北京理工大学 化学与化工学院, 北京 102488
*邮箱: yinyh@bit.edu.cn
收稿:2023-08-23,
网络出版:2024-10-30,
纸质出版:2024-10-31
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王泓, 王天翔, 尹艳华. DSC法与流变学法在测定HTPB基PBX代料固化动力学参数中的应用对比[J]. 兵工学报, 2024,45(10):3596-3607.
Hong WANG, Tianxiang WANG, Yanhua YIN. Comparison of the Applications of DSC and Rheology Methods in Determining the Curing Kinetics Parameters of HTPB-Based PBX Simulants[J]. Acta Armamentarii, 2024, 45(10): 3596-3607.
王泓, 王天翔, 尹艳华. DSC法与流变学法在测定HTPB基PBX代料固化动力学参数中的应用对比[J]. 兵工学报, 2024,45(10):3596-3607. DOI: 10.12382/bgxb.2023.0786.
Hong WANG, Tianxiang WANG, Yanhua YIN. Comparison of the Applications of DSC and Rheology Methods in Determining the Curing Kinetics Parameters of HTPB-Based PBX Simulants[J]. Acta Armamentarii, 2024, 45(10): 3596-3607. DOI: 10.12382/bgxb.2023.0786.
为优化高聚物黏结炸药(Polymer Bonded Explosive
PBX)制备工艺并深入理解其性能
探寻适用于研究PBX炸药固化动力学的最佳方法
分别采用非等温差示扫描量热(Differential Scanning Calorimetry
DSC)法、流变学等温法及流变学非等温法对HTPB/TDI/Na
2
SO
4
/Al体系的固化反应动力学进行深入研究
得到在这3种测试条件下的固化反应动力学方程。同时
针对目前广泛使用的流变学非等温法进行合理优化。实验结果表明: HTPB与TDI间的固化反应遵循自催化模型;使用Kissinger法和Ozawa法获得的固化反应活化能相近
二者相差不超过3%;PBX代料体系的恒温固化表现为起始温度423.29K
峰值温度440.23K
终止温度444.49K;流变学研究固化动力学过程中
需考虑温度对储能模量的影响
不能仅用测量值表征固化度
需要对数据进行修正;DSC法与流变学法各有优劣
若仅需获得固化动力学参数
DSC法是一个更好的选择
但欲了解固化过程中药浆内部结构变化
必须借助流变学法。
In order to optimize the preparation process of polymer bonded explosive (PBX) and deeply under
stand its performance
and explore the best method suitable for studying the curing kinetics of PBX
the curing reaction kinetics of HTPB/TDI/Na
2
SO
4
/Al system are thoroughly investigated using non-isothermal differential scanning calorimetry (DSC) method
rheological isothermal method
and rheological non-isothermal method. The curing reaction kinetic equations are obtained under these three test conditions
and the widely used non-isothermal rheological method is optimized. The results show that The curing reaction between HTPB and TDI follows an autocatalytic model
and the activation energies of curing reaction obtained using Kissinger and Ozawa methods are similar
with a difference of no more than 3% between the two. The thermostatic curing of PBX surrogate system exhibits an onset temperature of 423.29K
a peak temperature of 440.23K
and a final temperature of 444.49K. The effect of temperature on the energy storage modulus needs to be considered in the rheological study of curing kinetics. The measured values cannot be used solely to characterize the degree of curing
and the data need to be corrected. DSC method and rheological method have their own advantages and disadvantages: if the objective is to obtain only the parameters of curing kinetics
the DSC method is a better choice. However
the rheological method must be used to understand the internal structure of slurry in the curing process.
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陈春燕 , 王晓峰 , 南海 . 多官能团聚叠氮缩水甘油醚基浇注聚合物粘结炸药的固化反应动力学和固化工艺参数 [J ] . 兵工学报 , 2021 , 42 ( 9 ): 1888 - 1894 . DOI: 10.3969/j.issn.1000-1093.2021.09.009 http://doi.org/10.3969/j.issn.1000-1093.2021.09.009 为设定多官能团聚叠氮缩水甘油醚(ATP)在聚合物粘结炸药(PBX)中应用时的固化工艺参数,开展ATP基PBX固化测试方法和固化工艺实验研究。采用非等温差示扫描量热法和流变法进行实验,研究ATP基PBX固化过程中热量和储能模量的变化,获得PBX的固化反应动力学方程和固化工艺参数。实验结果表明:流变法可作为表征ATP基PBX固化反应的测试方法,ATP基PBX的固化反应动力学方程为dαdt=2.0×10 19 exp [JB5RT[JB > 2) ] α 0.42 (1-α) 1.30 ,α为固化度,t为时间,R为气体常数,T为温度。ATP基PBX直接在60 ℃恒温固化时PBX内部出现大量气孔,采用先30 ℃后60 ℃的阶梯固化工艺时PBX内部无气孔;ATP基PBX 30 ℃的最优固化时间为68 h,60 ℃的最优固化时间为66 h.
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