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FACTORS INFLUENCING EARLY CRACK DEVELOPMENT IN MARINE CARGO AND BALLAST TANK COATINGS

机译:影响海洋货物和压载罐涂层早期开发的因素

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Stress development in epoxy coatings applied in water ballast tanks (WBT) on ships can lead to cracking, corrosion, and failure of ship's hulls, with catastrophic consequences to the environment as well as loss of seamen at sea. Typically these cracks do not appear during application and curing of the coating but after some finite time of service. The financial well being of the ship's owner can suffer greatly. To avoid such cracking it is critical to have a clear understanding of the underlying mechanisms and primary controlling factors behind the coating cracks. In this paper we review some of the primary contributing factors that produce the internal coating stresses that produce the cracking. These include the following: 1) Initial coating shrinkage from chemical cross-linking; 2) Thermally induced stress; 3) Increase in stress due to loss of migratory specie from free-volume within the binder polymer matrix such as solvents and binder extenders; 4) The effect of steel-structural strain; and 5) How the flexibility of the coatings change after the coatings age. The primary root causes to the early cracking phenomena of epoxy coating in the ship's water ballast tank will then be offered along with suggestions on how to alleviate some of the problems seen.
机译:在水压载荷罐(WBT)的环氧涂料中的应力发育可能导致船壳的开裂,腐蚀和失效,对环境的灾难性后果以及海上海员的损失。通常,这些裂缝在涂层的应用和固化过程中不会出现,但经过一些有限的服务时间。船东的金融福祉可能会遭受大大痛苦。为了避免这种破解,对涂层裂缝背后的潜在机制和主要控制因子来说至关重要。在本文中,我们审查了一些主要贡献因子,从而产生产生裂化的内部涂层应力。其中包括以下内容:1)初始涂层从化学交联收缩; 2)热引起的应力; 3)由于粘合剂聚合物基质(如溶剂和粘合剂增量剂)在粘合剂聚合物基质中的自由体积损失引起的应力增加; 4)钢结构应变的效果; 5)涂料年龄后涂层的灵活性如何变化。然后,船舶水压载舱中的环氧涂层早期破裂现象的原始根本将提供关于如何缓解一些问题的建议。

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