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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Aging Degradation of Austenitic Stainless Steel Weld Probed by Electrochemical Method and Impact Toughness Evaluation
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Aging Degradation of Austenitic Stainless Steel Weld Probed by Electrochemical Method and Impact Toughness Evaluation

机译:电化学方法探测奥氏体不锈钢焊缝老化降解及影响韧性评价

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The present study discriminates the spinodal decomposition and G-phase precipitation in stainless steel welds by double loop electrochemical potentio-kinetic reactivation method and correlates it with the degradation in toughness property. The welds produced with different heat inputs were aged up to 10,000 hours at 673 K to 723 K (400 to 450 A degrees C) and evaluated subsequently for the degree of sensitization (DOS) and impact toughness. The DOS values obtained were attributed to the spinodal decomposition and precipitation of G-phase. Study shows that the DOS correlates well with the impact toughness of the 304LN weld. Prolonged aging at 673 K and 723 K (400 A degrees C and 450 A degrees C) increased the DOS values while the impact toughness was decreased. The weld fabricated at 1 kJ/mm of heat input, produced higher DOS, compared to that at 3 kJ/mm. The geometrical location along the weld is shown to influence the DOS; higher values were obtained at the root than at the topside of the weld. Vermicular and columnar microstructure, in addition to the spinodal decomposition and G-phase precipitation, observed in the root side of the weld appear risky for the impact toughness.
机译:本研究通过双回路电化学稳态 - 动力学再激活方法判断不锈钢焊缝中的旋光膜分解和G相沉淀,并将其与韧性特性的降解相关。用不同热量输入产生的焊缝在673k至723k(400至450℃)下老化至10,000小时,随后评估敏化程度(DOS)和冲击韧性。所得DOS值归因于旋光膜分解和G相的沉淀。研究表明,DOS与304LN焊缝的冲击韧性好。在673 k和723k(400℃和450℃)的延长时延长衰老增加了DOS值,而冲击韧性降低。与3kJ / mm的3 kJ / mm相比,在1kJ / mm的热输入中制造的焊接产生更高的DOS。沿着焊缝的几何位置显示为影响DOS;在根系上获得较高的值,而不是焊缝的顶部。除了在焊缝根侧观察到的旋尖分解和G相沉淀之外,在焊接的根侧观察到对冲击韧性的危险之外,耳膜和柱状微观结构也是危险性的。

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