Thermal decomposition kinetics of electrospun azidodeoxy cellulose nitrate and polyurethane nanofibers
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Publisher
Springer Science and Business Media LLC
Link
http://link.springer.com/content/pdf/10.1007/s10973-014-4064-0.pdf
Reference40 articles.
1. Shamsipur M, Pourmortazavi SM, Hajimirsadeghi SS, Atifeh SM. Effect of functional group on thermal stability of cellulose derivative energetic polymers. Fuel. 2012;95:394–9.
2. Nagayama K, Oyumi Y. Combustion characteristics of high burn rate azide polymer propellant. Propell Explos Pyrotech. 1996;21:74–8.
3. Barbieri U, Polacco G, Keicher T, Massimi R. Preliminary characterization of propellants based on p(GA/BAMO) and pAMMO binders. Propell Explo Pyrotech. 2009;34:427–35.
4. Dubis C, Perreault F. Shelf-life prediction of propellants using a reaction severity index. Propell Explos Pyrotech. 2002;27:253–61.
5. Ramesh S, Rajalingam P, Radhakrishnan G. Chain-extended polyurethanes - synthesis and characterization. Polymer Int. 1991;25:253–6.
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