Wykaz publikacji wybranego autora

Maciej Pietrzyk, prof. dr hab. inż.

profesor zwyczajny

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 (50%)


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


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0002-1473-4625 połącz konto z ORCID

ResearcherID: J-1716-2017

Scopus: 7005735035

PBN: 5e70920b878c28a04738f0f1

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • Adhesive wear mechanism in a hybrid model of tool wear in hot forging process
2
  • Computer-integrated platform for automatic, flexible, and optimal multivariable design of a hot strip rolling technology using advanced multiphase steels
3
  • Connection of various destruction mechanisms models and their implementation in hybrid computer system for tool wear prediction in hot forging
4
  • Digital twins as a modern approach to design of industrial processes
5
  • Evaluation of adhesive wear mechanism for application in hybrid tool wear model in hot forging process
6
  • Evaluation of using distribution functions for mean field modelling of multiphase steels
7
  • Exploring possibility to predict gradients of material parameters in multiphase steels
8
  • Fast model for phase transformations during cooling of pre-annealed multiphase steels
9
  • Investigation of microstructural gradients of complex- phase steels through experiment and modeling
10
  • Model of phase transformations based in steels subject to heating-cooling thermal cycles in continuous annealing line
11
  • Model of phase transformations in steels subject to heating-cooling thermal cycles in continuous annealing line
12
  • On application of SSRVE and Multiple Levels Set method to phase transformations modelling in steels
13
  • Optimization of the heat treatment process to obtain the required distribution of mechanical properties in the rail head of pearlitic rails
14
  • Phase transformation simulations based on coupled cellular automata/finite difference model
15
16
  • Possibilities of the numerical solution of the dislocation evolution equation for stochastic variables
17
  • Prediction of distribution of microstructural parameters in metallic materials described by differential equations with recrystallization term
18
  • Preface: Computational multiscale modelling and design of new engineering materials
19
  • Recent development trends in metal forming
20
21
  • Selection of the optimal heat treatment conditions using advanced phase transformation models
22
  • Top-down approach to identification of phase transformation models for steels
23
  • Towards prediction of gradients of material properties in multiphase steels