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首页> 外文期刊>Journal of nuclear science and technology >Development of Oxide Dispersion Strengthened Ferritic Steels for FBR Core Application, (I)Improvement of Mechanical Properties by Recrystallization Processing
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Development of Oxide Dispersion Strengthened Ferritic Steels for FBR Core Application, (I)Improvement of Mechanical Properties by Recrystallization Processing

机译:用于FBR铁心应用的氧化物弥散强化铁素体钢的开发,(I)通过重结晶工艺改善机械性能

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As to an oxide dispersion strengthened (ODS) ferritic steel cladding as the promising candidate for long-life core materials of the fast reactors, previously fabricated claddings had inferior internal creep rupture strength in hoop direction and inferior formability due to less ductility. Those unexpected features of ODS claddings are substantially ascribed to the needle-like grain structure excessively elongated along the forming direction. Controlling the grain morphology by applying the recrystallization method to ODS ferritic steel made possible to improve those inferior features. The ranges of Y2O3 and excessive oxygen contents for possibly cold-rolling and recrystallization were revealed, and the effects of extruded temperature and deformation texture on recrystallization characteristics were evaluated. The recrystallized ODS ferritic steel showed superior internal creep rupture strength and ductility. It was demonstrated from those results that cold-rolling manufacturing of ODS cladding at room temperature are feasible by softening the accumulated deformation structure using the recrystallization treatment.
机译:关于氧化物弥散强化(ODS)铁素体钢覆层作为快堆长寿命核心材料的有希望的候选者,先前制造的覆层在环向方向上的内部蠕变断裂强度较差,并且由于延展性较差而具有较差的成形性。 ODS包层的那些意想不到的特征基本上归因于沿成形方向过度伸长的针状晶粒结构。通过对ODS铁素体钢应用再结晶方法来控制晶粒形态,可以改善这些劣质性。揭示了Y2O3的范围和可能进行冷轧和再结晶的过量氧含量,并评估了挤压温度和变形织构对再结晶特性的影响。重结晶的ODS铁素体钢具有优异的内部蠕变断裂强度和延展性。从这些结果证明,通过使用再结晶处理软化累积的变形结构,在室温下冷轧ODS覆层是可行的。

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