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Printable self-heating coatings based on the use of carbon nanoreinforcements

机译:可根据使用碳纳米金属的可打印自加热涂层

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Graphitic nanofillers reinforced epoxy coatings have been manufactured using UV-photopolymerized resin. These materials present effective low-power resistive heating, which can be potentially useful for deicing and anti-icing devices. During the optimization of UV-3D manufacturing printing process, it was confirmed that the coating thickness strongly depends on the nature and content of graphitic nanofillers. Carbon nanotubes (CNTs) strongly inhibit the photopolymerization because of the UV light dispersion, which competes with the light absorption of the photoinitiator, decreasing the coating thickness. Thermo-mechanical behavior of the doped coatings has been analyzed together with their efficiency as de-icing materials. The highest self-heating achieved by Joule's effect was measured for the coating doped with the lower studied content of CNTs, close to electrical percolation. This is explained by its high-electrical conductivity and the higher contribution of tunneling effect regard to the electrical conduction by direct contact.
机译:使用UV-光聚合树脂制造了石墨纳米填料增强的环氧涂层。这些材料具有有效的低功率电阻加热,这可能对除冰和防冰装置可能是有用的。在优化UV-3D制造印刷过程中,证实涂层厚度强烈取决于石墨纳米填料的性质和含量。由于UV光分散体,碳纳米管(CNT)强烈抑制光聚合,其与光引发剂的光吸收竞争,降低涂层厚度。掺杂涂层的热力学行为已经与其作为去冰材料的效率一起分析。测量焦耳效果的最高自加热,用于掺杂有CNT的较低的CNT含量的涂层,接近电气渗透。这是通过其高导电性和隧道效应通过直接接触的电导的更高贡献来解释。

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