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Influence of microstructure on the hydrogen permeability of 9%Cr-1%Do ferritic steel

机译:显微组织对9%Cr-1%Do铁素体钢氢透性的影响

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The influence of microstructure of 9%Cr-1%Do steel on the hydrogen diffusivity, solubility and hence the permeability was investigated using electrochemical permeation technique. This steel was austenitised and cooled at various cooling rates to produce different microstructures. Tempering behaviour was also studied by heat treating for different durations at 1023 K. Characterisation of microstructures was carried out using scanning electron microscopy and analytical transmission electron microscopy. A fully martensitic product was obtained during fast cooling and a mixture of proeutectoid ferrite and martensite during slow cooling. Tempering the normalised steel resulted in the formation of fine intragranular M_2X precipitation and M_(23)C_6 on the boundaries. The hydrogen diffusivity and solubility showed a regular trend with the amount of strain in the lattice. Lattice defects and precipitates act as trap sites for hydrogen. Increase in lattice strain either due to increase in defect density, substructure or coherent precipitates resulted in decrease in diffusivity due to increase in trap sites. Martensite structure offered the maximum resistance to hydrogen diffusivity and tempered martensite the least resistance due to the annihilation of defects during tempering.
机译:利用电化学渗透技术研究了9%Cr-1%Do钢的显微组织对氢扩散率,溶解度以及渗透率的影响。该钢经奥氏体化并以不同的冷却速率冷却以产生不同的显微组织。还通过在1023 K下热处理不同时间来研究回火行为。使用扫描电子显微镜和分析透射电子显微镜对微结构进行表征。在快速冷却过程中获得了完全马氏体产品,在缓慢冷却过程中获得了共析铁素体和马氏体的混合物。对正火钢进行回火会导致在边界上形成细小的颗粒内M_2X沉淀和M_(23)C_6。氢的扩散率和溶解度随着晶格中应变的变化而呈现出规则的趋势。晶格缺陷和沉淀物充当氢的俘获位点。晶格应变的增加是由于缺陷密度,子结构或相干析出物的增加导致的,由于陷阱位点的增加导致扩散率的降低。由于回火过程中的defects灭,马氏体结构提供了最大的氢扩散阻力,而回火的马氏体则提供了最小的阻力。

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