Mechanical Relaxation of Metallic Glasses: An Overview of Experimental Data and Theoretical Models

Relaxation phenomena in glasses are a subject of utmost interest, as they are deeply connected with their structure and dynamics. From a theoretical point of view, mechanical relaxation allows one to get insight into the different atomic-scale processes taking place in the glassy state. Focusing on...

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Published inMetals Vol. 5; no. 2; pp. 1073 - 1111
Main Authors Liu, Chaoren, Pineda, Eloi, Crespo, Daniel
Format Journal Article Book Review Publication
LanguageEnglish
Published Basel MDPI AG 01.06.2015
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Abstract Relaxation phenomena in glasses are a subject of utmost interest, as they are deeply connected with their structure and dynamics. From a theoretical point of view, mechanical relaxation allows one to get insight into the different atomic-scale processes taking place in the glassy state. Focusing on their possible applications, relaxation behavior influences the mechanical properties of metallic glasses. This paper reviews the present knowledge on mechanical relaxation of metallic glasses. The features of primary and secondary relaxations are reviewed. Experimental data in the time and frequency domain is presented, as well as the different models used to describe the measured relaxation spectra. Extended attention is paid to dynamic mechanical analysis, as it is the most important technique allowing one to access the mechanical relaxation behavior. Finally, the relevance of the relaxation behavior in the mechanical properties of metallic glasses is discussed.
AbstractList Relaxation phenomena in glasses are a subject of utmost interest, as they are deeply connected with their structure and dynamics. From a theoretical point of view, mechanical relaxation allows one to get insight into the different atomic-scale processes taking place in the glassy state. Focusing on their possible applications, relaxation behavior influences the mechanical properties of metallic glasses. This paper reviews the present knowledge on mechanical relaxation of metallic glasses. The features of primary and secondary relaxations are reviewed. Experimental data in the time and frequency domain is presented, as well as the different models used to describe the measured relaxation spectra. Extended attention is paid to dynamic mechanical analysis, as it is the most important technique allowing one to access the mechanical relaxation behavior. Finally, the relevance of the relaxation behavior in the mechanical properties of metallic glasses is discussed.
Relaxation phenomena in glasses are a subject of utmost interest, as they are deeply connected with their structure and dynamics. From a theoretical point of view, mechanical relaxation allows one to get insight into the different atomic-scale processes taking place in the glassy state. Focusing on their possible applications, relaxation behavior influences the mechanical properties of metallic glasses. This paper reviews the present knowledge on mechanical relaxation of metallic glasses. The features of primary and secondary relaxations are reviewed. Experimental data in the time and frequency domain is presented, as well as the different models used to describe the measured relaxation spectra. Extended attention is paid to dynamic mechanical analysis, as it is the most important technique allowing one to access the mechanical relaxation behavior. Finally, the relevance of the relaxation behavior in the mechanical properties of metallic glasses is discussed. Peer Reviewed
Author Liu, Chaoren
Pineda, Eloi
Crespo, Daniel
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Snippet Relaxation phenomena in glasses are a subject of utmost interest, as they are deeply connected with their structure and dynamics. From a theoretical point of...
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SubjectTerms aging
amorphous alloy
anelasticity
dynamic mechanical analysis
Física
internal friction
mechanical spectroscopy
metallic glass
Metallic glasses
relaxation
secondary relaxation
Vidres metàl·lics
viscoelasticity
Àrees temàtiques de la UPC
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Title Mechanical Relaxation of Metallic Glasses: An Overview of Experimental Data and Theoretical Models
URI https://www.proquest.com/docview/1696011946/abstract/
https://recercat.cat/handle/2072/265555
https://doaj.org/article/fee812d16827498ab3e548d96b81855b
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