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Detail publikačního výsledku
DLOUHÝ, I.; ŘEHOŘEK, L.; SEINER, H.; ČÍŽEK, J.; ŠIŠKA, F.
Original Title
Architectured Multi-Metallic Structures Prepared by Cold Dynamic Spray Deposition
English Title
Type
Scopus Article
Original Abstract
The architectured metallic materials are a class of composite materials that combines two or more metals/alloys with a specific spatial ordering (architecture). The main goal behind the preparation of such materials is to obtain properties that are not achievable by a single material. The internal architecture thus creates an extra degree of freedom in materials design. Based on theoretical considerations three aluminum alloy structures containing square, triangle and sinusoidal iron beam patterns have been prepared by a cold spray deposition technique. Strength properties difference and good bonding of the reinforcing Fe structure to the Al matrix has been found to be important for effective improvement of final properties. Incorporating about 30 vol. % structured iron beams into the Al matrix resulted in a macroscopic performance of the architectured multimaterial similar to Ti alloys.
English abstract
Keywords
Cold gas dynamic spray, cold spray, additive manufacturing, composite, architectured materials, aluminum alloy, iron reinforcement
Key words in English
Authors
RIV year
2020
Released
02.07.2019
Publisher
Trans Tech Publications Ltd, Switzerland
ISBN
1013-9826
Periodical
Key Engineering Materials (print)
Volume
810
Number
9
State
Swiss Confederation
Pages from
107
Pages to
112
Pages count
6
URL
https://www.scientific.net/KEM.810.107
Full text in the Digital Library
http://hdl.handle.net/
BibTex
@article{BUT159013, author="Ivo {Dlouhý} and Lukáš {Řehořek} and Hanuš {Seiner} and Jan {Čížek} and Filip {Šiška}", title="Architectured Multi-Metallic Structures Prepared by Cold Dynamic Spray Deposition", journal="Key Engineering Materials (print)", year="2019", volume="810", number="9", pages="107--112", doi="10.4028/www.scientific.net/KEM.810.107", issn="1013-9826", url="https://www.scientific.net/KEM.810.107" }