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首页> 外文期刊>International journal of energetic materials and chemical propulsion >IGNITION DELAY TIME MEASUREMENT OF A REDUCED SMOKE COMPOSITE SOLID PROPELLANT
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IGNITION DELAY TIME MEASUREMENT OF A REDUCED SMOKE COMPOSITE SOLID PROPELLANT

机译:降低的烟雾复合固体推进剂的点火延迟时间测量

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Ballistic properties of solid propellants play an important role in the performance of the solid propel-lant rocket motors. Since the solid propellant rocket motors are generally used for military purposes, detailed characterization of the propellant ignition and combustion behavior has to be conducted in the development of a solid propellant. In this study, a specific Ammonium Perchlorate/Hydroxyl Terminated Polybutadiene (AP/HTPB) composite solid propellant was examined to obtain the ignition delay times as a function of heat flux and pressure. This study is a part of some experiments which were conducted to investigate the ballistic properties of propellants such as steady-state linear burning rates, temperature sensitivity, and pressure deflagration limit. Ignition tests were conducted at three different average laser energy fluxes of 40, 80, and 120 W/cm~2. The laser produces a beam profile with a diameter of around 3.5 mm at the propellant surface. An LED light operated by the signal from the shutter was superimposed adjacent to the image of the propellant sample to indicate the onset and the duration of the laser energy input. Three parameters were deduced from the video camera records such as initial gas evolution time (Ige), first light emission time (t_LE), and onset of self-sustained combustion (t_IGN). Goo-go criterion of the propellant was also extracted.
机译:固体推进剂的弹道特性在固体推进式火箭发动机的性能中起着重要作用。由于固体推进剂火箭发动机通常用于军事目的,因此在开发固体推进剂时必须对推进剂的点火和燃烧行为进行详细的表征。在这项研究中,检查了一种特定的高氯酸铵/羟基封端的聚丁二烯(AP / HTPB)复合固体推进剂,以得出点火延迟时间与热通量和压力的关系。这项研究是一些实验的一部分,旨在研究推进剂的弹道特性,例如稳态线性燃烧速率,温度敏感性和压力爆燃极限。在40、80和120 W / cm〜2的三种不同的平均激光能量通量下进行了点火测试。激光在推进剂表面产生直径约为3.5毫米的光束轮廓。由来自百叶窗的信号操作的LED光与推进剂样品的图像相邻叠加,以指示激光能量输入的开始时间和持续时间。从摄像机记录中推导出三个参数,例如初始气体逸出时间(Ige),第一次发光时间(t_LE)和自持燃烧的开始(t_IGN)。还提取了推进剂的通过/不通过标准。

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