Stability studies of double-base propellants with centralite and malonanilide stabilizers using MO calculations in comparison to thermal studies

Author:

Zayed M.A.,Mohamed Adel A.,Hassan M.A.M.

Publisher

Elsevier BV

Subject

Health, Toxicology and Mutagenesis,Pollution,Waste Management and Disposal,Environmental Chemistry,Environmental Engineering

Reference46 articles.

1. J. McGovern, Improved Stability of Double Base Propellants, Navy SBIR 2009.2—Topic N092-109, Opens: May 18 and Closed: June 17, 2009.

2. K. J. Mitchell, Effects of Desert Thermal Environment on Army Propulsion Systems, U.S. Army Missile Command, Redstone Arsenal, AL, 2009 https://webdatabase.cpia.jhu.edu/cpin/PIRS/template.php.

3. A. Fun, R. Dudley, Treatment of Accelerated Aging Data using First Order Reaction Equations, Picatinny Arsenal, Picatinny, NJ, 2009 https://webdatabase.cpia.jhu.edu/cpin/PIRS/template.php.

4. J. Drummond, J. Lawhon, Spheroidal Propellant Stabilizer Studies, St. Marks Powder, General Dynamics Company, CPIA, 30th Propellant Development & Characterization Subcommittee Proceedings, 2008. http://www.jannaf.org/meetings.php.

5. Reactions in the System Nitro-cellulose/Diphenylamine with Special Reference to the Formation of a Stabilizing Product Bonded to Nitro-cellulose, Acta Universitatis Upsaliensis. Doctoral thesis. Comprehensive summary, 2004.

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