Influences of Infrared Dye Content and Laser Energy Density on Laser Propulsion Performance of ADN-Based Liquid Propellants.

IF 3 3区 工程技术 Q2 CHEMISTRY, ANALYTICAL Micromachines Pub Date : 2024-12-31 DOI:10.3390/mi16010059
Lizhi Wu, Jinle Cao, Jingyuan Zhang, Jingwei Zeng, Yue Pan
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Abstract

Ammonium dinitramide (ADN) is a new green oxidant, which is a kind of high-energy ionic liquid and has been widely used in the field of liquid propulsion. When it is used in laser plasma propulsion, its poor absorption coefficient significantly limits its application. To address the issue, this paper investigates the effects of the content of the infrared dye and the laser energy density on the laser propulsion performance of an ADN-based liquid propellant. The performance of the liquid propellant was tested by the light absorption performance test system and the micro-impulse test system. The results show that the addition of infrared dye can significantly improve the light absorption performance of the liquid matrix. As the content of the infrared (IR) dyes increases from 0.3 wt.% to 0.6 wt.%, the absorption coefficient of the ADN-based liquid propellant increases from 248.84 cm-1 to 463.85 cm-1, and the absorption depth decreases from 40.20 μm to 21.56 μm. At a laser energy density of 21.60 J·cm-1, when the IR dye content increases from 0.3 wt.% to 0.6 wt.%, the specific impulse increases from 26.43 s to 54.43 s and the ablation efficiency increases from 4.32% to 18.21%. Significantly luminous plasma appears in the ablation plume at higher laser energy densities, accompanied by higher-velocity plasma shock waves. Compared to the factor of the infrared dye content, the laser energy density contributes more to the ablation efficiency, especially when the increase in laser energy density promotes the full release of chemical energy from the liquid propellant, which, in turn, also enhances the impulse, impulse coupling coefficient, and the plasma detonation velocity. The results provide an important reference for the design of an energy-containing liquid propellant.

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红外染料含量和激光能量密度对adn基液体推进剂激光推进性能的影响
二硝酰胺铵(ADN)是一种新型的绿色氧化剂,是一种高能离子液体,在液体推进领域得到了广泛的应用。在激光等离子体推进中,其较差的吸收系数极大地限制了其应用。为了解决这一问题,本文研究了红外染料含量和激光能量密度对adn基液体推进剂激光推进性能的影响。采用光吸收性能测试系统和微脉冲测试系统对液体推进剂的性能进行了测试。结果表明,红外染料的加入可以显著提高液体基质的光吸收性能。随着红外染料含量从0.3 wt.%增加到0.6 wt.%, adn基液体推进剂的吸收系数从248.84 cm-1增加到463.85 cm-1,吸收深度从40.20 μm减小到21.56 μm。在激光能量密度为21.60 J·cm-1时,当红外染料含量从0.3 wt.%增加到0.6 wt.%时,比脉冲从26.43 s增加到54.43 s,烧蚀效率从4.32%增加到18.21%。在较高的激光能量密度下,烧蚀羽流中出现了明显的发光等离子体,并伴有较高速度的等离子体激波。与红外染料含量因素相比,激光能量密度对烧蚀效率的贡献更大,特别是激光能量密度的增加促进了液体推进剂化学能的充分释放,从而提高了脉冲、脉冲耦合系数和等离子体爆轰速度。研究结果为含能液体推进剂的设计提供了重要参考。
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来源期刊
Micromachines
Micromachines NANOSCIENCE & NANOTECHNOLOGY-INSTRUMENTS & INSTRUMENTATION
CiteScore
5.20
自引率
14.70%
发文量
1862
审稿时长
16.31 days
期刊介绍: Micromachines (ISSN 2072-666X) is an international, peer-reviewed open access journal which provides an advanced forum for studies related to micro-scaled machines and micromachinery. It publishes reviews, regular research papers and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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