CHINESE JOURNAL OF ENERGETIC MATERIALS
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氟橡胶包覆对微米铝粉燃烧性能的影响规律
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中国工程物理研究院化工材料研究所, 四川 绵阳621999

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Effect of Fluororubber Coating on Combustion Properties of Micro-sized Aluminum Powder
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Institute of Chemical Materials, CAEP, Mianyang 621999, China

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    摘要:

    为了考察氟橡胶包覆对微米铝粉燃烧影响的规律,采用激光点火、定容燃烧、热分析等方法,对5 μm及50 μm两种粒径、不同氟橡胶含量微米铝粉的燃烧性能、热性能进行了分析,得到粒径和氟橡胶含量对微米铝粉的点火延迟时间、燃速、燃烧状态、燃烧热值、热反应性能等的影响规律。结果表明,未包覆的微米铝粉在0.1 MPa氧气中无法被激光点燃。而在氟橡胶包覆后,随着氟橡胶含量的变化,5 μm铝粉的点火延迟时间可由91 ms缩短为31 ms,燃速可由3.08 mm·s-1增加至364.96 mm·s-1,燃烧热值可达到27.61 kJ·g-1;50 μm铝粉的点火延迟时间可由130 ms缩短为40 ms,燃速可由1.80 mm·s-1增加至43.78 mm·s-1,燃烧热值可达到26.08 kJ·g-1。此外,在热重分析(TG)的基础上,计算了氟橡胶反应深度和氧化铝层厚度,发现氟橡胶的反应仅存于铝粉的表面,而在相同反应条件下,反应完成后氧化铝层的厚度与微米铝粉的粒径无关。

    Abstract:

    To investigate the influence of fluororubber coating on the combustion properties of micro-sized aluminum powder (μ-Al), several methods such as laser ignition,constant volume burning and thermal analysis were employed to study the combustion and thermal performance of 5 μm and 50 μm aluminum powder coated by different content of fluororubber. Ignition delay time, burning speed, state of combustion, combustion heat and thermal reaction properties of these samples were presented. It showed that un-coated μ-Al cannot be ignited by laser in a 0.1 MPa oxygen atmosphere. For the coated 5 μm aluminum powder (5μ-Al@n%FP), ignition delay time can be reduced from 91 ms to 31 ms, burning speed can also be increased from 3.08 mm·s-1 to 364.96 mm·s-1, and combustion heat can reach up to 27.61 kJ·g-1 by varying the content of fluororubber in the composite particles. Similarly, for the coated 50 μm aluminum powder (50μ-Al@n%FP), ignition delay time can be reduced from 130 ms to 40 ms, burning speed can also be increased from 1.80 mm·s-1 to 43.78 mm·s-1, and combustion heat can reach up to 26.08 kJ·g-1. Based on thermal analysis (TG), the reaction depth of fluororubber and the thickness of Al2O3 were calculated. It revealed that the reaction between fluororubber and μ-Al occurred merely on the surface of aluminum particles. Under the same reaction condition, the thickness of Al2O3 had no correspondence with the size of μ-Al.

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胡驰,郭亚,罗观,等.氟橡胶包覆对微米铝粉燃烧性能的影响规律[J].含能材料, 2021, 29(10):1001-1007. DOI:10.11943/CJEM2021199.
HU Chi, GUO Ya, LUO Guan, et al. Effect of Fluororubber Coating on Combustion Properties of Micro-sized Aluminum Powder[J]. Chinese Journal of Energetic Materials, 2021, 29(10):1001-1007. DOI:10.11943/CJEM2021199.

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  • 收稿日期: 2021-08-04
  • 最后修改日期: 2021-10-19
  • 录用日期: 2021-09-28
  • 在线发布日期: 2021-10-18
  • 出版日期: 2021-10-25