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Radiation Damage Effect on Mechanical Properties and Microstructure of X-750 Ni-based Superalloy

机译:辐射损伤对X-750镍基高温合金力学性能和组织的影响

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摘要

Inconel X-750 is an age-hardened Ni-based superalloy with high mechanical strength and creep resistance. The X-750 alloy is extensively used in the cores of reactors, such as spacers in CANada Deuterium Uranium (CANDU) fuel channels. The recent mechanical tests on the ex-service Inconel X-750 spacers indicate significant embrittlement and reduced load carrying capacity compared to as installed condition. The primary degradation mechanism remains unclear, and thus provides the focus of this investigation. Heavy-ion irradiation was employed as an emulator for neutron irradiation to explore the microstructural evolution and mechanical property degradation in X-750 Ni-based superalloy. The ion-irradiation has been conducted at different temperatures and up to different doses. In addition, helium-implantation prior to heavy-ion irradiation was used to investigate the effect of helium on microstructural changes. The discussion of the microstructural evolution is focused on characterization of irradiation-induced defects, including dislocation loops and cavities along with examination of the stability of strengthening phase gamma'-precipitates. A major contribution of this work is to utilize a focused ion beam (FIB) and transmission electron microscopy (TEM) to perform precise defect characterization. The microstructure is correlated to the mechanical properties obtained via nano-hardness test on irradiated materials. In order to estimate the individual contribution of defects in radiation-induced hardening, three different obstacle-hardening models have been applied to fit TEM-obtained microstructural data. The superposition of contributions is made in each model and compared with nano-scale experimental results. This approach is unique to the literature since it demonstrates both the individual and the combined effects of the microstructural features on mechanical behavior. Furthermore, the effect of gamma-prime instability on mechanical properties of irradiated X-750 was investigated and the strength softening raised from disordering and also dissolution of gamma-prime was evaluated.
机译:Inconel X-750是具有高机械强度和抗蠕变性的时效硬化的镍基高温合金。 X-750合金广泛用于反应堆堆芯,例如CANada氘铀(CANDU)燃料通道中的垫片。与安装条件相比,最近对退役的Inconel X-750隔圈进行的机械测试表明,其脆性明显,负载能力降低。主要的降解机理尚不清楚,因此成为本研究的重点。重离子辐照被用作中子辐照的模拟器,以探索X-750 Ni基高温合金的微观结构演变和力学性能退化。离子辐照是在不同的温度和不同的剂量下进行的。此外,在重离子辐照之前进行氦气植入研究了氦气对微结构变化的影响。微观结构演变的讨论集中于辐照引起的缺陷的表征,包括位错环和空洞,以及对强化相γ'沉淀物稳定性的检查。这项工作的主要贡献是利用聚焦离子束(FIB)和透射电子显微镜(TEM)进行精确的缺陷表征。微观结构与通过对辐照材料进行纳米硬度测试获得的机械性能相关。为了估计缺陷在辐射诱导的硬化中的单独作用,已应用三种不同的障碍硬化模型来拟合TEM获得的显微结构数据。在每个模型中做出贡献的叠加,并将其与纳米级实验结果进行比较。这种方法是文献所独有的,因为它证明了微结构特征对机械行为的个体和综合影响。此外,研究了γ-prime不稳定性对被辐照的X-750的机械性能的影响,并评估了由于γ-prime的无序性和溶解而引起的强度软化。

著录项

  • 作者

    Changizian, Pooyan.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Materials science.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 209 p.
  • 总页数 209
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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