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EFFECT OF PRESSURE ON THE BURNING SURFACE TEMPERATURE OF A POLYMERIC FUEL FOR A SOLID PROPELLANT

机译:压力对固体推进剂的聚合物燃料燃烧表面温度的影响

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The relationship between the burning surface temperature and the regression rate of a polymeric fuel used in a solid rocket has been studied. The values of the surface activation energies derived from the Arrhenius pyrolysis equation for a polymeric fuel are not consistent and, from past studies, have been in the range 20 to 400 kJ/mol. Furthermore, the pressure dependence on the burning surface temperature has previously not been discussed in any detail. Hydroxyl-terminated polyester (HTPE) was chosen in this study as a typical polymeric fuel, along with prepolymer HTPE and glycerin. The burning surface temperature was determined using a thermocouple embedded in the specimen. The burning surface was simultaneously observed using a video camera to detect when the thermocouple emerged from the burning surface. Furthermore, the boiling phenomena of HTPE and glycerin were also examined, and thermogravimetric analysis (TGA) of the samples was also employed. As a result, the regression rate was found not to affect the burning surface temperature in the range of 0.04-0.12 mm/s, and the curing agent did not influence the burning surface temperature. On the other hand, the burning surface temperature was dependent on pressure, even in the polymeric fuel. For HTPE and glycerin, the pressure dependency obtained by the combustion experiment agreed well with those obtained by the boiling experiment and by the thermochemical method, TGA.
机译:研究了燃烧表面温度与固体火箭中使用的聚合物燃料的回归率之间的关系。来自于聚合物燃料的Arrhenius热解方程的表面活化能量的值不一致,并且从过去的研究中一直在20至400kJ / mol的范围内。此外,预先讨论了对燃烧表面温度的压力依赖性。将羟基封端的聚酯(HTPE)作为典型的聚合物燃料选择,以及预聚物HTPE和甘油。使用嵌入样品中的热电偶测定燃烧的表面温度。使用摄像机同时观察燃烧表面以检测从燃烧表面出现的热电偶。此外,还研究了HTPE和甘油的沸腾现象,并且还采用了样品的热重分析(TGA)。结果,发现回归率不会影响0.04-0.12mm / s范围内的燃烧表面温度,并且固化剂不影响燃烧的表面温度。另一方面,即使在聚合物燃料中,燃烧的表面温度也取决于压力。对于HTPE和甘油,通过燃烧实验获得的压力依赖性与通过沸腾实验获得的那些以及通过热化学方法,TGA获得。

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