Změnit instituci
Pokročilé nano a mikrotechnologie Pokročilé materiály Strukturní biologie Gen. a prot. rostlin. systémů Molekulární medicína Výzkum mozku a lidské mysli Molekulární vet. medicína

prof. RNDr. Jaroslav Pokluda, CSc.

Senior researcher
Email:
Telefon: +420 54114 2827
Výzkumná skupina: Pokročilé kovové materiály a kompozity na bázi kovů
Středoevropský Technologický Institut
Researcher ID

2017

  • SESTAK, P; CERNY, M; POKLUDA, J, 2017:Energetics of NiTi allotropes under uniaxial compression. SCRIPTA MATERIALIA 133 , p. 92 - 95.

2016

  • LANDA, M; MACHOVA, A; UHNAKOVA, A; POKLUDA, J; LEJCEK, P, 2016:Crack growth in Fe-2.7 wt% Si single crystals under cyclic loading and 3D atomistic results in bcc iron. INTERNATIONAL JOURNAL OF FATIGUE 87 , p. 63 - 70.
  • LEJCEK, P; SANDERA, P; HORNIKOVA, J; POKLUDA, J; GODEC, M, 2016:On the segregation behavior of tin and antimony at grain boundaries of polycrystalline bcc iron. APPLIED SURFACE SCIENCE 363 , p. 140 - 144.
  • SESTAK, P; CERNY, M; HE, JY; ZHANG, ZL; POKLUDA, J, 2016:Multiaxial stress-strain response and displacive transformations in NiTi alloy from first principles. ACTA MATERIALIA 109 , p. 223 - 229.
  • SLAMECKA, K; SKALKA, P; POKLUDA, J; CELKO, L, 2016:Finite element simulation of stresses in a plasma-sprayed thermal barrier coating with an irregular top-coat/bond-coat interface. SURFACE & COATINGS TECHNOLOGY 304 , p. 574 - 583.
  • VOJTEK, T; HOHENWARTER, A; PIPPAN, R; POKLUDA, J, 2016:Experimental evidence of a common local mode II growth mechanism of fatigue cracks loaded in modes II, III and II plus III in niobium and titanium. INTERNATIONAL JOURNAL OF FATIGUE 92 , p. 470 - 477.
  • VOJTEK, T; POKLUDA, J; HOHENWARTER, A; PIPPAN, R, 2016:Progress in understanding of intrinsic resistance to shear-mode fatigue crack growth in metallic materials. INTERNATIONAL JOURNAL OF FATIGUE 89 , p. 36 - 42.

2015

  • POKLUDA, J; CERNY, M; SOB, M; UMENO, Y., 2015:Ab initio calculations of mechanical properties: Methods and applications. PROGRESS IN MATERIALS SCIENCE 73 , p. 127 - 158.
  • SLAMECLA, K; CELKO, L; SKALKA, P; POKLUDA, J; NEMEC, K; JULIS, M; KLAKURKOVA, L; SVEJCAR, J, 2015:Bending fatigue failure of atmospheric-plasma-sprayed CoNiCrAlY plus YSZ CrossMark thermal barrier coatings. INTERNATIONAL JOURNAL OF FATIGUE 70 , p. 186 - 195.
  • VOJTEK, T; POKLUDA, J; SANDERA, P; HORNIKOVA, J; HOHENWARTER, A; PIPPAN, R, 2015:Analysis of fatigue crack propagation under mixed mode II plus III in ARMCO iron. INTERNATIONAL JOURNAL OF FATIGUE 76 , p. 47 - 52.

2013

  • CERNY, M; REHAK, P; UMENO, Y; POKLUDA, J, 2013:Stability and strength of covalent crystals under uniaxial and triaxial loading from first principles. JOURNAL OF PHYSICS-CONDENSED MATTER 25 (3), p. 035401 - 35408.
  • CERNY, M; SESTAK, P; POKLUDA, J; SOB, M, 2013:Shear instabilities in perfect bcc crystals during simulated tensile tests. PHYSICAL REVIEW B 87 (1)
  • SLAMECKA, K; POKLUDA, J; KIANICOVA, M; HORNIKOVA, J; OBRTLIK, K, 2013:Fatigue life of cast Inconel 713LC with/without protective diffusion coating under bending, torsion and their combination. ENGINEERING FRACTURE MECHANICS 110 , p. 459 - 467.
  • VOJTEK, T; PIPPAN, R; HOHENWARTER, A; HOLAN, L; POKLUDA, J, 2013:Near-threshold propagation of mode II and mode III fatigue cracks in ferrite and austenite. ACTA MATERIALIA 61 (12), p. 4625 - 4635.
  • VOJTEK, T; POKLUDA, J; HOHENWARTER, A; PIPPAN, R, 2013:Three-dimensional morphology of fracture surfaces generated by modes II and III fatigue loading in ferrite and austenite. ENGINEERING FRACTURE MECHANICS 108 , p. 285 - 293.

2012

  • CERNY, M; POKLUDA, J, 2012:[100] Loading of Fcc Based Nanofibre Reinforced Composites. ACTA PHYSICA POLONICA A 122 (3), p. 505 - 508.
  • CERNY, M; SESTAK, P; POKLUDA, J, 2012:Strength of bcc crystals under combined shear and axial loading from first principles. COMPUTATIONAL MATERIALS SCIENCE 55 (1), p. 337 - 343.
  • REHAK, P; CERNY, M; POKLUDA, J, 2012:Dynamic stability of fcc crystals under isotropic loading from first principles. JOURNAL OF PHYSICS-CONDENSED MATTER 24 (21)
Pracoviště 1:
Vysoké učení technické v Brně - CEITEC VUT
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