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Simulation of GAP/HTPB phase behaviors in plasticizers and its application in composite solid propellant

机译:增塑剂中GAP / HTPB相行为的模拟及其在复合固体推进剂中的应用

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Dissipative particle dynamics and molecular simulations were carried out to investigate the phase behaviors of glycidyl azide polymer (GAP)/hydroxyl-terminated polybutadiene (HTPB) polymer blend in dioctyl sebacate (DOS), and mixture of DOS and bis(2,2-dinitropropyl)formal/acetal (A3), respectively. The rheology of GAP/HTPB propellant slurry plasticized by A3/DOS was studied. First, single-phase aggregations of GAP and HTPB appear slightly in A3/DOS whereas it is conspicuous in DOS, which results from the small surface tension between the GAP/HTPB plasticized by A3/DOS and the weak thermal diffusion of this blend. Furthermore, with the plasticizing ratio (po/pl) increasing to 1.2, the GAP/HTPB propellant slurry plasticized by A3/DOS exhibits small viscosity and yield stress, and the Newtonian-like behavior of slurry improves its manufacturability. Finally, integral GAP/HTPB-based propellant can be obtained using A3/DOS as plasticizers.
机译:通过耗散粒子动力学和分子模拟研究了癸二酸二辛酯(DOS)中缩水甘油基叠氮化物聚合物(GAP)/羟基封端的聚丁二烯(HTPB)聚合物共混物以及DOS和双(2,2-二硝基丙基)的混合物的相行为)甲醛/缩醛(A3)。研究了A3 / DOS增塑的GAP / HTPB推进剂浆料的流变学。首先,GAP和HTPB的单相聚集在A3 / DOS中稍微出现,而在DOS中则明显,这是由于A3 / DOS增塑的GAP / HTPB之间的表面张力小以及这种共混物的热扩散弱所致。此外,随着增塑比(po / pl)增加到1.2,通过A3 / DOS增塑的GAP / HTPB推进剂浆料显示出较小的粘度和屈服应力,并且该浆料的类似于牛顿的行为提高了其可制造性。最后,使用A3 / DOS作为增塑剂可以得到基于GAP / HTPB的整体推进剂。

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