Open Access
Ru/Al Multilayers Integrate Maximum Energy Density and Ductility for Reactive Materials
K Woll
1, 2
,
A. Bergamaschi
3
,
K Avchachov
4
,
F. Djurabekova
4
,
S. Gier
5
,
C. Pauly
1
,
P Leibenguth
1
,
C Wagner
5
,
K. Nordlund
4
,
F. Mücklich
1
1
Publication type: Journal Article
Publication date: 2016-01-29
scimago Q1
wos Q1
SJR: 0.874
CiteScore: 6.7
Impact factor: 3.9
ISSN: 20452322
PubMed ID:
26822309
Multidisciplinary
Abstract
Established and already commercialized energetic materials, such as those based on Ni/Al for joining, lack the adequate combination of high energy density and ductile reaction products. To join components, this combination is required for mechanically reliable bonds. In addition to the improvement of existing technologies, expansion into new fields of application can also be anticipated which triggers the search for improved materials. Here, we present a comprehensive characterization of the key parameters that enables us to classify the Ru/Al system as new reactive material among other energetic systems. We finally found that Ru/Al exhibits the unusual integration of high energy density and ductility. For example, we measured reaction front velocities up to 10.9 (±0.33) ms−1 and peak reaction temperatures of about 2000 °C indicating the elevated energy density. To our knowledge, such high temperatures have never been reported in experiments for metallic multilayers. In situ experiments show the synthesis of a single-phase B2-RuAl microstructure ensuring improved ductility. Molecular dynamics simulations corroborate the transformation behavior to RuAl. This study fundamentally characterizes a Ru/Al system and demonstrates its enhanced properties fulfilling the identification requirements of a novel nanoscaled energetic material.
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Total citations:
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Citations from 2024:
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GOST
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Woll K. et al. Ru/Al Multilayers Integrate Maximum Energy Density and Ductility for Reactive Materials // Scientific Reports. 2016. Vol. 6. No. 1. 19535
GOST all authors (up to 50)
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Woll K., Bergamaschi A., Avchachov K., Djurabekova F., Gier S., Pauly C., Leibenguth P., Wagner C., Nordlund K., Mücklich F. Ru/Al Multilayers Integrate Maximum Energy Density and Ductility for Reactive Materials // Scientific Reports. 2016. Vol. 6. No. 1. 19535
Cite this
RIS
Copy
TY - JOUR
DO - 10.1038/srep19535
UR - https://doi.org/10.1038/srep19535
TI - Ru/Al Multilayers Integrate Maximum Energy Density and Ductility for Reactive Materials
T2 - Scientific Reports
AU - Woll, K
AU - Bergamaschi, A.
AU - Avchachov, K
AU - Djurabekova, F.
AU - Gier, S.
AU - Pauly, C.
AU - Leibenguth, P
AU - Wagner, C
AU - Nordlund, K.
AU - Mücklich, F.
PY - 2016
DA - 2016/01/29
PB - Springer Nature
IS - 1
VL - 6
PMID - 26822309
SN - 2045-2322
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2016_Woll,
author = {K Woll and A. Bergamaschi and K Avchachov and F. Djurabekova and S. Gier and C. Pauly and P Leibenguth and C Wagner and K. Nordlund and F. Mücklich},
title = {Ru/Al Multilayers Integrate Maximum Energy Density and Ductility for Reactive Materials},
journal = {Scientific Reports},
year = {2016},
volume = {6},
publisher = {Springer Nature},
month = {jan},
url = {https://doi.org/10.1038/srep19535},
number = {1},
pages = {19535},
doi = {10.1038/srep19535}
}