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Correlation of the microstructural degradation and mechanical strength of Ni-based superalloy after thermal exposure

机译:热暴露后Ni基超合金微观结构降解和机械强度的相关性

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Many hot gas components in gas turbine are made of Ni-based superalloy because of their high temperature performance. During the operation of power generation gas turbines, the blades and other elements of hot gas path suffer service induced degradation which may be natural or accelerated due to different causes. The degradation or damage may have a metallurgical or mechanical origin and results in reduction of reliability and availability. It also increases risk of failure occurring. Also, due to blade material metallurgical deterioration, the material creep, fatigue, impact and corrosion properties decrease. There are different factors which influence blade lifetime as design and operation conditions but the latter are more critical. In order to have an instrument for the deterioration evaluation of gas turbine blade alloy, it is necessary to correlate the influence of microstructural degradation to the change in mechanical properties. In this work, we survey the effect of long-term thermal exposure on microstructure and mechanical properties. The degradation of mechanical properties due to the exposure temperature and time has been examined and correlated with the microstructural changes during the long-term thermal exposure
机译:由于其高温性能,燃气轮机中的许多热气组件由基于Ni的高温合金制成。在发电燃气轮机的操作期间,叶片和热气路径的其他元件遭受服务诱导的降解,这可能是由于不同原因而自然的或加速的。劣化或损坏可能具有冶金或机械来源,并导致降低可靠性和可用性。它还提高了失败的风险。而且,由于叶片材料冶金劣化,材料蠕变,疲劳,抗冲击性和腐蚀性能降低。存在不同的因素,这些因素会影响叶片寿命作为设计和操作条件,但后者更为关键。为了使燃气涡轮叶片合金的劣化评估仪器,有必要将微观结构降解对机械性能变化的影响相关。在这项工作中,我们调查了长期热暴露对微观结构和机械性能的影响。由于曝光温度和时间而导致的机械性能的降解并与长期热暴露过程中的微观结构变化相关

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