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首页> 外文期刊>Central European Journal of Energetic Materials >Optimization of the Synthesis Parameters and Analysis of the Impact Sensitivity for Tetrazene Explosive
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Optimization of the Synthesis Parameters and Analysis of the Impact Sensitivity for Tetrazene Explosive

机译:四氮虫爆炸的合成参数优化分析及影响敏感性

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Tetrazene [1-(5-tetrazolyl)-4-guanyltetrazene hydrate] is widely used in ordnance systems as a sensitizer of primer compositions, for use in both percussion and stab applications. It can be synthesized by reacting aminoguanidinium bicarbonate (AGB) with sodium nitrite (NaNO_2) in the presence of acetic acid. However, little is known about its optimal synthesis parameters in the manufacturing process. In this study, Taguchi's experimental design method was used to further improve the yield of tetrazene. Under the condition that the molar ratio of AGB to NaNO_2 was fixed at 1.0:1.2, a L_9(3~3) orthogonal array with three control factors and three levels for each control factor was used to design nine experimental conditions. The experimental data were transformed into a signal-to-noise (S/N) ratio to analyze and evaluate the experimental conditions of the optimal parameter combination for the maximum yield of tetrazene. Verification of the results indicated that the optimal synthesis parameters were as follows: pH value of AGB solution was 5.0, reaction temperature was 35 °C and reaction time was 6 h; the maximum yield of tetrazene could reach 83.7%. Furthermore, the synthesized tetrazene was identified and characterized by elemental analysis (EA), nuclear magnetic resonance spectroscopy (NMR), Fourier transform infrared spectroscopy (FTIR), optical microscopy (OM), particle size distribution analysis (PSDA), X-ray diffraction (XRD) and differential scanning calorimetry (DSC), and its impact sensitivity was determined using a BAM Fallhammer apparatus and the Bruceton analysis method.
机译:四氮烯[1-(5-四唑基)-4-胍基四烯水合物]广泛用于底漆组合物的敏化剂,用于打击乐和刺伤应用。可以通过在乙酸存在下使氨基胍(AgB)与亚硝酸钠(NaNO_2)反应来合成。然而,关于其在制造过程中的最佳合成参数知之甚少。在本研究中,Taguchi的实验设计方法用于进一步提高四氮的产率。在AGB至NaNO_2的摩尔比在1.0:1.2处固定的条件下,使用具有三个对照因子的L_9(3〜3)正交阵列和每个对照因子的三个水平来设计九种实验条件。将实验数据转化为信号 - 噪声(S / N)比以分析和评估最大参数组合的实验条件,以获得四氮的最大收率。结果验证表明,最佳合成参数如下:AGB溶液的pH值为5.0,反应温度为35℃,反应时间为6小时;四烯的最大收率可达到83.7%。此外,通过元素分析(EA),核磁共振光谱(NMR),傅里叶变换红外光谱(FTIR),光学显微镜(OM),粒度分布分析(PSDA),X射线衍射(PSDA),X射线衍射(PSDA),X射线衍射(PSDA),X射线衍射(PSDA),X射线衍射(PSDA),X射线衍射(PSDA)。 (XRD)和差示扫描量热法(DSC),并使用BAM Falshammer设备和Bruceton分析方法测定其冲击灵敏度。

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