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Synthesis, Thermal Properties and Sensitivity of Ladder-Like Nitrocellulose Grafted by Polyethylene Glycol

机译:聚乙二醇接枝的梯状硝酸纤维素的合成,热性能和敏感性

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摘要

The sensitivity study of propellants has been receiving heightened attentions from a lot of investigators. These propellants based on nitrocellulose are sensitive to accidental stimuli that result in catastrophic accidents. Thus energetic thermoplastic elastomers have been used as binders to replace some nitrocellulose to prepare insensitive high energy propellants. However, some defects are presented in the application of these binders. Based on the reason above, a novel binder named as step ladder-like nitrocellulose was synthesized by isophorone diisocyanate reacting with free hydroxyl groups of nitrocellulose first, and then reacting with polyethylene glycol. The reaction product was characterized by FT-IR, XRD, SEM, TGA, DSC and sensitivity tests. Results show that step ladder-like nitrocellulose is successfully synthesized from nitrocellulose, and it has a quasi-spherical shape and regular crystal structure. Furthermore, the thermal weight loss course of step ladder-like nitrocellulose is relatively gentle in the range of 175-450 degrees C and its mechanical sensitivity is less than that of raw nitrocellulose.
机译:推进剂的敏感性研究已经接受了来自许多调查人员的引起的提高。这些基于硝酸纤维素的推进剂对导致灾难性事故的意外刺激敏感。因此,精力充沛的热塑性弹性体已被用作粘合剂以替代一些硝酸纤维素以制备不敏感的高能量推进剂。然而,在这些粘合剂的应用中提出了一些缺陷。基于上面的原因,通过与硝酸纤维素的游离羟基的离子二异氰酸酯反应合成了作为步骤梯状硝化纤维素的新型粘合剂,然后用聚乙二醇反应。通过FT-IR,XRD,SEM,TGA,DSC和敏感性试验表征反应产物。结果表明,从硝酸纤维素成功地合成了步骤梯状硝化纤维素,并且具有拟球形形状和规则的晶体结构。此外,步进梯状的硝化纤维素的热量损失过程在175-450℃的范围内相对较低,其机械敏感性小于原料硝酸纤维素的机械敏感性。

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