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基于湿热加速老化试验的HTPB固体推进剂寿命预估
引用本文:张磊,常新龙,赖建伟.基于湿热加速老化试验的HTPB固体推进剂寿命预估[J].弹箭与制导学报,2010,30(1).
作者姓名:张磊  常新龙  赖建伟
作者单位:第二炮兵工程学院,西安,710025
摘    要:借鉴量子力学理论关于电子产品老化反应速率与环境温、湿度的关系,将Eyring和Arrhenius模型相结合,建立了固体推进剂贮存使用寿命的湿热老化模型,并通过试验数据拟合得到具体的经验公式。利用该模型预估出某HTPB固体推剂在室温20℃、相对湿度为50%的贮存寿命,与实际贮存寿命进行了对照。结果表明,采用将温湿因素引入推进剂老化模型的方法,可以使推进剂寿命预测的结果更接近于发动机中推进剂的实际使用寿命。

关 键 词:HTPB固体推进剂  湿热老化  寿命预估  

Estimation of HTPB Solid Propellant Life Span Based on Hydrothermal Accelerated Aging Experiment
ZHANG Lei,CHANG Xinlong,LAI Jianwei.Estimation of HTPB Solid Propellant Life Span Based on Hydrothermal Accelerated Aging Experiment[J].Journal of Projectiles Rockets Missiles and Guidance,2010,30(1).
Authors:ZHANG Lei  CHANG Xinlong  LAI Jianwei
Affiliation:The Second Artillery Engineering College;Xi'an 710025;China
Abstract:Based on the quantum mechanics theory on the relationship between the electronic equipment aging reaction rate and temperature-humidity , the solid propellant hydrothermal aging life span model was established by combined with the Eyring and Arrhenius aging model. Further more,experiential formula was obtained by fitting experimental datum.The HTPB solid propellant storage span under normal temperature 20℃ and humidity 50% was predicted by this formula,which was compared with actual storage span. The results show that the predicted service life of the propellant can be more similar to the actual service life by means of dynamics formula with temperature-humidity involved.
Keywords:HTPB solid propellant  hydrothermal aging  life prediction  
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