论文标题

辐射的Ti3SIC2中的氦作用和气泡形成

Helium effects and bubbles formation in irradiated Ti3SiC2

论文作者

Zhang, Hongliang, Su, Ranran, Szlufarska, Izabela, Shi, Liqun, Wen, Haiming

论文摘要

Ti3SIC2是核反应堆应用的潜在结构材料。但是,他在这种材料中的辐照作用尚不清楚,尤其是在高温下。在这里,我们比较了在室温(RT)和750°C下Ti3SIC2辐照的效果。发现在750°C下的辐照导致极度伸长的气泡集中在Ti3SIC2的纳米层压层层中,而材料的整体晶体结构保持完整。相比之下,在RT处,层状结构在辐照后受到了显着损坏和高度混乱。我们的研究表明,在升高的温度下,TI3SIC2的独特结构可以在纳米层压板层中容纳大量的HE原子,而不会损害材料的结构稳定性。结构和机械测试结果表明,辐照在750°C下引起的肿胀和硬化比RT小得多。这些结果表明,Ti3SIC2具有极好的耐药性,其辐射诱导的HE杂质的积累具有相当大的耐受性,可在高温下辐射诱导的机械性能降解。

Ti3SiC2 is a potential structural material for nuclear reactor applications. However, He irradiation effects in this material are not well understood, especially at high temperatures. Here, we compare the effects of He irradiation in Ti3SiC2 at room temperature (RT) and at 750 °C. Irradiation at 750 °C was found to lead to extremely elongated He bubbles that are concentrated in the nano-laminate layers of Ti3SiC2, whereas the overall crystal structure of the material remained intact. In contrast, at RT, the layered structure was significantly damaged and highly disordered after irradiation. Our study reveals that at elevated temperatures, the unique structure of Ti3SiC2 can accommodate large amounts of He atoms in the nano-laminate layer, without compromising the structural stability of the material. The structure and the mechanical tests results show that the irradiation induced swelling and hardening at 750 °C are much smaller than those at RT. These results indicate that Ti3SiC2 has an excellent resistance to accumulation of radiation-induced He impurities and that it has a considerable tolerance to irradiation-induced degradation of mechanical properties at high temperatures.

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