PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Microstructural characterisation of sintered soft magnetic nanocomposite materials

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose:The main aim of this work is to investigate microstructure of of sintered soft magnetic nanocomposite materials produced by sintering axially on one side in the ambient atmosphere. Design/methodology/approach: Microstructure observations of 20 mm diameter sintered roller by light microscopy OLYMPUS, scanning electron microscopy OPTON DSM-940 and ZEISS SUPRA 35, and transmission electron microscopy JEOL 3010. The X-ray tests were realized with the use of the XRD 7 SEIFERT-FPM diffractometer equipped with the lamp of the cobalt anode of 35 kV voltage and 30 mA filament current was used. The nanocrystalline ferromagnetic powders were manufactured by high-energy ball milling (8000 SPEX CertiPrep Mixer/Mill) of metallic glasses ribbons in as state. The hot pressing process was made on machine “Degussa”. Findings: The analysis of the results enabled determination of the hot pressing parameters on structure of obtained stampings. This is typical of an dispersion strengthened case. Research limitations/implications: For the sintered roller obtained from metallic Co-based amorphous ribbons, further mechanical and magnetic examinations are planed. Practical implications: Conducted research shows that applied technology of sintered roller production allows to obtain good microstructural characteristics. Structure analysis of die stampings of powdered amorphous metallic ribbons is helpful to prepare this material by laboratory methods. Feature an alternative to commercial alloys and composite materials are the amorphous and nanocrystalline metal amorphous ribbons obtained by melt spinning technique and make it possible to obtain the new composite materials with best magnetic properties, which dimensions and shape can be freely formed. Originality/value: The paper presents influence of hot pressing parameters process of metallic powdered ribbons Co77Si11.5B11.5 on structure of obtained die stampings.
Rocznik
Strony
202--209
Opis fizyczny
Bibliogr. 44 poz., rys., tab.
Twórcy
autor
  • Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
autor
  • Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
  • Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
Bibliografia
  • [1] M. Jurczyk, Nanomaterials, Publishing House Poznan University of Technology, Poznań, 2001 (in Polish).
  • [2] M. Leonowicz, Nanocrystalline magnetic materials, Publishing house WNT, Warsaw, 1998 (in Polish).
  • [3] T. Kulik, Nanocrystalline soft magnetic materials obtained by the crystallisation of metallic glasses, Publishing House Warsaw University of Technology, Warsaw, 1998.
  • [4] Y. Yoshizawa, S. Oguma, K. Yamauchi, New Fe-based soft magnetic alloys composed of ultrafine grain structure Journal of Applied Physics 64 (1988) 6044.
  • [5] Y. Yoshizawa, K. Yamauchi, Magnetic properties of Fe-Cu-M-Si-B (M=Cr, V, Mo, Nb, Ta, W) alloys, Materials Science and Engineering A 32 (1991) 176-179.
  • [6] M. Soiński, Przegląd elektrotechniczny 9 (1999) 7.
  • [7] H. Sakamoto, T. Yamada, N. Okumura, T. Sato, Improvement in brittleness of amorphous Fe-Si-B-C alloy ribbons by controlling casting conditions, Materials Science and Engineering A 206/1 (1996) 150-153.
  • [8] H. Chiriac, F. Rusu, On electron-beam irradiation effect on the magnetic properties of Co68.25Fe4.5Si12.25B15 amorphous ribbons, Journal of Magnetism and Magnetic Materials, 196-197 (1999) 156-158.
  • [9] M.L. Sui, L.H. Qian, K.Y. He, Nanocrystallization of Ni-Fe-Nb-Si-B amorphous alloys, Materials Science and Engineering A 286 (2000) 201-204.
  • [10] I.Z. Rahman, Md. Kamruzzaman, M.A. Rahman, Magnetoimpedance effect in Co-based metallic glass ribbons, Journal of Materials Processing Technology 135-154 (2004) 791-796.
  • [11] Patent (EP 0160166 A1) Low magnetostriction amorphous metal alloys.
