To improve the combustion stability and ignition performance of thermite, B/NC/CuO micro particles were prepared from boron (B), nano copper oxide (CuO), and nitrocellulose (NC) as an energetic binder through the electrospray technique. The burning rate dependency on boron content, ambient temperature, and pressure was estimated by compressing B/NC/CuO micro particles into columns. Scanning electron microscopy results show that the sizes of these particles mostly lie in the range of 3–4 μm. The particles are ignitable and burn consistently with minor variations in the conditions: B content (8.3–17%), ambient temperature (−50–55 °C), and ambient pressure (0.02–0.1 MPa). The optimum formula was observed for micro particles with 11 wt% B conte...
AbstractMetal powders such as aluminum nanoparticles (Al NPs) have been found huge potential as reac...
Thermite compounds have received a renewed interest due to their ability to store large quantities o...
In this paper, copper oxide (CuO) nanoparticles (NPs) was prepared by solution combustion technique....
Work is performed with financial support of the Russian Foundation for Basic Research (grant No. 16-...
Nano-boron, as a potential high-energy additive due to its high calorific value, is widely studied i...
Mixed oxide powders of Bi2O3 and CuO were prepared by mechanical milling as well as calcination of m...
permits unrestricted use, distribution, and reproduction in any medium, provided the original work i...
In recent years, nanoengineered thermites with tunable and tailored characteristics have attracted a...
Aluminum based thermites are a broad class of highly tunable solid energetic materials that can be f...
International audienceThis paper describes a kinetic model dedicated to thermite nanopowder combusti...
Kneading time is adjusted to change the dispersibility of nano-CuO in AP/HTPB (Ammonia Perchlorate/H...
In the present work, an attempt has been made to unveil the effect of micro- and nano-particles of c...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
This work investigates combustion of nanocomposite thermite powders prepared by arrested reactive mi...
This paper reports on the ignition and flame propagation characteristics of aluminum/copper oxide (A...
AbstractMetal powders such as aluminum nanoparticles (Al NPs) have been found huge potential as reac...
Thermite compounds have received a renewed interest due to their ability to store large quantities o...
In this paper, copper oxide (CuO) nanoparticles (NPs) was prepared by solution combustion technique....
Work is performed with financial support of the Russian Foundation for Basic Research (grant No. 16-...
Nano-boron, as a potential high-energy additive due to its high calorific value, is widely studied i...
Mixed oxide powders of Bi2O3 and CuO were prepared by mechanical milling as well as calcination of m...
permits unrestricted use, distribution, and reproduction in any medium, provided the original work i...
In recent years, nanoengineered thermites with tunable and tailored characteristics have attracted a...
Aluminum based thermites are a broad class of highly tunable solid energetic materials that can be f...
International audienceThis paper describes a kinetic model dedicated to thermite nanopowder combusti...
Kneading time is adjusted to change the dispersibility of nano-CuO in AP/HTPB (Ammonia Perchlorate/H...
In the present work, an attempt has been made to unveil the effect of micro- and nano-particles of c...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
This work investigates combustion of nanocomposite thermite powders prepared by arrested reactive mi...
This paper reports on the ignition and flame propagation characteristics of aluminum/copper oxide (A...
AbstractMetal powders such as aluminum nanoparticles (Al NPs) have been found huge potential as reac...
Thermite compounds have received a renewed interest due to their ability to store large quantities o...
In this paper, copper oxide (CuO) nanoparticles (NPs) was prepared by solution combustion technique....