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Concepts for the Development of Nanoscale Stable Precipitation-Strengthened Steels Manufactured by Conventional Methods

机译:用常规方法制造的纳米级稳定析出强化钢的发展理念

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The development of oxide dispersion strengthened ferrous alloys has shown that microstructures designed for excellent irradiation resistance and thermal stability ideally contain stable nanoscale precipitates and dislocation sinks. Based upon this understanding, the microstructures of conventionally manufactured ferritic and ferritic-martensitic steels can be designed to include controlled volume fractions of fine, stable precipitates and dislocation sinks via specific alloying and processing paths. The concepts proposed here are categorized as advanced high-Cr ferritic-martensitic (AHCr-FM) and novel tailored precipitate ferritic (TPF) steels, which have the potential to improve the in-reactor performance of conventionally manufactured alloys. AHCr-FM steels have modified alloy content relative to current reactor materials (such as alloy NF616/P92) to maximize desirable precipitates and control phase stability. TPF steels are designed to incorporate nickel aluminides, in addition to microalloy carbides, in a ferritic matrix to produce fine precipitate arrays with good thermal stability. Both alloying concepts may also benefit from thermomechanical processing to establish dislocation sinks and modify phase transformation behaviors. Alloying and processing paths toward designed microstructures are discussed for both AHCr-FM and TPF material classes.
机译:氧化物弥散强化的铁合金的发展表明,为实现出色的耐辐照性和热稳定性而设计的微观结构理想地包含稳定的纳米级析出物和位错阱。基于这种理解,可以将常规制造的铁素体和铁素体-马氏体钢的微观结构设计为包括通过特定的合金化和加工路径控制的体积分数的细小,稳定的析出物和位错沉。本文提出的概念可分为高级高铬铁素体-马氏体(AHCr-FM)和新型定制沉淀铁素体(TPF)钢,它们具有改善常规制造合金的反应器内性能的潜力。 AHCr-FM钢相对于当前的反应堆材料(例如NF616 / P92合金)具有改良的合金含量,以最大程度地增加所需的析出物并控制相稳定性。 TPF钢设计为在铁素体基体中除微合金碳化物外还掺入铝化镍,以产生具有良好热稳定性的细小析出物阵列。两种合金化概念也可受益于热机械加工以建立位错阱并改变相变行为。针对AHCr-FM和TPF材料类别,讨论了朝向设计的微结构的合金化和加工路径。

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