Methods of corrosion testing used for development and commercial exploitation of new shipbuilding steels and alloys. Review. Part II. Corrosion cracking and field marine tests

A. A. Al’khimenko, A. Davydov, A. Khar’kov, S. Mushnikova, O. A. Khar’kov, O. Parmenova, A. A. Yakovitskii
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Abstract

The review describes methods of stress corrosion cracking (SCС) tests that implement various conditions for samples loading: at a constant static load or deformation, at a constant or increasing load of samples with a previously grown fatigue crack, with a slow strain rate. Such tests shall be carried out to determine the resistance of shipbuilding materials to be used in loaded ship structures in contact with seawater. Brief descriptions of the mechanism of stress corrosion cracking of steels and alloys are given. The necessity to carry out bench tests of steels and their welded joints, as well as models simulating individual units and elements of structures, is indicated. At this stage, conditions are ensured as close to operating conditions as possible due to exposure in various climatic zones of the world’s oceans (variations in temperature, chloride concentration, amount of dissolved oxygen, degree of biofouling, and their simultaneous impact). It is shown that during verification field tests (final stage) new materials promising for operation in marine conditions pass the final evaluation of corrosion resistance in the form of elements of ship structures and systems in the conditions of ship operation.
新型造船用钢和合金的开发和商业开发用腐蚀试验方法。审查。第二部分。腐蚀开裂和海上现场试验
这篇综述描述了应力腐蚀开裂(SCС)试验的方法,该方法实现了各种条件下的样品加载:恒定的静态载荷或变形,恒定或增加载荷的样品与先前生长的疲劳裂纹,以缓慢的应变速率。进行这种试验是为了确定用于装载船舶结构与海水接触的造船材料的阻力。简要介绍了钢和合金的应力腐蚀开裂机理。指出了对钢及其焊接接头进行台架试验以及模拟单个单元和结构单元的模型的必要性。在这个阶段,由于暴露在世界海洋的不同气气带(温度、氯化物浓度、溶解氧量、生物污染程度及其同时影响的变化),因此确保条件尽可能接近操作条件。结果表明,在验证现场试验(最后阶段)中,有望在船舶运行条件下使用的新材料以船舶结构和系统元件的形式通过了船舶运行条件下的最终耐蚀性评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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