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A critical review of the influence of hydrogen on the mechanical properties of medium-strength steels

机译:氢对中强度钢力学性能影响的重要综述

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As medium-strength steels are promising candidates for the hydrogen economy, it is important to understand their interaction with hydrogen. However, there are only a limited number of investigations on the behavior of medium-strength steels in hydrogen. The existing literature indicates that the influences of hydrogen on the tensile properties of medium-strength steels are mainly the following: (i) the steel can be hardened by hydrogen, as demonstrated by an increase in the yield stress or ultimate tensile stress;;(ii) some steels can be embrittled by hydrogen, as revealed by lower yield stress or ultimate tensile stress;;(iii) in most cases, these steels may experience hydrogen embrittlement (HE), as indicated by a reduction in ductility. The degree of HE mainly depends on the test conditions and the steel. The embrittlement can lead to catastrophic brittle fracture in service. The influence of hydrogen on the fatigue properties of medium-strength steels is dependent on many factors such as the stress ratio, temperature, yield stress of the steel, and test frequency. Generally, the hydrogen influence on fatigue limit is small, whereas hydrogen can accelerate the fatigue crack growth rate, leading to a shorter fatigue life. Inclusions are an important factor influencing the properties of medium-strength steels in the presence of hydrogen. However, it is not possible to predict the influence of hydrogen for any particular steel that has not been experimentally evaluated or to predict service performance. It is not known why similar steels can have different behavior, ranging from good resistance to significant embrittlement. A better understanding of the microstructural characteristics is needed.
机译:由于中强度钢是氢经济的有前途的候选者,因此了解它们与氢的相互作用非常重要。但是,关于中强度钢在氢气中的行为的研究很少。现有文献表明,氢对中强度钢拉伸性能的影响主要如下:(i)钢可以被氢硬化,如屈服应力或极限拉伸应力的增加所证明; ii)某些钢可能会因氢脆化,如屈服应力或极限拉应力较低;(iii)在大多数情况下,这些钢可能会发生氢脆(HE),这表明延展性降低。 HE的程度主要取决于测试条件和钢。脆化可能导致使用中的灾难性脆性断裂。氢对中强度钢疲劳性能的影响取决于许多因素,例如应力比,温度,钢的屈服应力和测试频率。通常,氢对疲劳极限的影响很小,而氢可以加速疲劳裂纹的生长速度,从而缩短疲劳寿命。夹杂物是在氢存在下影响中强度钢性能的重要因素。但是,不可能预测氢对任何未经实验评估的特定钢的影响或预测使用性能。未知为什么相似的钢具有不同的性能,从良好的抗性到明显的脆化。需要对微观结构特征有更好的了解。

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