Wykaz publikacji wybranego autora

Łukasz Madej, prof. dr hab. inż.

profesor nadzwyczajny

Wydział Inżynierii Metali i Informatyki Przemysłowej
WIMiIP-kism, Katedra Informatyki Stosowanej i Modelowania


  • 2018

    [dyscyplina 1] dziedzina nauk inżynieryjno-technicznych / inżynieria materiałowa

    [dyscyplina 2] dziedzina nauk inżynieryjno-technicznych / informatyka techniczna i telekomunikacja (25%)


[poprzednia klasyfikacja] obszar nauk technicznych / dziedzina nauk technicznych / metalurgia


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0003-1032-6963 orcid iD

ResearcherID: A-7918-2012

Scopus: 23103240000

PBN: 5e70920b878c28a04738f0d7

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • Analysis of the stress distribution in the nanogrid coatings based on digital representation of the structure
2
  • Application of the automatic image processing in modeling of the deformation mechanisms based on the digital representation of microstructure
3
4
  • Development of the modeling strategy for the strain localization simulation based on the digital material representation
5
  • Digital material representation of polycrystals in application to numerical simulations of inhomogenous deformation
6
  • Hybrid knowledge system for optimization of rolling process of DP steels
7
  • Influence of microstructure features on strain distribution during micro forming on basis of digital material representation
8
  • Material flow analysis in the incremetal forging technology
9
  • Modelling of microstructure deformation based on digital material representation integrated with watershed image segmentation algorithm
10
11
  • Numerical analysis of the microstructure and mechanical properties evolution during Equal Channel Angular Pressing
12
  • Numerical simulation of the strain inhomogeneities during plain strain compression on the basis of the digital material representation
13
  • Numerical simulations of hypoeutectoid steels under loading conditions, based on image processing and digital material representation
14
  • Numerical simulations of the microscale material phenomena based on cellular automata framework and workflow idea
15
16
  • The material flow analysis in the modified orbital forging technology
17
  • Validation of parameters of cellular automata finite element model dedicated to strain localization phenomena