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Formation and structure of Co50Cr15Mo14C15B6 bulk metallic glasses

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: In the present paper thermal stability and structure of Co50Cr15Mo14C15B6 (numbers indicate at.%) glassy alloys were investigated. Design/methodology/approach: The following experimental techniques were used: scanning electron microscopy (SEM) and X-ray diffraction (XRD) phase analysis method to the test the structure. The thermal properties associated with crystallization temperature of the glassy samples were measured using differential thermal analysis and differential scanning calorimetry. Findings: The structural studies revealed an amorphous structure for the rods with thicknesses up to 3 mm, regardless of their thickness. Research limitations/implications: During thermal activation of metallic glasses two processes can be distinguished: structural relaxation and complex relaxation process of the alloy. Practical implications: The Co-rich amorphous alloys have attracted great interest for a basic research on the materials as well as for variety application. Originality/value: The obtained results confirm the utility of applied investigation methods in the thermal and structure analysis of examined amorphous alloys.
Rocznik
Strony
28--33
Opis fizyczny
Bibliogr. 19 poz.
Twórcy
autor
  • Division of Nanocrystalline and Functional Materials and Sustainable Pro-ecological Technologies, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland, aleksandra.zajdel@polsl.pl
Bibliografia
  • [1] P. Kwapuliński, J. Rasek, Z. Stokłosa, G. Badura, B. Kostrubiec, G. Haneczok, Magnetic and mechanical properies in FeXSiB (X=Cu, Zr, Co) amoprhous alloy, Archives of Materials Science and Engineering 31/1 (2008) 25-28.
  • [2] L.A. Dobrzański, M. Drak, B. Ziębowicz, Materials with specific magnetic properties, Journal of Achievements in Materials and Manufacturing Engineering 17 (2006) 37-40.
  • [3] G. Badura, J. Rasek, Z. Stokłosa, P. Kwapuliński, G. Haneczok, J. Lelątko, L. Pająk, Soft magnetic properties enhacement effect and crystallization processes in Fe78-xNbxSi13B9 amorphous alloy, Journal of Alloys and Compounds 436 (2007) 43-50.
  • [4] S. Lesz, R. Nowosielski, A. Zajdel, B. Kostrubiec, Z. Stokłosa, Structure and magnetic properties of the amorphous Co80Si9B11 alloy, Journal of Achievements in Materials and Manufacturing Engineering 18 (2006) 155-158.
  • [5] 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 (2006) 35-39.
  • [6] R. Nowosielski, R. Babilas, Structure and magnetic properties of Fe36Co36B19Si5Nb4 bulk metallic glasses, Proceedings of the 12th International Materials Symposium, IMSP’2008, Denizli, Turkey, 2008, 101-106.
  • [7] A. Inoue, Bulk amorphous and nanocrystalline alloys with high functional properties, Materials Science and Engineering A 304-306 (2001) 1-10.
  • [8] A. Inoue, A. Makino, A. Mizushima, Ferromagnetic bulk glassy alloys, Journal of Magnetism and Magnetic Materials 215-216 (2000) 246-252.
  • [9] W.H. Wang, C. Dong, C.H. Shek, Bulk metallic glasses, Materials Science and Engineering R 44 (2004) 45-89.
  • [10] R. Nowosielski, R. Babilas, P. Ochin, Z. Stokłosa, Thermal and magnetic properties of selected Fe-based metallic glasses, Archives of Materials Science and Engineering 30/1 (2008) 13-16.
  • [11] H. Chiriac, T.A. Ovari, Amorphous glass - coverd magnetic wires: preparation, properties, application, Progress in Materials Science 40 (1996) 333-407.
  • [12] P. Kwapuliński, A. Chrobak, G. Haneczok, Z. Stokłosa, J. Rasek, J. Lelątko, Optimization of soft magnetic properties In nanoperm type alloys, Materials Science and Engineering C 23 (2003) 71-75.
  • [13] S. Lesz, P. Kwapuliński, R. Nowosielski, Formation and physical properties of Fe-based bulk metallic glasses with Ni addition, Journal of Achievements in Materials and Manufacturing Engineering 31/1 (2008) 35-40.
  • [14] A. Inoue, B.L. Shen, C.T. Chang, Fe- and Co-based bulk glassy alloys with ultrahigh strength of over 4000 MPa, Intermetallics 14 (2006) 934-944.
  • [15] A. Inoue, B. Shen, A. Takeuchi, Fabrication, properties and applications of bulk glassy alloys in late transition metal-based systems, Materials Science and Engineering 441 (2006) 18-25.
  • [16] W.H. Wang, Roles of minor additions in formation and properties of bulk metallic glasses, Progress in Materials Science 52 (2007) 540-596.
  • [17] A. Inoue, Stabilization of metallic supercooled liquid and bulk amorphous alloys, Acta Materialia 48 (2000) 279-306.
  • [18] H. Men, S.J. Pang, T. Zhang, Thermal stability and microhardness of new Co-based bulk metallic glasses, Materials Science and Engineering A 449 (2007) 538-540.
  • [19] D. Turnbull, Under what conditions can glass be formed?, Contemporary Physics 10/5 (1969) 473-488.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL7-0034-0004
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