Ing. Michaela Císařová, Ph.D.

E-mail:   cisarova@fme.vutbr.cz 
Dept.:   Institute of Manufacturing Technology
Dept. of Metal Forming and Plastics
Position:   Assistant Professor
Room:   A1/1622

Education and academic qualification

  • 2005, Ing., Faculty of Mechanical Engineering, Brno University of Technology, branch of Manufacturing Technology

Scientific activities

  • Monitoring of intensity deformation of zinc coating metal sheet at biaxial tensity. BD 1363061.

Projects

  • Monitoring of intensity deformation of zinc coating metal sheet at biaxial tensity. BD 1363061.

Supervised courses:

Publications:

  • CÍSAŘOVÁ, M.; PETERKOVÁ, E.; HORÁK, M.:
    Design of experimental tool for tube hydroforming, MM Science Journal
    journal article in Scopus
  • CÍSAŘOVÁ, M.; DVOŘÁK, M.:
    The influence of bending angle of the Zn metal sheet coated on surface morphology,
    Journal for technology of plasticity, Vol.37, (2012), No.2, pp.189-194, ISSN 0354-3870, University of Novi Sad
    journal article - other
  • DVOŘÁK, M.; MAREČKOVÁ, M.:
    Monitoring of Process Parameters of Sheet Metals with hard Soldering Joint,
    Forming 2008, Plasticity materiálu, pp.17-17, ISBN 978-80-248-1795-8, (2008), Vysoká škola báňská - Technická univerzita Ostrava
    conference paper
    akce: 15. mezinárodní vědecká konference Forming 2008, Brno, 10.09.2008-13.09.2008
  • MAREČKOVÁ, M.; HUŠEK, M.; DVOŘÁK, M.:
    Výzkum tvařitelnosti tenkého plechu z upravených polotovarů,
    FSI Junior konference. Prezentace vědeckovýzkumných prací doktorandů, pp.111-117, ISBN 978-80-214-3565-0, (2008), VUT FSI v Brně
    conference paper
    akce: FSI Junior konference 2007, Brno, 23.01.2008-23.01.2008
  • DVOŘÁK, M.; MAREČKOVÁ, M.:
    Monitoring of zinc-coating base metal deformation intensity at biaxial tensity,
    Technológia 2007, sborník abstraktov, pp.71-76, ISBN 978-80-227-2712-9, (2007), Strojnicka fakulta STU v Bratislavě
    conference paper
    akce: 10. medzinárodná konferencia TECHNOLÓGIA 2007, Bratislava, 19.09.2007-20.09.2007
  • DVOŘÁK, M.; PERNIKÁŘ, J.; MAREČKOVÁ, M.:
    Statistická interpretace tloušťky pocínovaného plechu,
    FORM 2006, Forming Technology, Tools and Machines, pp.7-12, ISBN 80-214-3231-4, (2006), Brno University of Technology
    conference paper
    akce: 37. mezinárodní konference Experimentální analýza napětí EAN´99 , Frenštát pod Radhoštěm , 01.06.1999-03.06.1999
  • DVOŘÁK, M.; MAREČKOVÁ, M.:
    Zkoušky žárově pozinkovaného plechu,
    Technik, Vol.14, (2006), No.6, pp.21-22, ISSN 1210-616X, Economia, a. s.
    journal article - other

List of publications at Portal BUT

Abstracts of most important papers:

  • CÍSAŘOVÁ, M.; PETERKOVÁ, E.; HORÁK, M.:
    Design of experimental tool for tube hydroforming, MM Science Journal
    journal article in Scopus

    When forming a material, its good formability is essential. It is primarily influence by mechanical properties and chemical composition of the material. Formability can be assessed by mechanical tests, or technological tests. Tensile test is one of the most common mechanical tests used to obtain basic mechanical properties of the material. Another possibility how to evaluate the behavior of a material under given a load is to select a proper technological test with an appropriate experimental tool. Design of a tool should be simple, save and it should allow monitoring during the test, ie. tube hydroforming. Article deals with design of experimental tool for the realization of experiments using radial hydroforming tubes whose ends will be fixed inside the tool because of an earlier setting of limit state of deformation.
  • CÍSAŘOVÁ, M.; DVOŘÁK, M.:
    The influence of bending angle of the Zn metal sheet coated on surface morphology,
    Journal for technology of plasticity, Vol.37, (2012), No.2, pp.189-194, ISSN 0354-3870, University of Novi Sad
    journal article - other

    It is defined as material for experiments. The thickness of the zinc coating was measured. The metal sheet has been subjected to technological bending test, which was evaluated from the behavior, morphology and the deformation of the coating.
  • DVOŘÁK, M.; MAREČKOVÁ, M.:
    Monitoring of zinc-coating base metal deformation intensity at biaxial tensity,
    Technológia 2007, sborník abstraktov, pp.71-76, ISBN 978-80-227-2712-9, (2007), Strojnicka fakulta STU v Bratislavě
    conference paper
    akce: 10. medzinárodná konferencia TECHNOLÓGIA 2007, Bratislava, 19.09.2007-20.09.2007

    The aim of an experimental project is to monitor the influence of electrolytic deposited zinc coating in drawing process of metal sheet and apply these resultes in practice of firms. A metal sheet thickness was monitored. The deep-drawing DC03 metal sheet is appropriate for cold forming and has an electrolytic zinc coating surface weight of about 75 g/m2.
  • DVOŘÁK, M.; PERNIKÁŘ, J.; MAREČKOVÁ, M.:
    Statistická interpretace tloušťky pocínovaného plechu,
    FORM 2006, Forming Technology, Tools and Machines, pp.7-12, ISBN 80-214-3231-4, (2006), Brno University of Technology
    conference paper
    akce: 37. mezinárodní konference Experimentální analýza napětí EAN´99 , Frenštát pod Radhoštěm , 01.06.1999-03.06.1999

    The paper consider statistic evaluation of the thickness tin sheet metal. For experimentation get in metal sheet of thickness 0,16 mm with electrolytic deposited tin-coating about the surface weight 2,0/2,0 g/m2. The producer metal sheet is U. S. STEEL in Košice and it was termed DR 580 with surface stone finish. It was folowing thickness of sheet metal with definition interval estimation of mean value and statistic tolerance limits. The thickness of sheet metal is bottom line (factor) on drawing of very thin coating sheet metal, specially by the tin (Sn).
  • DVOŘÁK, M.; MAREČKOVÁ, M.:
    Zkoušky žárově pozinkovaného plechu,
    Technik, Vol.14, (2006), No.6, pp.21-22, ISSN 1210-616X, Economia, a. s.
    journal article - other

    Bending of test of dipping zinc-coated sheet metal. Metal basis is of steels with worse formability. The aim of the test was to find a limit bend angle including amount of springbeck angle to the rise of coating crack. Further, the deep-drawing test by Erichsen was made.