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Altering combustion of silicon/polytetrafluoroethylene with two-step mechanical activation

机译:通过两步机械激活来改变硅/聚四氟乙烯的燃烧

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摘要

Though silicon (Si) has been widely considered as a reactive fuel, the ability to tune its ignition and combustion characteristics remains challenging. One means to accomplish this may be mechanical activation (MA), which has been shown to be effective with aluminum fuels. In this work, a two-step MA process was developed to prepare fuel-rich Si/polytetrafluoroethylene (PTFE) composite reactive powders. The process consisted of cryogenic milling, followed by high intensity milling at room temperature. This resulted in particle refinement of the hard, brittle silicon particles and also dispersion within the more ductile PTFE matrix. Surface area of the as-milled powder was found to be moderate, ranging from 1.75 +/- 0.06 m(2) g(-1) (44/51 Si/PTFE) to 5.37 +/- 0.10 m(2) g(-1) (90/10 Si/PTFE) and was driven by the fraction of refined Si powder not dispersed in a PTFE matrix. Combustion enthalpies ranged from 15.6 +/- 0.4 kJ g(-1) (44/51 Si/PTFE) to 21.8 +/- 2.2 kJ g(-1) (90/10 Si/PTFE) and were higher than a physical mixture of the precursors. Combustion experiments showed that burning rates ranged from 1.6 to 2.1 mm s(-1) and combustion temperatures (as measured from gray body emission) ranged from 1708 to 1889 K. The combustion performance of MA Si/PTFE was comparable to mixtures prepared with nanoscale and nanoporous silicon powders, indicating that the reactivity of silicon fuel had been successfully altered inexpensively without many of the major drawbacks associated with using high specific surface area powders. (C) 2014 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:尽管硅(Si)被广泛认为是一种反应性燃料,但调节其着火和燃烧特性的能力仍然具有挑战性。实现此目的的一种方法可能是机械活化(MA),该方法已被证明对铝燃料有效。在这项工作中,开发了两步MA工艺来制备富含燃料的Si /聚四氟乙烯(PTFE)复合活性粉末。该过程包括低温研磨,然后在室温下进行高强度研磨。这导致了对硬而脆的硅颗粒的细化,并使其在更具延展性的PTFE基体内分散。发现研磨后的粉末的表面积适中,范围从1.75 +/- 0.06 m(2)g(-1)(44/51 Si / PTFE)到5.37 +/- 0.10 m(2)g( -1)(90/10 Si / PTFE),并且由未分散在PTFE基体中的精制Si粉的比例驱动。燃烧焓范围从15.6 +/- 0.4 kJ g(-1)(44/51 Si / PTFE)到21.8 +/- 2.2 kJ g(-1)(90/10 Si / PTFE)并且高于物理混合物的前体。燃烧实验表明,燃烧速率为1.6至2.1 mm s(-1),燃烧温度(根据灰体发射测量)为1708至1889K。MA Si / PTFE的燃烧性能可与纳米级制备的混合物相媲美。以及纳米多孔硅粉,表明硅燃料的反应性已经成功地廉价地改变了,而没有许多与使用高比表面积粉末有关的主要缺点。 (C)2014年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

著录项

  • 来源
    《Combustion and Flame》 |2015年第4期|1350-1357|共8页
  • 作者单位

    Purdue Univ, Zucrow Labs, Sch Aeronaut & Astronaut, W Lafayette, IN 47907 USA;

    Purdue Univ, Zucrow Labs, Sch Mech Engn, W Lafayette, IN 47907 USA;

    Purdue Univ, Zucrow Labs, Sch Mech Engn, W Lafayette, IN 47907 USA|South Dakota Sch Mines & Technol, Dept Biol & Chem Engn, Rapid City, SD 57701 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Silicon; Polytetrafluoroethylene; Mechanical activation; High energy ball milling;

    机译:硅;聚四氟乙烯;机械活化;高能球磨;

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