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Ablation behavior of inorganic particle-filled polybenzoxazine composite coating irradiated by high-intensity continuous laser

机译:高强度连续激光照射无机颗粒填充聚苯胺复合涂层的烧蚀行为

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摘要

Further utilization of aircraft structural materials is threatened by the fact that high-intensity continuous lasers are widely used in the field of military defense. To protect the aircraft structure from laser damage, ammonium polyphosphate filled polybenzoxazine composite coatings were prepared on the substrate. The anti-laser ablation characteristics of the coatings were investigated. Results showed that the addition of the inorganic filler improved the anti-laser ablation performance of polybenzoxazine. The back-surface temperature of substrates covered with the composite coatings was more 50% lower than that in the case of a pure polybenzoxazine coating after laser ablation. Further, the residue of the composite coating could be vertically divided into three distinct regions, with the dense surface char layer and the porous pyrolysis layer acting as shielding layers for the laser beam and preventing any heat-related transformations from occurring. The addition of the inorganic particles improved the surface reflectivity of the coatings resulting in much more laser energy dissipation. The decreased pyrolysis rate ensured that the pneumatic cooling effect of pyrolysis gas was more lasting and stable, owing to which the composite coatings could act as effective thermal protection layer for longer. These results confirmed that the inorganic filler modified polybenzoxazine coating exhibits excellent anti-laser properties and are suitable for protecting structural materials from laser-related damage.
机译:飞机结构材料的进一步利用受​​到高强度连续激光广泛应用于军事防御领域的事实的威胁。为了保护飞机结构免受激光损伤,在基材上制备多磷酸铵填充的聚苯胺复合涂层。研究了涂层的抗激光烧蚀特性。结果表明,加入无机填料改善了聚苯苯并嗪的抗激光烧蚀性能。用复合涂层覆盖的基材的后表面温度比激光烧蚀后纯聚苯噻嗪涂层的情况下更高50%。此外,复合涂层的残余物可以垂直分为三个不同的区域,其中致密表面炭层和作为激光束的屏蔽层的多孔热解层并防止发生任何热量的变换。加入无机颗粒改善了涂层的表面反射率,导致更大的激光能量耗散。减少的热解率确保热解气体的气动冷却效应更持久且稳定,因此复合涂层可以充当有效的热保护层。这些结果证实,无机填料改性的聚苯异种杂志涂层具有优异的抗激光性能,适用于保护来自激光相关损伤的结构材料。

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