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Effect of components on the curing of glycidyl azide polymer spherical propellant through rheological method

机译:流变学方法研究组分对缩水甘油叠氮聚合物球形推进剂固化的影响

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We have conducted a novel study of the influence of energy components (RDX, AP and CL-20) on curing kinetics of glycidyl azide polymer (GAP) spherical propellant based on rheological method. The autocatalytic model was used to describe curing kinetics and the parameters were determined by the model-fitting method. It was found that the incorporation of components hinders the cross-linking reaction of GAP spherical propellant. Integral isoconversional method was used on rheological kinetics to investigate the changes of the activation energy and we confirmed that the incorporation of components increased the activation energy. It was also found that such components had no effect on the trend of activation energy curves but shrank the peak value at a = 0.2. Dynamic mechanical analysis (DMA) showed the differences between pure curing system and its components. These findings are potentially helpful to control the curing effectively and optimize the processing schedules. The addition of components decreased α translation temperature which means the reduction in cross-links. The differences in the values of loss factor tan δ and β translation showed that pure curing system has lower resistance for side chain to motion.
机译:我们基于流变方法,对能量组分(RDX,AP和CL-20)对缩水甘油叠氮化物聚合物(GAP)球形推进剂的固化动力学的影响进行了新颖的研究。用自动催化模型描述固化动力学,并通过模型拟合方法确定参数。发现组分的掺入阻碍了GAP球形推进剂的交联反应。流变动力学中使用积分等转换法研究活化能的变化,我们证实了组分的引入增加了活化能。还发现这些组分对活化能曲线的趋势没有影响,但是在a = 0.2处收缩了峰值。动态力学分析(DMA)显示了纯固化体系及其组分之间的差异。这些发现可能有助于有效控制固化并优化加工进度。组分的添加降低了α平移温度,这意味着交联的减少。损耗因子tanδ和β平移值的差异表明,纯固化体系对侧链运动的抵抗力较低。

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