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Competing fatigue failure behaviors of Ni-based superalloy FGH96 at elevated temperature

机译:镍基高温合金FGH96在高温下的竞争疲劳破坏行为

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摘要

Fatigue experiments were performed on a polycrystalline P/M processed nickel-based superalloy, FGH96 at 600 ℃ to investigate competing fatigue failure behaviors of the alloy. The experiments were performed at four levels of stress (from high cycle fatigue to low cycle fatigue) at stress ratio of 0.05. There was large variability in fatigue life at both high and low stresses. Scanning electron microscopy (SEM) was used to analyze the failure surfaces. Three types of competing failure modes were observed (surface, sub-surface and internal initiated failures). Crack initiation sites were gradually changed from the surface to the interior with the decreasing of stress level. Roles of microstructures in competing failure mechanism were analyzed. There were six kinds of fatigue crack initiation modes: (1) surface inclusion initiated; (2) surface facet initiated; (3) sub-surface inclusion initiated; (4) sub-surface facet initiated; (5) internal inclusion initiated; (6) internal facet initiated. Inclusions at surface were the life-limiting microstructures at higher stress levels. The probability of occurrence of inclusions initiated is gradually reduced with decreasing of stress level, simultaneously the probability of occurrence of facets initiated is increasing. The existence of the inclusions resulted in large life variability at higher stress levels, while heterogeneity of material caused by random combinations of grains was the main cause of fatigue variability at lower stress levels.
机译:在多晶P / M处理的镍基高温合金FGH96上于600℃进行了疲劳实验,以研究合金的竞争性疲劳破坏行为。在应力比为0.05的四个应力级别(从高循环疲劳到低循环疲劳)下进行了实验。高应力和低应力下的疲劳寿命差异很大。使用扫描电子显微镜(SEM)分析失效表面。观察到三种类型的竞争失效模式(表面,地下和内部引发的失效)。随着应力水平的降低,裂纹的萌生部位从表面到内部逐渐变化。分析了微结构在竞争失效机理中的作用。疲劳裂纹萌生方式有六种:(1)表面夹杂物萌生; (2)表面刻面引发; (3)引发地下包裹体; (4)发起下表面刻面; (5)启动内部包容; (6)内部构面启动。表面的夹杂物是在较高应力水平下限制寿命的微观结构。随着应力水平的降低,开始产生夹杂物的可能性逐渐降低,同时开始发生切面的可能性增加。夹杂物的存在导致在较高应力水平下较大的寿命变化,而由晶粒的随机组合引起的材料异质性是在较低应力水平下疲劳变化的主要原因。

著录项

  • 来源
    《Materials Science and Engineering》 |2016年第21期|66-72|共7页
  • 作者单位

    School of Energy and Power Engineering, Beihang University, Beijing 100191, China;

    School of Energy and Power Engineering, Beihang University, Beijing 100191, China,Collaborative Innovation Center of Advanced Aero-engine(CICAAE), Beihang University, Beijing 100191, China;

    School of Energy and Power Engineering, Beihang University, Beijing 100191, China,Collaborative Innovation Center of Advanced Aero-engine(CICAAE), Beihang University, Beijing 100191, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fatigue life variability; Nickel-based superalloy; Competing behavior; Microstructure; Inclusion;

    机译:疲劳寿命变异性;镍基高温合金;竞争行为;微观结构包容性;

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