CHINESE JOURNAL OF ENERGETIC MATERIALS
+高级检索
K9窗口Ti/Al薄膜对B/KNO₃/PF激光点火特性的影响
作者:
作者单位:

1南京理工大学化学与化工学院, 江苏 南京 210094;2西安航天动力测控技术研究所, 陕西 西安 710076

作者简介:

通讯作者:

基金项目:

激光推进及其应用国家重点实验室基金项目(SKLLAP-202405)


Effects of Ti/Al Thin Films on K9 Window on Laser Ignition Characteristics of B/KNO3/PF
Author:
Affiliation:

1School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China;2Xi''an Aerospace Propulsion Testing Technology Research Institute, Shanxi 710076, China

Fund Project:

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 支撑附件
    摘要:

    为了揭示薄膜厚度及有/无加速膛工况对激光薄膜点火性能的影响规律及作用机理,采用光电探测器、高速摄影、光谱仪、纹影系统研究了B/KNO₃/PF药剂在不同薄膜厚度和不同加速膛厚度下的激光点火感度、点火延迟时间、激光烧蚀薄膜等离子体特性、激光等离子体冲击波和薄膜粒子运动特性。结果表明,204 nm厚的Ti/Al-1薄膜对激光点火过程有促进作用,使激光点火能量密度阈值从无薄膜介质时的3.94 J•cm-2降低到了3.67 J•cm-2,488 nm厚的Ti/Al-2和874nm厚的Ti/Al-3则使点火能量密度阈值升高,对应的激光点火能量密度阈值分别为4.23 J•cm-2、4.85 J•cm-2。激光点火延迟时间按Ti/Al-1、无薄膜介质、Ti/Al-2、Ti/Al-3的顺序递增,与激光点火能量密度阈值的规律相同。随着薄膜厚度的增加,激光烧蚀薄膜等离子体电子温度及电子密度均下降。在薄膜与药剂间置入厚度0.1 mm、内径0.6 mm的加速膛结构后,药剂激光点火感度无显著变化。3种薄膜体系最短点火延迟较无加速膛工况分别缩短0.21 ms、1.64 ms、2.67 ms,优化后延迟依次为1.6 ms、1.0 ms、1.3 ms。薄膜介质厚度与加速膛厚度之间存在最佳匹配条件,Ti/Al-2、Ti/Al-3分别与0.1 mm、0.2 mm厚加速膛配合时可以获得最佳的点火效果。

    Abstract:

    To reveal the influence laws and action mechanisms of film thickness and working conditions with/without an accelerating chamber on the laser ignition performance of thin films, photoelectric detectors, high-speed cameras, spectrometers and schlieren system were adopted to investigate the laser ignition sensitivity, ignition delay time, plasma characteristics of laser-ablated thin films, laser-induced plasma shock waves and particle motion characteristics of thin films for B/KNO3/PF energetic powder under various film thicknesses and accelerating chamber thicknesses.The results show that the 204 nm-thick Ti/Al-1 thin film facilitates the laser ignition process, lowering the laser ignition energy fluence threshold from 3.94 J·cm-2 (without a thin film medium) to 3.67 J·cm-2. By contrast, the 488 nm-thick Ti/Al-2 and 874 nm-thick Ti/Al-3 thin films raise the ignition energy fluence threshold, with corresponding threshold values of 4.23 J·cm-2 and 4.85 J·cm-2, respectively. The laser ignition delay time increases in the order of Ti/Al-1, without thin film medium, Ti/Al-2 and Ti/Al-3, following the same trend as the laser ignition energy fluence threshold. As the film thickness rises, both the electron temperature and electron density of laser-ablated film plasma decrease. When an accelerating chamber with a thickness of 0.1 mm and inner diameter of 0.6 mm is placed between the thin film and energetic powder, no obvious variation occurs in the laser ignition sensitivity of the powder. The minimum ignition delay times of the three film systems are shortened by 0.21 ms, 1.64 ms and 2.67 ms compared with the condition without an accelerating chamber, and the optimized delay times are 1.6 ms, 1.0 ms and 1.3 ms in sequence.There exists an optimal matching relationship between thin film medium thickness and accelerating chamber thickness. The Ti/Al-2 and Ti/Al-3 thin films achieve the optimal ignition performance when matched with 0.1 mm-thick and 0.2 mm-thick accelerating chambers, respectively.

    参考文献
    相似文献
    引证文献
文章指标
  • PDF下载次数:
  • HTML阅读次数:
  • 摘要点击次数:
  • 引用次数:
引用本文

郝新生,耿优,袁浩方,等. K9窗口Ti/Al薄膜对B/KNO₃/PF激光点火特性的影响[J]. 含能材料,DOI:10.11943/CJEM2026141.

复制
历史
  • 收稿日期: 2026-06-09
  • 最后修改日期: 2026-07-28
  • 录用日期: 2026-07-29
  • 在线发布日期: 2026-07-30
  • 出版日期: