共查询到19条相似文献,搜索用时 78 毫秒
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新型高能叠氮硝胺发射药高压燃烧稳定性研究 总被引:1,自引:0,他引:1
为了研究高能发射药膛内燃烧规律,通过半溶剂法制备了一种火药力高达1240J/g的新型高能叠氮硝胺发射药(ADR),采用高压密闭爆发器和30mm高压模拟试验装置,分别研究了不同温度下ADR发射药定容高压燃烧性能和装填密度、温度以及石墨光泽处理对ADR发射药膛内高压燃烧稳定性的影响。结果表明,不同温度条件下(-40、20和50℃)ADR发射药静态及动态燃烧性能稳定性良好,燃烧过程无异常;随着温度的增加,ADR发射药点火性能提高,增加了膛内燃烧稳定性;装填密度0.48~0.64g/cm3范围内,随着装填密度的增加,ADR发射药膛内压力波强度逐渐增加,但增长幅度减小;对发射药进行石墨光泽处理,增加了ADR发射药起始缓燃效果,使不同温度下膛内压力波强度明显降低;与RGD7发射药相比,ADR发射药火药力较高,爆温较低,发射装药膛内高压燃烧稳定性相当,在高膛压环境中应用前景较好。 相似文献
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硝胺发射药的热行为与燃烧性能的关系 总被引:2,自引:0,他引:2
应用DSC热分析技术,结合密闭爆发器测试结果,分析了各种制式发射药及硝胺发射药的热化学行为与燃烧性能之间的关系,研究了燃烧改良剂SG对热化学行为的影响及对改善硝胺发射药燃烧性能的贡献。 相似文献
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指出硝胺发射药的燃烧性能问题,提出了研制综合性能优良的高能低烧蚀发射药的课题,使火药的爆温较低,而燃速压力指数小于1,同时解决了炮管的烧蚀问题。 相似文献
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NGu对含RDX硝胺发射药燃烧性能的影响 总被引:1,自引:0,他引:1
为从微观的角度研究NGu对含RDX的硝胺发射药燃速压力指数改变的影响,采用改进的小型点火燃烧模拟装置,在35MPa左右对几种发射药进行低压中止燃烧实验.通过SEM电镜观察发射药在低压下燃烧的表面状况.结果表明,在硝胺发射药的燃烧过程中,NGu在燃烧表面形成较厚的熔融层,抑制了RDX的爆燃;RDX的爆燃与燃烧表面熔融层之间的"均衡状态"影响发射药燃速压力指数的变化,当RDX与NGu质量比小于1时,燃速压力指数明显降低;当RDX和NGu同时存在时,发射药的燃烧表面有针状晶体生成. 相似文献
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《Propellants, Explosives, Pyrotechnics》2017,42(9):1095-1103
The ignition and combustion property of solid propellant is the main content in internal ballistic research, which has a great significance for propulsion application and combustion mechanism. In this study, the detailed gas‐phase reaction mechanism of Nitrate Ester Plasticized Polyether Propellant (NEPE) was developed. It is helpful to understand the intricate processes of solid‐propellant combustion. The factors which may have influences on ignition delay time and temperature distribution of propellant surface was analyzed by laser ignition experiment. Using high‐speed camera and an infrared thermometer, the ignition and combustion process and the surface temperature distribution of NEPE propellant under laser irradiation were measured. Laser heat flux, ambient pressure and initial temperature of NEPE propellant have an influence on the ignition delay time and the surface temperature. Results show that the ignition delay time decreases with the increase of laser heat flux, ambient pressure and initial temperature of NEPE propellant. At the same time, with the increase of laser heat flux, the influences of ambient pressure and initial temperature on the ignition delay time decrease. Besides, laser irradiation, ambient pressure and initial temperature have significant influences on the surface temperature distribution of the propellant. 相似文献
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采用差示扫描量热仪( D S C)和点火燃烧模拟装置,研究了硝基胍( N Gu)对 N C N G R D X 系列发射药点火性能的影响。实验证明: N Gu 可以改善 N C N G R D X 类硝胺火药的点火性能,且当 N Gu 与 R D X 之比大于1 时效果才更显著。 相似文献
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