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Aluminum Alloys and Aluminum-Based Matrix Composites

Lee, Yunsoo - Personal Name; Liu, Ying - Personal Name; Zang, Qianhao - Personal Name; Feng, Di - Personal Name;

Aluminum alloys and aluminum matrix composite materials have become the first choice to replace steel materials due to their high specific strength. The penetration rate of light alloys in new energy vehicles, the aerospace industry, and the rapid rail transit industry is increasing quickly. The reduction in energy consumption resulting from structural weight reduction is the key element for sustainable development. For example, every 100 kg reduction in car mass can save 0.6 L of fuel per 100 kilometers and reduce the emission of 800-900 g of carbon dioxide. For every 10% reduction in the weight of new energy vehicles, their range can be increased by 5.5% (for every 10 kg reduction in the weight of pure electric vehicles, their range can be increased by 2.5 km). The comprehensive proportion of aluminum alloys in automobiles will reach about 26% by 2040. The vigorous development of the automotive manufacturing industry has provided a huge application scenario for aluminum alloy profiles, aluminum alloy castings, and forgings. In addition, the use of aluminum in aerospace and high-speed rail is even more widely recognized. This Special Issue summarizes research on and the application of aluminum alloys of typical composition, including AlZnMgCu, AlCu, AlMn, and even Ti-aluminum alloys.


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Detail Information
Series Title
-
Call Number
-
Publisher
Basel : ., 2023
Collation
174 hlm; ill., lamp.,
Language
English
ISBN/ISSN
978-3-0365-9613-6
Classification
NONE
Content Type
tactile text
Media Type
computer
Carrier Type
online resource
Edition
-
Subject(s)
-
Specific Detail Info
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Statement of Responsibility
Feng, Di (editor) Zang, Qianhao (editor) Liu, Ying (editor) Lee, Yunsoo (editor)
Other Information
Cataloger
ida
Source
https://directory.doabooks.org/handle/20.500.12854/132401
Validator
-
Digital Object Identifier (DOI)
10.3390/books978-3-0365-9613-6
Journal Volume
-
Journal Issue
-
Subtitle
-
Parallel Title
-
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No other version available

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  • Aluminum Alloys and Aluminum-Based Matrix Composites
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