Ing. Kamil Podaný, Ph.D.

E-mail:   podany@fme.vutbr.cz 
Dept.:   Institute of Manufacturing Technology
Position:   Institute Secretary
Room:   A1/1647
Dept.:   Institute of Manufacturing Technology
Dept. of Metal Forming and Plastics
Position:   Assistant Professor
Room:   A1/1647

Education and academic qualification

  • 1995, SPŠ strojnická in Brno, Engineering Specialization
  • 2000, Ing., Faculty of Mechanical Engineering, Master´s programme Manufacturing Technology, Department of Metal Forming and Plastics
  • 2008, Ph.D., Faculty of Mechanical Engineering, Doctoral study programme Manufacturing Technology, Department of Metal Forming and Plastics

Career overview

  • 2000-2008, Doctor student, Faculty of Mechanical Engineering, Institute of Manufacturing Technology, Department of Metal Forming and Plastics
  • 2003-2004, Research worker, Faculty of Mechanical Engineering, Institute of Manufacturing Technology, Department of Metal Forming and Plastics
  • 2005-2008, Lecturer, Faculty of Mechanical Engineering, Institute of Manufacturing Technology, Department of Metal Forming and Plastics
  • 2008-till this time, Senior Lecturer, Faculty of Mechanical Engineering, Institute of Manufacturing Technology, Department of Metal Forming and Plastics

Pedagogic activities

  • Forming technology

Scientific activities

  • Forming technology

Projects

  • The technological test by flutes forming of thin-walled tube with use a polyurethane
  • The tensile test analysis of thin-walled tubes
  •  
  • Project FME BUT 2008 – Experimental determination of statical and dynamical material behaviour
  • Project FME BUT 2006 – Verification limit strain of thin-walled tubes flute processing with use polyurethanes
  • Project FME BUT 2006 – The test of formability of tubes by buckling
  • Project FME BUT 2005 – The technological test by flutes forming of thin-walled tube with use a polyurethane
  • Project FME BUT 2005 – The tensile test analysis of thin-walled tubes with use test specimens according to ČSN
  • Project FME BUT 2004 – The analysis of an unequal deformation of thin-walled tube during an uniaxial tensile loading

Supervised courses:

Publications:

  • LIDMILA, Z.; PODANÝ, K.; ŘIHÁČEK, J.:
    Improving of shearing blades life, MM Science Journal
    journal article in Scopus
  • PODANÝ, K.; LIDMILA, Z.; ŘIHÁČEK, J.:
    Proposal of the flexible tool for the production of aerospace parts, MM Science Journal
    journal article in Scopus
  • KUBÍČEK, J.; ŠMAK, M.; PODANÝ, K.; MRŇA, L.:
    Welded joint of high-strength steels Weldox 700 and common grade steel S 355, MM Science Journal
    journal article in Scopus
  • MRŇA, L.; ŘIHÁČEK, J.; PODANÝ, K.; PETERKOVÁ, E.:
    Konstrukce termického solárního kolektoru s poduškovým absorbérem a jeho varianty,
    Konference Alternativní zdroje energie 2016, pp.101-107, ISBN 978-80-02-02666-2, (2016), Společnost pro techniku prostředí
    conference paper
    akce: Alternativní zdroje energie 2016, Kroměříž, 21.06.2016-22.06.2016
  • MRŇA, L.; ŘIHÁČEK, J.; LIDMILA, Z.; PODANÝ, K.; KUBÍČEK, J.:
    Solární absorbér se strukturovaným povrchem – možná cesta ke zvýšení účinnosti.,
    Konference Alternativní zdroje energie 2014, pp.119-128, ISBN 978-80-02-02546-7, (2014), Společnost pro techniku prostředí
    conference paper
    akce: Alternativní zdroje energie 2014, Kroměříž, 01.07.2014-03.07.2014
  • PODANÝ, K.; LIDMILA, Z.; RUDOLF, B.:
    Výroba povrchově strukturovaného solárního absorbéru nepevným nástrojem,
    Kovárenství, Vol.2012, (2012), No.44, pp.109-112, ISSN 1213-9289, Svaz kováren ČR o.s.
    journal article - other
  • MRŇA, L.; FOREJT, M.; LIDMILA, Z.; PODANÝ, K.; KUBÍČEK, J.:
    Manufacturing of solar absorber by unconventional methods,
    Metal 2012, pp.1-6, ISBN 978-80-87294-29-1, (2012)
    conference paper
    akce: METAL 2012: 21st International Conference on Metallurgy and Materials, Brno, 23.05.2012-25.05.2012

