Wykaz publikacji wybranego autora

Konrad Perzyński, dr inż.

adiunkt

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: 0000-0001-7761-2599 orcid iD

ResearcherID: F-8574-2012

Scopus: 39863425000

PBN: 5e70935e878c28a0473a848f

OPI Nauka Polska

System Informacyjny AGH (SkOs)




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  • Adaptive mesh generation for multi scale applications
3
  • Analysis of the stress concentration in the nanomultilayer coating based on digital representation of the structure
4
  • Analysis of the stress distribution in the nanogrid coatings based on digital representation of the structure
5
  • Application of the cyclic plasticity hardening law to metal forming
6
  • Application of the GTN model to numerical simulation of Distaloy AB sinters behaviour under complex loading conditions
7
  • Approach for an automatic optimisation of production chain as a tool for intelligent manufacturing in metal forming
8
  • CA/MC based generators of 3D microstructures of porous metallic materials
9
  • Capturing local material heterogeneities in numerical modelling of microstructure evolution
10
  • Cellular automata based algorithm for generation of 3D synthetic microstructure of porous metallic materials
11
  • Complex hybrid numerical model in application to failure modelling in multiphase materials
12
  • Computer aided design of innovative incremental forming process
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  • Considering influence of microstructure morphology of epoxy/glass composite on its behavior under deformation conditions – digital material representation case study
15
  • Correlating the microstructural heterogeneity with local formability of cold-rolled dual-phase and complex-phase steels through hardness gradients
16
  • Crack investigation of the multilayer TiN/Ti coatings during the nanoindentation test
17
  • Data preparation in the digital material representation based 3D cellular automata model of static recrystallization
18
  • Development and evaluation of data transfer protocols in the fully coupled random cellular automata finite element model of dynamic recrystallization
19
  • Development and validation of multi scale failure model for dual phase steels
20
  • Development of communication mechanism for the fully coupled multiscale model of 3D compression test
21
  • Development of digital material representation model for porous metallic microstructures
22
  • Development of digital material representation model of porous structure for multiscale simulations
23
  • Development of efficient data transfer protocols in the random cellular automata finite element dynamic recrystallization model
24
  • Development of the Kinetic Monte Carlo model for simulation of laser ablation
25