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Effect of Applied Stress on T91 Steel Performance in Liquid Lead at 400 °C

机译:外加应力对400°C液态铅中T91钢性能的影响

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摘要

The environmental performance of structural materials (e.g., corrosion and environmental assisted cracking) is one of the critical issues being addressed in the development of Generation IV fast reactors. This work aims to support the study of the performance of the ferritic-martensitic steel T91 in liquid lead, under close to operation conditions, in order to assess its suitability for an application in lead fast reactors. T91 steel was tested in air and liquid lead at 400 °C using static and slow loading regimes. Applied stresses were chosen to be slightly above the yield strength in order to evaluate the threshold stress and strain for crack initiation. Three-point bending static exposure and constant extension tests of tapered specimens were performed. Post-test surfaces and cross sections of specimens were observed using scanning electron microscopy techniques in order to detect cracks and to analyze oxide layers. The effect of strain rate of the oxide layer cracking was observed. In conclusion, T91 was not susceptible to liquid metal embrittlement, a special case of environmentally assisted cracking under the testing conditions. The cracking conditions are discussed based on previous experience.
机译:结构材料的环境性能(例如腐蚀和环境辅助开裂)是第四代快堆开发中要解决的关键问题之一。这项工作旨在支持在接近操作条件下研究液态铅中铁素体-马氏体钢T91的性能,以评估其在快铅反应堆中的适用性。使用静态和缓慢加载方式在400°C的空气和液体铅中测试了T91钢。选择施加应力略高于屈服强度,以便评估裂纹萌生的阈值应力和应变。进行了锥形试样的三点弯曲静态暴露和恒定延伸试验。使用扫描电子显微镜技术观察样品的测试后表面和横截面,以检测裂纹并分析氧化物层。观察到了氧化层破裂的应变速率的影响。总之,T91不易受液态金属脆化的影响,这是在测试条件下环境辅助开裂的特殊情况。根据以前的经验讨论了开裂条件。

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