论文标题
一种新的方法来评估高强度马氏体钢中氢化(HE)易感性和机制
A novel approach to assess hydrogen embrittlement (HE) susceptibility and mechanisms in high strength martensitic steels
论文作者
论文摘要
提出了四分弯曲中的快速断裂试验,以评估高强度马氏体钢的易感性(HE)。该技术的新颖性是加载速率的快速速率,而常规方法需要延长慢速应变率测试。尽管有快速的加载条件,但仍需要确定HE失败机制所需的基本分形特征。为了证明这些属性,测试了两个不同强度水平的两个淬火和钢化钢,并在氢气中预先充电。进行应力耦合氢扩散有限元分析(FEA),以计算应力和氢浓度分布。除分形分析外,还使用植根于增强的脱粘(HEDE)机制的机械描述来证实机械测试数据。该研究表明,该方法能够通过响应影响氢诱导骨折的关键因素来量化他的敏感性,从而进一步了解马氏钢钢的HE。
A rapid fracture test in four-point bending is proposed to assess hydrogen embrittlement (HE) susceptibility of high strength martensitic steels. The novelty of this technique is the rapid rate of loading, whereas conventional approaches require prolonged slow strain rate testing. The essential fractographic features required to identify the mechanisms of HE failure remain evident, despite the fast loading conditions. To demonstrate these attributes, two quenched and tempered steels at two different strength levels were tested, with and without pre-charging of hydrogen. Stress coupled hydrogen diffusion finite element analysis (FEA) was performed to calculate both stress and hydrogen concentration distributions. In addition to fractographic analysis, a mechanistic description rooted in hydrogen enhanced decohesion (HEDE) mechanism was used to corroborate the mechanical test data. The study shows that the approach is capable of quantifying HE susceptibility by being responsive to key factors affecting hydrogen induced fracture, thus developing further understanding on the HE of martensitic steels.