参考文献/References:
[1]郭洪. 利用加速量热仪(ARC)研究热分析动力学反应机理[J]. 曲靖师范学院学报, 2005,24(3): 1-3.
Guo Hong. Application of accelerating rate calorimeter(ARC)to the thermoanalytic study on dynamics mechanism[J]. Journal of Qujing Teachers College, 2005,24(3): 1-3.
[2]傅智敏. 绝热加速量热法在反应性物质热稳定性评价中的应用[D]. 北京:北京理工大学, 2002.
Fu Zhimin. Evaluating thermal stability for reactive chemical by accelerating rate calorimeter[D]. Beijing: Beijing Institute of Technology, 2002.
[3]王霁. 硝酸铵长期存放后热稳定性研究[J]. 科技导报,2012, 30(1): 60-64.
Wang Ji. Study on thermal characteristics of ammonium nitrate after longterm storage[J]. Science & Technology Review, 2012, 30(1): 60-64.
[4]Matthias Wagner.热分析应用基础[M]. 陆立明,译.上海: 东华大学出版社, 2011.Matthias Wagner. Thermal Analysis in Practice[M]. Lu Liming, translate.Shanghai: Donghua University Press, 2011.
[5]谭惠平, 薛金根. DSC法研究高氯酸钾的催化热分解反应[J]. 中南林业科技大学学报, 2007, 27(3): 114-116.
Tan Huiping, Xue Jingen. Catalyzed thermal decomposition of potassium perchlorate[J]. Journal of Central South University of Forestry and Technology, 2007, 27(3): 114-116.
[6] 袁存光, 祝优珍, 田晶, 等. 现代仪器分析[M]. 北京: 化学工业出版社, 2012.
Yuan Cunguang, Zhu Youzhen, Tian Jing, et al. Modern Instruments Analysis[M]. Beijing: Chemistry Industry Press, 2012.
[7] 周霖. 爆炸化学基础[M]. 北京: 北京理工大学出版社, 2005.
Zhou Lin. Base of explosive chemistry[M]. Beijing: Beijing Institute of Technology Press, 2005.
[8] 徐抗震, 赵凤起, 杨冉, 等. GNTO的热分解动力学和比热容及绝热至爆时间研究[J]. 固体火箭技术, 2009, 32(1): 74-78.
Xu Kangzhen, Zhao Fengqi, Yang Ran, et al. Nonisothermal decomposition kinetics, specific heat capacity and adiabatic timetoexplosive of GNTO[J]. Journal of Solid Rocket Technology, 2009, 32(1): 74-78.
[9] You J S,Kang S C, Kweon S K, et al. Thermal decomposition kinetics of GAP ETPE/RDXbased solid propellant[J]. Thermochimica Acta, 2012, 537: 51-56.
[10]Hu Rongzu, Gao Hongxu, Zhao Fengqi,et al. Theory and numerical method of calculating the kinetic parameters of exothermic decomposition reaction of energetic materials from peak temperature of DSC curves at constant heating rates[J]. Chinese Journal of Energetic Materials,2009, 17(6): 643-649.
[11]Kissiger H E. Reaction kinetics in differential thermal analysis[J]. Analytical Chemistry, 1957, 29(11): 1702-1706.
[12]胡荣祖, 高胜利, 赵凤起. 热分析动力学[M]. 北京: 科学出版社, 2008.
Hu Rongzu, Gao Shengli, Zhao Fengqi. Thermal analysis kinetics[M]. Beijing: Science Press, 2008.
[13]刘子如, 阴翠梅, 刘艳, 等. RDX和HMX的热分解Ⅱ.动力学参数和动力学补偿效应[J]. 火炸药学报, 2004,27(4): 72-75.
Liu Ziru, Yin Cuimei, Liu Yan, et al. Thermal decomposition of RDX and HMX part Ⅱ:kinetic parameters and kinetic compensation effects[J]. Chinese Journal of Explosives and Propellants, 2004,27(4): 72-75.
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