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CHARACTERIZATION OF IASCC CRACK TIP IN HIGHLY IRRADIATED STAINLESS STEELS

机译:高辐照不锈钢中IASCC裂纹尖端的表征

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Microstructure and microchemistry were examined for IASCC crack tips of cold-worked 316 stainless steels irradiated to 38 dpa. The cracks initiated within -100 hours at 750MPa under constant load testing in hydrogenated and oxygenated high temperature water at 320°C. The crack tips were located at 10 - 20 nm from the apparent open position with a width of less than 5 nm. No oxides were detected at the crack wall and tip whereas a small amount of O was detected at the crack wall and ahead of the crack tip. The Cr concentration became greater than the Ni concentration at and behind the crack tips whereas it was almost half the Ni concentration at grain boundaries far from the crack tip due to radiation induced segregation. These features were common to both crack tips in both hydrogenated and oxygenated water, and greatly different from the appearance of arrested subcracks in SSRT tests, in which the crack tip consisted of thin oxide layer together with oxide particles in the open crack. The results indicated that IASCC cracks in highly irradiated stainless steels propagated at a high rate without significant oxidation.
机译:对辐照至38 dpa的冷加工316不锈钢的IASCC裂纹尖端进行了显微组织和化学分析。裂纹在320MPa的氢化和氧化高温水中在恒定载荷下通过750MPa的-100小时内引发裂纹。裂纹尖端位于距表观开口位置10-20 nm处,宽度小于5 nm。在裂纹壁和尖端处未检测到氧化物,而在裂纹壁和裂纹尖端之前检测到少量的O。 Cr的浓度大于裂纹尖端及其后的Ni浓度,而由于辐射引起的偏析,Cr的浓度几乎是远离裂纹尖端的晶界处的Ni浓度的一半。这些特征对于加氢和充氧水中的裂纹尖端都是共有的,并且与SSRT测试中滞留的子裂纹的外观有很大不同,在SSRT测试中,裂纹尖端由薄的氧化物层和开放裂纹中的氧化物颗粒组成。结果表明,在高度辐照的不锈钢中,IASCC裂纹以高速率传播而没有明显的氧化。

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