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金属带材上的耐腐蚀疏水性热障复合涂层:屋面用钢带的新维度。

Corrosion-Resistant Hydrophobic Thermal Barrier Composite Coating on Metal Strip: A New Dimension to Steel Strips for Roofing Segment.

作者信息

Ananthapadmanabhan S S, Rout Tapan Kumar, Chatterjee Sudin, Dasgupta Titas, Parida Smrutiranjan

机构信息

Indian Institute of Technology Bombay, Mumbai, Maharashtra 400076, India.

Tata Steel Ltd., Jamshedpur, Jharkhand 831001, India.

出版信息

ACS Appl Mater Interfaces. 2023 Nov 8;15(44):51737-51752. doi: 10.1021/acsami.3c11712. Epub 2023 Oct 24.

Abstract

This study demonstrates a cost-effective, thin, multifunctional composite coating system with outstanding thermal insulation for thermal management and heat shield applications, such as roofs, as well as outstanding resistance to corrosion. The hydrophobic multifunctional epoxy composite coating systems were designed with surface-modified fillers to impart both reduced heat conduction and high infrared reflectance in a thin coating with a 65-100 μm dry film thickness (DFT). With a judicial combination of hollow microspheres (HMS) activated and modified with silica (sHMS) and stearic acid-modified TiO (sMO), the developed composite coating attained the highest thermal insulation property with a temperature drop of 21-31 °C at different distances below the coated panel, which is superior to the values of temperature drop reported earlier. The high solar reflectance of the composite coating in the near-infrared (NIR) region exceeds 72% with a low thermal conductivity of 0.178 W m K. After 720 h of exposure in a 3.5 wt % NaCl solution, the composite coating revealed a corrosion protection efficiency of 99%. The work demonstrates that high solar reflectivity and low thermal conductivity must be active simultaneously to achieve superior thermal shielding in a thin coating on a metal. A careful selection of fillers and appropriate surface modifications ensures hydrophobicity and proper distribution of the fillers in the coating for a high barrier effect to prevent environmental deterioration. With these superior performance parameters, the developed composite coatings make an essential contribution to energy sustainability and the protection against environmental degradation.

摘要

本研究展示了一种具有成本效益的、薄的、多功能复合涂层系统,该系统在热管理和热屏蔽应用(如屋顶)中具有出色的隔热性能,以及出色的抗腐蚀性能。疏水性多功能环氧复合涂层系统采用表面改性填料设计,在干膜厚度为65 - 100μm的薄涂层中实现了降低热传导和高红外反射率。通过将用二氧化硅活化和改性的空心微球(HMS)与硬脂酸改性的TiO(sMO)进行合理组合,所开发的复合涂层获得了最高的隔热性能,在涂层面板下方不同距离处温度下降21 - 31°C,优于先前报道的温度下降值。复合涂层在近红外(NIR)区域的高太阳反射率超过72%,热导率低至0.178W m K。在3.5wt%的NaCl溶液中暴露720小时后,复合涂层的腐蚀防护效率为99%。这项工作表明,高太阳反射率和低导热率必须同时起作用,才能在金属上的薄涂层中实现卓越的热屏蔽。仔细选择填料并进行适当的表面改性可确保疏水性以及填料在涂层中的适当分布,从而产生高阻隔效应以防止环境恶化。凭借这些优异的性能参数,所开发的复合涂层对能源可持续性和环境保护做出了重要贡献。

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