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Time-lapse lab-based x-ray nano-CT study of corrosion damage

机译:基于实验室的X射线纳米CT研究腐蚀损伤

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摘要

An experimental protocol (workflow) has been developed for time-lapse x-ray nanotomography (nano-CT) imaging of environmentally driven morphological changes to materials. Two case studies are presented. First, the leaching of nanoparticle corrosion inhibitor pigment from a polymer coating was followed over 14 days, while in the second case the corrosion damage to an AA2099 aluminium alloy was imaged over 12 hours. The protocol includes several novel aspects relevant to nano-CT with the use of a combination of x-ray absorption and phase contrast data to provide enhanced morphological and composition information, and hence reveal the best information to provide new insights into the changes of different phases over time. For the pigmented polymer coating containing nominally strontium aluminium polyphosphate, the strontium-rich components within the materials are observed to leach extensively whereas the aluminium-rich components are more resistant to dissolution. In the case of AA2099 it is found that the initial grain boundary corrosion is driven by the presence of copper-rich phases and is then followed by the corrosion of grains of specific orientation.
机译:已经开发了实验方案(工作流程)用于对环境驱动的X射线纳米分析(Nano-CT)成像对材料进行环境驱动的形态变化。提出了两种案例研究。首先,纳米粒子腐蚀抑制剂颜料从聚合物涂层浸出过滤14天,而在第二种情况下,对AA2099铝合金的腐蚀损坏在12小时内成像。该协议包括与纳米CT相关的几个新颖方面,利用X射线吸收和相位对比度数据的组合来提供增强的形态和组成信息,因此揭示了最佳信息,以便为不同阶段的变化提供新的洞察随着时间的推移。对于含有标称锶多磷酸铝的着色聚合物涂料,将富含材料内的锶的成分广泛观察到浸出,而富含铝的组分更耐溶解。在AA2099的情况下,发现初始晶界腐蚀是通过富含铜相的存在而驱动的,然后进行特定取向的颗粒的腐蚀。

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