  • [12] Patent (EP 0161394 A1) Low magnetostriction amorphous metal alloys.
  • [13] R.C. O’Handley, Magnetostriction of metallic glasses, Amorphous Magnetism II, Publishing house Springer US 1977, 379-392. [14]G. Paltanea, V. Paltanea, G. Ionescu, Magnetic properties of a co based amorphous alloy after thermal and magnetic treatments, U.P.B. Scientific Bulletin, Series C 73/3 (2011) 195-208.
  • [15] S. Lesz, R. Nowosielski, B. Kostrubiec, Z. Stokłosa, Crystallization kinetics and magnetic properties of Co-based amorphous alloys, Journal of Achievements in Materials and Manufacturing Engineering 16/1-2 (2006) 35-39.
  • [16] V.R. Valenzuela, M. Knobel, M. Vazquez, Effects of bias field and driving current on the equivalent circuit response of magnetoimpedance in amorphous wires, Journal of Physics D: Applied Physics 28/12 (1995) 2404.
  • [17] L.A. Dobrzański, R. Nowosielski, J. Konieczny, J. Wysłocki, A. Przybył, Properties and structure of the toroidal magnetically soft cores made from the amorphous strips, powder, and composite materials, Journal of Materials Processing Technology 157 (2004) 669-678.
  • [18] J. Konieczny, L.A. Dobrzański, I. Wnuk, Magnetic properties of hot pressed powder Co68Fe4Mo1Si13.5B13.5 alloy, Journal of Achievements in Materials and Manufacturing Engineering 24/2 (2007) 111-114.
  • [19] L. Pesek, L.A. Dobrzanski, P. Zubko, J. Konieczny, Mechanical properties of metallic ribbons investigated by depth sensing indentation technique, Journal of Magnetism and Magnetic Materials 304/2 (2006) e645-e647.
  • [20] J. Konieczny, L.A. Dobrzański, L. Pešek, P. Zubko, Mechanical properties of Co-based amorphous ribbons, Journal of Achievements in Materials and Manufacturing Engineering 31/2 (2008) 254-261.
  • [21] J. Konieczny, L.A. Dobrzański, A. Przybył, J.J. Wysłocki, Structure and magnetic properties of powder soft magnetic materials, Journal of Achievements in Materials and Manufacturing Engineering 20 (2007) 139-142.
  • [22] R. Nowosielski, L.A. Dobrzański, P. Gramatyka, S. Griner, J. Konieczny, Magnetic properties of high-energy milled Fe78Si13B9 nanocrystalline powders and powder-based nanocomposites, Journal of Materials Processing Technology 157 (2004) 755-760.
  • [23] J. Konieczny, L.A. Dobrzański, J.E. Frąckowiak, Structure and magnetic properties of powder HITPERM material, Archives of Materials Science and Engineering 28/3 (2007) 156-164.
  • [24] J. Konieczny, L.A. Dobrzański, J.E. Frąckowiak, Structure and properties of the powder obtained from the amorphous ribbon, Journal of Achievements in Materials and Manufacturing Engineering 18/1-2 (2006) 143-146.
  • [25] L.A. Dobrzański, R. Nowosielski, J. Konieczny, The structure and magnetic properties of magnetically soft cobalt base nanocrystalline powders and nanocomposites with silicon binding, Journal of Materials Processing Technology 155 (2004) 1943-1949.
  • [26] J. Degmova, S. Roth, J. Eckert, H. Graal. L. Schulz, Magnetic properties of bult FeAlGaPCBSi samples prepared by ball-milling and subsequently hot pressing, Material Science and Engineering A 375-377 (2004) 265-269.
  • [27] J. Füzer, J. Bednarčík, P. Kollár, S. Roth, Structure and soft magnetic properties of the bulk samples prepared by compaction of the mixtures of Co-based and Fe-based powders, Journal of Magnetism and Magnetic Materials 316 (2007) e834-e837.
