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Refining of structure of the alloy AlMn1Cu with use of multiple severe plastic deformation

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Języki publikacji
EN
Abstrakty
EN
Purpose: Substance of the investigated issue is analysis of the obtained medium grain size, mechanical properties and formability of the alloy AlCu1Mn by the process of multiple severe plastic deformation. Design/methodology/approach: Comparison of results obtained by pressing through the classical channel geometry and through the channel with modified geometry. Findings: This alloy is used for manufacture of strips. Obtaining of the required grain refinement during initial forming operations will substantially change the existing production technology and increase its efficiency. Research limitations/implications: Increase of amount of deformation will fundamentally increase efficiency of the process of multiple severe plastic deformation. Practical implications: New findings will be applied into production technology at the company AlInvest Bridlicna, Czech Republic. Originality/value: New solution of geometry of the ECAP channel is original, as well as findings, which will be used at severe plastic deformation.
Rocznik
Strony
167--170
Opis fizyczny
Bibliogr. 14 poz., wykr.
Twórcy
autor
autor
  • Faculty of Mechanical Engineering, VSB – Technical University of Ostrava, 17 listopadu 15, CZ 708 33 Ostrava – Poruba, Czech Republic, stanislav.rusz@vsb.cz
Bibliografia
  • 1. M. Gutkin, Yu. - Ovid'ko, I.A. - C.S. Pande, Theoretical models of plastic deformation processes in nanocrystalline materials, Revue Advantage Materials Science 2 (2001) 80-102.
  • 2. R.Z. Valjev, Y. Estrin, Z. Horita et. al, Producing bulk ultrafine grained materials by severe plastic deformation, JOM (2006) 33-39.
  • 3. R.Z. Valjev, T.G. Langdon, Developments in the use of ECAP Processing for Grain Refinements, Revue Advantage Materials Science 13 (2006) 15-26.
  • 4. W. Chen, D. Ferguson, H. Ferguson, Multi-axis Deforma- tion Methods to Achieve Extremely Large Strain and Ultrafine Grains in Ultrafine Grained Materials, TMS, Warrendale, Pennsylvania, 2000, 235-245.
  • 5. P.K. Raghavan Srinivasan, B. Chaudhury, Q. Ha Cherukuri, D. Swenson, P. Gros, Continuous Severe Plastic Deformation Processing of Aluminum Alloys, DOE Award Number: DE- FC36-01ID14022, Technical rapport, 2006.
  • 6. V. Segal, Materials Processing by Simple Shear, Materials Science and Engineering A197 (1995) 157-164.
  • 7. K. Rodak, J. Pawlicki Microstructure of ultrafine-grained Al produced by severe plastic deformation Archives of Materials Science and Engineering 28/ 7 (2007) 409-412.
  • 8. L.A. Dobrzański, R. Maniara, M. Krupiński, J.H. Sokolowski, Microstructure and mechanical properties of AC AlSi9CuX alloys, Journal of Achievements in Materials and Manufacturing Engineering 24/ 2 (2007) 51-54.
  • 9. L.A. Dobrzański, M. Gumińska, Computer aided system for selection of parameters for making metallographic microsections, Journal of Achievements in Materials and Manufacturing Engineering 24/ 2 (2007) 147-150.
  • 10. P. Gudimetla, K.D.V.P. Yarlagadda, Finite element analysis of the interaction between an AWJ particle and a polycrystalline alumina ceramic, Journal of Achievements in Materials and Manufacturing Engineering 23/1 (2007) 7-14.
  • 11. Y. Estrin, Effects of Severe Plastic Deformation: Mechanical Properties and Beyond, Materials Science Forum 503-504 (2006) 91-98.
  • 12. K.T. Park, K. Tae, Ch. S. Lee, Y.S. Kim, D.H. Shin, Superplastic Deformation of Ultrafine Grained Al Alloy Processed by ECAP and Post-Rolling, Materials Science Forum 503-504 (2006) 119-124.
  • 13. B. Veerlinden, M. Popovic, Influence of Cu on the Mechanical Properties of an Al-4.4wt%Mg Alloy after ECAP, Materials Science Forum 503-504 (2006) 107-11.
  • 14. Ch. Xu, M. Furukawa, Z. Horita, T.G.Langdon, Developing a Model for Grain Refinement in Equal-Channel Angular Pressing, Materials Science.Forum 503-504 (2006) 19-24.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWAW-00010013
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