推进剂
增塑剂
热分解
材料科学
高能材料
点火系统
分解
复合材料
动力学
燃烧率(化学)
活化能
热的
化学工程
热力学
化学
爆炸物
有机化学
工程类
物理
量子力学
作者
Ya Lun Wang,Yu Chen,Yunfei Liu
出处
期刊:Key Engineering Materials
日期:2022-01-04
卷期号:905: 263-268
标识
DOI:10.4028/www.scientific.net/kem.905.263
摘要
Aiming at the thermal safety issues between the insensitive energetic plasticizer and propellant components, NG/BTTN and insensitive energetic plasticizer BuNENA plasticized propellant was compared by DSC test and cook-off numerical simulation, with the thermal safety property evaluated. The decomposition activation energy E a and self-ignition temperature T b of BuNENA plasticized propellant was lower than that of NG/BTTN plasticized propellant. Two kinds of propellant responded in the central area during slow cook-off simulation while in the near shell area during medium cook-off simulation. During fast cook-off simulation, depending on the different thickness of insulator, propellant responded at the area near shell or the area near the caps. The response temperature of two propellants in cook-off simulation agreed with decomposition and self-ignition temperature by DSC, and the decomposition of plasticizer could trigger the response. In cook-off simulation, BuNENA plasticized propellant showed a lower response temperature with a smaller high temperature area before response, resulting a milder response and better thermal safety than NG/BTTN plasticized propellant.
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