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Modeling and rheology of HTPB based composite solid propellants

机译:HTPB基复合固体推进剂的建模和流变学

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摘要

The propellant with the minimum viscosity required for a defect-free casting can be obtained by proper selection of the size and fractions of solid components leading to maximum packing density. Furnas' model was used to predict the particulate composition for the maximum packing density. Components with certain size dispersions were combined to yield a size distribution that is closest to the optimum one given by Furnas for maximum packing. The closeness of the calculated size distribution to the optimum one was tested by using the least square technique. The results obtained were experimentally confirmed by viscosity measurement of uncured propellants having HTPB binder and trimodal solid part accordingly prepared by using aluminum (volumetric mean particle diameter of 10.4 mu m) and ammonium perchlorate with four different sizes (volumetric mean particle diameters: 9.22, 31.4, 171, and 323 mu m). The experimental measurements showed that the compositions for the minimum viscosity are in good agreement with those predicted by using the model for maximum packing. The propellant consisting of particles with mean diameters of 10.4, 31.4, and 323 mu m was found to yield the minimum viscosity. This minimum viscosity was observed when the fraction of the sizes with respect to total solids was 0.141, 0.300, and 0.559, respectively. [References: 20]
机译:可以通过适当选择导致最大堆积密度的固体成分的大小和比例来获得具有无缺陷铸造所需的最小粘度的推进剂。使用Furnas模型预测最大填充密度下的颗粒组成。合并具有一定尺寸分散体的组分,以得到最接近Furnas给出的最佳包装最大尺寸的尺寸分布。通过使用最小二乘技术测试了计算得出的尺寸分布与最佳尺寸的接近度。通过使用具有四种不同尺寸的铝(体积平均粒径为10.4μm)和高氯酸铵相应制备的具有HTPB粘合剂和三峰固体部分的未固化推进剂的粘度测量,通过实验测量得到的结果得到了证实(体积平均粒径:9.22、31.4) ,171和323微米)。实验测量表明,最小粘度的组成与使用最大填充模型预测的组成非常吻合。发现由平均直径为10.4、31.4和323微米的颗粒组成的推进剂具有最小的粘度。当尺寸相对于总固体的分数分别为0.141、0.300和0.559时,观察到该最小粘度。 [参考:20]

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