Hexogen Coating Kinetics with Polyurethane-Based Hydroxyl-Terminated Polybutadiene (HTPB) Using Infrared Spectroscopy

异氰酸酯 异佛尔酮二异氰酸酯 聚氨酯 聚丁二烯 固化(化学) 化学 高分子化学 动力学 端羟基聚丁二烯 反应速率常数 红外光谱学 甲苯二异氰酸酯 溶剂 化学动力学 材料科学 有机化学 聚合物 共聚物 物理 量子力学
作者
Heri Budi Wibowo,Hamonangan Rekso Diputro Sitompul,Rika Suwana Budi,Kendra Hartaya,Luthfia Hajar Abdillah,Retno Ardianingsih,Ratih Sanggra Murti Wibowo
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:14 (6): 1184-1184 被引量:1
标识
DOI:10.3390/polym14061184
摘要

The kinetics of hexogen coating with polyurethane-based hydroxyl-terminated polybutadiene (HTPB) using infrared spectrometry was investigated. The kinetics model was evaluated through reaction steps: (1) hydroxyl and isocyanate to produce urethane, (2) urethane and isocyanate to produce allophanate, and (3) nitro and isocyanate to produce diazene oxide and carbon dioxide. HTPB, ethyl acetate, TDI (toluene diisocyanate), and hexogen were mixed for 60 min at 40 °C. The sample was withdrawn and analyzed with infrared spectroscopy every ten minutes at reference wavelengths of 2270 (the specific absorption for isocyanate groups) and 1768 cm-1 (the specific absorption for N=N groups). The solvent was vaporized; then, the coated hexogen was cured in the oven for 7 days at 60 °C. The effect of temperature on the coating kinetics was studied by adjusting the reaction temperature at 40, 50, and 60 °C. This procedure was repeated with IPDI (isophorone diisocyanate) as a curing agent. The reaction rate constant, k3, was calculated from an independent graphic based on increasing diazene oxide concentration every ten minutes. The reaction rate constants, k1 and k2, were numerically calculated using the Newton-Raphson and Runge-Kutta methods based on decreasing isocyanate concentrations. The activation energy of those steps was 1178, 1021, and 912 kJ mole-1. The reaction rate of hexogen coating with IPDI was slightly faster than with TDI.

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