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Different Radiation Tolerances of Ultrafine-Grained Zirconia–Magnesia Composite Ceramics with Different Grain Sizes

机译:用不同粒度尺寸的超细晶粒氧化锆 - 镁质复合陶瓷的不同辐射公差

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摘要

Developing high-radiation-tolerant inert matrix fuel (IMF) with a long lifetime is important for advanced fission nuclear systems. In this work, we combined zirconia (ZrO2) with magnesia (MgO) to form ultrafine-grained ZrO2–MgO composite ceramics. On the one hand, the formation of phase interfaces can stabilize the structure of ZrO2 as well as inhibiting excessive coarsening of grains. On the other hand, the grain refinement of the composite ceramics can increase the defect sinks. Two kinds of composite ceramics with different grain sizes were prepared by spark plasma sintering (SPS), and their radiation damage behaviors were evaluated by helium (He) and xenon (Xe) ion irradiation. It was found that these dual-phase composite ceramics had better radiation tolerance than the pure yttria-stabilized ZrO2 (YSZ) and MgO. Regarding He+ ion irradiation with low displacement damage, the ZrO2–MgO composite ceramic with smaller grain size had a better ability to manage He bubbles than the composite ceramic with larger grain size. However, the ZrO2–MgO composite ceramic with a larger grain size could withstand higher displacement damage in the phase transformation under heavy ion irradiation. Therefore, the balance in managing He bubbles and phase stability should be considered in choosing suitable grain sizes.
机译:具有长寿命的高辐射耐受惰性基质燃料(IMF)对于高级裂变核系统很重要。在这项工作中,我们将氧化锆(ZrO2)与氧化镁(MgO)组合形成超细晶粒ZrO2-MgO复合陶瓷。一方面,相界面的形成可以稳定ZrO2的结构以及抑制谷物的过度粗化。另一方面,复合陶瓷的晶粒细化可以增加缺陷槽。通过火花等离子体烧结(SPS)制备两种具有不同晶粒尺寸的复合陶瓷,并通过氦(He)和氙(Xe)离子辐射评估其辐射损伤行为。发现这些双相复合陶瓷具有比纯yTTRIA稳定的ZrO2(YSZ)和MgO更好的辐射耐受性。关于HE +离子照射,具有低位移损伤,具有较小晶粒尺寸的ZrO2-MgO复合陶瓷具有比具有较大晶粒尺寸更大的复合陶瓷的能力更好。然而,具有较大晶粒尺寸的ZrO2-MgO复合陶瓷可以承受重离子照射下相变损伤的较高位移损伤。因此,在选择合适的晶粒尺寸时,应考虑管理他泡沫和相位稳定的平衡。

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