首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >MICROSTRUCTURE AND MECHANICAL BEHAVIOUR OF TZM AND MO-5-PERCENT RE ALLOYS IRRADIATED WITH FISSION NEUTRONS
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MICROSTRUCTURE AND MECHANICAL BEHAVIOUR OF TZM AND MO-5-PERCENT RE ALLOYS IRRADIATED WITH FISSION NEUTRONS

机译:裂变中子辐照的TZM和5%钼稀土合金的微观结构和力学行为

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摘要

The response of microstructural and mechanical properties of TZM and Mo-5% Re alloys to neutron irradiation are reported. Irradiations were carried out at five temperatures between 323 and 723 K to a dose level of similar to 0.16 dpa. The resulting microstructures consisted of a high density of small loops in both alloys with the addition of characteristic loop rafting in TZM. There was a marked sensitivity of microstructure to temperature. Void formation was found in both TZM and Mo-5% Re after the 623 and 723 K irradiations. The irradiations induced a significant increase in Vickers hardness in all cases but with no obvious dependence on irradiation temperature. Even at the present low neutron dose, large increases in tensile strength and a drastic decrease in ductility were observed. These results are discussed in terms of source hardening of the matrix within grains rather than obstacle hardening. Although the fracture processes are concentrated at the grain boundaries, these are not due to grain boundary embrittlement. [References: 19]
机译:报告了TZM和Mo-5%Re合金的显微组织和力学性能对中子辐照的响应。在323至723 K之间的五个温度下进行辐照,剂量水平接近0.16 dpa。所得的微观结构由两种合金中的高密度小环组成,并在TZM中增加了特有的环筏。微观结构对温度有明显的敏感性。 623和723 K辐照后,在TZM和Mo-5%Re中均发现了空洞形成。在所有情况下,辐照均导致维氏硬度显着提高,但对辐照温度的依赖性不明显。即使在目前低的中子剂量下,也观察到抗张强度大幅度增加和延展性急剧下降。这些结果是根据晶粒内基体的源硬化而不是障碍物硬化来讨论的。尽管断裂过程集中在晶界,但这不是由于晶界脆化引起的。 [参考:19]

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