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首页> 外文期刊>Journal of Materials Engineering and Performance >Determination of Mechanical Properties and Fracture Behavior of Hot-Rolled Inconel 617/Ni Bimetal Composite Plate
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Determination of Mechanical Properties and Fracture Behavior of Hot-Rolled Inconel 617/Ni Bimetal Composite Plate

机译:热轧Inconel 617 / Ni双金属复合板的机械性能和断裂行为的测定

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Molten salt reactors (MSRs), which represent a widely implemented reactor type, are subject to severe conditions, which significantly impact structural materials. Hence, in this study, the bimetal composite plate (Inconel 617/Ni-201) was developed by hot rolling to meet the demands of alloy structural materials employed in future high-temperature MSRs. The results of the bending test indicate that the interface of the two metals was well bonded. The tensile properties and microstructure, especially at the bimetallic interface of the composite plate, were tested and characterized using tensile testing machine, transmission electron microscopy (TEM), and scanning electron microscopy. TEM analysis of the bimetal interface confirmed that the two materials were in a metallurgical bonding state. Moreover, the tensile properties of the bimetal composite plate were mainly determined by the Inconel 617. In addition to the elongation at room temperature, the tensile properties of the composite plate were superior to those of Hastelloy N alloy, which is a well-known and potential structural material for use in MSRs. In this study, the tensile properties of the composite plate after long-term high-temperature aging were also tested to determine its applicability to future high-temperature MSRs.
机译:代表广泛实施的反应器类型的熔融盐反应器(MSRS)受到严重条件的影响,这显着影响了结构材料。因此,在该研究中,通过热轧开发了双金属复合板(Inconel 617 / Ni-201),以满足未来高温MSR中采用的合金结构材料的需求。弯曲试验的结果表明,两种金属的界面很好地键合。使用拉伸试验机,透射电子显微镜(TEM)和扫描电子显微镜测试并表征在复合板的双金属界面处的拉伸性能和微观结构。双金属界面的TEM分析证实,两种材料处于冶金键合状态。此外,双金属复合板的拉伸性质主要由Inconel 617测定。除了室温下的伸长率外,复合板的拉伸性质优于Hastelloy n合金,这是一种众所周知的和用于MSRS的潜在结构材料。在该研究中,还测试了长期高温老化后复合板的拉伸性能,以确定其对未来高温MSR的适用性。

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