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3-d Grain Burnback Analysis Of Solid Propellant Rocket Motors: part 1 - Ballistic Motor Tests

机译:固体推进剂火箭发动机的3-d晶粒回火分析:第1部分-弹道电动机测试

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The performance prediction of solid rocket motors is an important phase during the design process and it can be achieved easily if the burnback steps of the solid propellant are known. A method was developed by the authors to analyze and determine the grain burnback of solid propellants in rocket motors. To verify the predictions from the model, subscale ballistic rocket motor tests were performed in this study. An existing rocket motor was modified in terms of insulation, ignition delay, and sealing. Composite propellants containing Aluminum/HTPB/AP were cast into 3-D finocyl grains. Five different finocyl geometries were selected for static firings to obtain different boost and sustain thrust profiles. For all the grains to be tested, finite element stress analyzes were conducted before they were manufactured and fired. Also, X-ray photography of each propellant grain was taken before the test to make sure that the grains were free of cracks and air bubbles. Recorded pressure-time traces from the tests showed that, depending on the requirements of the mission, different boost and sustain profiles could be achieved by changing the geometrical parameters of the finocyl grain. This study supplied a significant knowledge on static firings of rocket motors with complex 3-D grain geometries.
机译:固体火箭发动机的性能预测是设计过程中的重要阶段,如果知道固体推进剂的回火步骤,就可以轻松实现。作者开发了一种方法来分析和确定火箭发动机中固体推进剂的晶粒回燃。为了验证该模型的预测,在这项研究中进行了小规模的弹道火箭发动机试验。现有的火箭发动机在绝缘,点火延迟和密封方面进行了修改。将含有铝/ HTPB / AP的复合推进剂浇铸成3-D finocyl颗粒。选择了五种不同的finocyl几何形状进行静态点火,以获得不同的助推力和维持推力曲线。对于所有要测试的谷物,在制造和烧制之前都要进行有限元应力分析。此外,在测试之前对每种推进剂颗粒进行了X射线照相,以确保颗粒没有裂纹和气泡。测试记录的压力-时间轨迹表明,根据任务的要求,可以通过更改finocyl谷物的几何参数来获得不同的增压和维持曲线。这项研究提供了有关具有复杂3D晶粒几何形状的火箭发动机静态点火的重要知识。

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