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Technology for utilization of waste single and double based propellants by obtaining porous propellants was worked out. The technology contains the preparation of solutions of waste propellants with concentration up to 20%, mixing with additives, forming a liquid layer with determined thickness, evaporation of some amount of the solvent, leaching liquid components with water and draying the porous propellants. The time for evaporation of some amount of the solvent was determined from the results of the rates of evaporation. The investigated additives were 1-butanol, ethylene glycol and polyethylene glycol 400. The porous propellants with specific density from 0.5 to 0.7 g/cm3 and regular distribution of voids of dimensions from 0.1 to 500 žm were obtained.
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Tom
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93--98
Opis fizyczny
Bibliogr. 17 poz.
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autor
autor
autor
- University of Chemical Technology and Metallurgy, 8 Kl.Ohridski St., 1756 Sofia, Bulgaria, ivgl@uctm.edu
Bibliografia
- [1] Redeker Kl., Penner H., Method for Preparation of Porous Propellants, US Pat. N 5230841 / 27.06.1993.
- [2] Bertrand Y., Favrot R., Gandillier P., Perennou J-Ch, Wiedemann B., Process for the Manufacture of Fine Propellant Pouders by Granulation, and Powder thus Obtained, US Pat. N 4444606 / 24.04.1984.
- [3] Cucinota J.J., Granular Nitrocellulose Manufacture, US Pat. N 3563977 / 16.02.1971.
- [4] Redeker K., Penner H., Method for Preparation of Porous Propellants, US Pat. N 5230841/ 07.27.1993.
- [5] Makoto Kohga, Burning Characteristics of AP/HTPB Composite Propellants Prepared with Fine Porous or Fine Hollow Ammonium Perchlorate, Propellants, Explos., Pyrotech., 2006, 31(1), 50-55.
- [6] Simpson R.L., Lee R.S., Tillotson T.M., Hrubesh L.W., Swansiger R.W., Fox G.A., Sol-gel Manufactured Energetic Materials, US Pat. N 6893518 B1 / 17.05.2005.
- [7] Baker J.J., Woodland T., Method of Making GAP Propellants by Prereacting of Metal Fuel with Isocianate before Mixing with Binder and Plasticizer, US Pat. N 7824511 / 11.02.2010.
- [8] Ganev R., Glavchev Iv., Tzvetkoff Tz., Ivanova M., Totev T., Investigation of Long-Term Ageing of Single Base Propellants by IR Spectroscopy, Journal of Explosives and Propellants, R.O.C., 2004, 20(1), 1-7.
- [9] Pilon R., Kunst B., Sourirajan S., Studies on the Development of Improved Reverse Osmosis Membranes from Cellulose Acetate-acetone-formamide Casting Solutions, J. Appl. Polym. Sc., 1971, 15(6) 1317-1325.
- [10] Sarbolouki M.N., Preparation of Skinned Membranes without Evaporation Step, J. Polym. Sci., Polym. Lett. Ed., 1973, 11, 753-756.
- [11] Gittens G.J., Hitchcock P.A., Wakley G.E., The Structure of Cellulose Acetate Membranes for Reverse Osmosis. Part 2. Transmission and Scanning Electron Microscopy of Membranes Cast from an Acetone-formamide Dope, Desalination, 1973, 12(3), 315-320.
- [12] Glavchev I., Petrova K., Devedjiev I., Investigation of Solvent Interaction in Epoxy Coatings, Polymer Testing, 2000, 19, 111-114.
- [13] Lemoyne C., Friedrich C., Halary J.L., Noel C., Monnerie L., Physicochemical Processes Occurring during the Formation of Cellulose Diacetate Membranes. Research of Criteria for Optimizing Membrane Performance. V. Cellulose Diacetate-acetone-water-inorganic Salt Casting Solutions, J. Appl. Polym. Sci., 1980, 25, 1883-1913.
- [14] Nachinkin O.I., Dudrova A.G., Lekskovskaia N.P., Ruban I.G., Vnutrennie Naprejenia v Studniax pri Poluchenii Membran iz Polyvinylchloride, Vis. Soed., 1982, B24 (7), 553-556 (in Russian).
- [15] Yu C.W.F., Crump D.R., Methods for Measuring VOC Emission from Interior Paints, Surface Coat. Int., 2000, 83(11), 548-556.
- [16] Zeh H., The Determination of VOC Emissions From Latex Paints during and after Application; Methods, Performance and Precision”, Surface Coat. Int., 2000, 83 (3), 111-118.
- [17] Glavchev I., Nikolov R., Valchev P., Determination of Mixed Solvent`s Evaporation Rates with the Formation of Thin Films for Membranes”, Polymer Testing, 2003, 22, 529-532.
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-article-BAT1-0039-0031