首页> 外文会议>International annual conference of Fraunhofer ITC >ENGINEERED MICROSTRUCTURES OF BINARY THERMITES BY ADDITIVE MICRO- MANUFACTURING METHODS: FABRICATION, CHARACTERIZATION AND PERFORMANCE
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ENGINEERED MICROSTRUCTURES OF BINARY THERMITES BY ADDITIVE MICRO- MANUFACTURING METHODS: FABRICATION, CHARACTERIZATION AND PERFORMANCE

机译:添加微制造方法的二元热固的工程微观结构:制造,表征和性能

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Here we report the use of two additive micro-manufacturing techniques: 1) Electrophoretic deposition (EPD) and 2) Direct ink writing (DIW) as a means to prepare thin films and three-dimensional structures of well-mixed copper (Ⅱ) oxide/ aluminum (CuO/Al) binary paniculate composites, respectively. Films were deposited onto patterned electrodes, with very fine feature sizes, which were used for mechanistic investigations of the ignition and combustion. The EPD films were examined using electron microscopy, and their combustion characteristics were analyzed with high-speed videos. The results show that films prepared by EPD show a large enhancement in the combustion speed with total film thickness. These films are also particularly useful for developing thermites for micro-energetic applications. In further studies, the DIW method was successfully used in combination with EPD as a means to synthesize various architectures of energetic materials. Patterns of electrodes are written onto an arbitrary substrate, and EPD is then used to deposit thermite materials directly onto the patterns. Alternatively, one of the two components in an energetic thermite can directly be written onto a surface, followed by the addition of the second component using EPD.
机译:在这里,我们报告使用两种添加剂微制造技术:1)电泳沉积(EPD)和2)直接墨水写入(DIW)作为制备薄膜的方法和氧化良好的铜(Ⅱ)氧化物的三维结构/铝(CuO / Al)二元胰腺复合材料。将薄膜沉积在图案化的电极上,具有非常精细的特征尺寸,用于用于点火和燃烧的机械研究。使用电子显微镜检查EPD膜,并用高速视频分析它们的燃烧特性。结果表明,EPD制备的薄膜显示出具有总膜厚度的燃烧速度的大增强。这些薄膜对于开发微量能量应用的热固性也特别有用。在进一步的研究中,DIW方法与EPD相结合,作为合成精力充沛的材料的各种架构的手段。将电极图案写入任意基板上,然后使用EPD直接将热物质沉积到图案上。或者,能量热量中的两个组分中的一个可以直接写入表面上,然后使用EPD添加第二组分。

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