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Structure of sintered gradient tool materials

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: Investigation of influence of sintering conditions onto the structure of composite gradient tool materials. The chemical composition of the investigated materials’ core was corresponding to the M2 high-speed steel and was reinforced with the WC and TiC type hard carbide phases with the growing portions of these phases in the outward direction from the core to the surface. Design/methodology/approach: Powder Metallurgy, SEM, X-Ray Microanalysis. Findings: Changing of technological properties and structure of composite gradient tool materials (depending on the compositions of used mixtures and sintering temperature) was analyzed and described. Practical implications: Tool materials used especially for cutting tools and plastic forming tools. Originality/value: Providing of high properties characteristic of cemented carbides keeping high ductility characteristic of steel was achieved.
Rocznik
Strony
23--28
Opis fizyczny
Bibliogr. 15 poz., rys., tabl.
Twórcy
autor
autor
autor
  • Division of Materials Processing Technology, Management and Computer Techniques in Materials Science, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland, jaroslaw.mikula@polsl.pl
Bibliografia
  • [1] Y. Miyamoto, W. A. Kaysser, B. H. Rabin, A. Kawasaki, R. G. Ford, Functionally graded materials, Kluwer Academic Publishers, Boston, 1999.
  • [2] W. Lengauer, K. Dreyer, Functionally graded hardmetals, Journal of Alloys and Compounds 338 (2002) 194-212.
  • [3] B. Kieback, A. Neubrand, H. Riedel, Processing techniques for functionally graded materials, Materials Science and Engineering A362 (2003) 81-106.
  • [4] U. Schulz, M. Peters, F. W. Bach, G. Tegeder, Graded coatings for thermal, wear, and corrosion barriers, Materials Science and Engineering A362 (2003) 61-80.
  • [5] J. Mikuła, G. Matula, K. Gołombek, L.A. Dobrzański, Sintered composite gradient tool materials, Archives of Materials Science and Engineering 32/1 (2008) 25-28.
  • [6] S. Jauregi, F. Fernández, R. H. Palma, V. Martínez, J. J. Urcola, Influence of atmosphere on sintering of T15 and M2 steel powders, Metallurgical Transactions 23A (1992) 389-400.
  • [7] G. Herranz, B. Levenfeld, A. Várez, J. M. Torralba, Development of new feedstock formulation based on high density polyethylene for MIM of M2 high speed steel, Powder Metallurgy 48/2 (2005) 134-138.
  • [8] Z. Y. Liu, N. H. Loh, K. A. Khor, S. B. Tor, Mechanical alloying of TiC/M2 high speed steel composite powders and sintering investigation, Materials Science and Engineering A311 (2001) 13-21.
  • [9] P. Romano, F. J. Velasco, J. M. Torralba, N. Candela, Processing of M2 powder metallurgy high-speed steel by means of starch consolidation, Materials Science and Engineering A 419 (2006) 1-7.
  • [10] A. Varez, B. Levenfeld, J. M. Torralba, G. Matula, L. A. Dobrzański, Sintering in different atmospheres of T15 and M2 high speed steels produced by modified metal injection moulding process, Materials Science and Engineering 366/2 (2004) 318-324.
  • [11] G. Matula, L. A. Dobrzański, A. Várez, B. Levenfeld, J. M. Torralba, Comparison of structure and mechanical properties of HS12-1-5-5 type high-speed steels produced by Powder Injection Moulding and Pressureless Forming method, Journal of Materials Processing Technology 162-163 (2005) 230-235.
  • [12] B. Gómez, E. Gordo, E. M. Ruiz-Navas, J. M. Torralba, Influence of the chemical composition and particle size of the metal matrix, on TiCN-reinforced Fe-based composites, Journal of Achievements in Materials and Manufacturing Engineering 17 (2006) 57-60.
  • [13] L. A. Dobrzański, G. Matula, A. Várez, B. Levenfeld, J. M. Torralba, Fabrication methods and heat treatment conditions effect on tribological properties of high speed steels, Journal of Materials Processing Technology 157-158 (2004) 324-330.
  • [14] V. Trabadelo, S. Gimenez, T. Gomez-Acebo, I. Iturriza, Critical assessment of computational thermodynamics in the alloy design of PM high speed steels, Scripta Materialia 53 (2005) 287-292.
  • [15] L. A. Dobrzański, E. Hajduczek, J. Marciniak, R. Nowosielski, Physical metallurgy and heat treatment of tool materials, WNT, Warszawa, 1990 (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BOS2-0019-0048
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