Effect of combustion catalyst on the burning rate and temperature transformation in fire zones of propellant on nitrate cellulose and nitroglycerin with P/H = 1

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Authors

  • Pham Quang Hieu (Corresponding Author) Institute of Propellant and Explosives
  • Vu Xuan Son Institute of Propellant and Explosives

DOI:

https://doi.org/10.54939/1859-1043.j.mst.92.2023.92-99

Keywords:

Ballistic; Propellant A; Phase K; Catalysis burning; PMC; Thermopair.

Abstract

 A mixture of combustion catalysts, including lead-copper phthalate (PMC) and carbon (C), not only affects the burning rate of fuel based on cellulose nitrate and nitroglycerin with P/H=1, but also affects the combustion region of the fuel temperature distribution. The effect of this burning catalyst system on the fuel combustion rate is most evident in the low pressure range (0.7 MPa), the higher the pressure, the lower the effect (Z~1) for the catalyst containing 6% PMC + 1% C for the highest Z factor A catalytic mixture with such a ratio of components increases the combustion temperature compared to the background sample at low pressure: the surface temperature of the K-phase increases from 622 to 654 K, the maximum combustion temperature increases from 1399 to 1527 K, and the heat release increases transfer coefficient χ on the surface of the solid fuel phase from 0.00071 to 0.00247 cm2/s.

References

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Published

25-12-2023

How to Cite

Phạm Quang, H., and Vũ Xuân Sơn. “Effect of Combustion Catalyst on the Burning Rate and Temperature Transformation in Fire Zones of Propellant on Nitrate Cellulose and Nitroglycerin With P/H = 1”. Journal of Military Science and Technology, vol. 92, no. 92, Dec. 2023, pp. 92-99, doi:10.54939/1859-1043.j.mst.92.2023.92-99.

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Section

Research Articles