首页> 外文会议>International annual conference of ICT; 20090623-26; Karlsruhe(DE) >BURNING MECHANISM OF HIGHLY PLASTICIZED NITROCELLULOSE SYSTEM WITH AMMONIUM NITRATE
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BURNING MECHANISM OF HIGHLY PLASTICIZED NITROCELLULOSE SYSTEM WITH AMMONIUM NITRATE

机译:硝酸铵高度硝化的纤维素体系的燃烧机理

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In this paper burning mechanism of low calorific double-base propellant type highly plasticized nitrocellulose system (plasticizernitrocellulose ~1,8) with and without ammonium nitrate is studied in pressure range 2-8 MPa by the aid of micro thermocouples (5-7 microns thickness). Diethyleneglycol dinitrate, 2,4 - dinitro toluene and dibutyl phthalate in the ratio of 1:0,36:0,16 are used as plasticizer. The low calorific and highly plasticized system is especially chosen so as to get the propellant system with large amount of ammonium nitrate, which in turn will play the leading role in burning process. It is established, that even the experimental burning surface temperature of system without ammonium nitrate between the studied pressure range lower than the boiling temperature of plasticizers, the majority of heat necessary for propagation of burning wave is obtained from the condensed reaction zone. In the case of propellant system with 70% ammonium nitrate the unusual wide condense reaction zone is observed, for which two possible variants are proposed.
机译:本文通过使用微型热电偶(厚度为5-7微米)在2-8 MPa的压力范围内研究了低热量双基推进剂型高增塑硝化纤维素系统(增塑剂硝化纤维素〜1,8)在硝酸铵和无硝酸铵下的燃烧机理。 )。比例为1:0,36:0,16的二硝酸二乙二醇酯,2,4-二硝基甲苯和邻苯二甲酸二丁酯用作增塑剂。特别选择低热量和高增塑的系统,以便获得带有大量硝酸铵的推进剂系统,从而在燃烧过程中起主导作用。可以确定的是,即使在研究压力范围内低于硝酸增塑剂沸腾温度的情况下,没有硝酸铵的系统的实验燃烧表面温度也从冷凝反应区获得了燃烧波传播所需的大部分热量。在含70%硝酸铵的推进剂系统中,观察到了异常宽的冷凝反应区,为此提出了两种可能的变体。

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