单基推进剂挥发分含量和室压偏差校正的新方法

H. Elbasher, A. Ibrahim
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引用次数: 2

摘要

在本研究中,对两个生产批次的单基推进剂进行了特殊处理,以纠正最终产品中三个最重要的性质。这些性能是内部和外部挥发分含量(分别为IV%, EV%)和腔室压力,特殊处理取决于混合两批不同比例的混合,从筛分开始,到混合结束,以保证最终批次的均匀性。所研究的批(A和B),其中A批(IV% 0.53%)必须不小于0.6%,因此偏离了标准要求和B批(IV =0.88%),对这些批进行处理生成(C和D)批。C批为(25%的a批和0.75%的B批)的混合物,D批为(50%的batcha和50%的B批)的混合物。根据计算正确的内外挥发分含量和室压,对6个样品进行筛分和混合。对所有样品进行了实验室,弹道测试和执行计算。试验后观察到,对于所有不同混合比例的样品,无论是挥发物含量还是腔室压力,试验结果与计算结果之间没有显著差异,因此根据所获得的结果,该程序(方法)对于校正挥发物含量和腔室压力的偏差是可靠的。利用所建立的方程可以控制最佳混合比的选择性。本研究在减少因最终产品不符合规范而造成的材料损失方面的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Method for Correcting Deviation of Volatiles Content and Chamber Pressure for Single Base Propellant
In this study, special treatment was applied to two production batches of single-base propellant to correct three of the most important properties in the final product. These properties are internal and external volatile content (IV%, EV% respectively) and chamber pressure, the special treatments depend on mixing two batches with different percentages of mixing starting with sieving and ended with blending to guarantee the homogeneity of the final batch. The batches under study (A and B), batch A with (IV% 0.53%) which must be not less than 0.6%, so it deviated from standard requirement and Bach B with (IV =0.88%), the treatment applied for these batches to generate (C and D) batches. Batch C was a mixture composed of (25% of batch A and 0.75% of batch B). batch D was a mixture composed of (50%batchA and 50% of batch B). Six samples were subjected to sieving and blending according to calculations to correct internal and external volatile content and chamber pressure. For all samples lab, ballistics test, and executive calculations were done. After the test observed that no significant difference between the test and the results of calculations for all samples with different mixing ratios either volatiles content or chamber pressure so according to the result achieved the procedure (Method) was dependable for correcting the deviation of volatiles content and chamber pressure. The selectivity of the optimum mixing ratio can be controlled by using the equation used in this study. The importance of this study in reducing material losses due to the non-conformity of the final product with the specification.
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