28 results on '"Demko, A. R."'
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2. Observation of aluminum interaction with the binder melt layer using high-speed synchrotron-based phase contrast imaging
3. Modeling adsorption reactions of ammonium perchlorate on rutile and anatase surfaces.
4. Facilitating laser ignition and combustion of boron with a mixture of graphene oxide and graphite fluoride
5. Effects of TiO2Anatase Polymorph on Ammonium Perchlorate Decomposition
6. Enhanced ignition of milled boron-polytetrafluoroethylene mixtures
7. A Metal Inorganic Framework Designed as a Propellant Burn Rate Modifier
8. Dynamic measurement of internal strain on composite solid propellant constituents during laser induced combustion
9. Density Functional Theory Analysis Identifying the Mechanism for Ignition Sensitivity of Ammonium Periodate Compared with Ammonium Perchlorate
10. Effect of Fluoroalkylsilane Surface Functionalization on Boron Combustion
11. Synchrotron-based measurement of aluminum agglomerates at motor conditions
12. Tailoring Binder Melting Temperature to Study the Binder Melt Layer Flow in Ammonium Perchlorate Composite Propellants
13. Aging Effects on the Burning Rates of Composite Solid Propellants with Nano-Additives
14. Tailoring Binder Melting Temperature to Study the Binder Melt Layer Flow in Ammonium Perchlorate Composite Propellants.
15. Evaluation of Composite Propellants Utilizing Various Nano-Scale Aluminum and Boron Incorporation Methods
16. Ignition Delay Times of Composite Solid Propellants Using Novel Nano-Additive Catalysts
17. Effects of Aging on the Burning Rates of Composite Solid Propellants with and without Nano-Sized Additives
18. Temperature Sensitivity of Composite Propellants Containing Novel Nano-Additive Catalysts
19. Laser-induced-breakdown-spectroscopy-based detection of metal particles released into the air during combustion of solid propellants
20. Comparison of Commercially Available and Synthesized Titania Nano-Additives in Composite HTPB/AP Propellant
21. Mechanical Properties of Composite AP/HTPB Propellants Containing Novel Titania Nanoparticles
22. Modern Scanning Electron Microscopy in the Study of Solid Propellant Combustion: Surface structure and Elemental Identification Via EDS
23. Burning Rate and Ignition Delay Times of AP/HTPB-Based Solid Rocket Propellants Containing Graphene
24. Laboratory-Scale Burning of Composite Solid Propellant Using In-Situ Synthesized Iron Oxide
25. Ignition Delay Times of Composite Solid Propellants Using Novel Nano-Additive Catalysts
26. Aging Effects of Composite AP/HTPB Propellants Containing Nano-Sized Additives
27. Comparison of Commercially Available and Synthesized Titania Nano-Additives in Composite HTPB/AP Propellant.
28. Safely improving jet, rocket fuels.
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