CHINESE JOURNAL OF ENERGETIC MATERIALS
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多染焰剂协同紫光辐射烟火药配方设计
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沈阳理工大学装备工程学院, 辽宁 沈阳 110159

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Formulation Design of Purple-Light-Emitting Pyrotechnic Compositions with Multi Flame Colorants
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School of Equipment Engineering, Shenyang Ligong University, Shenyang 110159, China

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    为理论设计和优化多染焰剂协同辐射紫光的烟火药配方。基于色光混合原理,提出一种含红光和蓝光双染焰剂的紫光烟火药配方,利用REAL计算程序确定不同色光发射体的种类及含量,通过MATLAB程序计算不同配方的色坐标、波长、色纯度和绘制色度图,进而确定优化紫光烟火药配方。研究结果表明,确定紫光烟火药理论最佳配方为Sr(NO32/2CuCO3·Cu(OH)2/Al/C6H9.6O1.6,配比为48/32/12/8,氧平衡为-0.11 g·g-1,色光发射体分别为Sr、SrO、SrOH、CuO、CuOH、CuH,紫光色坐标点为(0.2449,0.1497),紫光虚拟主波长为446 nm,色纯度为0.40。实验测得上述相同配方的色坐标为(0.2425,0.1588),紫光虚拟主波长为439 nm,色纯度为0.44,该紫光实际上是由766 nm红光和418 nm蓝光混合而成,具有良好的紫光效果。仿真预测结果与实验结果良好吻合,该设计方法可为其它多染焰剂色光烟火药配方优化及相关问题的研究提供理论基础。

    Abstract:

    The pyrotechnic formulation, that emitting purple light by using the synergetic effect of multi flame colorants, was designed and optimized theoretically. Based on the principle of additive color mixing, one purple-light-emitting pyrotechnic formulation containing flame colorants that generating red and blue colors was proposed. The types and contents of different colored light emitters were determined by REAL program. The color coordinates, wavelengths, color purities and chromaticity diagrams of different formulations were calculated by MATLAB program, and then the optimized pyrotechnic composition with purple light was determined. The theoretical results showed that the optimal formulation of purple-light-emitting pyrotechnics was Sr(NO32/2CuCO3·Cu(OH)2/Al/C6H9.6O1.6 with the ratio of 48/32/12/8. The oxygen balance of the formulation was -0.11 g·g-1 and the colored light emitters were Sr, SrO, SrOH, CuO, CuOH, and CuH, respectively. The purple chromaticity coordinate point was (0.2449,0.1497). The virtual dominant wavelength of purple light was 446 nm, and the color purity was 0.40. The experimental measurements of the above formulation showed that the chromaticity coordinate point was (0.2425,0.1588), the virtual dominant wavelength of purple light was 439 nm, and the color purity was 0.44. The purple light was actually produced by the mixing of red light (766 nm) and blue light (418 nm), with good purple effect. The simulation results are in good agreement with the experimental results. This design method can provide a theoretical basis for the formulation optimization of other colored-light-emitting pyrotechnic compositions with multi flame colorants and the study of related problems.

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霸书红,刘琪,徐博明,等.多染焰剂协同紫光辐射烟火药配方设计[J].含能材料, 2022, 30(4):379-384. DOI:10.11943/CJEM2021343.
BA Shu-hong, LIU Qi, XU Bo-ming, et al. Formulation Design of Purple-Light-Emitting Pyrotechnic Compositions with Multi Flame Colorants[J]. Chinese Journal of Energetic Materials, 2022, 30(4):379-384. DOI:10.11943/CJEM2021343.

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历史
  • 收稿日期: 2021-12-27
  • 最后修改日期: 2022-02-24
  • 录用日期: 2022-02-19
  • 在线发布日期: 2022-02-21
  • 出版日期: 2022-04-25