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Core-Shell Structured HMX@Polydopamine Energetic Microspheres: Synergistically Enhanced Mechanical Thermal and Safety Performances

机译:核-壳结构的HMX @ Polydopamine高能微球:协同增强的机械热和安全性能

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摘要

The solid–solid phase transition, poor mechanical properties, and high sensitivity has impeded further practical applications of 1,3,5,7-tetranitro-1,3,5,7-tetrazocane (HMX) based polymer bonded explosives (PBXs). To address these issues together, a facile and effective route was employed to achieve a coating of polydopamine (PDA) on the surface of explosive crystals via in situ polymerization of dopamine. Additionally, PBXs based on HMX@PDA microcapsules were prepared with a fluoropolymer as polymer binder. Improved storage modulus, static mechanical strength and toughness, and creep resistance has been achieved in as-prepared PDA modified PBXs. The β-δ phase transition temperature of as-obtained PBXs based on conventional HMX (C-HMX)@PDA was improved by 16.3 °C. The friction sensitivity of the C-HMX based PBXs showed a dramatic drop after the PDA coating. A favorable balance proposed in this paper among thermal stability, mechanical properties, and sensitivity was achieved for C-HMX based PBXs with the incorporation of PDA.
机译:固-固相变,差的机械性能和高灵敏度阻碍了基于1,3,5,7-四硝基-1,3,5,7-四唑烷(HMX)的聚合物粘结炸药(PBX)的进一步实际应用。为了共同解决这些问题,采用了一种简便有效的途径,通过多巴胺的原位聚合在爆炸性晶体的表面形成聚多巴胺(PDA)涂层。另外,基于HMX @ PDA微胶囊的PBX是用含氟聚合物作为聚合物粘合剂制备的。在制备的PDA改性PBX中,已实现了改善的储能模量,静态机械强度和韧性以及抗蠕变性。基于常规HMX(C-HMX)@PDA的PBX的β-δ相变温度提高了16.3°C。 PDA涂层后,基于C-HMX的PBX的摩擦敏感性显着下降。结合PDA,基于C-HMX的PBX在热稳定性,机械性能和灵敏度之间提出了良好的平衡。

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