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Structural stability and self-healing capability of Er_2O_3 in situ coating on V-4Cr-4Ti in liquid lithium

机译:液态锂中V-4Cr-4Ti上Er_2O_3原位涂层的结构稳定性和自修复能力

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摘要

The in situ Er_2O_3 insulating coating is under development for the self-cooled Li/V-alloy type fusion blanket. In this study, the structural stability and self-healing capability of the coating are investigated. Since the cracking in the coating was not observed after exposure when Li was removed with a weak lotion (liquid NH_3), the cracking observed in the previous studies is not a practical issue in a real blanket. The re-exposure of the coating in pure Li showed that the coating once formed in Li (Er) is thought to be stable in pure Li. Thus, coating has the possibility to be serviced in a Li environment without an Er supply. By prior exposure to Li (Er) at 873 K, the exhaustion of the oxygen storage in V-alloy substrate during exposure at 973 K could be delayed effectively. The self-healing capability of the coating was demonstrated by the examination with the re-exposing cracked coating in Li (Er).
机译:正在开发用于自冷Li / V合金型熔覆层的原位Er_2O_3绝缘涂层。在这项研究中,研究了涂层的结构稳定性和自修复能力。由于用弱洗剂(液态NH_3)除去Li后,暴露后未观察到涂层开裂,因此在以前的研究中观察到的开裂在实际的毯子中不是实际问题。涂层在纯Li中的再暴露表明,曾经在Li(Er)中形成的涂层在纯Li中被认为是稳定的。因此,涂层可以在没有Er供应的Li环境中使用。通过预先在873 K下暴露于Li(Er),可以有效地延迟在973 K下暴露期间V合金基底中氧气的消耗。通过在Li(Er)中重新暴露开裂的涂层进行检查,证明了涂层的自我修复能力。

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