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The Effects of AP Particle Size and Concentration on AP/HTPB Composite Propellant Burning Rates

机译:AP粒径和浓度对AP / HTPB复合推进剂燃速的影响

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The burning rates of IPDI-cured AP/HTPB propellants with a standard curing ratio of 10.44:1 were analyzed. It is well known that the particle size of AP greatly affects the burning rate, yet there exists a lack of archival databases for a wide range of particle sizes and pressures. Testing conditions for this study included an AP average size range of 20 µm - 200 µrn with two intermediate steps, a pressure range of 500 - 2,250 psi with multiple intermediate steps, and lastly a concentration range of 70% to 85% AP by mass with three intermediate steps. As expected, decreasing the AP size increased the burning rate for sizes above about 45 µm. The results for the smaller sizes (20 and 45 µm) converged to similar burning rates, indicating that the mixture is nearing a premixed burning limit. Power law burning rate expressions were obtained for each mixture. Most importantly, an empirical model describing the burning rates over the entire range of propellants tested was created that is easy to use and mirrors the power law. In the future, these same formulations should be tested between the 2,250 to 5,000 psi ranges where the role of AP becomes crucially important.
机译:分析了IPDI固化的AP / HTPB推进剂的燃烧速率,其标准固化比为10.44:1。众所周知,AP的粒径会极大地影响燃烧速率,但缺乏适用于各种粒径和压力的档案数据库。这项研究的测试条件包括:AP平均尺寸范围为20 µm-200 µrn(有两个中间步骤),压力范围为500-2,250 psi(有多个中间步骤),最后浓度范围为质量百分比为70%至85%的AP三个中间步骤。不出所料,减小AP尺寸可提高大约45 µm以上尺寸的燃烧速度。较小尺寸(20和45 µm)的结果收敛到相似的燃烧速率,表明混合物已接近预混合的燃烧极限。获得每种混合物的幂律燃烧速率表达式。最重要的是,创建了一个描述整个测试推进剂燃烧速率的经验模型,该模型易于使用并反映了幂定律。将来,应在2250至5,000 psi的压力范围内测试这些相同的配方,因为AP的作用至关重要。

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