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一种阻隔型海洋涂料的三维结构分析及渗流性能。

Three-dimensional structure analysis and percolation properties of a barrier marine coating.

机构信息

London Centre for Nanotechnology, University College London, WC1H 0AH, UK.

出版信息

Sci Rep. 2013;3:1177. doi: 10.1038/srep01177. Epub 2013 Jan 31.

Abstract

Artificially structured coatings are widely employed to minimize materials deterioration and corrosion, the annual direct cost of which is over 3% of the gross domestic product (GDP) for industrial countries. Manufacturing higher performance anticorrosive coatings is one of the most efficient approaches to reduce this loss. However, three-dimensional (3D) structure of coatings, which determines their performance, has not been investigated in detail. Here we present a quantitative nano-scale analysis of the 3D spatial structure of an anticorrosive aluminium epoxy barrier marine coating obtained by serial block-face scanning electron microscopy (SBFSEM) and ptychographic X-ray computed tomography (PXCT). We then use finite element simulations to demonstrate how percolation through this actual 3D structure impedes ion diffusion in the composite materials. We found the aluminium flakes align within 15° of the coating surface in the material, causing the perpendicular diffusion resistance of the coating to be substantially higher than the pure epoxy.

摘要

人工结构涂层被广泛应用于最小化材料劣化和腐蚀,其每年的直接成本超过了工业国家国内生产总值(GDP)的 3%。制造更高性能的防腐涂层是减少这种损失的最有效方法之一。然而,涂层的三维(3D)结构,决定了其性能,尚未得到详细研究。在这里,我们通过连续块面扫描电子显微镜(SBFSEM)和相衬 X 射线计算层析成像(PXCT)对铝环氧阻隔海洋防腐涂层的 3D 空间结构进行了定量纳米尺度分析。然后,我们使用有限元模拟来演示这种实际 3D 结构如何阻碍复合材料中的离子扩散。我们发现,在这种材料中,铝鳞片在涂层表面 15°范围内排列,导致涂层的垂直扩散阻力大大高于纯环氧树脂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d74/3558722/cb31307743c9/srep01177-f1.jpg

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