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首页> 外文期刊>Journal of Applied Polymer Science >Effect of moisture-ingress on adhesion energy in a metal oxide-polymer system
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Effect of moisture-ingress on adhesion energy in a metal oxide-polymer system

机译:吸水对金属氧化物-聚合物体系中黏附能的影响

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This work quantifies the damage caused by moisture in a metal coating system under extreme weathering conditions, using Variable Radius Roll Adhesion Test (VaRRAT). Interfacial toughness (adhesion energy) between the metal oxide and the polymer in painted steel panels, studied by using VaRRAT, is observed to fall with increasing temperature and time of exposure to moisture. Possible cause for irreversible loss in adhesion energy in the paint system is attributed to the sorption of free water at the metal oxide-polymer interface. Different failure responses were observed in two different paint-metal systems. Adsorption or diffusion in the Henry's mode is rate controlling in green paints as indicated by the low activation energy of 12 kJ mol(-1). The white samples showed a high activation energy of 30 kJ mol(-1), indicating a mixed process of diffusion as well as chemical to be rate determining. Different paint/binder ratios are responsible for the different responses of these samples.
机译:这项工作使用可变半径辊附着力测试(VaRRAT)量化了极端气候条件下金属涂层系统中水分引起的破坏。使用VaRRAT研究发现,彩绘钢板中的金属氧化物和聚合物之间的界面韧性(粘合能)随温度和暴露于湿气的时间的增加而下降。涂料体系中附着力不可逆转损失的可能原因归因于游离水在金属氧化物-聚合物界面处的吸附。在两种不同的涂料金属系统中观察到了不同的失效响应。亨利模式下的吸附或扩散是绿色涂料中的速率控制,如12 kJ mol(-1)的低活化能所示。白色样品显示出30 kJ mol(-1)的高活化能,表明扩散过程以及确定速率的化学物质的混合过程。不同的涂料/粘合剂比率负责这些样品的不同响应。

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