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Microstructural changes induced during hydrogen charging process in stainless steels with and without nitrided layers

机译:氮气钢氢气充电过程中诱导的微观结构变化,无氮化层

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The purpose of this study is to analyze the effect of glow discharge nitriding on hydrogen degradation of two types of steels: two-phase austenitic-ferritic and single-phase austenitic. The nitriding process resulted in formation of surface layers composed of expanded austenite (S phase), and in the case of two-phase steel of expanded austenite and expanded ferrite. Microstructural changes occurring under the influence of hydrogen on steels without and with nitrided layers were investigated with the use of scanning (SEM) and transmission (TEM) electron microscopy techniques. It has been shown that the density of cracks formed during cathodic hydrogen charging is higher on the surface of the non-nitrided steels compared to the nitrided steels after identical hydrogen charging process. Moreover in non-nitrided steel hydrogenation leads to considerable increase of dislocation density, which results from the high concentration of hydrogen absorbed to the steel during its cathodic charging. This leads in turn to high stress concentration and local embrittlement giving rise to cracks formation. Conversely nitriding reduces the absorption of hydrogen and prevents structural changes resulting in hydrogen embrittlement. The conducted studies show that glow discharge nitriding can be used to increase resistance to hydrogen embrittlement of austenitic and austenitic ferritic stainless steels.
机译:本研究的目的是分析辉光放电渗氮上的两个类型的钢的氢退化的影响:两相奥氏体 - 铁素体和单相奥氏体。氮化处理导致形成膨胀的奥氏体(S相)构成的表面层,并且在扩张奥氏体和铁素体膨胀的两相钢的情况。微观结构的变化对钢的氢不具有和具有氮化层的影响下发生与使用扫描(SEM)和透射(TEM)的电子显微技术进行了研究。它已经显示,阴极氢充电期间形成裂纹的密度是所述非氮化的钢的表面相比完全相同充氢处理后的氮化钢上更高。此外,在非渗氮钢氢化导致相当大的增加位错密度,其中不同于氢的高浓度的结果其阴极充电过程中吸收到钢中。这又导致高应力集中和局部脆化引起裂缝的形成。相反地​​氮化降低了导致氢脆氢并防止结构变化的吸收。传导的研究表明,辉光放电渗氮可以被用来增加对奥氏体和奥氏体铁素体不锈钢的耐氢脆化特性。

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