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首页> 外文期刊>Journal of Chemistry >Rheokinetic Analysis of Hydroxy Terminated Polybutadiene Based Solid Propellant Slurry
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Rheokinetic Analysis of Hydroxy Terminated Polybutadiene Based Solid Propellant Slurry

机译:羟基封端聚丁二烯基固体推进剂浆料的流因药分析

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摘要

The cure kinetics of propellant slurry based on hydroxy-terminated polybutadiene (HTPB) and toluene diisocyanate (TDI) polyurethane reaction has been studied by viscosity build up method. The viscosity (?)–time (t) plots conform to the exponential function ? = aebt, where a & b are empirical constants. The rate constants (k) for viscosity build up at various shear rate (rpm), evaluated from the slope of d?/dtversus? plots at different temperatures, were found to vary from 0.0032 to 0.0052 min-1. It was observed that the increasing shear rate did not have significant effect on the reaction rate constants for viscosity build up of the propellant slurry. The activation energy (E?), calculated from the Arrhenius plots, was found to be 13.17±1.78 kJ mole-1, whereas the activation enthalpy (?H?*) and entropy (?S?*) of the propellant slurry, calculated from Eyring relationship, were found to be 10.48±1.78 kJ mole-1and –258.51± 5.38 J mole-1K-1, respectively. The reaction quenching temperature of the propellant slurry was found to be -9°C, based upon the experimental data. This opens up an avenue for a “freeze-and-store”, then “warm-up and cast”, mode of manufacturing of very large solid rocket propellant grains.
机译:基于羟基封端的聚丁二烯(HTPB)和甲苯二异氰酸酯(TDI)聚氨酯反应的固化动力学已经通过粘度累积方法研究了基于羟基封端的聚丁二烯(HTPB)和甲苯二异氰酸酯(TDI)。粘度(α) - 时间(t)曲线符合指数函数? = A&B是经验常数的AEBT。用于粘度的速率常数(k)以各种剪切速率(rpm)累积,从d?/ dtversus的斜率评估?发现不同温度的绘图,从0.0032分为0.0032至0.0052 min-1。观察到剪切速率的增加对反应速度常数没有显着影响,用于推进剂浆料的粘度增加。从Arrhenius图计算的激活能量(E?)被发现为13.17±1.78 kJ摩尔-1,而激活焓(Δh?*)和推进剂浆料的熵(Δs≤*),计算从喉舌关系中,发现分别为10.48±1.78 kJ摩尔-1,分别为-258.51±5.38米摩尔-1K-1。基于实验数据,发现推进剂浆料的反应猝灭温度为-9℃。这为“冻结和商店”开辟了一个大道,然后是“热身和铸造”,制造非常大的固体火箭推进剂颗粒的模式。

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