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Combustion-Front Non-One-Dimensionality in Single-and Double-Base Propellants

机译:单基和双基推进剂的燃烧前非一维性

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摘要

Parameters of transverse waves propagation over the surface of specimens pressed from colloxylin and double-base propellants A and N are studied. By means of microvideofilming and thermocouple measurements,it is shown that the burning sites on the specimen surface are formed by a set of transverse waves. Under atmospheric pressure, the transverse-wave front has the form of a step 0.5-1.1 mm high and decreases with increasing pressure or initial temperature of the specimen. The front propagates with variable velocities in the horizontal and vertical directions. The mean velocity of the transverse wave is three to eight times higher than the normal buring rate of the specimen as a whole (with a wide spread of local values) and increases with increasing pressure. Behind the front, combustion can be interrupted till the arrival of the next transverse wave. As in the SHS process, the reason for the emergence of the transverse waves is combustion-wave spatial instability.
机译:研究了由可乐林和双基推进剂A和N压制的试样表面上的横波传播参数。通过微电影摄影和热电偶测量,表明样品表面上的燃烧点是由一组横向波形成的。在大气压下,横波波前呈0.5-1.1 mm高的阶梯形式,并随着样品压力或初始温度的升高而减小。正面在水平和垂直方向上以可变的速度传播。横波的平均速度是整个样本正常沸腾速率的三到八倍(局部值分布很广),并且随着压力的增加而增加。在前部后面,燃烧可以被中断,直到下一个横波到达为止。与SHS过程一样,产生横波的原因是燃烧波的空间不稳定性。

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