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首页> 外文期刊>Science Advances >Designing high-performance hypergolic propellants based on materials genome
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Designing high-performance hypergolic propellants based on materials genome

机译:基于材料基因组设计高性能超高速推进剂

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A new generation of rocket propellants for deep space exploration, ionic liquid propellants, with long endurance and high stability, is attracting more and more attention. However, a major defect of ionic liquid propellants that restricts their application is the inadequate hypergolic reactivity between the fuel and the oxidant, and this defect results in local burnout and accidental explosions during the launch process. We propose a visualization model to show the features of structure, density, thermal stability, and hypergolic activity for estimating propellant performances and their application abilities. This propellant materials genome and visualization model greatly improves the efficiency and quality of developing high-performance propellants, which benefits the discovery of new advanced functional molecules in the field of energetic materials.
机译:新一代火箭推进剂用于深空勘探,离子液体推进剂,长期耐久性和高稳定性,都吸引了越来越多的关注。然而,限制其应用的离子液体推进剂的主要缺陷是燃料和氧化剂之间的高压反应性不足,并且这种缺陷导致发射过程中的局部倦怠和意外爆炸。我们提出了一种可视化模型,以显示用于估计推进剂性能的结构,密度,热稳定性和高压活动的特征及其应用能力。这种推进剂材料基因组和可视化模型大大提高了开发高性能推进剂的效率和质量,这有利于在能量材料领域中发现新的先进功能分子。

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