Li Hongmei, Takata Naoki, Kobashi Makoto, Serizawa Ai
Department of Materials Process Engineering, Nagoya University, Furo-cho, Chikusa-ku, Nagoya 464-8603, Japan.
Department of Materials Science and Engineering, Shibaura Institute of Technology, Toyosu, Koto-ku, Tokyo 135-8548, Japan.
Materials (Basel). 2020 Mar 9;13(5):1238. doi: 10.3390/ma13051238.
Hydroxide film was formed on 6061 Al-alloy (Al-1.00Mg-0.62Si(wt.%)) sheets by steam coating with the temperature of 220 °C for 24 h. During bending test of the coated specimens, the crack initiation and propagation processes in the hydroxide film were investigated using in situ SEM observations. The hydroxide film formed exhibited a dual-layer structure composed of an inner amorphous layer and an outer polycrystalline γ-AlO(OH)-phase layer. On the compressively strained surface, lateral cracks are preferentially initiated inside the inner amorphous layer, and propagate either inside this layer or on its interface with the outer γ-AlO(OH) layer. Digital image correlation analyses of the in situ observed SEM images suggested that the concentrated tensile strain along the surface normal localized at some parts of the amorphous layer could contribute to the crack initiation. On the tensile-strained surface, a number of cracks were initiated inside the inner amorphous layer along the surface normal and propagate into the outer γ-AlO(OH) layer. No cracks were found along the interface of the amorphous layer with the Al-alloy substrate. As a result, the anticorrosion hydroxide film adhered on the Al sheet after bending deformation. Such strong adhesion contributes to the excellent corrosion resistance of the Al-alloy parts provided by the steam coating.
通过在220℃温度下蒸汽涂覆24小时,在6061铝合金(Al-1.00Mg-0.62Si(重量百分比))板材上形成氢氧化物膜。在对涂覆试样进行弯曲试验期间,使用原位扫描电子显微镜观察研究了氢氧化物膜中的裂纹萌生和扩展过程。形成的氢氧化物膜呈现出由内非晶层和外多晶γ-AlO(OH)相层组成的双层结构。在压缩应变表面上,横向裂纹优先在内非晶层内部萌生,并在该层内部或其与外γ-AlO(OH)层的界面上扩展。对原位观察的扫描电子显微镜图像进行数字图像相关分析表明沿着表面法线方向集中在非晶层某些部分的拉伸应变可能有助于裂纹萌生。在拉伸应变表面上,许多裂纹沿着表面法线方向在内非晶层内部萌生并扩展到外γ-AlO(OH)层中。在非晶层与铝合金基体的界面处未发现裂纹。结果,弯曲变形后,防腐氢氧化物膜附着在铝板上。这种强附着力有助于蒸汽涂覆提供的铝合金部件具有优异的耐腐蚀性。