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Experimental study of rheological properties of solid propellant slurry at low-shear rate and numerical simulation

机译:低剪切速率下固体推进剂浆料流变性能的实验研究及数值模拟

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The steady state rheological properties of a three-component hydroxyl-terminated polybutadiene binder (HTPB) solid propellant slurry at low shear rate were investigated using a rotational rheometer. The data were analyzed and the rheological characteristics of the slurry were determined. The effect of shear rate on apparent viscosity and shear stress as well as the viscosity-time effect of the slurry were also analyzed. Herschel-Bulkley (H-B) model was applied for the simulation of the flow process of a two-dimensional container using CFD Ansys-polyflow software. Experimental results showed that solid propellant slurry had yield pseudoplasticity. Yield characteristics were determined based on the fact that when shear stress was greater than yield stress, the slurry began to flow and the relationship between shear stress and shear rate obeyed power law function. Simulation results further verified the correctness of experimental results.
机译:使用旋转流变仪研究以低剪切速率的三分组分羟基封端的聚丁二烯粘合剂(HTPB)固体推进剂浆料的稳态流变性能。 分析了数据,测定了浆料的流变特性。 还分析了剪切速率对表观粘度和剪切应力的影响以及浆料的粘度 - 时间效应。 使用CFD ANSYS-Polyflow软件应用Herschel-Bulkley(H-B)模型用于模拟二维容器的流程过程。 实验结果表明,固体推进剂浆料具有屈服假塑性。 基于该事实确定产量特征,即当剪切应力大于屈服应力时,浆料开始流动,剪切应力与剪切速率之间的关系遵循动力法函数。 仿真结果进一步验证了实验结果的正确性。

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