首页> 美国政府科技报告 >Surface Characterization of an Energetic Material, Pentaerythritoltetranitrate (PETN), Having a Thin Coating Achieved Through a Starved Addition Microencapsulation Technique
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Surface Characterization of an Energetic Material, Pentaerythritoltetranitrate (PETN), Having a Thin Coating Achieved Through a Starved Addition Microencapsulation Technique

机译:高能材料,季戊四醇四硝酸酯(pETN)的表面表征,通过饥饿的加成微胶囊技术实现薄涂层

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The objective of this research was to: (1) determine the nature of a thin coating on an explosive material which was applied using a starved addition microencapsulation technique, (2) understand the coating/crystal bond, and (3) investigate the wettability/adhesion of plastic/solvent combinations using the coating process. The coating used in this work was a Firestone Plastic Company copolymer (FPC-461) of vinylchloride/trifluorochloroethylene in a 1.5/1.0 weight ratio. The energetic explosive examined was pentaerythritoltetranitrate (PETN). The coating process used was starved addition followed by a solvent evaporation technique. Surface analytical studies, completed for characterization of the coating process, show (1) evidence that the polymer coating is present, but not continuous, over the surface of PETN; (2) the average thickness of the polymer coating is between 16-32 A and greater than 44 A, respectively, for 0.5 and 20 wt % coated PETN; (3) no changes in surface chemistry of the polymer or the explosive material following microencapsulation; and (4) the presence of explosive material on the surface of 0.5 wt % FPC-461 coated explosives. 5 refs., 15 figs., 6 tabs. (ERA citation 11:038516)

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