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Experimental investigation of the factors affecting the burning rate of solid rocket propellants

机译:影响固体火箭推进剂燃烧速度的因素的实验研究

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摘要

The burning rate of the solid rocket propellants is one of the most important factors that determine the performance of the rocket. The burning rate of rocket motors running with solid propellant is called flame regression, which occurs with the ignition in the fuel grain perpendicular to the burning surface. This study investigates the effects of the addition of metal-based high-energy matter (Aluminum) into the content of the propellant produced within the scope of development project. The study starts with the manufacture of propellant samples. For the data input in the burning rate measurement device, the determination process of energy levels of the manufactured propellant samples with a calorimeter is performed. Then, the other data related to the propellants to be measured for the burning rate, such as energy level of the propellant, the propellant density, the maximum combustion temperature, and the physical sizes of the propellants, were inputted to the computer of the burning rate measurement device. The 22 g of the sample propellant to be measured for burning rate was placed in a part of the burning rate measurement device, "closed bomb" which has a capacity of 200 cm~3. Burning rate measurements were performed at the same time in a constant-volume environment under different pressures. The burning rate of the double base propellant without aluminum (DB-1) was compared with other double base fuels in which aluminum was added by 2% (DB-2) and 4% (DB-3). It was found that the burning rates and burning heat of new fuels manufactured by adding aluminum to the content of the standard double base fuel (DB-1) increased.
机译:固体火箭推进剂的燃烧速率是决定火箭性能的最重要因素之一。带有固体推进剂的火箭发动机的燃烧速率称为火焰回归,它是在垂直于燃烧表面的燃料颗粒着火时发生的。这项研究调查了在开发项目范围内,将金属基高能物质(铝)添加到生产的推进剂中的影响。研究从制造推进剂样品开始。对于输入到燃烧率测量装置中的数据,执行用热量计确定所制造的推进剂样品的能级的过程。然后,将与要测量的燃烧速率的推进剂有关的其他数据,例如推进剂的能级,推进剂密度,最高燃烧温度和推进剂的物理尺寸,输入到燃烧计算机中。速率测量装置。将22g待测燃烧速率的样品推进剂放置在燃烧速率测量装置的一部分中,该“封闭炸弹”的容量为200cm 3。在恒定体积的环境中,在不同压力下同时进行燃烧速率测量。将不含铝的双基推进剂(DB-1)的燃烧速率与添加了2%(DB-2)和4%(DB-3)的铝的其他双基燃料进行了比较。发现通过将铝添加到标准双基础燃料(DB-1)的含量中而制造的新燃料的燃烧速率和燃烧热增加。

著录项

  • 来源
    《Fuel》 |2014年第1期|794-803|共10页
  • 作者单位

    Kinkkale University, Engineering Faculty, Mechanical Engineering Department, Yahsihan, 71450 Kirikkale, Turkey;

    Kinkkale University, Engineering Faculty, Mechanical Engineering Department, Yahsihan, 71450 Kirikkale, Turkey;

    MSB Directorate of Quality Assurance Team of Kinkkale, Fabrikalar, 71100 Kirikkale, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Burning rate; Solid rocket propellant; Burning rate measurement;

    机译:燃烧率固体火箭推进剂;燃烧率测量;

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