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Two-component additive manufacturing of nanothermite structures via reactive inkjet printing

机译:通过反应性喷墨印刷法对纳米铝热结构进行两组分增材制造

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摘要

With an eye towards improving the safety of the deposition of energetic materials while broadening the scope of materials compatible with inkjet printing, this work demonstrates the use of combinatorial inkjet printing for the deposition of energetic materials. Two largely inert colloidal suspensions of nanoaluminum and nanocopper (II) oxide in dimethylformamide with polyvinylpyrrolidone were sequentially deposited on a substrate using piezoelectric inkjet printing. The materials were deposited in such a way that the aluminum and copper (IT) oxide droplets were adjacent, and overlapping, to allow for in situ mixing of the components. The alternating deposition was repeated to create a sample with multiple layers of energetic materials. Energetic performance was subsequently tested on samples printed with 3, 5, and 7 layers of materials using a spark igniter. This ignition event was observed with a high speed camera and compared to representative samples printed with pre-mixed nanothermite. High speed thermal imaging supported a conclusion that the maximum reaction temperature of comparable samples printed with the dual nozzle technique was nominally 200 K less than the samples printed with a single nozzle. Scanning transmission electron microscopy images confirmed a claim that the material constituents were comparably mixed with the single and dual nozzle techniques. This work proves the feasibility of reactive inkjet printing as a means for depositing energetic materials from two largely inert suspensions. In doing so, it opens the doors for safer material handling and the development of a wide array of energetic materials that were previously deemed incompatible with inkjet printing.
机译:着眼于提高含能材料沉积的安全性,同时拓宽了与喷墨打印兼容的材料范围,这项工作展示了组合喷墨印刷在含能材料沉积中的应用。使用压电喷墨印刷将两种高度惰性的纳米铝和纳米铜氧化物(II)在二甲基甲酰胺中与聚乙烯吡咯烷酮的胶体悬浮液依次沉积在基材上。以使得铝和铜(IT)氧化物小滴相邻且重叠的方式沉积材料,以允许组分的原位混合。重复交替沉积以产生具有多层高能材料的样品。随后使用火花点火器在打印有3、5、7层材料的样品上测试能量性能。用高速相机观察到该着火事件,并将其与用预混合的纳米热媒印刷的代表性样品进行比较。高速热成像支持一个结论,即用双喷嘴技术打印的可比样品的最高反应温度名义上比用单喷嘴打印的样品低200K。扫描透射电子显微镜图像证实了一种说法,即材料成分与单喷嘴技术和双喷嘴技术相比较。这项工作证明了反应性喷墨印刷作为从两个高度惰性的悬浮液中沉积高能材料的方法的可行性。这样,它为更安全的材料处理和开发各种以前被认为与喷墨打印不兼容的高能材料打开了大门。

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  • 来源
    《Journal of Applied Physics》 |2017年第18期|184901.1-184901.5|共5页
  • 作者单位

    School of Mechanical Engineering, Purdue University, West Lafayette, Indiana 47907, USA,Ray W. Herrick Laboratories, Purdue University, West Lafayette, Indiana 47907, USA;

    School of Mechanical Engineering, Purdue University, West Lafayette, Indiana 47907, USA,Birck Nanotechnology Center, Purdue University, West Lafayette, Indiana 47907, USA;

    School of Materials Engineering, Purdue University, West Lafayette, Indiana 47907, USA;

    School of Mechanical Engineering, Purdue University, West Lafayette, Indiana 47907, USA,Maurice J. Zucrow Laboratories, Purdue University, West Lafayette, Indiana 47907, USA;

    School of Mechanical Engineering, Purdue University, West Lafayette, Indiana 47907, USA,Maurice J. Zucrow Laboratories, Purdue University, West Lafayette, Indiana 47907, USA;

    School of Mechanical Engineering, Purdue University, West Lafayette, Indiana 47907, USA,Ray W. Herrick Laboratories, Purdue University, West Lafayette, Indiana 47907, USA;

    School of Mechanical Engineering, Purdue University, West Lafayette, Indiana 47907, USA,Ray W. Herrick Laboratories, Purdue University, West Lafayette, Indiana 47907, USA,Birck Nanotechnology Center, Purdue University, West Lafayette, Indiana 47907, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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