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Why Do We Have Cracks in Epoxy Coatings for Water Ballast Tanks?

机译:为什么在压载水舱的环氧涂料中出现裂纹?

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Crackings of the epoxy coatings applied on ship's water ballast tanks can lead to damage of ship's hulls. To avoid this, it’s critical to have clear understanding of the underlying mechanism and primary factors of the coating crack. In this study, the efforts were made to clarify the integrated effects of critical factors, I.e., initial coating shrinkage, thermally induced strain, steel-structural strain and the intrinsic coating flexibility at the initial and after aging, to the premature cracking of epoxy coating for the water ballast tank. A new screening test method was proposed to predict the long-term resistance of epoxy-based paints to cracking. These results indicated that crack was caused by combination of thermal stress, structural mechanical stress, and internal stresses, closely related to chemical structures of the coatings. On the other hand, for WBT coatings having rather large flexibility, thermal stresses and dimensional stabilities would rarely play a major role in coating crack. Crack resistance of the coatings at early service life can be estimated roughly by measuring internal stress, FT-IR and Tg value of the coatings.
机译:涂在船舶压载舱上的环氧涂层的开裂会导致船舶船体的损坏。为避免这种情况,至关重要的是要清楚了解涂层裂纹的潜在机理和主要因素。在这项研究中,我们努力弄清了关键因素的综合影响,即初始和老化后,初始涂层收缩,热致应变,钢结构应变和固有的涂层柔韧性对环氧涂层过早开裂的综合影响。用于压载水舱。提出了一种新的筛选测试方法,以预测环氧涂料的长期抗裂性。这些结果表明,裂纹是由热应力,结构机械应力和内部应力共同引起的,与涂层的化学结构密切相关。另一方面,对于具有相当大柔韧性的WBT涂层,热应力和尺寸稳定性几乎不会在涂层开裂中起主要作用。可以通过测量涂层的内部应力,FT-IR和Tg值来大致评估涂层在早期使用寿命时的抗裂性。

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