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Ratcheting behavior of Eurofer97 at 550?°C

机译:Eurofer97在550°C下的棘轮行为

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The components in reactor are usually exposed to cyclic loading caused by frequent startups, shutdown and load fluctuations which lead to ratcheting effect. Eurofer97 is a structural material candidate for in-vessel components of future fusion reactor. To investigate the ratcheting behavior of Eurofer97, uniaxial stress-controlled cyclic loading tests are performed at 550?°C. Ratcheting rates under various loading conditions, including various peak stresses, stress ratios and stress rates are determined to build the database of Eurofer97 for future application in the blankets of fusion reactor. An already developed unified visco-plastic constitutive model for mod.9Cr-1Mo FM steels is further applied to adapt the ratcheting behavior of Eurofer97. The developed model describes both cyclic softening in strain-controlled LCF tests and its impact on the ratcheting behavior of mod.9Cr-1Mo FM steel fairly good, at both room temperature and 550?°C. Verifying whether the current model can also describe the ratcheting behavior of Eurofer97 is a further aim of the work reported here.
机译:反应堆中的组件通常会受到频繁启动,停机和负载波动导致的周期性负载,从而导致棘轮效应。 Eurofer97是未来聚变反应堆船内组件的结构材料候选者。为了研究Eurofer97的棘轮行为,在550°C下进行了单轴应力控制的循环载荷试验。确定包括各种峰值应力,应力比和应力率在内的各种载荷条件下的棘轮速度,以建立Eurofer97数据库,以备将来在聚变反应堆毯子中应用。进一步应用了已开发的用于9Cr-1Mo FM钢的统一粘塑性本构模型,以适应Eurofer97的棘轮行为。开发的模型既描述了在应变控制的LCF测试中的循环软化,也描述了其对9Cr-1Mo FM钢在室温和550°C时的棘轮行为的良好影响。验证当前模型是否还可以描述Eurofer97的棘轮行为是此处报告的工作的进一步目标。

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