Jiang Shaoning, Wang Zhiming
School of Mechanical and Automotive Engineering, Qilu University of Technology (Shandong Academy of Science), Jinan, 250353, China.
Nanoscale Res Lett. 2018 Mar 2;13(1):72. doi: 10.1186/s11671-018-2485-6.
The effect of post-irradiation annealing on the microstructures and mechanical properties of V-4Cr-4Ti alloys was studied. Helium-hydrogen-irradiated sequentially V-4Cr-4Ti alloys at room temperature (RT) were undergone post-irradiation annealing at 450 °C over periods of up to 30 h. These samples were carried out by high-resolution transmission electron microscopy (HRTEM) observation and nanoindentation test. With the holding time, large amounts of point defects produced during irradiation at RT accumulated into large dislocation loops and then dislocation nets which promoted the irradiation hardening. Meanwhile, bubbles appeared. As annealing time extended, these bubbles grew up and merged, and finally broke up. In the process, the size of bubbles increased and the number density decreased. Microstructural changes due to post-irradiation annealing corresponded to the change of hardening. Dislocations and bubbles are co-contributed to irradiation hardening. With the holding time up to 30 h, the recovery of hardening is not obvious. The phenomenon was discussed by dispersed barrier hardening model and Friedel-Kroupa-Hirsch relationship.
研究了辐照后退火对V-4Cr-4Ti合金微观结构和力学性能的影响。在室温(RT)下对依次进行氦-氢辐照的V-4Cr-4Ti合金在450℃下进行长达30小时的辐照后退火。通过高分辨率透射电子显微镜(HRTEM)观察和纳米压痕试验对这些样品进行了研究。随着保温时间的延长,室温辐照过程中产生的大量点缺陷积聚成大的位错环,进而形成位错网,这促进了辐照硬化。同时,出现了气泡。随着退火时间的延长,这些气泡长大并合并,最终破裂。在此过程中,气泡尺寸增大,数量密度降低。辐照后退火引起的微观结构变化与硬化的变化相对应。位错和气泡共同导致了辐照硬化。保温时间长达30小时时,硬化的恢复不明显。通过弥散障碍硬化模型和Friedel-Kroupa-Hirsch关系对该现象进行了讨论。