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Mechanical Spectroscopy Investigation of Point Defect-Driven Phenomena in a Cr Martensitic Steel

机译:CR马氏钢点缺陷驱动现象的机械光谱研究

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摘要

The paper presents and discusses results of mechanical spectroscopy (MS) tests carried out on a Cr martensitic steel. The study regards the following topics: (i) embrittlement induced by Cr segregation; (ii) interaction of hydrogen with C⁻Cr associates; (iii) nucleation of Cr carbides. The MS technique permitted characterising of the specific role played by point defects in the investigated phenomena: (i) Cr segregation depends on C⁻Cr associates distribution in as-quenched material, in particular, a slow cooling rate (~150 K/min) from austenitic field involves an unstable distribution, which leads to Cr concentration fluctuations after tempering at 973 K; (ii) hydrogen interacts with C⁻Cr associates, and the phenomenon hinders hydrogen attack (HA) because hydrogen atoms bound by C⁻Cr associates are not able to diffuse towards grain boundaries and dislocation where CH4 bubbles may nucleate, grow, and merge to form the typical HA cracks; (iii) C⁻Cr associates take part in the nucleation mechanism of Cr7C3 carbides, and specifically these carbides form by the aggregation of C⁻Cr associates with 1 Cr atom.
机译:本文介绍并讨论了在CR马氏体钢上进行的机械光谱(MS)试验的结果。研究至关重要以下主题:(i)Cr隔离诱导的脆化; (ii)氢与C⁻CR联系的相互作用; (iii)Cr碳化物的成核。允许在研究现象中的点缺陷所发挥的特定作用的MS技术:(i)Cr偏析取决于C盘葛缔合材料的分布,特别是缓慢冷却速率(〜150 k / min)来自奥氏体领域涉及不稳定的分布,这导致回火后的Cr浓度波动在973 k; (ii)氢与C⁻CR联系人相互作用,并且该现象阻碍了氢气发作(HA),因为C盘葛缔合物结合的氢原子不能蔓延到晶界和位错,其中CH4气泡可能成核,生长和合并形成典型的HA裂缝; (III)C盘葛缔合物参与CR7C3碳化物的成核机制,特别是通过C盘葛缔合的碳化物形式与1 CR原子的聚集。

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