Effects of Thermal Processing on Closed-Cell Aluminium Foams

The effects of post-foaming thermal processing on the quasi-static compressive strength of closed-cell aluminium foam with an average relative density of 0.56 g/cc have been investigated. Samples were subject to one of four material conditions: as-received (AR), warm aged (WA), solution treated (ST)...

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Published inCharacterization of Minerals, Metals, and Materials 2017 p. 1
Main Authors Brown, A. D., Hutchison, W. D., Islam, M. A., Kader, M. A., Escobedo, J. P., Hazell, P. J.
Format Book Chapter
LanguageEnglish
Published Switzerland Springer Nature 2017
Springer International Publishing AG
Springer International Publishing
SeriesThe Minerals, Metals & Materials Series
Subjects
Online AccessGet full text
ISBN9783319513812
3319513818
ISSN2367-1181
2367-1696
DOI10.1007/978-3-319-51382-9_24

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Abstract The effects of post-foaming thermal processing on the quasi-static compressive strength of closed-cell aluminium foam with an average relative density of 0.56 g/cc have been investigated. Samples were subject to one of four material conditions: as-received (AR), warm aged (WA), solution treated (ST), and annealed (AT). X-ray diffraction (XRDXRD) was performed to determine a relationship between each material condition and macro-crystallographic texture of the dendritic α-Al phase. It was found that all heat treated samples contained clear deviations from random texture towards the exterior regions of the samples, indicating non-uniform recrystallization kinetics. The ST and WA samples exhibited the highest yield stresses and energy absorptionEnergy absorption, with the AT samples exhibiting the lowest. Additionally, it was found that the AR and WA conditions lost 12.8 and 15.6% of their total mass from brittle cell wall crumbling, whereas the AT and ST conditions lost 2.5 and 3.0% of their total mass.
AbstractList The effects of post-foaming thermal processing on the quasi-static compressive strength of closed-cell aluminium foam with an average relative density of 0.56 g/cc have been investigated. Samples were subject to one of four material conditions: as-received (AR), warm aged (WA), solution treated (ST), and annealed (AT). X-ray diffraction (XRDXRD) was performed to determine a relationship between each material condition and macro-crystallographic texture of the dendritic α-Al phase. It was found that all heat treated samples contained clear deviations from random texture towards the exterior regions of the samples, indicating non-uniform recrystallization kinetics. The ST and WA samples exhibited the highest yield stresses and energy absorptionEnergy absorption, with the AT samples exhibiting the lowest. Additionally, it was found that the AR and WA conditions lost 12.8 and 15.6% of their total mass from brittle cell wall crumbling, whereas the AT and ST conditions lost 2.5 and 3.0% of their total mass.
Author Zhang Mingming
Goswami Ramasis
Kim Jeongguk
Li Jian
Firrao Donato
Ikhmayies Shadia
Carpenter John S
Li Bowen
Peng Zhiwei
Bai Chenguang
Hwang Jiann-Yang
Escobedo-Diaz Juan P
Kalay Yunus Eren
Monteiro Sergio Neves
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The Minerals, Metals & Materials Society 2017
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Ikhmayies, Shadia
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Snippet The effects of post-foaming thermal processing on the quasi-static compressive strength of closed-cell aluminium foam with an average relative density of...
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StartPage 1
SubjectTerms Aluminium foams
Energy absorption
General Engineering & Project Administration
General References
Heat treatments
Materials
Materials science
Mechanical properties
Metals & Metallurgy
Mineral Processing & Extractive Metallurgy
Mining Engineering & Extractive Metallurgy
Testing of materials
XRD
TableOfContents 24.1 Introduction 24.2 Experimental Procedures 24.3 Results and Discussions 24.4 Conclusions Acknowledgements References
Title Effects of Thermal Processing on Closed-Cell Aluminium Foams
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