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  1. 1
    رسالة جامعية

    المؤلفون: Yuste Roca, Abel Vicenç

    المساهمون: University/Department: Universitat Autònoma de Barcelona. Departament de Física

    مرشدي الرسالة: Sanpera Trigueros, Anna

    المصدر: TDX (Tesis Doctorals en Xarxa)

    وصف الملف: application/pdf

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    رسالة جامعية

    المؤلفون: Pino García, Manuel

    مرشدي الرسالة: Ortuño Ortín, Miguel, Somoza Gimeno, Andrés M, Universidad de Murcia. Departamento de Física

    المصدر: TDR (Tesis Doctorales en Red)

    الوقت: 538.9

    وصف الملف: application/pdf

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    رسالة جامعية
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    رسالة جامعية
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    دورية أكاديمية
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    دورية أكاديمية
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    رسالة جامعية
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    دورية أكاديمية

    المؤلفون: Molano Ruales, Diego Andrés

    المساهمون: Rosales Rivera, Andrés, Magnetismo y Materiales Avanzados

    وصف الملف: application/pdf

    العلاقة: [1] C. C. Koch, Material synthesis by Mechanical alloy. Annu. Re. Mater. Sci,121 143, 1989.; [2] R. Sundaresan and F. H. Froes, Mechanical Alloying.; [3] R. L. White, "The Use of Mechanical Alloying in the Manufacture of Multifilamentary Superconducting Wire," Ph.D. Thesis, Stanford Univ., 1979.; [4] J.S. Benjamin, ScientifIC American, 234 (5) (1976), p. 40; [5] S. Gialanella, Intermetallics 3 (I 995) 73-76; [6] F. Reyes-Gómez, W.R. Aguirre-Contreras, G.A. Pérez Alcázar, J.A. Tabares, Journal of Alloys and Compounds 735 (2018) 870-879; [7] A.K. Arzhnikov, L.V. Dobysheva, M.A. Timirgazin, J. Magn. Magn. Mater. 320 (2008) 1904; [8] D.A. Días, J. Ricardo de Sousa, J.A. Plascak, Phys. Lett. A 373 (2009) 3513; [9] M.J. Besnus, A. Herr, J.P. Meyer, J. Phys. F Met. Phys. 5 2138 (1975); [10] Y. Yanga, I. Barker, P. Martin, Phil. Mag. A 79 (1999) 449.; [11] A. Taylor, R.M. Jones, J. Phys. Chem. Solids 6 (1958) 16; [12] X. Amils, J. Nogués, S. Suriñach, J.S. Muñoz, M.D. Baró, A. Hernando, J.P. Morniroli, Phys. Rev. B 63 (2001), 052402.; [13] A. Arrott, H. Sato, Phys. Rev. 114 (1959) 1420; [14] G.P. Huffman, R.M. Fisher, J. Appl. Phys. 38 (1967) 735; [15] J. Nogués, E. Apiñaniz, J. Sort, M. Amboage, M. d’Astuto, O. Mathon, R. Puzniak, I. Fita, J. S. Gritaonandia, S. Suriñach, J. S. Muñoz, M. D. Baró, F. Plazaola, and F. Baudelet; PHYSICAL REVIEW B 74, 024407 2006.; [16] X. Amiles, J. Nogues, S. Suriñach; IEEE Transactions on magnetics, vol 34 No 4, July 1998, 1129-1131.; [17] Calka, A., Varin, R. A., Application of Controlled Ball Milling in Materials Processing, Proc. Int. Symp. on Processing and Fabrication of Advanced Materials IX (PFAM-IX), T.S. Srivatsan, R.A. Varin, M. Khor (Eds.) (ASM International, Materials Park, OH, pp.263-287, 2001.; [18] Bohn R, Hanbold T, Birringer R, Gleiter H. Nanocrystalline intermetallic compounds-an approach to ductility? Scripta Metallurgica et Materialia. 1991;25:81; [19] M. I. Raviathul and N. Krishna Mukhopadhyay, Estructural and Mechanical Behavior of Al-Fe intermetallics, DOI:10.5772/intechopen.73944.; [20] Jang JS, Koch CC. The Hall-Petch relationship in nanocrystalline iron produced by ball milling. Scripta Metallurgica et Materialia. 1990;24:1599.; [21] Koch CC, Cho YS. Nanocrystals by high energy ball milling. Nanostructured Materials. 1992;1:207; [22] Ermakov A, Yurchikov E, Barinov V. The magnetic properties of amorphous Y-Co alloy powders obtained by mechanical comminution. Physics of Metals and Metallography.1981;52:50; [23] Ermakov AY, Yurchikov YY, Barinov VA. Magnetic properties of amorphous powders prepared by the mechanical grinding of Y-Co alloys. Fizika Metallov I Metallovedenie. 1981;52:1184; [24] Physics of magnetism and magnetic materials, K. H. J. Buschow and F. R. De Boer, 2003.; [1] Bohn R, Hanbold T, Birringer R, Gleiter H. Nanocrystalline intermetallic compounds-an approach to ductility? Scripta Metallurgica et Materialia. 1991;25:81.; [2] Jang JS, Koch CC. The Hall-Petch relationship in nanocrystalline iron produced by ball milling. Scripta Metallurgica et Materialia. 1990;24:1599.; [3] Koch CC, Cho YS. Nanocrystals by high energy ball milling. Nanostructured Materials. 