首页> 外文会议>International Symposium and Exhibition on Sophisticated Car Occupant Safety Systems >EFFECT OF DIVERSE FACTORS ON COMBUSTION RATE OF ENERGETIC COMPOSITIONS BASED ON AMMONIUM NITRATE FOR AIRBAGS
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EFFECT OF DIVERSE FACTORS ON COMBUSTION RATE OF ENERGETIC COMPOSITIONS BASED ON AMMONIUM NITRATE FOR AIRBAGS

机译:多种因素对基于硝酸铵的充满活力组合物燃烧速率的影响

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The ammonium nitrate is the most promising oxidizing agent in the developing of the gas generating compositions for the automobile airbags inflation. Providing the necessary gas generation rate is an important research task of the composites design. In present work, we studied the burning rate of mixtures of high molecular compounds in stoichiometric ratio with ammonium nitrate. Some polymers based on epoxy resins, polyurethanes, polytetrazoles etc. were used as combustible binder. It was found, that high dispersed technical carbon is the most preferably activator of the combustion process. The ammonium nitrate material was additionally modified by special treatment in organic solvent, resulting in a porous structure of the particles. The burning rate of composites was measured in a constant pressure bomb, using the two thermocouples method, and in a manometric bomb in the pressure range 20 - 400 atm. The most of studied composites are demonstrated the burning rates from 4 to 10 mm/sec at the composite density about 1.5 g/cm~3 and relative porosity of ~10%. A significant increasing of the burning rate (up to 30-100 mm/sec) was reached at the specially designed agglutinated material with high porosity corresponding to poured mixture of raw components. The low detonation sensitivity of the studied composites was observed during the standard tests.
机译:硝酸铵是最有前景的氧化剂,即用于汽车气囊膨胀的气体产生组合物。提供必要的气体产生率是复合材料设计的重要研究任务。在目前的工作中,我们研究了用硝酸铵的化学计量比以高分子化合物的混合物燃烧速率。将基于环氧树脂,聚氨酯,聚四珠等的一些聚合物用作可燃粘合剂。发现,高分散的技术碳是最优选的燃烧过程的活化剂。通过在有机溶剂中的特殊处理另外修饰硝酸铵材料,得到颗粒的多孔结构。使用两种热电偶方法在恒定压力炸弹中测量复合材料的燃烧速率,并在压力范围内的压力范围内的压力炸弹。最大部分的研究复合材料以约1.5g / cm〜3和相对孔隙率为约1.5g / cm〜3和〜10%的相对孔隙度,将燃烧速率从4至10mm / sec展示。在特殊设计的凝集材料中达到燃烧速率(高达30-100mm / sec)的显着增加,其具有对应于倒入的原料组分混合物的高孔隙率。在标准测试期间观察了所研究复合材料的低爆震敏感性。

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