菜单
  
    摘要为了提高燃烧剂的燃烧性能,设计并研究高能燃烧剂配方。依据燃烧剂成分选择的原则和高能燃烧剂的性能要求,设计了以铝热剂为基础,并加入不同组分的高能燃烧剂配方。借助FLIR SC7000红外热像仪、红外测温仪、数码相机等仪器设备,测试不同配方燃烧温度、火焰大小、熔渣质量等燃烧性能;并利用正交实验进行配方的优化设计,研究不同组分不同比例对燃烧性能参数的影响,根据性能要求,确定最优配方,并对纵火效果进行了试验。19348
    关键词  高能燃烧剂  燃烧性能  配方设计  正交实验
    Title  Propellant surface deterring processing technology
    Abstract
    To deter the propellant surface treatment is to improve the combustion performance, access to important technical progressive combustion method. Currently, the traditional deterred technique applies only to single-base propellant plasticizer-free and plasticizer content is low (<15%) of the double-base propellant, for high energy propellant plasticizer content, difficult to solve deterred agents penetrate to the propellant surface to form a concentration gradient and the long-term storage during the conflict between the anti-migration.
      This paper is to discuss the new design and desensitized TPTM with azide reaction of nitramine propellant activity deterred process by liquid phase granular seven holes on the drug for DA deterred, in propellant surface to form a concentration gradient, discussion of different process conditions Effect on the deterred. Closed bomb test results show that desensitized with traditional polyester propellant energy after the PPA reduction deterred more desensitized TPTM new deterred propellant after the energy is essentially the same. Heat accelerated aging test results show that, TPTM anti-migration performance is poor, not suitable for DA desensitized propellant; to TPTM desensitized propellant for the before and after the combustion is essentially the same aging, anti-migration performance is good. Comprehensive comparison of TPTM desensitized propellant for the deterred effect of temperature is 60 ℃, deterred, deterred agent in volume of 3% 1h propellant deterred better overall performance.
    Keywords  gun propellant  high plasticizer  concentration  surface deterring   anti-mobility  progressive combustion
    毕业论文设计说明书(论文)外文摘要
    Title    High-energy incendiary agent design and fire performance research                            
    Abstract
    In order to improve the incendiary combustion properties, design and research of high-energy incendiary formulations. Pursuant to pharmaceutical components select principles and the combustion properties requirements of high-energy incendiary, designed on thermite-based, and add different components of energy-burning formulations. With  FLIR SC7000 infrared camera, infrared thermometers,digital camera and other equipment, testing different formulations combustion temperature, flame size, the amount of slag and other combustion properties ;optimize the use of orthogonal experimental design formula, the study of different components different ratio on all parameter of combustion properties, based on properties requirements, to determine the optimal formula and test the effectiveness of arson.
    Keywords   High-energy incendiary     Combustion properties     
     Formula design     Orthogonal experiment
      目  录
    1.绪论    1
    1.1 研究背景及意义    1
    1.2 国内外研究现状    1
    1.3 本文主要研究内容及方法    3
    2. 高能燃烧剂成分选择和配方设计    5
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