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Crystallographic slips and twinning activity in AZ31 magnesium alloy during different modes of deformation on the basis of diffraction experiment and modelling

A.Ludwik M.Wroński P.Kot A.Baczmański S.Wroński K.Wierzbanowski G.Farkas K.Máthis

镁合金学报(英文)2026,Vol.14Issue(1):351-379,29.
镁合金学报(英文)2026,Vol.14Issue(1):351-379,29.DOI:10.1016/j.jma.2025.08.035

Crystallographic slips and twinning activity in AZ31 magnesium alloy during different modes of deformation on the basis of diffraction experiment and modelling

Crystallographic slips and twinning activity in AZ31 magnesium alloy during different modes of deformation on the basis of diffraction experiment and modelling

A.Ludwik 1M.Wroński 1P.Kot 2A.Baczmański 1S.Wroński 1K.Wierzbanowski 1G.Farkas 3K.Máthis4

作者信息

  • 1. AGH University of Krakow,Faculty of Physics and Applied Computer Science,al.Mickiewicza 30 30-059,Krakow,Poland
  • 2. NOMATEN Centre of Excellence,National Centre of Nuclear Research,A.Sołtana 7 05-400,Otwock-Świerk,Poland
  • 3. Nuclear Physical Institute,ASCR,Hlavní 130 25068,Řež,Czech Republic
  • 4. Department of Physics of Materials,Faculty of Mathematics and Physics,Charles University,Ke Karlovu 3 12116,Prague,Czech Republic
  • 折叠

摘要

关键词

Magnesium alloy/Crystallographic slip/Twinning/Critical resolved shear stress/Elastic-plastic self-consistent model/Neutron diffraction

Key words

Magnesium alloy/Crystallographic slip/Twinning/Critical resolved shear stress/Elastic-plastic self-consistent model/Neutron diffraction

引用本文复制引用

A.Ludwik,M.Wroński,P.Kot,A.Baczmański,S.Wroński,K.Wierzbanowski,G.Farkas,K.Máthis..Crystallographic slips and twinning activity in AZ31 magnesium alloy during different modes of deformation on the basis of diffraction experiment and modelling[J].镁合金学报(英文),2026,14(1):351-379,29.

基金项目

This work was founded by the National Sci-ence Centre,Poland(NCN),under grant no.UMO-2023/49/B/ST11/00774. The research(neutron diffraction experiments)leading to this result has been co-funded by the project NEPHEWS under grant agreement no.101131414 from the EU Frame-work Programme for Research and Innovation Horizon Eu-rope.Views and opinions expressed are however those of the author(s)only and do not necessarily reflect those of the Eu-ropean Union.Neither the European Union nor the grant-ing authorities can be held responsible for them.Measure-ments were carried out at the CANAM infrastructure of the NPI CAS Rez.The employment of the CICRR infrastructure supported by MEYS project LM2023041 is acknowledged.The Ministry of Education,Youth and Sports of the Czech Republic(MEYS),support of large research infrastructures LM2023057. K.M.acknowledges support of the Czech Grant Agency under project no.25-16210S P.K.acknowledges support from the European Union's Horizon 2020 research and innovation program under the NOMATEN teaming grant agreement no.857470,the Eu-ropean Regional Development Fund via the Foundation for Polish Science International Research Agenda Plus Pro-gram grant no.MAB PLUS/2018/8,and the Ministry of Science and Higher Education's initiative"Support for the Activities of Centers of Excellence Established in Poland under the Horizon 2020 Program"under agreement no.MEiN/2023/DIR/3795. K.W.was partly supported by the program"Excellence initiative—research university"for the AGH University of Krakow. (NCN)

镁合金学报(英文)

2213-9567

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