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Functional pressure-sensitive adhesive tapes for local anodization of aluminium surfaces

机译:功能性压敏胶带,用于铝表面的局部阳极氧化

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摘要

A novel, pressure-sensitive adhesive tape for local anodization of aluminium surfaces was developed. The main difference between this tape anodization and conventional bath anodization is the viscosity of the anodization medium. While the viscosity of industrial anodization baths is similar to that of water, the viscosity of the adhesive matrix is higher by six orders of magnitude. To achieve a reliable application of tape anodization, the differences between bath and tape anodization were examined. This included the impact of process parameters on the morphology of anodic oxide layers. A decrease in the speed of the transport processes in the liquid phase because of the higher viscosity leads to changed rates of growth and the dissolution of the anodic oxide layer. The morphology of anodic oxide layers formed under conditions of high viscosity is presented. Layer thickness, pore density and pore area were obtained by statistical analysis of SEM images. The results are complemented by current-time response measurements during the anodization process. Practical tests of the applicability of the anodization tape for local pre-treatment of aluminium surfaces prior to bonding or painting were successfully performed. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:开发了用于铝表面局部阳极氧化的新型压敏胶带。该带状阳极氧化和常规浴阳极氧化之间的主要区别是阳极氧化介质的粘度。尽管工业阳极氧化浴的粘度与水相似,但粘合剂基质的粘度却高出六个数量级。为了实现胶带阳极氧化的可靠应用,检查了镀液和胶带阳极氧化之间的差异。这包括工艺参数对阳极氧化层形态的影响。由于较高的粘度,液相中的传输过程的速度降低导致生长速率的改变和阳极氧化物层的溶解。介绍了在高粘度条件下形成的阳极氧化层的形貌。通过SEM图像的统计分析获得层厚度,孔密度和孔面积。在阳极氧化过程中,通过当前时间响应测量对结果进行补充。成功进行了阳极氧化胶带在粘结或喷漆之前用于铝表面局部预处理的实用性测试。版权所有(C)2015 John Wiley&Sons,Ltd.

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