1992;1:207; [4] Ermakov A, Yurchikov E, Barinov V. The magnetic properties of amorphous Y-Co alloy powders obtained by mechanical comminution. Physics of Metals and Metallography.1981;52:50; [5] Ermakov AY, Yurchikov YY, Barinov VA. Magnetic properties of amorphous powders prepared by the mechanical grinding of Y-Co alloys. Fizika Metallov I Metallovedenie. 1981;52:1184; [6] C. C. Koch, Material synthesis by Mechanical alloy. Annu. Re. Mater. Sci,121 143, 1989.; [7] J.S. Benjamin, ScientifIC American, 234 (5) (1976), p. 40; [8] R. Sundaresan and F. H. Froes, Mechanical Alloying.; [9] R. L. White, "The Use of Mechanical Alloying in the Manufacture of Multifilamentary Superconducting Wire," Ph.D. Thesis, Stanford Univ., 1979.; [10] S. Gialanella, Intermetallics 3 (I 995) 73-76; [11] Calka, A., Varin, R. A., Application of Controlled Ball Milling in Materials Processing, Proc. Int. Symp. on Processing and Fabrication of Advanced Materials IX (PFAM-IX), T.S. Srivatsan; [12] F. Reyes-Gómez, W.R. Aguirre-Contreras, G.A. Pérez Alcázar, J.A. Tabares, Journal of Alloys and Compounds 735 (2018) 870-879; [1] Benjamín, J. S. 1970. Metall. Trans. 1:2943-51; [2] V. A. Peña Rodriguez, J. Quispe Marcatoma, Aplicación de la mecano-síntesis en la producción de materiales magnéticos blandos, Universidad Nacional Mayor de San Marcos.; [3] C. Casas Quesada, J. A. Benito Páramo, Influencia de la distribución bimodal de grano contenido en oxígeno y vías de consolidación sobre la resistencia y ductilidad para el hierro UF obtenido por molienda mecánica, Barcelona, 2014.; [4] C. C. Koch, Material synthesis by Mechanical alloy. Annu. Re. Mater. Sci, 121 143, 1989.; [5] A. Gómez, Amorfización de aleaciones metálicas mediante aleado mecánico, Sevilla, 2016.; [6] J. Y. Huang, Y. K. Wu and H. Q. Ye Acta Mater. 44. 1201 (1996).; [7] A. Calka, R.A. Varin, in: Proc. Int. Symp. Processing and Fabrication of Advanced Materials IX (PEAM-IX) (Eds. T.S. Srivatsan, R.A. Varin and M. Khor), ASM International, Materials Park, OH, 2001, p.263-287.; [8] B. D. Cullity. Elements of X-Ray Diffraction, 2nd Edition. Addison-Wesley Publishing Company, Inc. London, Amsterdam, Ontario, Sidney 1978; [9] D. R. Askeland, P. P. Fulay, W. J. Wright. Ciencia e Ingeniería de materiales, Ed. Cengage Learning, sexta edición.; [10] J. D. WINEFORDNER. Chemical Analysis. Introduction to X-Ray Powder Diffractometry. Vol 138. Ed John Wiley & Sons, Inc. EE UU. 1996.; [11] I. C. NOYAN, J.B. COHEN. Residual Stress; Measurement by diffraction and Interpretation. Springer–Verlag, New York, 1987; [12] S. Foner, Rev. Sci. Instrum 27, 548 (1956); [13] B. D. Cullity, C.D. Graham. Introduction to Magnetic materials 2nd Edition. WILEY. A 34ear wiley & sons Inc. Publication; [14] MICROSCOPÍA ELECTRÓNICA DE BARRIDO EN LA CARACTERIZACIÓN DE MATERIALES, Miguel Ipohorski y Patricia B. Bozzano.; [15] Estudio de Materiales Nanométricos con Microscopio Electrónico de Barrido SEM. Rodolfo Salas Cepeda; [16] https://sites.ualberta.ca/~ccwj/teaching/microscopyTest/; [17] J.A. Dean. The Analytical Chemistry Handbook. McGraw-Hill, Second Edition 1995.; [18] D.A. Skoog, F.J. Holler, S.R. Crouch and D. Harris (Editor). Principles of Instrumental Analysis, Sixth Edition. Thomson Brooks/Cole. 2007, 900-904.; [19] Calka, A., Varin, R. A., Application of Controlled Ball Milling in Materials Processing, Proc. Int. Symp. On Processing and Fabrication of Advanced Materials IX (PFAM-IX), T.S. Srivatsan, R.A. Varin, M. Khor (Eds.) (ASM International, Materials Park, OH, pp.263-287, 2001.; [20] David Jailes, Introduction to magnetism and magnetic materials, Springer-Science + Bussines media, B. V.; [1] X. Amils, J. Nogues, S. Surinach, M. D. Baro and J. S. Munoz: IEEE Trans. Magn. 34 (1998) 1129.; [2] X. Amils, J.S. Garitaonandia, J. Nogues, S. Surinach, F. Plazaola, J.S. Muñoz and M.D. Baró: J. Non-Crys. Sol. 287 (2001) 272-276.; [3] J. Nogués, E. Apiñaniz ,J. Sort, M. Amboage, M. d’Astuto, O. Mathon, R. Puzniak, I. Fita, J. S. Garitaonandia, S. Suriñach, J. S. Muñoz, M. D. Baró, F. Plazaola, and F. Baudelet: Phy. Rev. B 74, 024407 (2006).; [4] Materials Data JADE XRD Pattern Processing. MDI Materials Data. 1999.; [5] M.L. Ramón García. Determinación del tamaño de cristal utilizando el software Jade 6.5. Centro de Investigación en Energía, Universidad Nacional Autónoma de México. 2007.; [6] D. Von Rohr. Jade User’s Manual. 2002.; [1] L. Castex, J. L. Lebrun, G. Maeder, J. M. Sprauel, Publs Scient. Tech. 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    رسالة جامعية