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The Study on Failure Process of Acrylic Polyurethane Coating under Alternate Wetting and Drying Condition

机译:干湿交替条件下丙烯酸聚氨酯涂料的失效过程研究

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摘要

The failure process of an acrylic polyurethane coating in simulated sea water under a wet-dry cyclic condition and immersion condition was studied with the methods of electrochemical impedance spectroscopy (EIS), Fourier transform infrared spectroscopy (FT-IR) and scanning electron microscope (SEM). The results show that the failure rate of acrylic polyurethane coating under the condition of wet-dry alternation is obviously greater than that under complete immersion. Under wet-dry condition both the porosity and the water absorptivity of the coating are also greater than those under complete immersion condition. Owing to the physical effect of wet-dry alternation, the fillers in the coating surface layer may fall off and result in micro-pores, which could multiply the defects in the coating and accelerate the coating degradation. FT-IR analysis shows that the isocyanate group in the coating not only participates in the curing of coating, but also hydrolyzes with water molecule. The C-O bonds fracture partly due to hydrolysis of the main molecule chains, which is one reason of the coating failure. A failure mode for acrylic polyurethane coating under a wet-dry cyclic condition is suggested.
机译:采用电化学阻抗谱(EIS),傅里叶变换红外光谱(FT-IR)和扫描电子显微镜(SEM)研究了丙烯酸聚氨酯涂料在干湿循环条件和浸没条件下在模拟海水中的破坏过程。 )。结果表明,干湿交替条件下丙烯酸聚氨酯涂料的不合格率明显高于完全浸没。在干湿条件下,涂层的孔隙率和吸水率也都比完全浸没条件下的要大。由于干湿交替的物理作用,涂层表面层中的填料可能会掉落并产生微孔,这会增加涂层中的缺陷并加速涂层的降解。 FT-IR分析表明,涂层中的异氰酸酯基不仅参与涂层的固化,而且还与水分子水解。 C-O键部分地由于主分子链的水解而断裂,这是涂层失败的原因之一。建议在湿干循环条件下丙烯酸聚氨酯涂料的失效模式。

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