  • [28] P. Kollár, J. Bednarčík, J. Füzer, D. Olekšáková, Soft magnetic materials in a bulk form prepared by powder compaction, Czechoslovak Journal of Physics 54 (2004) D67-D72.
  • [29] K. Biswas, S. Ram, S. Roth, L. Schultz, J. Eckert, Fabrication of bulk amorphous Fe67Co9.5Nd3Dy0.5B20 alloy by hot extrusion of ribbon and study of the magnetic properties, Journal of Materials Science 41 (2006) 3445-3450.
  • [30] J. Bednarčík, J. Füzer, P. Kollár, S. Roth, J. Eckert, Co-based soft magnetic bulk materials prepared by hot powder compaction, Czechoslovak Journal of Physics 54 (2004) D 81-84.
  • [31] J. Konieczny, I. Wnuk, L.A. Dobrzański, Structure and magnetic properties of hot pressed powder Co77Si11.5B11.5 alloy, Journal of Achievements in Materials and Manufacturing Engineering 31/2 (2008) 335-340.
  • [32] L.A. Dobrzański, R. Nowosielski, A. Przybył, J. Konieczny, Soft magnetic nanocomposite with powdered metallic ribbon based on cobalt and polymer matrix, Journal of materials processing technology 162 (2005) 20-26.
  • [33] L.A. Dobrzanski, R. Nowosielski, J. Konieczny, A. Przybył, J. Wysłocki, Structure and properties of nanocrystalline soft magnetic composite materials with silicon polymer matrix, Journal of magnetism and magnetic materials 290 (2005) 1510-1512. [34]L.A. Dobrzański, B. Ziebowicz, M. Drak, J. Konieczny, Influence of the structure on the properties of new magnetic composite materials, Sonderbande Der Praktischen Metallographie 38 (2006) 519.
  • [35] R. Nowosielski, S. Griner, J. Konieczny, Structure and properties of nanocrystalline composite materials, Materials Science Forum 437 (2003) 93-96.
  • [36] L.A. Dobrzański, J. Konieczny, Structure and properties of nanocrystalline composite materials, Машинознавство 127/1 (2008) 26-32.
  • [37] R. Nowosielski, L. A. Dobrzanski, S. Griner, J. Konieczny, Magnetic properties of nanocrystalline cobalt based powder soft magnetic materials and nanocomposites with silicon matrix, Archiwum Nauki o Materialach 25/1 (2004) 53-72.
  • [38] P. Gramatyka, R. Nowosielski, P. Sakiewicz, Magnetic properties of polymer bonded nanocrystalline powder, Journal of Achievements in Materials and Manufacturing Engineering 20 (2007) 115-118.
  • [39] L.A. Dobrzański, A. Wydrzyńska, O. Iesenchuk, Intelligent epoxy matrix composite materials consisting of Tb0.3Dy0.7Fe1.9 magnetostrictive particulates, Archives of Materials Science and Engineering 35/1 (2009) 33-38.
  • [40] R. Nowosielski, Soft magnetic polymer-metal composites consisting of nanostructural Fe-basic powders, Journal of Achievements in Materials and Manufacturing Engineering 24/1 (2007) 68-77.
  • [41] M. Pękala, M. Jachimowicz, V.I. Fadeeva, H. Matyja, Phase transformations in Co-B-Si alloys induced by high-energy ball milling, Journal of Non-Crystalline Solids 287 (2001) 360-365.
  • [42] M. Moeller, A. Novy, M. Brunner, R. Hilzinger, Powder composite cores of nanocrystalline soft magnetic FeSiB-CuNb alloys, Journal of Magnetism and Magnetic Materials 196-197 (1999) 357-358.
  • [43] Z. Bojarski, E. Łągiewka, Structural X-ray analysis, University of Silesia Publishing House, Katowice 1995.
  • [44] C. Suryanarayana, Mechanical alloying and milling, Progress in Materials Science 46 (2001) 1-184.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-77c9e6cd-dcf8-4ded-9b4a-3d23c97897e7
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.