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Evaluating the thermal damage resistance of graphene/carbon nanotube hybrid composite coatings

机译:评估石墨烯/碳纳米管杂化复合涂层的耐热破坏性

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摘要

We study laser irradiation behavior of multiwalled carbon nanotubes (MWCNT) and chemically modified graphene (rGO)-composite spray coatings for use as a thermal absorber material for high-power laser calorimeters. Spray coatings on aluminum test coupon were exposed to increasing laser irradiance for extended exposure times to quantify their damage threshold and optical absorbance. The coatings, prepared at varying mass % of MWCNTs in rGO, demonstrated significantly higher damage threshold values at 2.5 kW laser power at 10.6 μm wavelength than carbon paint or MWCNTs alone. Electron microscopy and Raman spectroscopy of irradiated specimens show that the coating prepared at 50% CNT loading endure at least 2 kW.cmˉ² for 10 seconds without significant damage. The improved damage resistance is attributed to the unique structure of the composite in which the MWCNTs act as an efficient absorber of laser light while the much larger rGO sheets surrounding them, dissipate the heat over a wider area.
机译:我们研究了多壁碳纳米管(MWCNT)和化学改性的石墨烯(rGO)复合喷涂涂料的激光辐照行为,该涂料用作大功率激光量热仪的吸热材料。将铝测试试样上的喷涂层暴露于增加的激光辐照下,以延长暴露时间,以量化其损伤阈值和光吸收率。在rGO中以不同质量百分比的MWCNTs制备的涂层,与单独使用碳漆或MWCNT相比,在波长为10.6μm的2.5μkW激光功率下,其损伤阈值表现出明显更高的值。电子显微镜和拉曼光谱对辐照样品的分析表明,以50%的CNT负载量制备的涂层在至少2?kW.cm?²的压力下可持续10秒钟,而没有明显损坏。改进的抗损伤性归因于复合材料的独特结构,其中MWCNT充当激光的有效吸收剂,而包围它们的更大的rGO薄板则在更宽的区域内散发热量。

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