首页> 外文期刊>Propellants, Explosives, Pyrotechnics >The Effect of Silicon Powder Characteristics on the Combustion of Silicon/Teflon/Viton Nanoenergetics
【24h】

The Effect of Silicon Powder Characteristics on the Combustion of Silicon/Teflon/Viton Nanoenergetics

机译:硅粉特性对硅/聚四氟乙烯/ Viton纳米能燃烧的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Due to its thin passivation layer, potentially good aging characteristics, and ease of surface functionalization nanoscale silicon (SO may offer some advantages over nanoaluminum as a reactive fuel in nanoenergetic compositions, particularly with fluorine-based oxidizers. Currently, Si nanopowder can be quite expensive and the quality of commercial powders has been found to vary drastically. As a result limited efforts have focused on the role of specific surface area, active content, morphology, and dominant particle size of the powder have on the combustion performance. In this work we report the effect of such characteristics on the combustion of silicon (SD/polytetrafluoro-ethylene (Teflon)/FC-2175 (Viton) (SiTV) nanoenergetics. A cost effective combustion synthesis route, salt assisted combustion synthesis, was used to produce several Si powders and these were directly compared to commercial nanoscale Si powders. Reactive mixtures of SiTV were burned at atmospheric conditions and burning rates, combustion temperatures, spectral intensities, and effective plume emissivities were measured. Measured combustion temperatures ranged from 1664 to 2380 K and were limited by Si powder active content. This was found to drive plume emissivity and maximum spectral intensity, which had values ranging from 0.10 to 0.55 for effective plume emissivity and 17.6 to 48.1 kWm~(-2)sr~(-1)pμm~(-1) for maximum spectral intensity. Burning rates ranged from 0.7 to 3.4 mm s~(-1) and were found to be dependent on the dominant particle size of the powder. Powders synthesized with salt assisted combustion resulted in comparable burning rate, plume emissivity and maximum spectral intensity to porous Si powder (Vesta Ceramics).
机译:由于其薄的钝化层,潜在的良好老化特性以及易于表面官能化的纳米级硅(SO可能比纳米铝作为纳米高能组合物中的反应性燃料(尤其是含氟氧化剂)更具优势。目前,硅纳米粉可能非常昂贵结果发现,商用粉末的质量变化很大,因此,有限的努力集中在粉末的比表面积,活性成分,形态和主要颗粒尺寸对燃烧性能的影响上。报告了这种特性对硅(SD /聚四氟乙烯(Teflon)/ FC-2175(Viton)(SiTV)纳米能)燃烧的影响,使用了一种成本有效的燃烧合成路线,即盐辅助燃烧合成来生产几种硅。粉末,并将其直接与市售纳米级Si粉末进行比较。SiTV的反应混合物在大气条件下燃烧,测量了燃烧速率,燃烧温度,光谱强度和有效羽流发射率。测得的燃烧温度范围为1664至2380 K,并受硅粉活性成分的限制。已发现这可以驱动羽流发射率和最大光谱强度,其有效羽流发射率的值在0.10至0.55范围内,最大光谱强度在17.6至48.1 kWm〜(-2)sr〜(-1)pμm〜(-1) 。燃烧速率为0.7至3.4 mm s〜(-1),并且被发现取决于粉末的主要颗粒尺寸。盐辅助燃烧合成的粉末与多孔硅粉末(Vesta Ceramics)相比具有可比的燃烧速率,羽流发射率和最大光谱强度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号