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Microstructural investigation of oxide dispersion strengthened alloy 617 after creep rupture at high temperature

机译:高温蠕变破裂后氧化物分散增强合金617的微观结构研究

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Oxide dispersion strengthened (ODS) alloys have been widely considered as candidate structural materials for advanced nuclear reactors because of their good high temperature properties and irradiation resistance. In this study, the creep properties of oxide dispersion strengthened Alloy 617 (ODS-617) was examined at 950 degrees C under 25 MPa in the air. Conventional Alloy 617 tested under the same conditions was included for comparison. The ODS-617 exhibited superior creep resistance, including a much longer rupture life of 8533 h and a steady-state creep rate of 8.9 x 10(-8) (1/s), which was two orders of magnitude lower than that of the conventional alloy. The lower steady-state creep rate was related to the dispersion of nano-sized Y-Al-O particles, which may impede grain boundary diffusion. It seems that cracks preferentially developed near some large rod-like AN particles, resulting in the brittle creep fracture mode.
机译:增强(ODS)合金的氧化物分散体已被广泛认为是先进的核反应堆的候选结构材料,因为它们的高温性和辐射抗性良好。 在该研究中,在空气中的25MPa下在950℃下检查氧化物分散体强化合金617(ODS-617)的蠕变性质。 在相同条件下测试的常规合金617用于比较。 ODS-617表现出卓越的蠕变性,包括8533小时的次数更长,稳态蠕变率为8.9×10(1 / s),这两个数量级低于 常规合金。 较低的稳态蠕变率与纳米尺寸Y-Al-O颗粒的分散有关,这可能妨碍晶界扩散。 似乎裂缝优先在一些大的棒状颗粒附近开发,导致脆性蠕变裂缝模式。

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