List of publications at Portal BUT

Abstracts of most important papers:

  • LIDMILA, Z.; PODANÝ, K.; ŘIHÁČEK, J.:
    Improving of shearing blades life, MM Science Journal
    journal article in Scopus

    In the paper, design and implementation of a method for increase of shearing blades life are described. Blades for shearing of a reinforcing grip bar are made of tool steel 55WCrV8 (19 733 according to Czech Standard). Plasma nitriding method, which allows higher surface hardness while maintaining a ductile core, was chosen as an optimal method increasing blades life. A scratch pattern and a hardness measurement of initial and modified samples confirmed improvement in blade surface hardness to a value of 64 HRC.
  • PODANÝ, K.; LIDMILA, Z.; ŘIHÁČEK, J.:
    Proposal of the flexible tool for the production of aerospace parts, MM Science Journal
    journal article in Scopus

    The paper is focused on the design of a container tool for forming of sheet metal parts used in the aerospace industry, which is based on a flexible medium. The tool is intended for hydraulic press CBJ 500-6 and it is multi-purpose for a wide range of materials, shapes and sizes. A combination of polyurethane plates Fibroflex and two rubber plates are used as an elastic medium. A punch is made of plywood of 28 mm thick with negative shape of a part. For elimination of a springback during a bending operation, relieving of bending surfaces is performed. The designed tool and its dimensions are verified by using FEM analysis and subsequently also by practical experiment, i.e. verification and debugging functionality for a standard product of aluminium alloy 6061.T6.
  • KUBÍČEK, J.; ŠMAK, M.; PODANÝ, K.; MRŇA, L.:
    Welded joint of high-strength steels Weldox 700 and common grade steel S 355, MM Science Journal
    journal article in Scopus

    High-strength steels can be effectively utilized for strengthening existing structures or to improve highly stressed elements or structural details fabricated from lower grade steel. When used together with traditional grades of steel, the favourable mechanical properties of high-strength steels open up a wide range of applications in the steel constructions of civil and engineering structures, both in primary structural elements and in individual parts. The paper is concerned with butt and fillet welded joints of components made of high-strength steel with a yield strength of 700MPa and elements made of traditional grade S355 and S235 steel. The technique for welding materials with different strengths and the choice of additive materials for welding are presented in the experimental research.
  • LIDMILA, Z.; PODANÝ, K.; DOLEŽAL, J.:
    Hodnocení maziv pro tažení korozivzdorných ocelí,
    Kovárenství, Vol.2014, (2014), No.50, pp.69-72, ISSN 1213-9289
    journal article - other

    Application of a suitable lubricant is one of the essential conditions to succeed in the deep drawing technology. The paper deals with the design of the experimental device and evaluation of lubricants effectivity at deep drawing of the Cr-Ni 1.4301 stainless steel. 14 samples of lubricants were experimentally evaluated and their environmental friendliness was taken into account too. The ATLAS 3374-140 lubricant made by Quaker Chemical and WISURA ZW 3356 made by FUCHS were evaluated as the most suitable and environmentally friendly from the set of provided samples.
  • MRŇA, L.; FOREJT, M.; LIDMILA, Z.; PODANÝ, K.; KUBÍČEK, J.:
    Manufacturing of solar absorber by unconventional methods,
    Metal 2012, pp.1-6, ISBN 978-80-87294-29-1, (2012)
    conference paper
    akce: METAL 2012: 21st International Conference on Metallurgy and Materials, Brno, 23.05.2012-25.05.2012

    Solar absorbers of flat type have the advantage of relatively simple production, but on the other hand, they have lower thermal efficiency and require perpendicular incidence of solar radiation on their surface. This contribution presents new type of solar absorbers where the above-mentioned disadvantages are reduced while keeping relative production simplicity. The solar absorber is characterized by the creation of the appropriate spatial structure in sheet metal by forming through a technology of drawing in flexible tools. This spatial structure not only increases the heat-transfer surface but also eliminates the need for perpendicular incidence of the incoming solar radiation. The component with this structure is fixed to the rear side of the absorber by laser welding. Inlet holes for the fluid are produced by Flow drill method.