Modelling the Deformation, Recrystallization and Microstructure-Related Properties in Metals

Modelling the Deformation, Recrystallization and Microstructure-Related Properties in Metals
Author: Jurij J Sidor
Publisher: Mdpi AG
Total Pages: 144
Release: 2021-11-15
Genre: Technology & Engineering
ISBN: 9783036523842


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In the special issue related to Modelling the Deformation, Recrystallization and Microstructure-Related Properties in Metals, we presented a wide spectrum of articles dealing with modelling of microstructural aspects involved in deformation and recrystallization as well as simulation of microstructure-based and texture-based properties in various metals. The latest advances in the theoretical interpretation of mesoscopic transformations based on experimental observations were partially discussed in the current special issue. The studies dealing with the modelling of structure-property relationships are likewise analyzed in the present collection of manuscripts. The contributions in the current collection evidently demonstrate that the properties of metallic materials are microstructure dependent and therefore the thermomechanical processing (TMP) of the polycrystalline aggregates should be strictly controlled to guarantee the desired bunch of qualities. Given this, the assessment of microstructure evolution in metallic systems is of extraordinary importance. Since the trial-error approach is a time-consuming and quite expensive methodology, the materials research community tends to employ a wide spectrum of computational approaches to simulate each chain of TMP and tune the processing variables to ensure the necessary microstructural state which will provide desired performance in the final product. Although many hidden facets of various technological processes and related microstructural changes were revealed in the submitted works by employing advanced computational approaches, nevertheless, the contributions collected in this issue clearly show that further efforts are required in the field of modelling to understand the complexity of material's world. The final goal of modelling efforts might be a development of a comprehensive model, which will be capable of describing many aspects of microstructure evolution during thermomechanical processing.


Modelling the Deformation, Recrystallization and Microstructure-Related Properties in Metals
Language: en
Pages: 144
Authors: Jurij J Sidor
Categories: Technology & Engineering
Type: BOOK - Published: 2021-11-15 - Publisher: Mdpi AG

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In the special issue related to Modelling the Deformation, Recrystallization and Microstructure-Related Properties in Metals, we presented a wide spectrum of ar
Microstructure Evolution in Metal Forming Processes
Language: en
Pages: 409
Authors: J Lin
Categories: Technology & Engineering
Type: BOOK - Published: 2012-07-09 - Publisher: Elsevier

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Monitoring and control of microstructure evolution in metal processing is essential in developing the right properties in a metal. Microstructure evolution in m
Recrystallization and Related Annealing Phenomena
Language: en
Pages: 520
Authors: F.J. Humphreys
Categories: Technology & Engineering
Type: BOOK - Published: 2012-12-02 - Publisher: Elsevier

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The annealing of deformed materials is of both technological importance and scientific interest. The phenomena have been most widely studied in metals, although
Numerical Modelling and Simulation of Metal Processing
Language: en
Pages: 374
Authors: Christof Sommitsch
Categories: Technology & Engineering
Type: BOOK - Published: 2021-08-16 - Publisher: MDPI

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This book deals with metal processing and its numerical modelling and simulation. In total, 21 papers from different distinguished authors have been compiled in
Modelling Microstructure-property Relationships in Polycrystalline Metals Using New Fast Fourier Transform-based Crystal Plasticity Frameworks
Language: en
Pages: 191
Authors: Jaspreet Singh Nagra
Categories: Aluminum alloys
Type: BOOK - Published: 2019 - Publisher:

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The present thesis develops several new full-field, fast Fourier transform (FFT)-based crystal plasticity modelling tools for microstructure engineering. These