FEM-BEM Code for the Multiscale Modeling and Computer Aided Design of Wire Drawing Technology for Magnesium Alloys
Author:
Affiliation:
1. AGH University of Science and Technology 30 Mickiewicza Av.; 30-198 Krakow Poland
Publisher
Wiley
Subject
Condensed Matter Physics,General Materials Science
Reference24 articles.
1. Forming limit of magnesium alloy at elevated temperatures for precision forging
2. Untersuchungen an magnesiumbasierten Legierungen als neue Materialien in der Implantologie
3. Comparison of the resorbable magnesium . alloys LAE442 und MgCa0.8 concerning their mechanical properties, their progress of degradation and the bone-implant-contact after 12 months implantation duration in a rabbit model
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1. Analysis of Microstructure and Damage Evolution in Ultra-Thin Wires of the Magnesium Alloy MgCa0.8 at Multipass Drawing;JOM;2016-10-03
2. Modeling with FCA-Based Model of Microstructure Evolution of MgCa08 Alloy During Drawing of Thin Wire in Heated Die / Modelowanie Za Pomocą FCA Rozwoju Mikrostruktury Stopu MgCa08 Podczas Ciągnienia Cienkiego Drutu W Podgrzewanym Ciagadle;Archives of Metallurgy and Materials;2015-12-01
3. A three-dimensional frontal cellular automaton model for simulation of microstructure evolution—initial microstructure module;Modelling and Simulation in Materials Science and Engineering;2014-10-30
4. Physical and Numerical Modelling of Wire Drawing Process of Mg Alloys in Heated Dies Accounting for Recrystallization;Key Engineering Materials;2014-09
5. Structural Evolution of Thin Lamellar Cementite during Cold Drawing of Eutectoid Steels;Procedia Engineering;2014
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