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Effects of Silicon Content and Tempering Temperature on the Microstructural Evolution and Mechanical Properties of HT-9 Steels

机译:硅含量和回火温度对HT-9钢组织演变和力学性能的影响

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摘要

Two kinds of experimental ferritic/martensitic steels (HT-9) with different Si contents were designed for the fourth-generation advanced nuclear reactor cladding material. The effects of Si content and tempering temperature on microstructural evolution and mechanical properties of these HT-9 steel were studied. The microstructure of experimental steels after quenching and tempering were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), and transmission electron microscopy (TEM); the mechanical properties were investigated by means of tensile test, Charpy impact test, and hardness test. The microscopic mechanism of how the microstructural evolution influences mechanical properties was also discussed. Both XRD and TEM results showed that no residual austenite was detected after heat treatment. The results of mechanical tests showed that the yield strength, tensile strength, and plasticity of the experimental steels with 0.42% (% in mass) Si are higher than that with 0.19% Si, whereas hardness and toughness did not change much; when tempered at 760 °C, the strength and hardness of the experimental steels decreased slightly compared with those tempered at 710 °C, whereas plasticity and toughness increased. Further analysis showed that after quenching at 1050 °C for 1 h and tempering at 760 °C for 1.5 h, the comprehensive mechanical properties of the 0.42% Si experimental steel are the best compared with other experimental steels.
机译:为第四代先进核反应堆熔覆材料设计了两种硅含量不同的两种实验铁素体/马氏体钢(HT-9)。研究了Si含量和回火温度对这些HT-9钢组织和力学性能的影响。用X射线衍射(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)对实验钢的淬火和回火后的组织进行了表征。通过拉伸试验,夏比冲击试验和硬度试验研究了机械性能。还讨论了微观结构如何影响机械性能的微观机理。 XRD和TEM结果均表明,热处理后未检测到残余奥氏体。力学测试结果表明,含0.42%(质量%)Si的实验钢的屈服强度,抗拉强度和塑性高于含0.19%Si的实验钢,而硬度和韧性变化不大。当在760°C下回火时,与710°C下回火相比,实验钢的强度和硬度略有下降,而塑性和韧性却有所提高。进一步的分析表明,与其他实验钢相比,在1050°C淬火1 h和在760°C回火1.5 h后,0.42%Si实验钢的综合机械性能最佳。

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