Oh Juyoung, Jang Seung-Gyo, Yoh Jack J
Department of Mechanical and Aerospace Engineering, Seoul National University, Seoul, 08826, South Korea.
Agency for Defense Development, Daejeon, 34060, South Korea.
Sci Rep. 2019 Jul 15;9(1):10203. doi: 10.1038/s41598-019-46608-8.
Ageing of pyrotechnic substance, primarily fuel oxidisation, can cause changes in composition that degrade their performance. This study investigates the effect of ageing on zirconium potassium perchlorate (ZPP), a widely used NASA Standard Initiator. Although prior studies have investigated the effects of accelerated ageing on ZPP, this is the first to conduct kinetic analyses at different relative humidity (RH) levels. Here, both thermal and kinetic analyses are conducted for a variety of hygrothermal ageing cases in order to replicate the natural ageing process. X-ray photoelectron spectroscopy (XPS) results reveal that oxidant levels drop and zirconium dioxide levels rise as ZPP ages. Lower heats of reaction and increases in activation energy were also observed under the RH conditions. Calculations using van't Hoff equation indicate that moisture shortened the lifespan of the unaged ZPP up to about 85% under extreme RH conditions, while significantly deteriorating the heat of reaction, sensitivity, and thus increased the risk of a misfire.
烟火药剂的老化,主要是燃料氧化,会导致其成分发生变化,从而降低其性能。本研究调查了老化对高氯酸锆钾(ZPP)的影响,ZPP是美国国家航空航天局广泛使用的标准起爆药。尽管之前的研究已经调查了加速老化对ZPP的影响,但这是首次在不同相对湿度(RH)水平下进行动力学分析。在这里,为了模拟自然老化过程,对各种湿热老化情况进行了热分析和动力学分析。X射线光电子能谱(XPS)结果表明,随着ZPP的老化,氧化剂含量下降,二氧化锆含量上升。在RH条件下还观察到反应热降低和活化能增加。使用范特霍夫方程的计算表明,在极端RH条件下,水分使未老化ZPP的寿命缩短了约85%,同时显著降低了反应热和敏感度,从而增加了误爆的风险。