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Microstructures and ion-irradiation behaviour of friction stir welded 12Cr-ODS steel

机译:摩擦搅拌焊接12Cr-ODS钢的微结构和离子辐照行为

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摘要

12Cr oxide dispersion strengthened steel was successfully joined by friction stir welding (FSW), and the joints were irradiated with 3 MeV Au ions at 500 degrees C. The morphology of grains, dislocations, sizes and distributions of nano-sized oxide particles (NPs) in different zones of the FSW joints were analysed. It was found severe plastic deformation occurred and fine equixed grains were formed in stir zone (SZ). The NPs coarsen obviously in thermal-mechanically affected zone (TMAZ) on advancing side (AS) due to the relative movements of plastic materials with high-velocity gradient. The size distributions of the NPs in base metal (BM), heat affected zone (HAZ) and RS-TMAZ are concentrated in a smaller range than those in SZ and AS-TMAZ. Finer grains and high density of dislocations result in hardness increasing obviously in SZ. Irradiation introduced higher hardening in HAZ because of its less grain boundaries and dislocation density compared with SZ and BM.
机译:通过摩擦搅拌焊接(FSW)成功地连接了12Cr氧化物分散体强化钢,并且在500℃下用3meV Au离子进行照射。谷物,纳米氧化物颗粒(NPS)的晶粒,脱臼,尺寸和分布的形貌(NPS)。 在不同区域中分析了FSW关节。 发现真正的塑性变形发生,并在搅拌区(SZ)中形成细平的晶粒。 由于具有高速梯度的塑料材料的相对运动,NPS在推进侧(AS)上的热机械受影响的区域(TMAZ)显然粗化。 基础金属(BM),热影响区(HAZ)和RS-TMAZ中NPS的尺寸分布集中在比SZ和AS-TMAZ中的较小范围内。 更精细的晶粒和高密度的脱位导致SZ明显增加硬度。 由于其与SZ和BM相比,其较少的晶界和位错密度,辐射引入了更高的HAZ中的硬化。

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