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Microstructural evolution and stress rupture behaviour of a Ni-Based wrought superalloy during thermal exposure

机译:热曝光期间Ni基锻化高温合金的微观结构演化与应力破裂行为

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摘要

The microstructural evolution of a wrought Ni-based superalloy GH742 during long-term thermal exposure at 1023 K for durations up to 10,000 h was investigated. The influence of the microstructure degradation on the stress rupture properties at 923 K/823 MPa and 1023 K/510 MPa was systematically analysed. Scanning electron microscopy and electron probe microanalysis were utilised to study the material microstructures before and after the thermal exposure. The results show that small flower-like secondary γ' precipitates changed their morphology from flower-like to cubic with rounded corners, while large flower-like secondary γ' precipitates started to split. Tertiary spherical γ' precipitates in the fine-equiaxed-grain region dissolved into the γ matrix. However, coarsening of tertiary γ' precipitates occurred in large-fibrous-grain regions. The coarsening kinetics appeared to well conform to the Lifshitz-Slyozov-Wagner theory. Stress rupture tests at 923 K/823 MPa and 1023 K/510 MPa showed a sharp decrease in time to failure within the first 1,000 h of prior thermal exposure, which was then almost constant for the next 9,000 h of thermal exposure. This was attributed to the evolution of γ' precipitates.
机译:研究了高达10,000小时的1023K在1023K的长期热暴露过程中锻基Ni的超合金GH742的微观结构演化。系统地分析了微观结构降解对923K / 823MPa和1023k / 510MPa的应力破裂性能的影响。扫描电子显微镜和电子探针微基分析用于研究热暴露前后的材料微观结构。结果表明,小花次级γ'沉淀物从花朵类似地改变它们与圆角的立方体的形态,而大花样的次级γ'沉淀物开始分裂。第三球形γ'沉淀在溶解到γ基质中的细平面晶粒区域中。然而,大γ'沉淀物的粗化发生在大纤维状区域。粗化动力学似乎很好地符合Lifshitz-Slyozov-Wagner理论。在923 k / 823MPa和1023k / 510MPa的应力破裂试验显示出在先前热暴露的前1,000小时内发生急剧下降,然后在接下来的9,000小时的热暴露中几乎恒定。这归因于γ'沉淀的演变。

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  • 来源
    《Materials Science and Engineering》 |2021年第3期|141659.1-141659.13|共13页
  • 作者单位

    School of Materials Science and Engineering University of Science and Technology of China Shenyang 110016 PR China Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences Shenyang 110016 PR China;

    School of Materials Science and Engineering University of Science and Technology of China Shenyang 110016 PR China Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences Shenyang 110016 PR China;

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences Shenyang 110016 PR China;

    Xi'an Bright Laser Technologies Co. Ltd. Xian 710000 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Ni-based superalloy; Thermal exposure; Microstructure degradation; Stress rupture properties;

    机译:基于NI的超合金;热曝光;微观结构降解;压力破裂特性;

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