首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Molecular investigations on the adsorption and flow behavior of hydroxyl-terminated polybutadiene (HTPB) binders on Cu surfaces: The effects of surface nanostructure and perfluorosilylation
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Molecular investigations on the adsorption and flow behavior of hydroxyl-terminated polybutadiene (HTPB) binders on Cu surfaces: The effects of surface nanostructure and perfluorosilylation

机译:羟基封端的聚丁二烯(HTPB)粘合剂对Cu表面的吸附和流动性能的分子研究:表面纳米结构和全氟化硅烷化的影响

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The flow behavior of highly viscous casting explosives in micro-channels and special shaped moulds are critical factors affecting the formations of solid propellants and explosives. In the present work, the spreading property and flow behavior of hydroxyl-terminated polybutadiene (HTPB) binders, a major component of casting explosives, on Cu surfaces with nanostructures and perfluorosilylation were investigated by classical molecular dynamics simulations. Our results suggest that the atomic steps, exposed on the pit-/terrace-structured Cu surfaces, seem able to restrict the spreading of HTPB molecules from crossing over the step edges. After surface perfluorosilylation, the adhesive strength between HTPB and Cu substrate has decreased by nearly two orders of magnitude, resulting a vigorous travel of single HTPB molecules. Moreover, the cohesive strength between two adjacent HTPB droplets (-343.2 kcal/mol) is found to be higher than the adhesive strength of HTPB droplets on the perfluorosilylated smooth Cu surface ( - 85.7 kcal/mol). Thus, HTPB droplets could spread slowly on the perfluorosilylated Cu surface with a semi-spherical shape, irrespective of the presence of surface diatomic terraces. The reduced adsorption strength could also result in a slower infiltration speed of HTPB into the perfluorosilylated grooves and an increased slip performance on the perfluorosilylated surfaces.
机译:微通道和特殊形状模具中高粘性铸造炸药的流动性是影响固体推进剂和爆炸物的形成的关键因素。通过经典的分子动力学模拟研究了羟基封端的聚丁二烯(HTPB)粘合剂(HTPB)粘合剂,铸造炸药的主要成分,铸造炸药的主要成分和流动性。我们的研究结果表明,暴露在坑/露天结构化Cu表面上的原子步骤似乎能够限制HTPB分子的扩散在梯度边缘上交。在表面全氟化硅烷化之后,HTPB和Cu衬底之间的粘合强度降低了近两个数量级,导致单个HTPB分子的剧烈行程。此外,发现两个相邻的HTPB液滴(-343.2 kcal / mol)之间的内聚强度高于全氟化硅烷化的光滑Cu表面(-85.7 kcal / mol)的HTPB液滴的粘合强度。因此,无论表面硅藻露台的存在如何,HTPB液滴都可以在全氟化硅烷化的Cu表面上缓慢扩散。降低的吸附强度也可能导致HTPB的较慢的渗透速度进入全氟纤维形型槽,并且在全氟化物表面上增加了滑移性能。

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