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Effects of oxide and hydrogen on the behavior of Zircaloy-4 cladding during the loss of the coolant accident (LOCA)

机译:冷却剂损失(LOCA)期间氧化物和氢气对Zircaloy-4覆层行为的影响

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Effects of surface oxide and absorbed hydrogen on the behavior of the loss of the coolant accident (LOCA) were investigated in this study. High temperature ballooning and thermal quench tests were performed for Zircaloy-4 cladding which had been prepared with up to 50 μm of oxide and 1000 ppm of hydrogen, respectively. In the high temperature ballooning test, the initially pressurized cladding was heated until a rupture. Threshold oxidation (ECR) of each condition was evaluated in the thermal quench test in which oxidized cladding at the LOCA temperature was quenched by water. Ring compression test was performed to assess the ductility of the quenched cladding The results showed that both the oxide and hydrogen affected the high temperature ballooning property due to the constraint of the a phase by the surface oxide as well as the expansion of the β phase by the absorbed hydrogen. In the quench test, the pre-oxide and absorbed hydrogen did not affect the high temperature oxidation whereas the threshold ECR decreased in the hydrogen charged cladding because the absorbed hydrogen increased the maximum oxygen solubility inside the residual β layer to reduce the cladding ductility.
机译:在这项研究中,研究了表面氧化物和吸收的氢对冷却剂事故损失(LOCA)行为的影响。对Zircaloy-4熔覆层进行了高温膨胀和热淬火测试,这些熔覆层分别用最多50μm的氧化物和1000 ppm的氢制备。在高温膨胀试验中,将最初加压的包层加热直到破裂。在热淬火测试中评估每种条件的阈值氧化(ECR),其中LOCA温度下的氧化覆层用水淬火。进行环压缩试验以评估淬火覆层的延展性。结果表明,由于表面氧化物对a相的限制以及β相的膨胀,氧化物和氢均会影响高温膨胀性能。吸收的氢。在淬火试验中,预氧化物和吸收的氢不影响高温氧化,而在充氢覆层中阈值ECR降低,因为吸收的氢增加了残留β层内部的最大氧溶解度,从而降低了覆层的延展性。

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