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A study on the effect of four thermoplastic elastomers on the properties of double-base propellants

机译:四种热塑性弹性体对双基推进剂性能影响的研究

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To improve the low-temperature mechanical properties of double-base propellants, glycidyl azide polymer-energetic thermoplastic elastomer (GAP-ETPE), polyether block copolyimide-thermoplastic elastomer (PEBA-TPE), 1,2-polybutadiene thermoplastic elastomer (PB-TPE), and ethylene oxide-tetrahydrofuran copolyester-thermoplastic elastomer (PET-TPE) were used to modify them. The effects of these four thermoplastic elastomers (TPEs) on the energy properties of double-base propellants were studied via theoretical calculations. The mechanical properties of double-base propellants at high, low, and room temperature were compared, and their thermal properties were analyzed. It was found that GAP-ETPE had a significant effect on improving the low-temperature mechanical properties of double-base propellants, with the maximum tensile strength and maximum elongation at a low temperature for the double-base propellant reaching 43.30 MPa and 6.24%, respectively.
机译:改善双基推进剂的低温力学性能,玻利甲酰胺聚合物 - 能量热塑性弹性体(GAP-ETPE),聚醚嵌段共聚酰胺 - 热塑性弹性体(PEBA-TPE),1,2-聚丁二烯热塑性弹性体(PB-TPE )和环氧乙烷 - 四氢呋喃共聚酯 - 热塑性弹性体(PET-TPE)用于改性它们。通过理论计算研究了这四种热塑性弹性体(TPES)对双基推进剂能量性质的影响。比较高,低,室温下双基推进剂的机械性能,分析了它们的热性能。结果发现,GAP-ETPE对改善双基推进剂的低温力学性能具有显着影响,具有最大的拉伸强度和低温下的最大伸长率,用于双碱基推进剂达到43.30MPa和6.24%,分别。

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