al and Fe(Al)." In SOLID STATE PHYSICS: Proceedings of the 56th DAE Solid State Physics Symposium 2011. AIP, 2012. http://dx.doi.org/10.1063/1.4710236.

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Pityana, Sisa, and Retha Rossouw. "Laser alloyed Al-Ni-Fe coatings." In ICALEO® 2008: 27th International Congress on Laser Materials Processing, Laser Microprocessing and Nanomanufacturing. Laser Institute of America, 2008. http://dx.doi.org/10.2351/1.5061430.

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Shubber, Fatima L., Saad Hameed Al-Shafaie, and Nabaa Sattar Radhi. "Review of (Fe-Al-X) alloys." In 2ND INTERNATIONAL CONFERENCE FOR ENGINEERING SCIENCES AND INFORMATION TECHNOLOGY (ESIT 2022): ESIT2022 Conference Proceedings. AIP Publishing, 2024. http://dx.doi.org/10.1063/5.0190957.

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Reports on the topic "Fe₃Al"

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Shen, Zhouxin. Surface structures of Al-Pd-Mn and Al-Cu-Fe icosahedral quasicrystals. Office of Scientific and Technical Information (OSTI), 1999. http://dx.doi.org/10.2172/348927.

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Wright, I. G., B. A. Pint, P. F. Tortorelli, and C. G. McKamey. Development of ODS-Fe{sub 3}Al alloys. Office of Scientific and Technical Information (OSTI), 1997. http://dx.doi.org/10.2172/330684.

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Kim, Hyong June. Al-Ca and Al-Fe metal-metal composite strength, conductivity, and microstructure relationships. Office of Scientific and Technical Information (OSTI), 2011. http://dx.doi.org/10.2172/1048512.

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Bloomer, T. E., J. Flumerfelt, and M. J. Kramer. Surface carbon films on Al-Cu-Fe quasicrystalline powders. Office of Scientific and Technical Information (OSTI), 1996. http://dx.doi.org/10.2172/432954.

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Sassi, Michel JPC, and David Senor. Tritium Diffusion in Fe-Al Aluminide Coating Bulk Phases. Office of Scientific and Technical Information (OSTI), 2021. http://dx.doi.org/10.2172/1983611.

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Wright, R. N., B. H. Rabin, and J. K. Wright. Processing, properties, and wear resistance of aluminides. [Fe[sub 3]Al; Al[sub 3]Ti]. Office of Scientific and Technical Information (OSTI), 1993. http://dx.doi.org/10.2172/6615487.

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Limmer, Krista, Daniel Field, and Katherine Sebeck. Considerations for Casting Industrial-Scale Fe-Mn-Al-C Ingots. DEVCOM Army Research Laboratory, 2022. http://dx.doi.org/10.21236/ad1168553.

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Sordelet, D. J., M. J. Kramer, I. E. Anderson, and M. F. Besser. Microstructural evolution, oxidation and wear of Al-Cu-Fe quasicrystalline coatings. Office of Scientific and Technical Information (OSTI), 1995. http://dx.doi.org/10.2172/106644.

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Prichard, Paul D. The structure-property relationships of powder processed Fe-Al-Si alloys. Office of Scientific and Technical Information (OSTI), 1998. http://dx.doi.org/10.2172/654137.

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Field, Kevin G., Richard H. Howard, and Yukinori Yamamoto. Design of Experiment for Irradiation of Welded Candidate Fe-Cr-Al Alloys. Office of Scientific and Technical Information (OSTI), 2015. http://dx.doi.org/10.2172/1209215.

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